You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

1311 satır
44KB

  1. #!/usr/bin/env python3
  2. # Master: ptpd -i {PTP Interface des Masters} -M -u {IP des Slaves}
  3. # Slave: ptpd -i {PTP Interface des Slaves} -s -u {IP des Masters}
  4. import json
  5. import requests
  6. import os
  7. import re
  8. import socket
  9. import subprocess
  10. import asyncio
  11. import serial
  12. from argparse import ArgumentParser
  13. from datetime import datetime
  14. from threading import Thread
  15. from time import sleep
  16. # {} for interface
  17. GET_IPV4_SHELL_COMMAND = "ip a | grep {} | grep inet | cut -d' ' -f6 | cut -d'/' -f1"
  18. NR_CQI_COMMAND = b'AT+QNWCFG="nr5g_csi"\r\n'
  19. NR_SERVINGCELL_COMMAND = b'AT+QENG="servingcell"\r\n'
  20. NR_EN_DC_STATUS_COMMAND = b"AT+QENDC\r\n"
  21. NE_CA_COMMAND = b'AT+QCAINFO\r\n'
  22. NR_SERIAL_RESPOND_TIME = 0.5 # s
  23. CMD_TIME_EPOCH = "date +%s"
  24. TIMEOUT_OFFSET = 10.0
  25. WAIT_AFTER_IPERF = 5.0
  26. modem_serial_obj = None
  27. gps_serial_obj = None
  28. class ProcessHandler:
  29. def __init__(self):
  30. self.processList = []
  31. def add_process(self, process, logfile=None):
  32. if logfile is not None:
  33. self.processList.append(dict(process=process, logfile=logfile))
  34. else:
  35. self.processList.append(process)
  36. def kill_all(self):
  37. for p in self.processList:
  38. if isinstance(p, dict):
  39. p["logfile"].close()
  40. p["process"].kill()
  41. else:
  42. p.kill()
  43. def parse_var(s):
  44. """
  45. Parse a key, value pair, separated by '='
  46. That's the reverse of ShellArgs.
  47. On the command line (argparse) a declaration will typically look like:
  48. foo=hello
  49. or
  50. foo="hello world"
  51. """
  52. items = s.split("=")
  53. key = items[0].strip() # we remove blanks around keys, as is logical
  54. value = ""
  55. if len(items) > 1:
  56. # rejoin the rest:
  57. value = "=".join(items[1:])
  58. return (key, value)
  59. def parse_vars(items):
  60. """
  61. Parse a series of key-value pairs and return a dictionary
  62. """
  63. d = {}
  64. if items:
  65. for item in items:
  66. key, value = parse_var(item)
  67. d[key] = value
  68. return d
  69. def write_to_file(filepath, content, overwrite=False):
  70. mode = None
  71. if overwrite:
  72. mode = "w"
  73. else:
  74. mode = "a"
  75. try:
  76. f = open(filepath, mode)
  77. f.write(content)
  78. f.close()
  79. except IOError:
  80. print_message("ERROR: Could not write to file: {}".format(filepath))
  81. # For none blocking filewrite
  82. def background_write_to_file(filepath, content, overwrite=False):
  83. thread = Thread(
  84. target=write_to_file,
  85. args=(
  86. filepath,
  87. content,
  88. overwrite,
  89. ),
  90. )
  91. thread.start()
  92. def execute_tcp_dump(processHandler, interface, outputfile, ws_filter, flags=[]):
  93. cmd = ["tcpdump", "-i" + interface, "-U", "-w", outputfile, ws_filter]
  94. if len(flags) > 0:
  95. # insert after -U
  96. n = 3
  97. for flag in flags:
  98. cmd.insert(n, flag)
  99. n += 1
  100. process = subprocess.Popen(cmd, stdout=subprocess.PIPE)
  101. processHandler.add_process(process)
  102. def save_tcp_trace(processHandler, filename, sender_ip, port):
  103. cmd_uptime = ["cat", "/proc/uptime"]
  104. logfile = open(filename, "a")
  105. subprocess.call(cmd_uptime, stdout=logfile)
  106. # /sys/kernel/debug/tracing/events/tcp/tcp_probe/enable
  107. cmd = ["cat", "/sys/kernel/debug/tracing/trace_pipe"]
  108. process = subprocess.Popen(cmd, stdout=logfile)
  109. processHandler.add_process(process, logfile=logfile)
  110. def get_ip_from_interface(interface):
  111. c = GET_IPV4_SHELL_COMMAND.format(interface)
  112. ip = (
  113. subprocess.check_output(c, shell=True)
  114. .decode("utf-8")
  115. .replace(" ", "")
  116. .replace("\n", "")
  117. )
  118. return ip
  119. def config2json(args):
  120. config = vars(args).copy()
  121. # parse the key-value pairs from set arg
  122. set_args = parse_vars(args.set)
  123. config["set"] = set_args
  124. # delete not used keys
  125. del config["interface"]
  126. del config["server"]
  127. del config["client"]
  128. del config["folder"]
  129. return bytes(json.dumps(config), "utf-8")
  130. def json2config(json_string):
  131. return json.loads(json_string)
  132. def print_message(m):
  133. print("[{}]\t{}".format(datetime.now().strftime("%Y-%m-%d %H:%M:%S"), m))
  134. def deactivate_hystart():
  135. print_message("Deactivate HyStart")
  136. os.system('echo "0" > /sys/module/tcp_cubic/parameters/hystart')
  137. def activate_hystart():
