example_test.py 17 KB

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  1. import re
  2. import os
  3. import struct
  4. import socket
  5. import http.server
  6. from threading import Thread
  7. import ssl
  8. from tiny_test_fw import DUT
  9. import ttfw_idf
  10. import random
  11. import subprocess
  12. server_cert = "-----BEGIN CERTIFICATE-----\n" \
  13. "MIIDXTCCAkWgAwIBAgIJAP4LF7E72HakMA0GCSqGSIb3DQEBCwUAMEUxCzAJBgNV\n"\
  14. "BAYTAkFVMRMwEQYDVQQIDApTb21lLVN0YXRlMSEwHwYDVQQKDBhJbnRlcm5ldCBX\n"\
  15. "aWRnaXRzIFB0eSBMdGQwHhcNMTkwNjA3MDk1OTE2WhcNMjAwNjA2MDk1OTE2WjBF\n"\
  16. "MQswCQYDVQQGEwJBVTETMBEGA1UECAwKU29tZS1TdGF0ZTEhMB8GA1UECgwYSW50\n"\
  17. "ZXJuZXQgV2lkZ2l0cyBQdHkgTHRkMIIBIjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIB\n"\
  18. "CgKCAQEAlzfCyv3mIv7TlLkObxunKfCdrJ/zgdANrsx0RBtpEPhV560hWJ0fEin0\n"\
  19. "nIOMpJSiF9E6QsPdr6Q+eogH4XnOMU9JE+iG743N1dPfGEzJvRlyct/Ck8SswKPC\n"\
  20. "9+VXsnOdZmUw9y/xtANbURA/TspvPzz3Avv382ffffrJGh7ooOmaZSCZFlSYHLZA\n"\
  21. "w/XlRr0sSRbLpFGY0gXjaAV8iHHiPDYLy4kZOepjV9U51xi+IGsL4w75zuMgsHyF\n"\
  22. "3nJeGYHgtGVBrkL0ZKG5udY0wcBjysjubDJC4iSlNiq2HD3fhs7j6CZddV2v845M\n"\
  23. "lVKNxP0kO4Uj4D8r+5USWC8JKfAwxQIDAQABo1AwTjAdBgNVHQ4EFgQU6OE7ssfY\n"\
  24. "IIPTDThiUoofUpsD5NwwHwYDVR0jBBgwFoAU6OE7ssfYIIPTDThiUoofUpsD5Nww\n"\
  25. "DAYDVR0TBAUwAwEB/zANBgkqhkiG9w0BAQsFAAOCAQEAXIlHS/FJWfmcinUAxyBd\n"\
  26. "/xd5Lu8ykeru6oaUCci+Vk9lyoMMES7lQ+b/00d5x7AcTawkTil9EWpBTPTOTraA\n"\
  27. "lzJMQhNKmSLk0iIoTtAJtSZgUSpIIozqK6lenxQQDsHbXKU6h+u9H6KZE8YcjsFl\n"\
  28. "6vL7sw9BVotw/VxfgjQ5OSGLgoLrdVT0z5C2qOuwOgz1c7jNiJhtMdwN+cOtnJp2\n"\
  29. "fuBgEYyE3eeuWogvkWoDcIA8r17Ixzkpq2oJsdvZcHZPIZShPKW2SHUsl98KDemu\n"\
  30. "y0pQyExmQUbwKE4vbFb9XuWCcL9XaOHQytyszt2DeD67AipvoBwVU7/LBOvqnsmy\n"\
  31. "hA==\n"\
  32. "-----END CERTIFICATE-----\n"
  33. server_key = "-----BEGIN PRIVATE KEY-----\n"\
  34. "MIIEvAIBADANBgkqhkiG9w0BAQEFAASCBKYwggSiAgEAAoIBAQCXN8LK/eYi/tOU\n"\
  35. "uQ5vG6cp8J2sn/OB0A2uzHREG2kQ+FXnrSFYnR8SKfScg4yklKIX0TpCw92vpD56\n"\
