nodescan.py 23 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781
  1. #! /usr/bin/python
  2. # -*- coding: utf-8 -*-
  3. """
  4. Valid-License-Identifier: GPL-2.0-only
  5. SPDX-URL: https://spdx.org/licenses/GPL-2.0-only.html
  6. (c) 2012 micha@librelight.de
  7. """
  8. print("suche ArtNet Nodes ")
  9. import time
  10. import socket, struct
  11. import sys
  12. import _thread as thread
  13. import copy
  14. import random
  15. import traceback
  16. sys.stdout.write("\x1b]2;Nodescan\x07")
  17. print(socket.AF_INET)
  18. is_running = 1
  19. class socket_warp():
  20. def __init__(self):
  21. self.sock = None
  22. self.connected = 0
  23. self._connect()
  24. def _connect(self):
  25. print(sys._getframe().f_code.co_name)
  26. self.connected = 0
  27. try:
  28. ip_port = ('',6454)
  29. self.sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
  30. self.sock.bind(ip_port)
  31. self.sock.setsockopt(socket.SOL_SOCKET, socket.SO_BROADCAST, 1)
  32. print(__file__,"BIND",ip_port)
  33. self.connected = 1
  34. except socket.error as e:
  35. print("Socket 6454 ", "ERR: {0} ".format(e.args))
  36. #sys.exit()
  37. def sendto(self,bdata,ip_port=('0.0.0.0',9999)):
  38. ip,port = ip_port
  39. print(sys._getframe().f_code.co_name)
  40. #,sock.sendto(b'Art-Net\x00\x00 \x00\x0e\x06\x00',(ip,port)) # ArtPol / ping
  41. self.sock.sendto(bdata,(ip,port)) # ArtPol / ping
  42. def recvfrom(self,leng):
  43. #print(sys._getframe().f_code.co_name,data)
  44. data = b"err"
  45. addr = '0.0.0.0'
  46. try:
  47. data, addr = self.sock.recvfrom(leng)
  48. except Exception as e:
  49. print(__file__,"ERR",e)
  50. time.sleep(1)
  51. #if data:
  52. # print(sys._getframe().f_code.co_name,data)
  53. return data, addr
  54. def close(self):
  55. self.sock.close()
  56. def rcv(self):
  57. print(sys._getframe().f_code.co_name)
  58. sock = socket_warp()
  59. try:
  60. sock2 = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
  61. sock2.bind(('', 6455))
  62. sock2.setsockopt(socket.SOL_SOCKET, socket.SO_BROADCAST, 1)
  63. except socket.error as e:
  64. print("Socket2 6455 ", "ERR: {0} ".format(e.args))
  65. #sys.exit()
  66. print(socket.AF_INET)
  67. sock_cmd = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
  68. def bind_cmd_node():
  69. global sock_cmd
  70. try:
  71. sock_cmd.bind(('', 7601)) #7601
  72. #sock_cmd.bind(('', 49737))
  73. sock_cmd.setsockopt(socket.SOL_SOCKET, socket.SO_BROADCAST, 1)
  74. print("bind_cmd_node",7601, "OK")
  75. except socket_cmd.error as e:
  76. print("Socket 6454 ", "ERR: {0} ".format(e.args))
  77. sys.exit()
  78. if __name__ == "__main__":
  79. bind_cmd_node()
  80. def ArtNet_poll(ip,port=6454):
  81. print("POLL",[ip,port],end="")
  82. #traceback.print_exception()
  83. #try:
  84. if 1:
  85. sock.sendto(b'Art-Net\x00\x00 \x00\x0e\x06\x00',(ip,port)) # ArtPol / ping
  86. print(" OK ;",end="")
  87. #send_node_cmd(ip=(2,255,255,255),cmd="CMD GT ")
  88. #except Exception as e:
  89. # print("Exception ArtNet-POLL",e,)
  90. print()
  91. def ArtPollReplyDelay():
  92. time.sleep(1)
  93. ArtPollReply()
  94. def ArtPollReply():
  95. print("ArtPollReply()")
  96. port = 6454
  97. content = []
  98. header = []
  99. # Name, 7byte + 0x00
  100. content.append("Art-Net\x00")
  101. # OpCode ArtPollReply -> 0x2100, Low Byte first
  102. content.append(struct.pack('<H', 0x2100))
  103. # Protocol Version 14, High Byte first
  104. content.append(struct.pack('>H', 14))
  105. # IP
  106. #ip = [int(i) for i in self.own_ip.split('.')]
