_console.py 34 KB

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  1. #! /usr/bin/python3
  2. # -*- coding: utf-8 -*-
  3. """
  4. This file is part of LibreLight.
  5. LibreLight is free software: you can redistribute it and/or modify
  6. it under the terms of the GNU General Public License as published by
  7. the Free Software Foundation, version 2 of the License.
  8. LibreLight is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with LibreLight. If not, see <http://www.gnu.org/licenses/>.
  14. (c) 2012 micha@uxsrv.de
  15. """
  16. import sys
  17. import time
  18. import json
  19. import zlib
  20. rnd_id = ""
  21. rnd_id += " Beta 22.02 "
  22. import subprocess
  23. rnd_id += subprocess.check_output(['git', 'rev-parse', '--short', 'HEAD']).decode('ascii').strip()
  24. if "__file__" in dir():
  25. sys.stdout.write("\x1b]2;"+str(__file__)+" "+rnd_id+"\x07") # terminal title
  26. else:
  27. sys.stdout.write("\x1b]2;"+str("__file__")+" "+rnd_if+"\x07") # terminal title
  28. __run_main = 0
  29. if __name__ == "__main__":
  30. __run_main = 1
  31. else:
  32. import __main__
  33. print(dir())
  34. if "unittest" not in dir(__main__):
  35. __run_main = 1
  36. import time
  37. import socket
  38. import struct
  39. import sys
  40. import random
  41. import math
  42. from collections import OrderedDict
  43. import lib.zchat as chat
  44. import lib.ArtNetNode as ANN
  45. import _thread as thread
  46. #thread.start_new_thread
  47. import lib.motion as motion
  48. #idmx = [0]*512 # incremental dmx
  49. dmx = [0]*512 # absolute dmx data
  50. gcolor = 1
  51. def cprint(*text,color="blue",space=" ",end="\n"):
  52. #return 0 #disable print dbg
  53. if not gcolor:
  54. print(text)
  55. return 0
  56. if color == "green":
  57. txt = '\033[92m'
  58. elif color == "red":
  59. txt = '\033[0;31m\033[1m'
  60. elif color == "yellow":
  61. txt = '\033[93m\033[1m'
  62. elif color == "cyan":
  63. txt = '\033[96m'
  64. else:
  65. txt = '\033[94m'
  66. for t in text:
  67. txt += str(t ) +" "
  68. #HEADER = '\033[95m'
  69. #OKBLUE = '\033[94m'
  70. #OKCYAN = '\033[96m'
  71. #OKGREEN = '\033[92m'
  72. #WARNING = '\033[93m'
  73. #FAIL = '\033[91m'
  74. #ENDC = '\033[0m'
  75. #BOLD = '\033[1m'
  76. #UNDERLINE = '\033[4m'
  77. txt += '\033[0m'
  78. print(txt,end=end)
  79. #return txt
  80. def artnet_loop():
  81. #artnet = ANN.ArtNetNode(to="127.0.0.1",port=6555,univ=12)
  82. #artnet = ANN.ArtNetNode(to="127.0.0.1",port=6555,univ=0)
  83. artnet = ANN.ArtNetNode(to="10.10.10.255",univ=0)
  84. #artnet = ANN.ArtNetNode(to="2.0.0.255",univ=0)
  85. #artnet = ANN.ArtNetNode(to="10.10.10.255",univ=1)
  86. #dmx[205] = 255 #205 BLUE
  87. artnet.dmx= dmx #[0]*512
  88. artnet.send()
  89. while 1:
  90. #artnet._test_frame()
  91. artnet.next()
  92. time.sleep(0.01)
  93. class CLOCK():
  94. def __init__(self):
  95. self.__time = 0
  96. self.__start = time.time() # only for debugging
  97. self.__tick = 0.01 # incremental timer drift's on highe cpu load ?