  36. "iAfhec4xT0kT6Ibvjc3V098YTMm9GXJy38KTxKzAo8L35Veyc51mZTD3L/G0A1tR\n"\
  37. "ED9Oym8/PPcC+/fzZ999+skaHuig6ZplIJkWVJgctkDD9eVGvSxJFsukUZjSBeNo\n"\
  38. "BXyIceI8NgvLiRk56mNX1TnXGL4gawvjDvnO4yCwfIXecl4ZgeC0ZUGuQvRkobm5\n"\
  39. "1jTBwGPKyO5sMkLiJKU2KrYcPd+GzuPoJl11Xa/zjkyVUo3E/SQ7hSPgPyv7lRJY\n"\
  40. "Lwkp8DDFAgMBAAECggEAfBhAfQE7mUByNbxgAgI5fot9eaqR1Nf+QpJ6X2H3KPwC\n"\
  41. "02sa0HOwieFwYfj6tB1doBoNq7i89mTc+QUlIn4pHgIowHO0OGawomeKz5BEhjCZ\n"\
  42. "4XeLYGSoODary2+kNkf2xY8JTfFEcyvGBpJEwc4S2VyYgRRx+IgnumTSH+N5mIKZ\n"\
  43. "SXWNdZIuHEmkwod+rPRXs6/r+PH0eVW6WfpINEbr4zVAGXJx2zXQwd2cuV1GTJWh\n"\
  44. "cPVOXLu+XJ9im9B370cYN6GqUnR3fui13urYbnWnEf3syvoH/zuZkyrVChauoFf8\n"\
  45. "8EGb74/HhXK7Q2s8NRakx2c7OxQifCbcy03liUMmyQKBgQDFAob5B/66N4Q2cq/N\n"\
  46. "MWPf98kYBYoLaeEOhEJhLQlKk0pIFCTmtpmUbpoEes2kCUbH7RwczpYko8tlKyoB\n"\
  47. "6Fn6RY4zQQ64KZJI6kQVsjkYpcP/ihnOY6rbds+3yyv+4uPX7Eh9sYZwZMggE19M\n"\
  48. "CkFHkwAjiwqhiiSlUxe20sWmowKBgQDEfx4lxuFzA1PBPeZKGVBTxYPQf+DSLCre\n"\
  49. "ZFg3ZmrxbCjRq1O7Lra4FXWD3dmRq7NDk79JofoW50yD8wD7I0B7opdDfXD2idO8\n"\
  50. "0dBnWUKDr2CAXyoLEINce9kJPbx4kFBQRN9PiGF7VkDQxeQ3kfS8CvcErpTKCOdy\n"\
  51. "5wOwBTwJdwKBgDiTFTeGeDv5nVoVbS67tDao7XKchJvqd9q3WGiXikeELJyuTDqE\n"\
  52. "zW22pTwMF+m3UEAxcxVCrhMvhkUzNAkANHaOatuFHzj7lyqhO5QPbh4J3FMR0X9X\n"\
  53. "V8VWRSg+jA/SECP9koOl6zlzd5Tee0tW1pA7QpryXscs6IEhb3ns5R2JAoGAIkzO\n"\
  54. "RmnhEOKTzDex611f2D+yMsMfy5BKK2f4vjLymBH5TiBKDXKqEpgsW0huoi8Gq9Uu\n"\
  55. "nvvXXAgkIyRYF36f0vUe0nkjLuYAQAWgC2pZYgNLJR13iVbol0xHJoXQUHtgiaJ8\n"\
  56. "GLYFzjHQPqFMpSalQe3oELko39uOC1CoJCHFySECgYBeycUnRBikCO2n8DNhY4Eg\n"\
  57. "9Y3oxcssRt6ea5BZwgW2eAYi7/XqKkmxoSoOykUt3MJx9+EkkrL17bxFSpkj1tvL\n"\
  58. "qvxn7egtsKjjgGNAxwXC4MwCvhveyUQQxtQb8AqGrGqo4jEEN0L15cnP38i2x1Uo\n"\
  59. "muhfskWf4MABV0yTUaKcGg==\n"\
  60. "-----END PRIVATE KEY-----\n"
  61. def get_my_ip():
  62. s1 = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
  63. s1.connect(("8.8.8.8", 80))
  64. my_ip = s1.getsockname()[0]
  65. s1.close()
  66. return my_ip
  67. def get_server_status(host_ip, port):