  107. ip = [2, 0, 0, 10]
  108. content += [chr(i) for i in ip]
  109. # Port
  110. content.append(struct.pack('<H', 0x1936))
  111. # Firmware Version
  112. content.append(struct.pack('>H', 200))
  113. # Net and subnet of this node
  114. net = 0
  115. subnet = 0
  116. content.append(chr(net))
  117. content.append(chr(subnet))
  118. # OEM Code (E:Cue 1x DMX Out)
  119. content.append(struct.pack('>H', 0x0360))
  120. # UBEA Version -> Nope -> 0
  121. content.append(chr(0))
  122. # Status1
  123. content.append(struct.pack('>H', 0b11010000))
  124. # Manufacture ESTA Code
  125. content.append('LL')
  126. # Short Name
  127. content.append('LOOP-OpPollReplay\x00')
  128. # Long Name
  129. content.append('LOOP-OpPollReplay_ArtNet_Node' + '_' * 34 + '\x00')
  130. content.append('\x00'*100)
  131. # stitch together
  132. content = ''.join(content)
  133. #print(self.lang['send_ArtPollReply'])
  134. #self.s.sendto(content, ("<broadcast>", self.__port))
  135. print("send" ,[content])
  136. sock.sendto(content, ("<broadcast>", port))
  137. sock.sendto(content, ("2.0.0.255", port))
  138. sock.sendto(content, ("10.10.10.255", port))
  139. sock.sendto(content, ("192.168.2.255", port))
  140. #sock.sendto(content, ("2.0.0.255", port))
  141. #sock.sendto
  142. def testBounce(ip,port):
  143. print(("TESTBOUNCE", (ip, port)))
  144. try:
  145. sock.sendto("TESTBOUNCE " +ip, (ip, port))
  146. except socket.error as e:
  147. print("Socket", "ERR: {0} ".format(e.args))
  148. print(("TESTBOUNCE", (ip, port)))
  149. def reciveBounce(timeout=10):
  150. start = time.time()
  151. while is_running:
  152. data = sock.recv(500)
  153. print("bounce",data)
  154. #data, addr = sock.recvfrom(500)
  155. if data:
  156. #print(addr)
  157. print("rBounte:",data)
  158. print()
  159. if time.time() > start+timeout:
  160. print("timeout stopping reciveBounce ")
  161. break
  162. def poll():
  163. port = 6454
  164. #ip = "255.255.255.255"
  165. #ArtNet_poll(ip)
  166. #ip = "<broadcast>"
  167. #ArtNet_poll(ip)
  168. ip = "192.168.0.255"
  169. ArtNet_poll(ip)
  170. ip = "192.168.0.99"
  171. ArtNet_poll(ip)
  172. ip = "2.255.255.255"
  173. ArtNet_poll(ip)
  174. ip = "2.0.0.255"
  175. ArtNet_poll(ip)
  176. ip = "2.255.255.255"
  177. ArtNet_poll(ip)
  178. #ip = "2.0.0.255"
  179. #ArtNet_poll(ip)
  180. #ip = "2.255.255.255"
  181. #ArtNet_poll(ip)
  182. print("")
  183. class ArtNetNodes():
  184. def __init__(self):
  185. print("CONSTRUCKT:",self)
  186. self.__nodes = []
  187. self.__nodes_mac = []
  188. self.__lock = thread.allocate_lock()
  189. self.__tick = 0
  190. #self.__lock.acquire()
  191. #self.__lock.release()
  192. def clear(self):
  193. self.__lock.acquire()
  194. self.__nodes = []
  195. self.__lock.release()
  196. def add(self,add_node):
  197. #print("ArtNetNodes.add()",add_node)
  198. #for i in add_node:
  199. # print(i,[add_node[i]])
  200. #print()
  201. #print("add",add_node)
  202. try:
  203. self.__lock.acquire()
  204. update_node = 0