  98. def time(self):
  99. return self.__time
  100. def get_drift(self):
  101. run_time = time.time() - self.__start
  102. tick_time = self.__time # * self.__tick
  103. print( "runtime:{:0.2f} tick_timer:{:0.2f} drift:{:0.2f}".format(run_time,tick_time,run_time-tick_time))
  104. def loop(self):
  105. while 1:
  106. self.__time +=self.__tick
  107. #if int(self.__time*100)/10. % 10 == 0:# self.__time % 2 == 0:
  108. # print( self.get_drift())
  109. #print(self.__time)
  110. #for i in range(10):
  111. time.sleep(self.__tick)
  112. class CLOCK_REAL():
  113. def __init__(self):
  114. self.__time = 0
  115. self.__start = time.time() # only for debugging
  116. self.__tick = 0.01 # incremental timer drift's on highe cpu load ?
  117. def time(self):
  118. self.__time = time.time()
  119. return self.__time
  120. def get_drift(self):
  121. run_time = time.time() - self.__start
  122. tick_time = self.__time # * self.__tick
  123. print( "runtime:{:0.2f} tick_timer:{:0.2f} drift:{:0.2f}".format(run_time,tick_time,run_time-tick_time))
  124. def loop(self):
  125. pass
  126. #clock = CLOCK()
  127. clock = CLOCK_REAL()
  128. if __run_main:
  129. thread.start_new_thread(clock.loop,())
  130. class Fade():
  131. def __init__(self,start,target,ftime,clock,delay=0):
  132. #print("init Fade ",start,target,ftime,clock)
  133. if delay < 0:
  134. delay = 0.0001
  135. if ftime <= 0:
  136. ftime = 0.0001
  137. clock += delay
  138. self.__delay = delay
  139. self.__clock = clock
  140. self.__clock_curr = clock
  141. self.__ftime = ftime
  142. self.__start = start
  143. self.__last = start
  144. self.__target = target
  145. self.run = 1
  146. #print("INIT", str(self) )
  147. def __str__(self):
  148. return self.__repr__()
  149. def __repr__(self):
  150. return "<FADE Next:{:0.2f} from:{:0.2f} to:{:0.2f} ft:{:0.2f} Clock:{:0.2f} run:{} delay:{:0.2f}>".format(
  151. self.__last, self.__start,self.__target,self.__ftime,self.__clock_curr,self.run,self.__delay )
  152. def next(self,clock=None):
  153. if self.__ftime <= 0 and self.__delay <= 0:
  154. self.__last = self.__target
  155. self.run = 0
  156. if type(clock) is float or type(clock) is int:#not None:
  157. self.__clock_curr = clock
  158. if self.__target > self.__start:
  159. if self.__last >= self.__target:
  160. self.run = 0
  161. return self.__target
  162. else:
  163. if self.__last <= self.__target:
  164. self.run = 0
  165. return self.__target
  166. current = (self.__clock - self.__clock_curr) / self.__ftime
  167. length = self.__start - self.__target
  168. self.__last = self.__start+ length*current
  169. #if self.__last < 0:
  170. # self.__last = 0
  171. #if self.__last > 255:
  172. # self.__last = 255
  173. self.run = 1
  174. return self.__last
  175. def ctl(self,cmd="",value=None): # if x-fade cmd="%" value=50
  176. # start,stop,fwd,bwd,revers
  177. pass
  178. class _MASTER():
  179. def __init__(self,name="None"):
  180. self.__data = {}
  181. self.name = name
  182. def val(self,name,value=None):
  183. _value = 100 #%
  184. name = str(name)
  185. if name not in self.__data:
  186. self.__data[name] = 100
  187. _value = self.__data[name]
  188. if value is not None:
  189. if _value != value:
  190. print(self.name,"CHANGE MASTER:",name,"from:",_value,"to:",value)
  191. self.__data[name] = value
  192. _value = self.__data[name]
  193. return _value /100.