  68. sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
  69. server_status = sock.connect_ex((host_ip, port))
  70. sock.close()
  71. if server_status == 0:
  72. return True
  73. return False
  74. def create_file(server_file, file_data):
  75. with open(server_file, "w+") as file:
  76. file.write(file_data)
  77. def get_ca_cert(ota_image_dir):
  78. os.chdir(ota_image_dir)
  79. server_file = os.path.join(ota_image_dir, "server_cert.pem")
  80. create_file(server_file, server_cert)
  81. key_file = os.path.join(ota_image_dir, "server_key.pem")
  82. create_file(key_file, server_key)
  83. return server_file, key_file
  84. def https_request_handler():
  85. """
  86. Returns a request handler class that handles broken pipe exception
  87. """
  88. class RequestHandler(http.server.SimpleHTTPRequestHandler):
  89. def finish(self):
  90. try:
  91. if not self.wfile.closed:
  92. self.wfile.flush()
  93. self.wfile.close()
  94. except socket.error:
  95. pass
  96. self.rfile.close()
  97. def handle(self):
  98. try:
  99. http.server.BaseHTTPRequestHandler.handle(self)
  100. except socket.error:
  101. pass
  102. return RequestHandler
  103. def start_https_server(ota_image_dir, server_ip, server_port):
  104. server_file, key_file = get_ca_cert(ota_image_dir)
  105. requestHandler = https_request_handler()
  106. httpd = http.server.HTTPServer((server_ip, server_port), requestHandler)
  107. httpd.socket = ssl.wrap_socket(httpd.socket,
  108. keyfile=key_file,
  109. certfile=server_file, server_side=True)
  110. httpd.serve_forever()
  111. def start_chunked_server(ota_image_dir, server_port):
  112. server_file, key_file = get_ca_cert(ota_image_dir)
  113. chunked_server = subprocess.Popen(["openssl", "s_server", "-WWW", "-key", key_file, "-cert", server_file, "-port", str(server_port)])
  114. return chunked_server
  115. @ttfw_idf.idf_example_test(env_tag="Example_WIFI")
  116. def test_examples_protocol_native_ota_example(env, extra_data):
  117. """