  205. if "MSG" in add_node and "BOOT" in add_node["MSG"].upper():
  206. BOOT = time.time()
  207. print(" BOOOOOOOOT")
  208. else:
  209. BOOT = 0
  210. #self.__nodes_mac = []
  211. for node in self.__nodes:
  212. info = node["MAC"],node["IP"].ljust(16," "),[node["SwIn"],node["SwOut"],node["PortTypes"]]
  213. node_match = 1
  214. keys = ["MAC","SwOut","SwIn","PortTypes"]
  215. for i in keys:
  216. if node[i] != add_node[i]:
  217. node_match = 0
  218. break
  219. if node_match: # NODE MAC
  220. update_node = 0
  221. for i in add_node:
  222. UPDATECOUNTER = node["UPDATECOUNTER"]
  223. #print("update i:",i,add_node[i])
  224. if i not in node:
  225. node[i] = ""
  226. if node[i] != add_node[i]:
  227. node_match = 0
  228. update_node += 1
  229. node[i] = add_node[i]
  230. UPDATECOUNTER +=1
  231. self.__tick += 1
  232. #break
  233. if update_node:
  234. node["UPDATECOUNTER"] = UPDATECOUNTER
  235. node["UPDATESTAMP"] = time.time()
  236. node["REFRESHSTAMP"] = time.time()
  237. if BOOT:
  238. node["BOOT"] = BOOT
  239. print("UPDATE NODE".ljust(16," "),info)
  240. else:
  241. #print("NODE NOT CHANGE".ljust(16," "),info)
  242. node["REFRESHSTAMP"] = time.time()
  243. update_node = 1
  244. update_node = 0
  245. #print("x-node:",update_node,add_node)
  246. if not update_node: # ADD NEW NODE
  247. node = add_node
  248. if node:
  249. #print("add_node",node)
  250. node["BOOT"] = BOOT
  251. info = node["MAC"],node["IP"].ljust(16," "),[node["SwIn"],node["SwOut"],node["PortTypes"]]
  252. node["UPDATECOUNTER"] = 1
  253. node["REFRESHSTAMP"] = time.time()
  254. node["UPDATESTAMP"] = time.time()
  255. print("ADD NEW NODE".ljust(16," "),node["UPDATECOUNTER"],info)
  256. self.__tick += 1
  257. self.__nodes += [node]
  258. for node in self.__nodes:
  259. print("Node: ")
  260. for k,v in node.items():
  261. print(" -",[k,v])
  262. print("")
  263. finally:
  264. #print("release lock")
  265. self.__lock.release()
  266. def tick(self):
  267. self.__lock.acquire()
  268. x = self.__tick
  269. self.__lock.release()
  270. return x
  271. return random.randint(0,1000)
  272. def get(self):
  273. self.__lock.acquire()
  274. out = []
  275. #out = {}
  276. if self.__nodes:
  277. out = copy.deepcopy(self.__nodes)
  278. #for node in self.__nodes:
  279. # out[node["MAC"]] = node
  280. self.__lock.release()
  281. return out
  282. def recive(self):
  283. print("-- NODE READ LOOP START ---")
  284. print()
  285. while is_running:
  286. data, addr = sock.recvfrom(300)
  287. new_node = ArtNet_decode_pollreplay( data )
  288. #print("rvc loop",addr)
  289. if new_node:
  290. #print("rcv 333",new_node)
  291. self.add(new_node)
  292. time.sleep(0.001)
  293. print("-- NODE READ LOOP END ---")
  294. print()
  295. def loop(self):
  296. thread.start_new_thread(self.recive, () )
  297. Reciver = ArtNetNodes
  298. def ArtNet_decode_pollreplay(data):
  299. debug = 0
  300. node = {}
  301. if len(data) >= 10: #min opcode
  302. opcode = data[8:9+1]
  303. #print([opcode])
  304. #if opcode != struct.pack("<H",0x5000): #OpPollReplay