  194. exec_size_master = _MASTER("EXEC-SIZE")
  195. exec_speed_master = _MASTER("EXEC-SPEED")
  196. exec_offset_master = _MASTER("EXEC-OFFSET")
  197. size_master = _MASTER("SIZE")
  198. speed_master = _MASTER("SPEED")
  199. exe_master = []
  200. exe_master.append({"SIZE":100,"SPEED":100,"id":12,"link-ids":[2]})
  201. class MASTER_FX():
  202. def __init__(self):
  203. #cprint(self,"MASTER_FX INIT !",color="green")
  204. self.__data = []
  205. self.__ok = []
  206. self.i=0
  207. self.old_offsets = []
  208. self.offsets = []
  209. self.count = -1
  210. self.init = 10
  211. def add(self,fx):
  212. if fx not in self.__data:
  213. #cprint(self,"ADD TO MASTER !",color="green")
  214. self.__data.append(fx)
  215. info = fx._get_info()
  216. #cprint(self,"ADD" ,info,color="green")
  217. offset = 0
  218. if "offset" in info:
  219. offset = info["offset"]
  220. self.old_offsets.append(offset)
  221. self.offsets.append(offset)
  222. if "xtype" in info:
  223. if info["xtype"] == "rnd":
  224. self._shuffle()
  225. #self.init += 1
  226. def _shuffle(self):
  227. #cprint(self,"REORDER RANDOM !",color="green")
  228. #self.init = 0
  229. #cprint(self.old_offsets)
  230. random.shuffle(self.old_offsets)
  231. #cprint(self.old_offsets)
  232. def _init(self):
  233. self._shuffle()
  234. #self.offsets = []
  235. for i,v in enumerate(self.old_offsets):
  236. offset = self.old_offsets[i]
  237. self.offsets[i] = offset
  238. self.init = 0
  239. def next(self,child):
  240. i = self.__data.index(child)
  241. offset = self.old_offsets[i]
  242. self.offsets[i] = offset
  243. return offset
  244. #for i,v in enumerate(self.old_offsets):
  245. # offset = self.old_offsets[i]
  246. # self.offsets[i] = offset
  247. def get(self,child,count):
  248. offset = 0
  249. if child not in self.__data:
  250. return offset
  251. if self.init:
  252. self._init()
  253. idx = self.__data.index(child)
  254. if (self.count != count and idx == 0 ) or self.init == 0:
  255. self.init = 1
  256. self._shuffle()
  257. #print( count)
  258. self.count=count
  259. idx = self.__data.index(child)
  260. offset = self.offsets[idx]
  261. return offset
  262. class FX():
  263. def __init__(self,xtype="sinus",size=10,speed=10,invert=0,width=100,start=0,offset=0,base="",clock=0,master=None,master_id=0):
  264. self.__xtype=xtype
  265. self.__size = size
  266. self.__start = start
  267. self.__master_id = master_id
  268. if width > 200:
  269. width = 200
  270. if width <= 0:
  271. width = 1
  272. self.__fade_in_master = 0
  273. self.__width = width
  274. self.__invert = invert
  275. self.__base = base
  276. self.__speed = speed
  277. self.__offset = offset
  278. self.__clock = clock
  279. self.__clock_curr = clock
  280. self.__clock_delta = 0
  281. self.__clock_old = self.__clock_curr
  282. self.out = 0
  283. self.old_v = -1
  284. self.run = 1
  285. self.count = -1
  286. self.__angel = self.__clock_curr*360%360
  287. if master is None:
  288. cprint(master, "MASTER_FX ERR",master,color="red")
  289. self.__master = MASTER_FX()
  290. self.__master.add(self)
  291. else:
  292. #cprint( "MASTER_FX OK",master,color="red")
  293. self.__master = master
  294. self.__master.add(self)
  295. if self.__xtype == "rnd":
  296. self.__offset = self.__master.get(self,-2)
  297. self.__offset = self.__master.next(self)#,count)
  298. self._exec_id = None
  299. self.next()
  300. #print("init FX",self)
  301. def exec_id(self,_id=None):
  302. if type(_id) is not type(None):
  303. self._exec_id = str(_id)
  304. return self._exec_id
  305. def _get_info(self):
  306. print(self.__offset)
  307. return {"offset":self.__offset,"xtype":self.__xtype}
  308. #return self.next(),self.__xtype, self.__size,self.__speed,self.__angel, self.__base,self.__clock_curr,self.run
  309. def __str__(self):
  310. return self.__repr__()
  311. def __repr__(self):
  312. return "<FX Next:{:0.2f} xtype:{} Size:{:0.2f} Speed:{:0.2f} ang:{:0.2f} base:{} Clock:{:0.2f} run:{} EXEC:{}>".format(