  118. This is a positive test case, which downloads complete binary file multiple number of times.
  119. Number of iterations can be specified in variable iterations.
  120. steps: |
  121. 1. join AP
  122. 2. Fetch OTA image over HTTPS
  123. 3. Reboot with the new OTA image
  124. """
  125. dut1 = env.get_dut("native_ota_example", "examples/system/ota/native_ota_example", dut_class=ttfw_idf.ESP32DUT)
  126. server_port = 8002
  127. # No. of times working of application to be validated
  128. iterations = 3
  129. # File to be downloaded. This file is generated after compilation
  130. bin_name = "native_ota.bin"
  131. # check and log bin size
  132. binary_file = os.path.join(dut1.app.binary_path, bin_name)
  133. bin_size = os.path.getsize(binary_file)
  134. ttfw_idf.log_performance("native_ota_bin_size", "{}KB".format(bin_size // 1024))
  135. # start test
  136. host_ip = get_my_ip()
  137. if (get_server_status(host_ip, server_port) is False):
  138. thread1 = Thread(target=start_https_server, args=(dut1.app.binary_path, host_ip, server_port))
  139. thread1.daemon = True
  140. thread1.start()
  141. dut1.start_app()
  142. for i in range(iterations):
  143. dut1.expect("Loaded app from partition at offset", timeout=30)
  144. try:
  145. ip_address = dut1.expect(re.compile(r" sta ip: ([^,]+),"), timeout=30)
  146. print("Connected to AP with IP: {}".format(ip_address))
  147. except DUT.ExpectTimeout:
  148. raise ValueError('ENV_TEST_FAILURE: Cannot connect to AP')
  149. thread1.close()
  150. dut1.expect("Starting OTA example", timeout=30)
  151. print("writing to device: {}".format("https://" + host_ip + ":" + str(server_port) + "/" + bin_name))
  152. dut1.write("https://" + host_ip + ":" + str(server_port) + "/" + bin_name)
  153. dut1.expect("Loaded app from partition at offset", timeout=60)
  154. dut1.expect("Starting OTA example", timeout=30)
  155. dut1.reset()
  156. @ttfw_idf.idf_example_test(env_tag="Example_WIFI")
  157. def test_examples_protocol_native_ota_example_truncated_bin(env, extra_data):
  158. """
  159. Working of OTA if binary file is truncated is validated in this test case.
  160. Application should return with error message in this case.
  161. steps: |
  162. 1. join AP
  163. 2. Generate truncated binary file
  164. 3. Fetch OTA image over HTTPS
  165. 4. Check working of code if bin is truncated
  166. """
  167. dut1 = env.get_dut("native_ota_example", "examples/system/ota/native_ota_example", dut_class=ttfw_idf.ESP32DUT)
  168. server_port = 8002
  169. # Original binary file generated after compilation
  170. bin_name = "native_ota.bin"
  171. # Truncated binary file to be generated from original binary file
  172. truncated_bin_name = "truncated.bin"
  173. # Size of truncated file to be grnerated. This value can range from 288 bytes (Image header size) to size of original binary file
  174. # truncated_bin_size is set to 64000 to reduce consumed by the test case
  175. truncated_bin_size = 64000
  176. # check and log bin size
  177. binary_file = os.path.join(dut1.app.binary_path, bin_name)
  178. f = open(binary_file, "rb+")
  179. fo = open(os.path.join(dut1.app.binary_path, truncated_bin_name), "wb+")
  180. fo.write(f.read(truncated_bin_size))
  181. fo.close()
  182. f.close()
  183. binary_file = os.path.join(dut1.app.binary_path, truncated_bin_name)
  184. bin_size = os.path.getsize(binary_file)
  185. ttfw_idf.log_performance("native_ota_bin_size", "{}KB".format(bin_size // 1024))
  186. # start test
  187. host_ip = get_my_ip()
  188. if (get_server_status(host_ip, server_port) is False):
  189. thread1 = Thread(target=start_https_server, args=(dut1.app.binary_path, host_ip, server_port))
  190. thread1.daemon = True
  191. thread1.start()
  192. dut1.start_app()
  193. dut1.expect("Loaded app from partition at offset", timeout=30)
  194. try:
  195. ip_address = dut1.expect(re.compile(r" sta ip: ([^,]+),"), timeout=60)
  196. print("Connected to AP with IP: {}".format(ip_address))
  197. except DUT.ExpectTimeout:
  198. raise ValueError('ENV_TEST_FAILURE: Cannot connect to AP')
  199. dut1.expect("Starting OTA example", timeout=30)
  200. print("writing to device: {}".format("https://" + host_ip + ":" + str(server_port) + "/" + truncated_bin_name))
  201. dut1.write("https://" + host_ip + ":" + str(server_port) + "/" + truncated_bin_name)
  202. dut1.expect("native_ota_example: Image validation failed, image is corrupted", timeout=20)
  203. os.remove(binary_file)
  204. @ttfw_idf.idf_example_test(env_tag="Example_WIFI")
  205. def test_examples_protocol_native_ota_example_truncated_header(env, extra_data):
  206. """