  305. if opcode == struct.pack("<H",0x2100): #OpPollReplay
  306. if len(data) >= 207: #Mal
  307. #if debug:print("-----------------------------------------")
  308. #print("===================================================================-")
  309. #print("decode",data[:13])
  310. if debug:print([opcode] ,"OpPollReplay")
  311. _ip = []
  312. #print("data[10]",data[10])
  313. _ip.append( data[10] )
  314. _ip.append( data[11] )
  315. _ip.append( data[12] )
  316. _ip.append( data[13] )
  317. node["IP"] = str(_ip)
  318. if debug:print([_ip])
  319. _port = struct.unpack("<H",data[14:15+1] )
  320. #Versinfo = struct.unpack("<H",data[16:17+1] )
  321. Versinfo = data[16:17+1]
  322. node["port"] = _port
  323. if debug:print("_port :", [_port ])
  324. node["version"] = Versinfo
  325. if debug:print("Version:",[Versinfo])
  326. NetSwitch = data[18]
  327. node["NetSwitch"] = NetSwitch
  328. if debug:print("NetSwitch:",[NetSwitch])
  329. SubSwitch = data[19]
  330. node["SubSwitch"] = SubSwitch
  331. if debug:print("SubSwitch:",[SubSwitch])
  332. #oem = struct.unpack("<H",data[19:20+1] )
  333. oem = data[20:21+1]
  334. node["oem"] = oem
  335. if debug:print("oem",[oem])
  336. ubea = data[22]
  337. node["ubea"] = ubea
  338. if debug:print("ubea ver.",[ubea])
  339. stat = data[23]
  340. node["status"] = stat
  341. if debug:print("Status1 ",[stat])
  342. esta = data[24:25+1]
  343. node["esta"] = esta
  344. if debug:print("esta Manuf",[esta])
  345. sname = data[26:26+17]
  346. #if debug:print(len(sname) #17+1)
  347. sname = sname.strip(b"\x00")
  348. node["sname"] = sname
  349. lname = data[44:44+43]
  350. #if debug:print(len(lname) #43+1)
  351. lname = lname.strip(b"\x00")
  352. node["lname"] = lname
  353. NodeReport = data[108:108+20]
  354. NodeReport = NodeReport.strip(b"\x00")
  355. #if debug:print("Node",node_nr,addr)
  356. if debug:print("43r:",[sname,lname,NodeReport])
  357. NumPort = data[173]
  358. node["NumPort"] = NumPort
  359. if debug:print("NumPort",[NumPort])
  360. PortTypes = data[174:174+4]
  361. node["PortTypes"] = PortTypes
  362. if debug:print("PortTypes",[PortTypes])
  363. GoodInput = data[178:178+4]
  364. node["GoodInput"] = GoodInput
  365. if debug:print("GoodInput",[GoodInput])
  366. GoodOutput = data[182:182+4]
  367. node["GoodOutput"] = GoodOutput
  368. if debug:print("GoodOutput",[GoodOutput])
  369. SwIn = data[186:186+4]
  370. node["SwIn"] = SwIn
  371. if debug:print("SwIn",[SwIn])
  372. SwOut = data[190:190+4]
  373. node["SwOut"] = SwOut
  374. if debug:print("SwOut",[SwOut])
  375. msg = data[108:108+40]
  376. node["MSG"] = msg.replace(b"\x00",b"")#.decode(errors="ignore")
  377. if debug:print("MSG",[msg])
  378. MAC = data[201:201+6]
  379. _MAC = []
  380. for x in MAC:
  381. #x = hex(ord(x))[2:]
  382. x = hex(x)[2:]
  383. x = x.rjust(2,"0")
  384. _MAC.append(x)
  385. #hex(ord("\xf9"))[2:]
  386. if debug:print("MAC",[":".join(_MAC)])
  387. node["MAC"] = ":".join(_MAC)
  388. #node_nr += 1