  313. self.next(),self.__xtype, self.__size,self.__speed,self.__angel, self.__base,self.__clock_curr,self.run,self._exec_id )
  314. def next(self,clock=None):
  315. if type(clock) is float or type(clock) is int:#not None:
  316. self.__clock_curr = clock
  317. d = (self.__clock_curr - self.__clock_old)
  318. #print()
  319. #print("A",d)
  320. m1 = ( speed_master.val(self.__master_id)) # global speed-master
  321. #print("B {:0.4}".format(m1))
  322. m2 = ( exec_speed_master.val(self._exec_id)) # exec start by 0
  323. #print("C {:0.4}".format(m2))
  324. shift = 0
  325. m = (m1 * m2) -1
  326. shift += d * m
  327. #print("D",shift)
  328. self.__clock_delta += shift
  329. #print(self.__clock_delta )
  330. self.__clock_old = self.__clock_curr
  331. t = self.__clock_curr
  332. t += self.__clock_delta
  333. t *= self.__speed / 60
  334. offset2 = self.__offset
  335. offset2 *= exec_offset_master.val(self._exec_id)
  336. #t += self.__offset / 100 #255 #1024 #255
  337. t += offset2 / 100
  338. t += self.__start / 1024 #255
  339. #t = t*speed_master.val(self.__master_id)
  340. tw = t%1
  341. count = t//1
  342. t = t * (100/self.__width)
  343. if tw > self.__width/100:
  344. t = 1
  345. self.__angel = t%1*360
  346. t = t%1
  347. rad = math.radians(self.__angel)
  348. v=0
  349. out = 0
  350. base = 0
  351. size = self.__size
  352. if self.__base == "+": # add
  353. base = size/2
  354. elif self.__base == "-": # sub
  355. base = size/2*-1
  356. if self.__xtype == "sinus":
  357. v = math.sin( rad )
  358. v/=2
  359. elif self.__xtype == "cosinus":
  360. v = math.cos( rad )
  361. if self.__base == "+": # add
  362. size *= -1
  363. v/=2
  364. elif self.__xtype == "rnd":
  365. #base = 0
  366. if self.__angel > 90 and self.__angel <=270:
  367. v=1
  368. else:
  369. v=0
  370. #if count != self.count and v: # % 2 == 0:#!= self.count:
  371. # #self.__offset = random.randint(0,1024)# /1024
  372. # self.__master._shuffle()
  373. if count != self.count and v == 0: # and v: # % 2 == 0:#!= self.count:
  374. self.__master.next(self)#,count)
  375. #self.__master.next(self)#,count)
  376. self.__offset = self.__master.get(self,count)
  377. base = 0
  378. if self.__base == "-": # sub
  379. if self.__invert:
  380. v = 1-v
  381. #base = -size
  382. size *=-1
  383. v *=-1
  384. elif self.__base == "+": # sub
  385. if self.__invert:
  386. v = v-1
  387. else:
  388. v = (t%1-0.5)
  389. elif self.__xtype == "on":
  390. #base = 0
  391. if self.__angel > 90 and self.__angel <=270:
  392. v=1
  393. else:
  394. v=0
  395. base = 0
  396. if self.__base == "-": # sub
  397. if self.__invert:
  398. v = 1-v
  399. #base = -size
  400. size *=-1
  401. v *=-1
  402. elif self.__base == "+": # sub
  403. if self.__invert:
  404. v = v-1
  405. else:
  406. v = (t%1-0.5)
  407. elif self.__xtype == "ramp" or self.__xtype == "ramp":
  408. v = (t%1)
  409. base = 0
  410. if self.__base == "-": # sub
  411. if self.__invert:
  412. v = 1-v
  413. #base = -size
  414. size *=-1
  415. v *=-1
  416. elif self.__base == "+": # sub
  417. if self.__invert:
  418. v = v-1
  419. else:
  420. v = (t%1-0.5)
  421. elif self.__xtype == "ramp2" or self.__xtype == "bump2":
  422. v = (t%1)
  423. v = 1-v
  424. if v == 1:
  425. v=0
  426. base = 0
  427. if self.__base == "-": # sub
  428. if self.__invert:
  429. v = 1-v
  430. #base = -size
  431. size *=-1
  432. v *=-1
  433. elif self.__base == "+": # sub
  434. if self.__invert:
  435. v = v-1
  436. else:
  437. v = (t%1-0.5)
  438. elif self.__xtype == "fade":
  439. x = t * 2
  440. if x > 1:
  441. x = 2-x
  442. x -= 0.5
  443. v = x*2
  444. #base /= 2
  445. #base *=2
  446. if self.__base == "+": # add
  447. pass#base /= 2
  448. else:
  449. v *= -1
  450. v/=2
  451. if self.__invert:
  452. v *=-1
  453. #if self.__fade_in_master < 255:
  454. # self.__fade_in_master += v*size
  455. out = v *size +base
  456. self.out = out
  457. self.count = count
  458. out = out * size_master.val(self.__master_id) # master
  459. out = out * exec_size_master.val(self._exec_id) # master
  460. #* (self.__fade_in_master /255.)