  207. Working of OTA if headers of binary file are truncated is vaildated in this test case.
  208. Application should return with error message in this case.
  209. steps: |
  210. 1. join AP
  211. 2. Generate binary file with truncated headers
  212. 3. Fetch OTA image over HTTPS
  213. 4. Check working of code if headers are not sent completely
  214. """
  215. dut1 = env.get_dut("native_ota_example", "examples/system/ota/native_ota_example", dut_class=ttfw_idf.ESP32DUT)
  216. server_port = 8002
  217. # Original binary file generated after compilation
  218. bin_name = "native_ota.bin"
  219. # Truncated binary file to be generated from original binary file
  220. truncated_bin_name = "truncated_header.bin"
  221. # Size of truncated file to be grnerated. This value should be less than 288 bytes (Image header size)
  222. truncated_bin_size = 180
  223. # check and log bin size
  224. binary_file = os.path.join(dut1.app.binary_path, bin_name)
  225. f = open(binary_file, "rb+")
  226. fo = open(os.path.join(dut1.app.binary_path, truncated_bin_name), "wb+")
  227. fo.write(f.read(truncated_bin_size))
  228. fo.close()
  229. f.close()
  230. binary_file = os.path.join(dut1.app.binary_path, truncated_bin_name)
  231. bin_size = os.path.getsize(binary_file)
  232. ttfw_idf.log_performance("native_ota_bin_size", "{}KB".format(bin_size // 1024))
  233. # start test
  234. host_ip = get_my_ip()
  235. if (get_server_status(host_ip, server_port) is False):
  236. thread1 = Thread(target=start_https_server, args=(dut1.app.binary_path, host_ip, server_port))
  237. thread1.daemon = True
  238. thread1.start()
  239. dut1.start_app()
  240. dut1.expect("Loaded app from partition at offset", timeout=30)
  241. try:
  242. ip_address = dut1.expect(re.compile(r" sta ip: ([^,]+),"), timeout=60)
  243. print("Connected to AP with IP: {}".format(ip_address))
  244. except DUT.ExpectTimeout:
  245. raise ValueError('ENV_TEST_FAILURE: Cannot connect to AP')
  246. dut1.expect("Starting OTA example", timeout=30)
  247. print("writing to device: {}".format("https://" + host_ip + ":" + str(server_port) + "/" + truncated_bin_name))
  248. dut1.write("https://" + host_ip + ":" + str(server_port) + "/" + truncated_bin_name)
  249. dut1.expect("native_ota_example: received package is not fit len", timeout=20)
  250. os.remove(binary_file)
  251. @ttfw_idf.idf_example_test(env_tag="Example_WIFI")
  252. def test_examples_protocol_native_ota_example_random(env, extra_data):
  253. """
  254. Working of OTA if random data is added in binary file are validated in this test case.
  255. Magic byte verification should fail in this case.
  256. steps: |
  257. 1. join AP
  258. 2. Generate random binary image
  259. 3. Fetch OTA image over HTTPS
  260. 4. Check working of code for random binary file
  261. """
  262. dut1 = env.get_dut("native_ota_example", "examples/system/ota/native_ota_example", dut_class=ttfw_idf.ESP32DUT)
  263. server_port = 8002
  264. # Random binary file to be generated
  265. random_bin_name = "random.bin"
  266. # Size of random binary file. 32000 is choosen, to reduce the time required to run the test-case
  267. random_bin_size = 32000
  268. # check and log bin size
  269. binary_file = os.path.join(dut1.app.binary_path, random_bin_name)
  270. fo = open(binary_file, "wb+")
  271. # First byte of binary file is always set to zero. If first byte is generated randomly,
  272. # in some cases it may generate 0xE9 which will result in failure of testcase.