  389. #if debug:print([addr,data])
  390. #print()
  391. for k,v in node.items():
  392. if type(node[k]) is bytes:
  393. node[k] = v.decode(errors="ignore")
  394. else:
  395. print(opcode, len(data))
  396. return node
  397. def ArtAddress(ip="192.168.0.99" ,ShortName="ShortName", LongName="LongName",Port="",Universes=0,raw=0):
  398. node_nr = 1
  399. #send port
  400. port = 7600
  401. port = 6454
  402. print( ip)
  403. data = [] # [struct.pack('<B', 0)]*150
  404. header = []
  405. # Name, 7byte + 0x00
  406. header.append(b"Art-Net\x00")
  407. # OpCode ArtDMX -> 0x6000, Low Byte first
  408. header.append(struct.pack('<H', 0x6000))
  409. # Protocol Version 14, High Byte first
  410. header.append(struct.pack('>H', 14))
  411. data = header[:]
  412. # NetSwitch
  413. data.append(struct.pack('<B',128)) # no change 0x7f
  414. data.append(struct.pack('<B', 0)) # filler
  415. #Short Name
  416. sname = ShortName[:17]
  417. sname = sname.ljust(18,"\x00")
  418. data.append( sname )
  419. lname = LongName[:63]
  420. lname = lname.ljust(64,"\x00")
  421. #lname = lname[:-2]+"X\x00"
  422. data.append( lname )
  423. print( "len sname:lname",len(sname),len(lname))
  424. #SwIn 4; Port-Adress
  425. # univers 0-f == \x80 - \x8f
  426. i = 4
  427. i=int(Universes)+1 #random.randint(0,99)
  428. data.append(struct.pack('<B', 127+i))
  429. data.append(struct.pack('<B', 127+i))
  430. data.append(struct.pack('<B', 127+i))
  431. data.append(struct.pack('<B', 127+i))
  432. #SwOut 4; Port-Adress
  433. data.append(struct.pack('<B', 127+i))
  434. data.append(struct.pack('<B', 127+i))
  435. data.append(struct.pack('<B', 127+i))
  436. data.append(struct.pack('<B', 127+i))
  437. #SubSwitch comination with Swin[] SwOut[]
  438. data.append(struct.pack('<B', 0)) # SubSwitch Write 128
  439. data.append(struct.pack('<B', 255))
  440. data.append(struct.pack('<B', 0))
  441. data.append(struct.pack('<B', 0))
  442. #data.append("\xf4")
  443. #print( ["ArtAdress SEND:",data,(ip,port)] )
  444. data2 = b""
  445. for d in data:
  446. #print(d,type(d))
  447. if type(d) is str:
  448. data2+=bytes(d,"utf-8")
  449. elif type(d) is bytes:
  450. data2+=d
  451. else:
  452. data2+=bytes(str(d),"ascii")
  453. print(data2)
  454. if raw:
  455. return data2,(ip,port)
  456. sock.sendto(data2 ,(ip,port))
  457. def set_ip4(cur_ip=(2,0,0,91),new_ip=(2,0,0,201),new_netmask=(255,0,0,0)):
  458. #send ip
  459. port = 7600
  460. #print(ip)
  461. data = []
  462. #New ip
  463. #_ip = [192, 168, 2, 91]
  464. _ip = [ 2, 0, 0, 181] # CLASS C NET
  465. _ip = [ 2, 0, 0, 101] # CLASS C NET
  466. #_ip = [192, 168, 0, 91]
  467. _ip = new_ip
  468. print("NEW NODE _ip:", _ip)
  469. data.append(struct.pack('<B', _ip[0]))
  470. data.append(struct.pack('<B', _ip[1]))
  471. data.append(struct.pack('<B', _ip[2]))
  472. data.append(struct.pack('<B', _ip[3]))
  473. #_ip = [255, 255, 255, 255] # cange all nodes in Network to the same _ip ! DANGER !
  474. #_ip = [002, 000, 000, 255] # cange all nodes in subnet to the same _ip ! DANGER !