  138. print_message("Activate HyStart")
  139. os.system('echo "1" > /sys/module/tcp_cubic/parameters/hystart')
  140. def is_hystart_activated():
  141. return (
  142. int(
  143. subprocess.check_output(
  144. "cat /sys/module/tcp_cubic/parameters/hystart", shell=True
  145. )
  146. )
  147. == 1
  148. )
  149. def is_tcp_probe_enabled():
  150. return (
  151. int(
  152. subprocess.check_output(
  153. "cat /sys/kernel/debug/tracing/events/tcp/tcp_probe/enable", shell=True
  154. )
  155. )
  156. == 1
  157. )
  158. def disable_tso(interface):
  159. os.system("ethtool -K {} tx off sg off tso off gro off".format(interface))
  160. def enable_tcp_probe():
  161. os.system("echo '1' > /sys/kernel/debug/tracing/events/tcp/tcp_probe/enable")
  162. def set_default_receive_window():
  163. print_message("Set receive window to default values")
  164. os.system('echo "212992" > /proc/sys/net/core/rmem_max')
  165. os.system('echo "212992" > /proc/sys/net/core/rmem_default')
  166. os.system('echo "4096 131072 6291456" > /proc/sys/net/ipv4/tcp_rmem')
  167. def raise_receive_window():
  168. print_message("Multiply receive windows by factor 10")
  169. os.system('echo "2129920" > /proc/sys/net/core/rmem_max')
  170. os.system('echo "2129920" > /proc/sys/net/core/rmem_default')
  171. os.system('echo "40960 1310720 62914560" > /proc/sys/net/ipv4/tcp_rmem')
  172. def monitor_serial(ser, output_file):
  173. run_cmds = [NR_CQI_COMMAND, NR_SERVINGCELL_COMMAND, NR_EN_DC_STATUS_COMMAND, NE_CA_COMMAND]
  174. try:
  175. while ser.is_open:
  176. response = subprocess.check_output(CMD_TIME_EPOCH, shell=True).decode(
  177. "utf-8"
  178. )
  179. for cmd in run_cmds:
  180. ser.write(cmd)
  181. sleep(NR_SERIAL_RESPOND_TIME)
  182. response += ser.read(ser.inWaiting()).decode("utf-8")
  183. response = (
  184. response.replace("\n", ";")
  185. .replace("\r", "")
  186. .replace(";;OK", ";")
  187. .replace(";;", ";")
  188. )
  189. write_to_file(output_file, response + "\n")
  190. except:
  191. if not ser.is_open:
  192. print_message("Serial port is closed. Exit monitoring thread.")
  193. else:
  194. print_message(
  195. "Something went wrong while monitoring serial interface. Exit monitoring thread."
  196. )
  197. return
  198. def start_serial_monitoring(ser, baudrate, folder, prefix):
  199. global modem_serial_obj
  200. print_message("Opening serial port for {}".format(ser))
  201. modem_serial_obj = serial.Serial(
  202. port=ser,
  203. baudrate=baudrate,
  204. )
  205. modem_serial_obj.isOpen()
  206. ser_filepath = "{}{}_serial_monitor_output.txt".format(
  207. folder, prefix
  208. )
  209. ser_thread = Thread(
  210. target=monitor_serial,
  211. args=(
  212. modem_serial_obj,
  213. ser_filepath,
  214. ),
  215. )
  216. ser_thread.start()
  217. def is_serial_monitoring_running():
  218. return modem_serial_obj.is_open
  219. def start_gps_monitoring(gps, baudrate, folder, prefix):
  220. global gps_serial_obj
  221. print_message("Opening GPS serial port for {}".format(gps))
  222. gps_serial_obj = serial.Serial(
  223. gps,
  224. baudrate=baudrate,
  225. )
  226. gps_ser_filepath = "{}{}_gps.nmea".format(
  227. folder, prefix
  228. )
  229. gps_ser_thread = Thread(
  230. target=monitor_gps,
  231. args=(
  232. gps_serial_obj,
  233. gps_ser_filepath,
  234. ),
  235. )
  236. gps_ser_thread.start()
  237. def monitor_gps(ser, output_file):
  238. ser.flushInput()
  239. ser.flushOutput()
  240. # skip first maybe uncompleted line
  241. ser.readline()
  242. try:
  243. while ser.is_open:
  244. nmea_sentence = ser.readline() # GPRMC
  245. nmea_str = nmea_sentence.decode("utf-8")
  246. if nmea_str.startswith("$GPRMC"):
  247. time_epoch = subprocess.check_output(CMD_TIME_EPOCH, shell=True).decode(
  248. "utf-8"
  249. )
  250. write_to_file(output_file, "{},{}".format(nmea_str.replace("\n", ""), time_epoch))
  251. except:
  252. if not ser.is_open:
  253. print_message("GPS serial port is closed. Exit monitoring thread.")
  254. else:
  255. print_message(
  256. "Something went wrong while monitoring GPS serial interface. Exit monitoring thread."
  257. )
  258. return
  259. def connect_moden(provider="telekom"):
  260. print_message("Connect modem with provider {} ...".format(provider))
  261. os.system("/root/connect-modem.py -l {}".format(provider))
  262. print_message("...done")
  263. def reconnect_modem(provider="telekom", hard=False):
  264. global modem_serial_obj
  265. print_message("Reonnect modem with provider {} ...".format(provider))
  266. if hard:
  267. print_message("Performing HARD reconnect...")