  461. return out
  462. class DMXCH(object):
  463. def __init__(self,dmx=-1):
  464. self._base_value = 0
  465. self._fade = None
  466. self._fx = [None,None] # None
  467. self._fx_value = 0
  468. self._dmx = dmx
  469. self._flash = None
  470. self._flash_fx = None
  471. self._flash_fx_value = 0
  472. self._last_val = None
  473. self._exec_id = None
  474. #self.next(clock)
  475. #print("init",self)
  476. def fade(self,target,ftime=0,clock=0,delay=0):
  477. if target != self._base_value:
  478. try:
  479. target = float(target)
  480. self._fade = Fade(self._base_value,target,ftime=ftime,clock=clock,delay=delay)
  481. #self._fade.next()
  482. #self._fade.next()
  483. except Exception as e:
  484. print( "Except:fade",e,target,ftime,clock)
  485. self.next(clock)
  486. print("init",self)
  487. def fx(self,xtype="sinus",size=40,speed=40,invert=0,width=100,start=0,offset=0,base="", clock=0,master=None):
  488. print([self,xtype,size,speed,start,offset,base, clock])
  489. self._fx[0] = self._fx[1]
  490. if str(xtype).lower() == "off":
  491. fx_value = self._fx_value
  492. if fx_value != 0:
  493. cprint("???????______ FX OFF AS FADE",fx_value,0,255)
  494. self._fx[1] = Fade(fx_value,0,ftime=0.5,clock=clock)
  495. else:
  496. self._fx[1] = None
  497. self._fx_value = 0
  498. else:
  499. self._fx[1] = FX(xtype=xtype,size=size,speed=speed,invert=invert,width=width,start=start,offset=offset,base=base,clock=clock,master=master,master_id=1)
  500. self._fx[1].exec_id(self._exec_id)
  501. self.next(clock)
  502. print("init",self)
  503. def flash(self,target,ftime=0,clock=0,delay=0):
  504. if str(target).lower() == "off":
  505. self._flash = None
  506. else:#elif target != self._base_value:
  507. try:
  508. target = float(target)
  509. self._flash = Fade(self._last_val,target,ftime=ftime,clock=clock,delay=delay)
  510. except Exception as e:
  511. print( "Except:flash",target,ftime,clock,__name__,e,)
  512. self.next(clock)
  513. print("init",self)
  514. def flash_fx(self,xtype="sinus",size=40,speed=40,invert=0,width=100,start=0,offset=0,base="",clock=0,master=None):
  515. if str(xtype).lower() == "off":
  516. fx_value = self._fx_value
  517. self._flash_fx = None
  518. self._flash_fx_value = 0
  519. else:
  520. self._flash_fx = FX(xtype=xtype,size=size,speed=speed,invert=invert,width=width,start=start,offset=offset,base=base,clock=clock,master=master,master_id=0)
  521. self._flash_fx.exec_id(self._exec_id)
  522. self.next(clock)
  523. print("init",self)
  524. def fx_ctl(self,cmd=""): #start,stop,off
  525. pass
  526. def __str__(self):
  527. return self.__repr__()
  528. def exec_id(self,_id=None):
  529. if type(id) is not type(None):
  530. self._exec_id = _id
  531. return self._exec_id
  532. def __repr__(self):
  533. return "<BUFFER {} v:{:0.2f} EXEC:{}> fx:[{}] fd:{}".format(self._dmx, self._last_val,self._exec_id,self._fx,self._fade)
  534. def fade_ctl(self,cmd=""): #start,stop,backw,fwd,bounce
  535. pass
  536. def next(self,clock=0):
  537. value = self._base_value
  538. if self._last_val is None:
  539. self._last_val = value
  540. fx_value = self._fx_value
  541. if self._flash is not None:
  542. value = self._flash.next(clock)
  543. #flicker bug ?!