  273. fo.write(struct.pack("B", 0))
  274. for i in range(random_bin_size - 1):
  275. fo.write(struct.pack("B", random.randrange(0,255,1)))
  276. fo.close()
  277. bin_size = os.path.getsize(binary_file)
  278. ttfw_idf.log_performance("native_ota_bin_size", "{}KB".format(bin_size // 1024))
  279. # start test
  280. host_ip = get_my_ip()
  281. if (get_server_status(host_ip, server_port) is False):
  282. thread1 = Thread(target=start_https_server, args=(dut1.app.binary_path, host_ip, server_port))
  283. thread1.daemon = True
  284. thread1.start()
  285. dut1.start_app()
  286. dut1.expect("Loaded app from partition at offset", timeout=30)
  287. try:
  288. ip_address = dut1.expect(re.compile(r" sta ip: ([^,]+),"), timeout=60)
  289. print("Connected to AP with IP: {}".format(ip_address))
  290. except DUT.ExpectTimeout:
  291. raise ValueError('ENV_TEST_FAILURE: Cannot connect to AP')
  292. dut1.expect("Starting OTA example", timeout=30)
  293. print("writing to device: {}".format("https://" + host_ip + ":" + str(server_port) + "/" + random_bin_name))
  294. dut1.write("https://" + host_ip + ":" + str(server_port) + "/" + random_bin_name)
  295. dut1.expect("esp_ota_ops: OTA image has invalid magic byte", timeout=20)
  296. os.remove(binary_file)
  297. @ttfw_idf.idf_example_test(env_tag="Example_WIFI")
  298. def test_examples_protocol_native_ota_example_chunked(env, extra_data):
  299. """
  300. This is a positive test case, which downloads complete binary file multiple number of times.
  301. Number of iterations can be specified in variable iterations.
  302. steps: |
  303. 1. join AP
  304. 2. Fetch OTA image over HTTPS
  305. 3. Reboot with the new OTA image
  306. """
  307. dut1 = env.get_dut("native_ota_example", "examples/system/ota/native_ota_example", dut_class=ttfw_idf.ESP32DUT)
  308. # File to be downloaded. This file is generated after compilation
  309. bin_name = "native_ota.bin"
  310. # check and log bin size
  311. binary_file = os.path.join(dut1.app.binary_path, bin_name)
  312. bin_size = os.path.getsize(binary_file)
  313. ttfw_idf.log_performance("native_ota_bin_size", "{}KB".format(bin_size // 1024))
  314. # start test
  315. host_ip = get_my_ip()
  316. chunked_server = start_chunked_server(dut1.app.binary_path, 8070)
  317. dut1.start_app()
  318. dut1.expect("Loaded app from partition at offset", timeout=30)
  319. try:
  320. ip_address = dut1.expect(re.compile(r" sta ip: ([^,]+),"), timeout=30)
  321. print("Connected to AP with IP: {}".format(ip_address))
  322. except DUT.ExpectTimeout:
  323. raise ValueError('ENV_TEST_FAILURE: Cannot connect to AP')
  324. dut1.expect("Starting OTA example", timeout=30)
  325. print("writing to device: {}".format("https://" + host_ip + ":8070/" + bin_name))
  326. dut1.write("https://" + host_ip + ":8070/" + bin_name)
  327. dut1.expect("Loaded app from partition at offset", timeout=60)
  328. dut1.expect("Starting OTA example", timeout=30)
  329. chunked_server.kill()
  330. os.remove(os.path.join(dut1.app.binary_path, "server_cert.pem"))
  331. os.remove(os.path.join(dut1.app.binary_path, "server_key.pem"))
  332. if __name__ == '__main__':
  333. test_examples_protocol_native_ota_example()
  334. test_examples_protocol_native_ota_example_chunked()
  335. test_examples_protocol_native_ota_example_truncated_bin()
  336. test_examples_protocol_native_ota_example_truncated_header()
  337. test_examples_protocol_native_ota_example_random()