  268. try:
  269. if modem_serial_obj.is_open:
  270. modem_serial_obj.write(b'at+cfun=4\r\n')
  271. sleep(NR_SERIAL_RESPOND_TIME)
  272. sleep(2)
  273. modem_serial_obj.write(b'at+cfun=1\r\n')
  274. sleep(NR_SERIAL_RESPOND_TIME)
  275. except Exception as e:
  276. if not modem_serial_obj.is_open:
  277. print_message("Serial port is closed. {}".format(e))
  278. os.system("/root/connect-modem.py -s")
  279. else:
  280. print_message(
  281. "Something went wrong while writing to serial. {}".format(e)
  282. )
  283. os.system("/root/connect-modem.py -s")
  284. sleep(2)
  285. os.system("/root/connect-modem.py -s")
  286. sleep(5)
  287. os.system("/root/connect-modem.py -l {}".format(provider))
  288. else:
  289. os.system("/root/connect-modem.py -s")
  290. sleep(5)
  291. os.system("/root/connect-modem.py -l {}".format(provider))
  292. print_message("...done")
  293. def is_modem_connected():
  294. timeout = 5
  295. try:
  296. request = requests.get("http://130.75.73.69", timeout=timeout)
  297. return True
  298. except (requests.ConnectionError, requests.Timeout) as exception:
  299. pass
  300. return False
  301. class Server:
  302. def __init__(self, config):
  303. self.config = config
  304. def measure(self):
  305. print("Received config:")
  306. print(self.config)
  307. print_message("Start measurement")
  308. if self.config["bandwidth"]:
  309. self.bandwidth()
  310. elif self.config["drx"]:
  311. self.drx()
  312. elif self.config["harq"]:
  313. self.harq()
  314. elif self.config["cbr"]:
  315. self.cbr()
  316. elif self.config["tcp_parallel"]:
  317. self.tcp_parallel_flows()
  318. else:
  319. print_message("Nothing to do on server side.")
  320. def drx(self):
  321. print_message("DRX nothing to do on server side.")
  322. def harq(self):
  323. print_message("HARQ nothing to do on server side.")
  324. def bandwidth(self):
  325. server_is_sender = False
  326. if "server_is_sender" in self.config["set"]:
  327. server_is_sender = self.config["set"]["server_is_sender"]
  328. print_message("Server is sender: {}".format(server_is_sender))
  329. tcp_algo = list()
  330. if "algo" in self.config["set"]:
  331. for s in self.config["set"]["algo"].split(","):
  332. tcp_algo.append(s)
  333. print_message("Using {} for TCP transmissions.".format(s))
  334. else:
  335. tcp_algo.append("cubic")
  336. print_message("Using {} for TCP transmissions.".format(tcp_algo[0]))
  337. alternate_hystart = False
  338. if "alternate_hystart" in self.config["set"]:
  339. if self.config["set"]["alternate_hystart"] == "true":
  340. alternate_hystart = True
  341. time = "10"
  342. if "time" in self.config["set"]:
  343. time = self.config["set"]["time"]
  344. # prevent address already in use
  345. sleep(2)
  346. ws_filter = ""
  347. congestion_control_index = 0
  348. if server_is_sender:
  349. # server sends
  350. if not is_tcp_probe_enabled():
  351. print_message("tcp probe is not enabled!")
  352. enable_tcp_probe()
  353. print_message("tcp probe is now enabled")
  354. for n in range(1, self.config["number_of_measurements"] + 1):
  355. print_message(
  356. "{} of {}".format(n, self.config["number_of_measurements"])
  357. )
  358. print_message(
  359. "Using {} for congestion control".format(
  360. tcp_algo[congestion_control_index]
  361. )
  362. )
  363. iperf_command = [
  364. "iperf3",
  365. "-s",
  366. "--port",
  367. str(self.config["port"]),
  368. "--one-off",
  369. ]
  370. filepath_tcp_trace = "{}{}_bandwidth_reverse_{}_{}_{}.txt".format(
  371. self.config["folder"], self.config["prefix"], "tcp", "tcp_trace", n
  372. )
  373. save_tcp_trace(
  374. processHandler,
  375. filepath_tcp_trace,
  376. self.config["server"],
  377. self.config["port"],
  378. )
  379. subprocess.call(iperf_command)
  380. processHandler.kill_all()
  381. congestion_control_index = (congestion_control_index + 1) % len(
  382. tcp_algo
  383. )
  384. else:
  385. # client sends
  386. ws_filter = "{} and port {}".format("tcp", self.config["port"])
  387. print_message("Use ws filter: {}".format(ws_filter))
  388. name_option = ""
  389. state_counter = 0
  390. for n in range(1, self.config["number_of_measurements"] + 1):
  391. print_message(
  392. "Measurement {} of {}".format(
  393. n, self.config["number_of_measurements"]
  394. )
  395. )
  396. tcpdump_flags = []
  397. if alternate_hystart:
  398. if state_counter == 0:
  399. tcp_algo = "cubic"
  400. raise_receive_window()
  401. name_option = "_cubic_slowstart_raise_"
  402. state_counter = 1
  403. elif state_counter == 1:
  404. tcp_algo = "cubic"
  405. set_default_receive_window()
  406. name_option = "_cubic_hystart_default_"
  407. state_counter = 2
  408. elif state_counter == 2:
  409. tcp_algo = "bbr"
  410. raise_receive_window()
  411. name_option = "_bbr_raise_"
  412. state_counter = 3
  413. elif state_counter == 3:
  414. tcp_algo = "bbr"
  415. set_default_receive_window()
  416. name_option = "_bbr_default_"
  417. state_counter = 0
  418. else:
  419. name_option = ""
  420. filepath = "{}{}{}_bandwidth_{}_{}_{}.pcap".format(
  421. self.config["folder"],
  422. self.config["prefix"],
  423. name_option,
  424. "tcp",
  425. tcp_algo[congestion_control_index],
  426. n,
  427. )
  428. tcpdump_flags.append("-s96")
  429. thread = Thread(
  430. target=execute_tcp_dump,
  431. args=(
  432. processHandler,
  433. args.interface,