  544. value = self._flash.next(clock)
  545. fx_value = 0
  546. elif self._fade is not None:#is Fade:# is Fade:
  547. self._base_value = self._fade.next(clock)
  548. self._base_value = self._fade.next(clock) #flicker bug ?!
  549. value = self._base_value
  550. if self._flash_fx is not None:# is FX:
  551. fx_value = self._flash_fx.next(clock)
  552. else:
  553. self._fx_value = 0
  554. if self._fx[-1] is not None and self._flash is None:# is FX:
  555. self._fx_value += self._fx[-1].next(clock)
  556. fx_value = self._fx_value
  557. self._last_val = value + fx_value
  558. #out = self._last_val * htp_master.master_by_dmx(self._dmx)
  559. out = self._last_val
  560. return out
  561. Bdmx = []
  562. for i in range(512*5+1):
  563. Bdmx.append( DMXCH(i) )
  564. #print(type(dmx[i]))
  565. _id = 1
  566. def split_cmd(data):
  567. if "cmd" in data:
  568. cmd = data["cmd"]
  569. #print("cmd",cmd)
  570. if "," in cmd:
  571. cmds = cmd.split(",")
  572. else:
  573. cmds = [cmd]
  574. return cmds
  575. class VDMX():
  576. """functional implementation as class for namespace encapsulation
  577. """
  578. def __init__(self):
  579. self.data = OrderedDict()
  580. self.data[4] = {"DMX":[21,22,23],"VALUE":255, "LIMIT":255} #,"DMXCH":DMXCH("V4")}
  581. for k,v in self.data.items():
  582. pass
  583. #dmxch = v["DMXCH"]
  584. #dmxch.fade(10,0)
  585. #dmxch.fx(size=200,speed=200,base="-") #self,xtype="sinus",size=40,speed=40,invert=0,width=100,start=0,offset=0,base="", clock=0,master=None):
  586. def _list_by_dmx(self,_dmx=0):
  587. data = OrderedDict()
  588. for i,link in self.data.items(): # enumerate(self.data):
  589. if _dmx in link["DMX"]:
  590. #print( "_list_by_dmx",i,link)
  591. data[i] = link
  592. return data
  593. def dmx_by_id(self,_id=0):
  594. #print("dmx by master-id:",_id)
  595. if _id in self.data:
  596. for i,link in self.data[_id].items():
  597. #print("dmx_by_id", i,link)
  598. return (i,link)
  599. return 0,{}
  600. def by_dmx(self,clock,dmx):
  601. #print("master of dmx:",dmx)
  602. val=0
  603. flag = 0
  604. data = self._list_by_dmx(dmx)
  605. for i,row in data.items():
  606. if "DMXCH" not in row:
  607. row["DMXCH"] = DMXCH("V{}".format(i))
  608. row["DMXCH"].fade(255,0)
  609. v = row["DMXCH"].next(clock)
  610. #row["DMXCH"].fade(200,20)
  611. if v >= val:
  612. val = v
  613. flag = 1
  614. out = 1.
  615. if val > 255:
  616. val = 255
  617. if flag:
  618. out = val/255.
  619. else:
  620. out = 1.