  475. _ip = [ 2, 0, 0, 199] # CLASS A NET
  476. _ip = [192, 168, 0, 91]
  477. #_ip = [ 2, 0, 0, 191] # CLASS C NET
  478. _ip = cur_ip
  479. print("OLD NODE _ip:", _ip)
  480. #OLD _ip , Target Node to change
  481. data.append(struct.pack('<B', _ip[0]))
  482. data.append(struct.pack('<B', _ip[1]))
  483. data.append(struct.pack('<B', _ip[2]))
  484. data.append(struct.pack('<B', _ip[3]))
  485. ip = ".".join(str(x) for x in _ip)
  486. #print("send to ip:", ip)
  487. # NETMASK
  488. MASK = []
  489. netmask = [255, 255, 255 , 0] #fast CLASS C funktioniert
  490. #netmask = [255, 0, 0 , 0] #CLASS C funkioniert nicht
  491. netmask = new_netmask
  492. print("NEW NODE net:",netmask)
  493. MASK.append(struct.pack('<B', netmask[0]))
  494. MASK.append(struct.pack('<B', netmask[1]))
  495. MASK.append(struct.pack('<B', netmask[2]))
  496. MASK.append(struct.pack('<B', netmask[3]))
  497. data += MASK
  498. data += [struct.pack('<B', 255)]*11
  499. print("------------------------------")
  500. data = b'CMD IP '+ b"".join(data)
  501. print("SENDING TO ",(ip,port))
  502. print([data]) #, cur_ip=(2,0,0,91))
  503. #sock.sendto(data ,(ip,port))
  504. sock.sendto(data ,(ip,port))
  505. def send_cmd(ip=(2,0,0,91),cmd=""):
  506. node_nr = 1
  507. port = 7600
  508. print(ip)
  509. data = []
  510. _ip = [ 2, 0, 0, 91] # CLASS C NET
  511. print("NEW NODE _ip:", _ip)
  512. data.append(struct.pack('<B', _ip[0]))
  513. data.append(struct.pack('<B', _ip[1]))
  514. data.append(struct.pack('<B', _ip[2]))
  515. data.append(struct.pack('<B', _ip[3]))
  516. #_ip = [255, 255, 255, 255] # cange all nodes in Network to the same _ip ! DANGER !
  517. #_ip = [002, 000, 000, 255] # cange all nodes in subnet to the same _ip ! DANGER !
  518. _ip = [ 2, 0, 0, 199] # CLASS A NET
  519. _ip = [ 2, 0, 0, 91] # CLASS A NET
  520. #_ip = [192, 168, 0, 91]
  521. _ip = [ 2, 0, 0, 255] # CLASS C NET
  522. #_ip = [ 2, 255, 255, 255] # CLASS C NET
  523. print("OLD NODE _ip:", _ip)
  524. #OLD _ip , Target Node to change
  525. data.append(struct.pack('<B', _ip[0]))
  526. data.append(struct.pack('<B', _ip[1]))
  527. data.append(struct.pack('<B', _ip[2]))
  528. data.append(struct.pack('<B', _ip[3]))
  529. ip = ".".join(str(x) for x in ip)
  530. print("send to ip:", ip)
  531. # NETMASK
  532. MASK = []
  533. netmask = [255, 255, 255 , 0] #fast CLASS C funktioniert
  534. netmask = [255, 0, 0 , 0] #CLASS C funkioniert nicht
  535. print("NEW NODE net:",netmask)
  536. MASK.append(struct.pack('<B', netmask[0]))
  537. MASK.append(struct.pack('<B', netmask[1]))
  538. MASK.append(struct.pack('<B', netmask[2]))
  539. MASK.append(struct.pack('<B', netmask[3]))
  540. data += MASK
  541. data += [struct.pack('<B', 255)]*11
  542. print("------------------------------")
  543. data = 'CMD '+cmd+' '+ "".join(data)
  544. print("SENDING TO ",(ip,port))
  545. print([data] )
  546. #sock.sendto(data ,(ip,port))
  547. sock.sendto(data ,(ip,port))
  548. def pack_ip(_ip):
  549. data = [b"\x00",b"\x00", b"\x00", b"\x00"]