  434. filepath,
  435. ws_filter,
  436. tcpdump_flags,
  437. ),
  438. )
  439. thread.start()
  440. sleep(2)
  441. iperf_command = [
  442. "iperf3",
  443. "-s",
  444. "--port",
  445. str(self.config["port"]),
  446. "--one-off",
  447. ]
  448. subprocess.call(iperf_command)
  449. sleep(WAIT_AFTER_IPERF)
  450. processHandler.kill_all()
  451. congestion_control_index = (congestion_control_index + 1) % len(
  452. tcp_algo
  453. )
  454. def cbr(self):
  455. use_reverse_mode = False
  456. if "reverse" in self.config["set"]:
  457. use_reverse_mode = self.config["set"]["reverse"] == "true"
  458. print_message("Use reverse mode: {}".format(use_reverse_mode))
  459. # bitrate is only used for filenames on server side
  460. bitrate = "1M"
  461. if "bitrate" in self.config["set"]:
  462. bitrate = self.config["set"]["bitrate"]
  463. sleep_time = 60.0
  464. if "sleep" in self.config["set"]:
  465. sleep_time = float(self.config["set"]["sleep"])
  466. print_message("Sleep time for each measurement: {}s".format(sleep_time))
  467. # build wireshark filter
  468. if use_reverse_mode:
  469. ws_filter = "{} and src {}".format("udp", self.config["server"])
  470. else:
  471. ws_filter = "{} and dst {} and port {}".format(
  472. "udp", self.config["server"], self.config["port"]
  473. )
  474. print_message("Use ws filter: {}".format(ws_filter))
  475. # build iperf3 command
  476. iperf_command = [
  477. "iperf3",
  478. "-s",
  479. "--port",
  480. str(self.config["port"]),
  481. "--one-off",
  482. ]
  483. for n in range(1, self.config["number_of_measurements"] + 1):
  484. print_message("{} of {}".format(n, self.config["number_of_measurements"]))
  485. sleep(sleep_time)
  486. pcap_filepath = "{}{}_cbr_server_{}_bitrate{}_{}.pcap".format(
  487. self.config["folder"],
  488. self.config["prefix"],
  489. "sender" if use_reverse_mode else "receiver",
  490. bitrate,
  491. n,
  492. )
  493. thread = Thread(
  494. target=execute_tcp_dump,
  495. args=(
  496. processHandler,
  497. self.config["interface"],
  498. pcap_filepath,
  499. ws_filter,
  500. ),
  501. )
  502. thread.start()
  503. sleep(1)
  504. subprocess.call(iperf_command)
  505. sleep(1)
  506. processHandler.kill_all()
  507. def tcp_parallel_flows(self):
  508. # for n in range(1, (self.config["number_of_measurements"] * 2) + 1):
  509. # print_message(
  510. # "Measurement {} of {}".format(
  511. # n, self.config["number_of_measurements"]
  512. # )
  513. # )
  514. sleep(4)
  515. iperf_command = [
  516. "iperf3",
  517. "-s",
  518. "--port",
  519. str(self.config["port"]),
  520. # "--one-off",
  521. ]
  522. subprocess.call(iperf_command)
  523. class Client:
  524. def __init__(self, config):
  525. self.config = config
  526. def measure(self):
  527. print("Config:")
  528. print(self.config)
  529. sleep(1)
  530. print_message("Start measurement")
  531. if self.config["serial"] is not None:
  532. start_serial_monitoring(self.config["serial"], self.config["baudrate"], self.config["folder"], self.config["prefix"])
  533. if self.config["gps"] is not None:
  534. start_gps_monitoring(self.config["gps"], self.config["gps_baudrate"], self.config["folder"], self.config["prefix"])
  535. if self.config["bandwidth"]:
  536. self.bandwidth()
  537. elif self.config["drx"]:
  538. self.drx()
  539. elif self.config["harq"]:
  540. self.harq()
  541. elif self.config["cbr"]:
  542. self.cbr()
  543. elif self.config["tcp_parallel"]:
  544. self.tcp_parallel_flows()
  545. elif self.config["ping"]:
  546. self.ping()
  547. if modem_serial_obj is not None:
  548. print_message("Closing serial port...")
  549. modem_serial_obj.close()
  550. sleep(2)
  551. print_message("done...")
  552. if gps_serial_obj is not None:
  553. print_message("Closing GPS serial port...")
  554. gps_serial_obj.close()
  555. sleep(2)
  556. print_message("done...")
  557. def ping(self):
  558. c = "ping {} -I {} -i {} -c {}".format(
  559. self.config["server"],
  560. self.config["interface"],
  561. 0,
  562. self.config["number_of_measurements"],
  563. )
  564. command = [c]
  565. print_message(
  566. "Start sending {} pings with nog gap.".format(
  567. self.config["number_of_measurements"]
  568. )
  569. )
  570. ping_out = subprocess.check_output(command, shell=True).decode("utf-8")
  571. filepath = "{}{}_ping_no_gap.txt".format(
  572. self.config["folder"], self.config["prefix"]
  573. )
  574. print_message("Write measured pings to: {}".format(filepath))
  575. write_to_file(filepath, ping_out)
  576. def drx(self):
  577. # send ICMP pings to server and increase the gab
  578. # check for set args
  579. if "pre_ping" in self.config["set"]:
  580. is_pre_ping_enabled = (
  581. True if self.config["set"]["pre_ping"] == "true" else False
  582. )
  583. else:
  584. is_pre_ping_enabled = False
  585. if "intervals" in self.config["set"]:
  586. intervals = []
  587. interval_ranges = self.config["set"]["intervals"].split(",")
  588. for interval_range in interval_ranges:
  589. start, end, increase = [float(x) for x in interval_range.split(":")]
  590. curr = start
  591. while curr <= end:
  592. intervals.append(curr)
  593. curr += increase
  594. else:
  595. intervals = []
  596. filepath = "{}{}_ping_drx_raw.txt".format(
  597. self.config["folder"], self.config["prefix"]
  598. )
  599. if is_pre_ping_enabled:
  600. print_message("Send pre pings.")