  621. return out
  622. vdmx = VDMX()
  623. class HTP_MASTER():
  624. """functional implementation as class for namespace encapsulation
  625. """
  626. def __init__(self):
  627. self.data = OrderedDict()
  628. #self.data[1] = {"DMX":[1,2,3],"VALUE":80, "LIMIT":255}
  629. #self.data[2] = {"DMX":[12,13,22],"VALUE":70, "LIMIT":255}
  630. #self.data[3] = {"DMX":[22,23,24],"VALUE":99, "LIMIT":255}
  631. self.data[4] = {"DMX":[22,23,24],"VALUE":99, "LIMIT":255,"DMXCH":DMXCH(4)}
  632. def _list_by_dmx(self,_dmx=0):
  633. data = OrderedDict()
  634. for i,link in self.data.items(): # enumerate(self.data):
  635. if _dmx in link["DMX"]:
  636. #print( "_list_by_dmx",i,link)
  637. data[i] = link
  638. return data
  639. def dmx_by_id(self,_id=0):
  640. #print("dmx by master-id:",_id)
  641. if _id in self.data:
  642. for i,link in self.data[_id].items():
  643. #print("dmx_by_id", i,link)
  644. return (i,link)
  645. return 0,{}
  646. def val_by_dmx(self,dmx=0):
  647. #print("master of dmx:",dmx)
  648. val=0
  649. flag = 0
  650. data = self._list_by_dmx(dmx)
  651. for i,link in data.items():
  652. #print("master_by_dmx", i,link)
  653. if link["VALUE"] > val:
  654. #print("master_by_dmx", i,link)
  655. val = link["VALUE"]
  656. flag=1
  657. out = 1.
  658. if flag:
  659. out = val/255.
  660. return out
  661. htp_master = HTP_MASTER()
  662. #htp_master.data[_id] = {"DMX":[1,2,3],"VALUE":80, "LIMIT":255,"DMXCH":DMXCH()}
  663. class Main():
  664. def __init__(self):
  665. #artnet = ANN.ArtNetNode(to="127.0.0.1",port=6555,univ=12)
  666. #artnet = ANN.ArtNetNode(to="127.0.0.1",port=6555,univ=0)
  667. #artnet = ANN.ArtNetNode(to="2.0.0.255",univ=0)
  668. #artnet = ANN.ArtNetNode(to="10.10.10.255",univ=1)
  669. self.artnet = {}
  670. #self.artnet["0"] = ANN.ArtNetNode(to="10.10.10.255",univ=0)
  671. #self.artnet["0"].dmx[512-1] = 10
  672. #self.artnet["1"] = ANN.ArtNetNode(to="10.10.10.255",univ=1)
  673. #self.artnet["1"].dmx[512-1] = 11
  674. self.fx = {} # key is dmx address
  675. def loop(self):
  676. #dmx[205] = 255 #205 BLUE
  677. #self.artnet.send()
  678. xx = [0]*512
  679. #artnet = self.artnet["0"]
  680. #artnet.dmx = xx# [:] #dmx #[0]*512
  681. old_univ = -1
  682. while 1:
  683. t = clock.time()
  684. ii = 0
  685. for ii,dmxch in enumerate(Bdmx):
  686. i = ii%512
  687. univ = ii//512
  688. if str(univ) not in self.artnet:
  689. print("add uiv",univ)
  690. self.artnet[str(univ)] = ANN.ArtNetNode(to="10.10.10.255",univ=univ)
  691. self.artnet[str(univ)].dmx[512-1] = 100+univ
  692. if univ != old_univ:
  693. old_univ = univ
  694. #print("UNIV",ii/512)
  695. try:
  696. artnet.next()
  697. except:pass
  698. artnet = self.artnet[str(univ)]
  699. artnet.dmx = xx
  700. v = dmxch.next(t)
  701. vv = vdmx.by_dmx(clock=i,dmx=ii+1)
  702. v = v*vv # disable v-master
  703. xx[i] = int(v)
  704. try:
  705. artnet.next()
  706. except:pass
  707. time.sleep(0.01)
  708. main = Main()
  709. if __run_main:
  710. #thread.start_new_thread(artnet_loop,())
  711. thread.start_new_thread(main.loop,())
  712. def JCB(data): #json client input
  713. t_start = time.time()
  714. #jdatas = data["cmd"].split("\x00")
  715. jdatas = [data["cmd"]]