  550. if _ip:
  551. data[0] = struct.pack('<B', int(_ip[0]))
  552. data[1] = struct.pack('<B', int(_ip[1]))
  553. data[2] = struct.pack('<B', int(_ip[2]))
  554. data[3] = struct.pack('<B', int(_ip[3]))
  555. return data
  556. def send_node_cmd(ip="",ip2="",cmd=""):
  557. print()
  558. port = 7600
  559. data = []
  560. print("send_node_cmd",ip,ip2,cmd,port)
  561. data = pack_ip(ip[:])
  562. print("ip",ip,ip2)
  563. if len(ip2) == 4:
  564. ip = ip2
  565. if len(ip) == 4:
  566. ip = ".".join(map(str,ip))
  567. print("send to ip:", ip)
  568. data2=""
  569. if not cmd:
  570. data2 = 'CMD GT'
  571. data2 = 'CMD ST'
  572. data2 = 'DMX OUT STORE'
  573. data2 = 'CMD DMX=IN '
  574. data2 = 'CMD DMX=OUT '
  575. data2 = 'CMD DMX=PIN '
  576. if type(cmd) == bytes:
  577. data2 = cmd
  578. else:
  579. data2 = bytes(str(cmd),"ascii",errors="ignore")
  580. print([data2],type(data2) )
  581. data2 = data2.ljust(20,b" ") + b"".join(data)
  582. print("SENDING COMMAND TO ",[data2],(ip,port))
  583. sock.sendto(data2 ,(ip,port))
  584. node_cmd_buf_list = []
  585. def node_cmd_recive():
  586. global node_cmd_buf_list
  587. #sock.sendto('\x00\x00\x00\x00\x00',(ip,port)) # ArtPol / ping
  588. is_running = 1
  589. while 1:#is_running:
  590. print("...")
  591. data, addr = sock_cmd.recvfrom(5000)
  592. #print(len(data))
  593. print("node_cmd_rcv",[addr,data])
  594. if len(data) == 207:
  595. print()
  596. else:
  597. print("NODE CMD RESPONSE:", [addr,data])
  598. node_cmd_buf_list = [addr,data]
  599. #print([data])
  600. pass
  601. time.sleep(0.05)
  602. #send_node_cmd(ip="",cmd="CMD DMX=IN")
  603. #send_node_cmd(ip="",cmd="CMD DMX=OUT")
  604. #send_node_cmd(ip=(2,0,0,91),cmd="CMD DMX=PIN")
  605. #send_node_cmd(ip=(2,0,0,91),cmd="DMX OUT STORE")
  606. #send_node_cmd(ip=(2,0,0,255),cmd="DMX OUT STORE")
  607. #send_node_cmd(ip=(2,0,0,201),cmd="DMX OUT STORE")
  608. #send_node_cmd(ip=(2,0,0,255),ip2=(2,255,255,255),cmd="DMX OUT STORE")
  609. #send_node_cmd(ip=(2,0,0,201),ip2=(2,255,255,255),cmd="DMX OUT STORE")
  610. #send_node_cmd(ip=(2,0,0,255),ip2=(2,0,0,201),cmd="DMX OUT STORE")
  611. #send_node_cmd(ip=(2,0,0,201),ip2=(2,0,0,201),cmd="DMX OUT STORE")
  612. #send_node_cmd(ip=(2,0,0,201),ip2=(255,255,255,255),cmd="DMX OUT STORE")
  613. #send_node_cmd(ip=(255,255,255,255),ip2=(255,255,255,255),cmd="DMX OUT STORE")
  614. #exit()
  615. #
  616. node_list2 = []
  617. if __name__ == "__main__":
  618. thread.start_new_thread(node_cmd_recive, () )
  619. #send_node_cmd(ip=(2,0,0,91),cmd="DMX OUT STORE")
  620. send_node_cmd(ip=(2,255,255,255),cmd="CMD GT ")
  621. rx = ArtNetNodes()
  622. rx.loop()
  623. z = 0
  624. while 1:
  625. nodes = rx.get()
  626. #print(len(nodes))
  627. node_list2.extend(nodes)
  628. print(node_list2)
  629. if z % 10 == 0:
  630. print()
  631. pass
  632. print("node count",len(nodes),rx.tick(),2 )
  633. #for i in nodes:
  634. #print(i)
  635. z += 1
  636. time.sleep(0.2)
  637. print()
  638. print("time out")
  639. raw_input("ENDE")