  601. c = "ping {} -I {} -i {} -c {}".format(
  602. self.config["server"],
  603. self.config["interface"],
  604. intervals[0],
  605. self.config["number_of_measurements"],
  606. )
  607. command = [c]
  608. subprocess.check_output(command, shell=True)
  609. else:
  610. print_message("Preping is disabled. Wait 60s for drx-long-sleep...")
  611. sleep(60)
  612. for i in intervals:
  613. current = i
  614. if not is_pre_ping_enabled:
  615. sleep(current)
  616. c = "echo 'gap={}s' && ping {} -I {} -i {} -c {} && echo ';;;'".format(
  617. current,
  618. self.config["server"],
  619. self.config["interface"],
  620. current,
  621. self.config["number_of_measurements"],
  622. )
  623. command = [c]
  624. print_message("ping with {}s gap".format(current))
  625. background_write_to_file(
  626. filepath,
  627. subprocess.check_output(command, shell=True).decode("utf-8"),
  628. )
  629. # Read raw out and format it to csv
  630. regex = r"gap=(.*)s|64 bytes from (.*\..*\..*\..*) icmp_seq=(\d+) ttl=(\d+) time=(.*) ms"
  631. filepath = "{}{}_ping_drx_raw.txt".format(
  632. self.config["folder"], self.config["prefix"]
  633. )
  634. print_message("Format script output")
  635. f = open(filepath, "r")
  636. raw = f.read()
  637. f.close()
  638. lines = raw.split("\n")
  639. csv_out = "n,gap,rtt\n"
  640. n = 1
  641. gap = ""
  642. for l in lines:
  643. match = re.match(regex, l)
  644. if match:
  645. if match.group(5):
  646. time = match.group(5)
  647. csv_out = csv_out + "{},{},{}\n".format(n, gap, time)
  648. n += 1
  649. else:
  650. gap = match.group(1)
  651. filepath = "{}{}_ping_drx.csv".format(
  652. self.config["folder"], self.config["prefix"]
  653. )
  654. print_message("Write file {}".format(filepath))
  655. write_to_file(filepath, csv_out)
  656. def harq(self):
  657. ws_filter = "tcp[tcpflags] & (tcp-syn) != 0"
  658. print_message("Use ws filter: {}".format(ws_filter))
  659. filepath = "{}{}_{}_tcp_handshakes_http_client.pcap".format(
  660. self.config["folder"],
  661. self.config["prefix"],
  662. self.config["number_of_measurements"],
  663. )
  664. thread = Thread(
  665. target=execute_tcp_dump,
  666. args=(
  667. processHandler,
  668. self.config["interface"],
  669. filepath,
  670. ws_filter,
  671. ),
  672. )
  673. thread.start()
  674. sleep(5)
  675. for n in range(1, self.config["number_of_measurements"] + 1):
  676. print_message("{} of {}".format(n, self.config["number_of_measurements"]))
  677. requests.get("http://{}".format(self.config["server"]))
  678. sleep(5)
  679. processHandler.kill_all()
  680. def bandwidth(self):
  681. server_is_sender = False
  682. if "server_is_sender" in self.config["set"]:
  683. server_is_sender = self.config["set"]["server_is_sender"] == "true"
  684. print_message("Server is sender: {}".format(server_is_sender))
  685. tcp_algo = list()
  686. if "algo" in self.config["set"]:
  687. for s in self.config["set"]["algo"].split(","):
  688. tcp_algo.append(s)
  689. print_message("Using {} for TCP transmissions.".format(s))
  690. else:
  691. tcp_algo.append("cubic")
  692. print_message("Using {} for TCP transmissions.".format(tcp_algo[0]))
  693. alternate_hystart = False
  694. if "alternate_hystart" in self.config["set"]:
  695. if self.config["set"]["alternate_hystart"] == "true":
  696. alternate_hystart = True
  697. print_message("Alternate between HyStart and Slowstart for Cubic.")
  698. time = "10"
  699. if "time" in self.config["set"]:
  700. time = self.config["set"]["time"]
  701. sleep(2)
  702. congestion_control_index = 0
  703. if server_is_sender:
  704. # server is sending
  705. ws_filter = "{} and port {}".format("tcp", self.config["port"])
  706. print_message("Use ws filter: {}".format(ws_filter))
  707. for n in range(1, self.config["number_of_measurements"] + 1):
  708. reconnect_count = 0
  709. if not is_modem_connected():
  710. background_write_to_file(
  711. filepath="{}{}_reconnect.log".format(
  712. self.config["folder"], self.config["prefix"]
  713. ),
  714. content='{}\n'.format(datetime.timestamp(datetime.now())),
  715. )
  716. reconnect_modem()
  717. sleep(2)
  718. if not is_serial_monitoring_running():
  719. start_serial_monitoring()
  720. print_message(
  721. "{} of {}".format(n, self.config["number_of_measurements"])
  722. )
  723. print_message(
  724. "Using {} for congestion control".format(
  725. tcp_algo[congestion_control_index]
  726. )
  727. )
  728. tcpdump_flags = []
  729. filepath = "{}{}_bandwidth_reverse_{}_{}_{}.pcap".format(
  730. self.config["folder"],
  731. self.config["prefix"],
  732. "tcp",
  733. tcp_algo[congestion_control_index],
  734. n,
  735. )
  736. tcpdump_flags.append("-s96")
  737. thread = Thread(
  738. target=execute_tcp_dump,
  739. args=(
  740. processHandler,
  741. self.config["interface"],
  742. filepath,
  743. ws_filter,
  744. tcpdump_flags,
  745. ),
  746. )
  747. thread.start()
  748. sleep(5)
  749. iperf_command = [
  750. "iperf3",
  751. "-c",
  752. self.config["server"],
  753. "-R",
  754. "-t",
  755. time,
  756. "-C",
  757. tcp_algo[congestion_control_index],
  758. ]
  759. is_measurement_done = False
  760. iperf_return = 0
  761. while not is_measurement_done or iperf_return != 0:
  762. if iperf_return != 0:
  763. background_write_to_file(
  764. filepath="{}{}_reconnect.log".format(
  765. self.config["folder"], self.config["prefix"]
  766. ),
  767. content='{}\n'.format(datetime.timestamp(datetime.now())),
  768. )
  769. reconnect_modem(hard=reconnect_count > 5)
  770. reconnect_count += 1
  771. sleep(2)
  772. if not is_serial_monitoring_running():
  773. start_serial_monitoring()
  774. try:
  775. try:
  776. iperf_return = subprocess.call(
  777. iperf_command, timeout=float(time) + TIMEOUT_OFFSET
  778. )
  779. except:
  780. print_message("iPerf timed out...")
  781. background_write_to_file(
  782. filepath="{}{}_reconnect.log".format(
  783. self.config["folder"], self.config["prefix"]
  784. ),
  785. content='{}\n'.format(datetime.timestamp(datetime.now())),
  786. )
  787. reconnect_modem()
  788. except KeyboardInterrupt:
  789. exit()
  790. is_measurement_done = True
  791. sleep(4)
  792. processHandler.kill_all()
  793. congestion_control_index = (congestion_control_index + 1) % len(
  794. tcp_algo
  795. )
  796. else:
  797. # client is sending
  798. state_counter = 0
  799. name_option = ""
  800. if not is_tcp_probe_enabled():
  801. print_message("tcp probe is not enabled!")
  802. enable_tcp_probe()
  803. print_message("tcp probe is now enabled")
  804. for n in range(1, self.config["number_of_measurements"] + 1):
  805. reconnect_count = 0
  806. if not is_modem_connected():
  807. background_write_to_file(
  808. filepath="{}{}_reconnect.log".format(
  809. self.config["folder"], self.config["prefix"]
  810. ),
  811. content='{}\n'.format(datetime.timestamp(datetime.now())),
  812. )
  813. reconnect_modem()
  814. sleep(2)
  815. if not is_serial_monitoring_running():
  816. start_serial_monitoring()
  817. print_message(
  818. "{} of {}".format(n, self.config["number_of_measurements"])
  819. )
  820. iperf_command = ["iperf3", "-c", self.config["server"], "-t", time]
  821. if alternate_hystart:
  822. if state_counter == 0:
  823. tcp_algo = "cubic"
  824. deactivate_hystart()
  825. name_option = "_cubic_slowstart_raise_"
  826. state_counter = 1
  827. elif state_counter == 1:
  828. tcp_algo = "cubic"
  829. activate_hystart()
  830. name_option = "_cubic_hystart_default_"
  831. state_counter = 2
  832. elif state_counter == 2:
  833. tcp_algo = "bbr"
  834. deactivate_hystart()
  835. name_option = "_bbr_raise_"
  836. state_counter = 3
  837. elif state_counter == 3:
  838. tcp_algo = "bbr"
  839. activate_hystart()
  840. name_option = "_bbr_default_"
  841. state_counter = 0
  842. iperf_command.append("-C")
  843. iperf_command.append(tcp_algo[congestion_control_index])
  844. filepath_tcp_trace = "{}{}_bandwidth_{}_{}_{}.txt".format(
  845. self.config["folder"], self.config["prefix"], "tcp", "tcp_trace", n
  846. )
  847. save_tcp_trace(
  848. processHandler,
  849. filepath_tcp_trace,
  850. self.config["client"],
  851. self.config["port"],
  852. )
  853. sleep(2)
  854. is_measurement_done = False
  855. iperf_return = 0
  856. while not is_measurement_done or iperf_return != 0:
  857. if iperf_return != 0:
  858. background_write_to_file(
  859. filepath="{}{}_reconnect.log".format(
  860. self.config["folder"], self.config["prefix"]
  861. ),
  862. content='{}\n'.format(datetime.timestamp(datetime.now())),
  863. )
  864. reconnect_modem(hard=reconnect_count > 5)
  865. reconnect_count += 1
  866. sleep(2)
  867. if not is_serial_monitoring_running():
  868. start_serial_monitoring()
  869. try:
  870. try:
  871. iperf_return = subprocess.call(
  872. iperf_command, timeout=float(time) + TIMEOUT_OFFSET
  873. )
  874. except:
  875. print_message("iPerf timed out...")
  876. background_write_to_file(
  877. filepath="{}{}_reconnect.log".format(
  878. self.config["folder"], self.config["prefix"]
  879. ),
  880. content='{}\n'.format(datetime.timestamp(datetime.now())),
  881. )
  882. reconnect_modem()
  883. except KeyboardInterrupt:
  884. exit()
  885. is_measurement_done = True
  886. processHandler.kill_all()
  887. congestion_control_index = (congestion_control_index + 1) % len(
  888. tcp_algo
  889. )
  890. sleep(WAIT_AFTER_IPERF + 2)
  891. def cbr(self):
  892. bitrate = "1M"
  893. if "bitrate" in self.config["set"]:
  894. bitrate = self.config["set"]["bitrate"]
  895. print("Set bitrate to {}.".format(bitrate))
  896. time = "2"
  897. if "time" in self.config["set"]:
  898. time = self.config["set"]["time"]
  899. use_reverse_mode = False
  900. if "reverse" in self.config["set"]:
  901. use_reverse_mode = self.config["set"]["reverse"] == "true"
  902. print_message("Use reverse mode: {}".format(use_reverse_mode))
  903. sleep_time = 60.0
  904. if "sleep" in self.config["set"]:
  905. sleep_time = float(self.config["set"]["sleep"])
  906. print_message("Sleep time for each measurement: {}s".format(sleep_time))
  907. # build wireshark filter
  908. if use_reverse_mode:
  909. ws_filter = "{} and dst {}".format("udp", self.config["client"])
  910. else:
  911. ws_filter = "{} and src {} and port {}".format(
  912. "udp", self.config["client"], self.config["port"]
  913. )
  914. print_message("Use ws filter: {}".format(ws_filter))
  915. # build iperf3 command
  916. iperf_command = [
  917. "iperf3",
  918. "-c",
  919. self.config["server"],
  920. "-t",
  921. time,
  922. "--udp",
  923. "-b",
  924. bitrate,
  925. ]
  926. if use_reverse_mode:
  927. iperf_command.append("-R")
  928. for n in range(1, self.config["number_of_measurements"] + 1):
  929. print_message("{} of {}".format(n, self.config["number_of_measurements"]))
  930. sleep(sleep_time)
  931. pcap_filepath = "{}{}_cbr_client_{}_bitrate{}_{}.pcap".format(
  932. self.config["folder"],
  933. self.config["prefix"],
  934. "receiver" if use_reverse_mode else "sender",
  935. bitrate,
  936. n,
  937. )
  938. thread = Thread(
  939. target=execute_tcp_dump,
  940. args=(
  941. processHandler,
  942. self.config["interface"],
  943. pcap_filepath,
  944. ws_filter,
  945. ),
  946. )
  947. thread.start()
  948. sleep(2)
  949. subprocess.call(iperf_command)
  950. sleep(2)
  951. processHandler.kill_all()
  952. def tcp_parallel_flows(self):
  953. tcp_algo = "cubic"
  954. if "algo" in self.config["set"]:
  955. tcp_algo = self.config["set"]["algo"]
  956. print_message("Using {} for tcp.".format(tcp_algo))
  957. time = "12"
  958. if "time" in self.config["set"]:
  959. time = self.config["set"]["time"]
  960. start = "1"
  961. if "start" in self.config["set"]:
  962. start = self.config["set"]["start"]
  963. end = "2"
  964. if "end" in self.config["set"]:
  965. end = self.config["set"]["end"]
  966. # build flow seq
  967. flows = []
  968. runs = []
  969. for i in range(int(start), int(end) + 1):
  970. flows.append(i)
  971. flows.append(i)
  972. for i in range(1, self.config["number_of_measurements"] + 1):
  973. runs.append(i)
  974. runs.append(i)
  975. print_message(
  976. "{} to {} flows, with {} runs.".format(
  977. start, end, self.config["number_of_measurements"]
  978. )
  979. )
  980. sleep(5)
  981. for flow in flows:
  982. for run in runs:
  983. if tcp_algo == "cubic":
  984. tcp_algo = "bbr"
  985. else:
  986. tcp_algo = "cubic"
  987. filepath = "{}{}_{}parallel_tcp_{}_flows_{}.txt".format(
  988. self.config["folder"], self.config["prefix"], flow, tcp_algo, run
  989. )
  990. c = "iperf3 -c {} -t {} -C {} -P {}".format(
  991. self.config["server"], time, tcp_algo, flow
  992. )
  993. iperf_command = [c]
  994. print_message("{} parallel {} flows".format(flow, tcp_algo))
  995. retry = True
  996. while retry:
  997. try:
  998. out = subprocess.check_output(iperf_command, shell=True).decode(
  999. "utf-8"
  1000. )
  1001. write_to_file(filepath, out)
  1002. retry = False
  1003. except:
  1004. print("iPerf Error.\t{}".format(iperf_command))
  1005. sleep(1)
  1006. if retry:
  1007. print_message("Retry in 5s")
  1008. sleep(5)
  1009. async def start_server(args):
  1010. # get configuration from client
  1011. print_message("Start Server")
  1012. config = None
  1013. ip = get_ip_from_interface(args.interface)
  1014. s = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
  1015. s.setblocking(True)
  1016. s.bind((ip, args.port))
  1017. s.listen(1)
  1018. conn, addr = s.accept()
  1019. print_message("Got connection from {}".format(addr))
  1020. while True:
  1021. data = conn.recv(1024)
  1022. if not data:
  1023. break
  1024. config = json2config(data.decode("utf-8"))
  1025. conn.close()
  1026. s.close()
  1027. # add interface and ip to config
  1028. config["interface"] = args.interface
  1029. config["client"] = addr[0]
  1030. config["server"] = ip
  1031. config["folder"] = args.folder
  1032. server = Server(config)
  1033. server.measure()
  1034. async def start_client(args):
  1035. if not is_modem_connected():
  1036. connect_moden()
  1037. s = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
  1038. s.connect((args.client, args.port))
  1039. s.send(config2json(args))
  1040. s.close()
  1041. print("Config send.")
  1042. # overwrite ip
  1043. config = vars(args).copy()
  1044. config["server"] = args.client
  1045. config["client"] = get_ip_from_interface(args.interface)
  1046. new_set = dict()
  1047. if config["set"] is not None:
  1048. for pair in config["set"]:
  1049. tmp = pair.split("=")
  1050. new_set[tmp[0]] = tmp[1]
  1051. config["set"] = new_set
  1052. client = Client(config)
  1053. client.measure()
  1054. if __name__ == "__main__":
  1055. now = datetime.now()
  1056. processHandler = ProcessHandler()
  1057. parser = ArgumentParser()
  1058. # common arguments
  1059. # required
  1060. parser.add_argument("-i", "--interface", required=True, help="Interface.")
  1061. # optional
  1062. parser.add_argument("-p", "--port", default=5201, type=int, help="Port.")
  1063. parser.add_argument(
  1064. "-f",
  1065. "--folder",
  1066. default=os.path.dirname(os.path.realpath(__file__)) + "/",
  1067. help="Folder for the pcap files.",
  1068. )
  1069. # server exclusive arguments
  1070. parser.add_argument(
  1071. "-s",
  1072. "--server",
  1073. action="store_true",
  1074. default=False,
  1075. help="Starts the script in server mode.",
  1076. )
  1077. # client exclusive arguments
  1078. parser.add_argument(
  1079. "-c",
  1080. "--client",
  1081. default=None,
  1082. help="Start in client mode and set the server IPv4 address.",
  1083. )
  1084. parser.add_argument(
  1085. "--prefix", default=now.strftime("%Y-%m-%d"), help="Prefix on filename."
  1086. )
  1087. parser.add_argument(
  1088. "--set",
  1089. metavar="KEY=VALUE",
  1090. nargs="+",
  1091. help="Set a number of key-value pairs "
  1092. "(do not put spaces before or after the = sign). "
  1093. "If a value contains spaces, you should define "
  1094. "it with double quotes: "
  1095. 'foo="this is a sentence". Note that '
  1096. "values are always treated as strings.",
  1097. )
  1098. parser.add_argument(
  1099. "-n",
  1100. "--number_of_measurements",
  1101. type=int,
  1102. default=10,
  1103. help="Number of measurements",
  1104. )
  1105. parser.add_argument(
  1106. "--ping",
  1107. action="store_true",
  1108. default=False,
  1109. help="Sending ICMP pings.",
  1110. )
  1111. parser.add_argument(
  1112. "--bandwidth",
  1113. action="store_true",
  1114. default=False,
  1115. help="Measure greedy tcp throughput with iperf3."
  1116. "Use the --set flag for: "
  1117. "server_is_sender=false if enable server is sending."
  1118. "algo=cubic set tcp algorithm. Can be a comma separated string for multiple congestion control algorithms."
  1119. "alternate_hystart=false if enabled alternate reproduce every Cubic measurement wicht and without HyStart (Also raises the receive window.). "
  1120. "time=10 length of transmission in seconds.",
  1121. )
  1122. parser.add_argument(
  1123. "--tcp_parallel",
  1124. action="store_true",
  1125. default=False,
  1126. help="Measure greedy tcp throughput with parallel tcp flows. Alternate between bbr and cubic."
  1127. "Use the --set flag for: "
  1128. "start=1 Start value for flows "
  1129. "end=2 End value for flows "
  1130. "time=12 transmission time. ",
  1131. )
  1132. parser.add_argument(
  1133. "--cbr",
  1134. action="store_true",
  1135. default=False,
  1136. help="Measure Udp CBR traffic."
  1137. "Use the --set flag for: "
  1138. "reverse=false enable reverse mode. Server is sending. "
  1139. "bitrate=1M target bitrate in bits/sec (0 for unlimited) "
  1140. "[KMG] indicates options that support a K/M/G suffix for kilo-, mega-, or giga-. "
  1141. "time=2 time in seconds to transmit for. "
  1142. "sleep=60 sleep before each cbr traffic in seconds. ",
  1143. )
  1144. parser.add_argument(
  1145. "--drx",
  1146. action="store_true",
  1147. default=False,
  1148. help="Measure RTTs with ping tool. To detect DRX cycles. "
  1149. "Use the --set flag for: "
  1150. "intervals=start:end:increase,start2:end2:increase2... set intervals for gaps, end is inclusive, "
  1151. "values in [s]. At least one interval is required. E.g.: 0:3:1 creates values [0,1,2,3]"
  1152. "pre_ping=false if enabled pings are send before measurements to set device in continuous reception mode. ",
  1153. )
  1154. parser.add_argument(
  1155. "--harq",
  1156. action="store_true",
  1157. default=False,
  1158. help="Captures http transmissions on client side.",
  1159. )
  1160. parser.add_argument(
  1161. "--serial",
  1162. default=None,
  1163. help="Serial device e.g. /dev/ttyUSB2",
  1164. )
  1165. parser.add_argument(
  1166. "--baudrate",
  1167. default=115200,
  1168. type=int,
  1169. help="Serial device baudrate",
  1170. )
  1171. parser.add_argument(
  1172. "--gps",
  1173. default=None,
  1174. help="GPS serial device e.g. /dev/serial/by-id/usb-u-blox_AG_-_www.u-blox.com_u-blox_5_-_GPS_Receiver-if00",
  1175. )
  1176. parser.add_argument(
  1177. "--gps_baudrate",
  1178. default=38400,
  1179. type=int,
  1180. help="GPS serial device baudrate",
  1181. )
  1182. args = parser.parse_args()
  1183. disable_tso(args.interface)
  1184. if args.server:
  1185. asyncio.run(start_server(args))
  1186. elif args.client is not None:
  1187. asyncio.run(start_client(args))