  716. c = clock.time()
  717. c = float(c)
  718. print("JCB",round(c,2))
  719. ftime = 0
  720. delay = 0
  721. for j in jdatas:
  722. master_fx = MASTER_FX()
  723. if not j:
  724. continue
  725. try:
  726. cprint("JCB::")#,j)
  727. jdata = j #jdatas[j]
  728. jtxt = jdata
  729. #jtxt = zlib.decompress(jtxt) #jtxt.decode())
  730. jtxt = str(jtxt,"UTF-8")
  731. cmds = json.loads(jtxt)
  732. for x in cmds:
  733. #cprint(int(clock.time()*1000)/1000,end=" ",color="yellow")#time.time())
  734. #cprint("json", x,type(x),color="yellow")#,cmds[x])
  735. if "CMD" in x:
  736. print("CMD:",x)
  737. if "EXEC-SPEED-MASTER" == x["CMD"]:
  738. exec_speed_master.val(x["NR"],x["VALUE"])
  739. if "EXEC-SIZE-MASTER" == x["CMD"]:
  740. exec_size_master.val(x["NR"],x["VALUE"])
  741. if "EXEC-OFFSET-MASTER" == x["CMD"]:
  742. exec_offset_master.val(x["NR"],x["VALUE"])
  743. if "SPEED-MASTER" == x["CMD"]:
  744. speed_master.val(x["NR"],x["VALUE"])
  745. if x["NR"] == 2:
  746. pass
  747. #vdmx.data[4]["DMXCH"].fade(x["VALUE"],3)#,clock=clock.time())
  748. if x["NR"] == 3:
  749. pass
  750. #vdmx.data[4]["DMXCH"].fx(size=255,speed=x["VALUE"],base="-",offset=0)#xtype=xtype,size=size,speed=speed,invert=invert,width=width,start=start,offset=offset,base=base,clock=c,master=master_fx)
  751. if "SIZE-MASTER" == x["CMD"]:
  752. size_master.val(x["NR"],x["VALUE"])
  753. else:
  754. if "DMX" in x:
  755. DMX = int(x["DMX"])
  756. else:continue
  757. if DMX > 0:
  758. DMX -=1
  759. else:continue
  760. exec_id = None
  761. if "EXEC" in x:
  762. exec_id = x["EXEC"]
  763. if "VALUE" in x:# and x["VALUE"] is not None:
  764. v = x["VALUE"]
  765. else:continue
  766. if "FX" in x:# and x["VALUE"] is not None:
  767. fx = x["FX"]
  768. else:fx=""
  769. if "FX2" in x:# and x["VALUE"] is not None:
  770. fx2 = x["FX2"]
  771. else:fx2={}
  772. if "FADE" in x:
  773. ftime = x["FADE"]
  774. else:ftime=0
  775. if "DELAY" in x:
  776. delay = x["DELAY"]
  777. else:delay=0
  778. if len(Bdmx) < DMX:
  779. continue
  780. Bdmx[DMX].exec_id(exec_id)
  781. if v is not None:
  782. if "FLASH" in x:
  783. #print("FLASH")
  784. Bdmx[DMX].flash(target=v,ftime=ftime, clock=c,delay=delay)
  785. else:
  786. #print("FADE")
  787. Bdmx[DMX].fade(target=v,ftime=ftime, clock=c,delay=delay)
  788. if type(fx2) is dict and fx2:
  789. #cprint("FX2",DMX,fx2,color="green")
  790. xtype="fade"
  791. size = 10
  792. speed = 10
  793. start = 0
  794. offset= 0
  795. width=100
  796. invert=0
  797. base = "-"
  798. if "TYPE" in fx2:
  799. xtype = fx2["TYPE"]
  800. if "SIZE" in fx2:
  801. size = fx2["SIZE"]
  802. if "SPEED" in fx2:
  803. speed = fx2["SPEED"]
  804. if "OFFSET" in fx2:
  805. offset = fx2["OFFSET"]
  806. if "BASE" in fx2:
  807. base = fx2["BASE"]
  808. if "INVERT" in fx2:
  809. invert = fx2["INVERT"]
  810. if "WIDTH" in fx2:
  811. width = fx2["WIDTH"]
  812. if "off" == x["VALUE"]: #fix fx flash off
  813. xtype= "off"
  814. if "alloff" == xtype.lower():
  815. for i in Bdmx:
  816. if i is not None:
  817. i.flash_fx(xtype="off",clock=c)
  818. i.fx(xtype="off",clock=c)
  819. if "FLASH" in x:
  820. Bdmx[DMX].flash_fx(xtype=xtype,size=size,speed=speed,invert=invert,width=width,start=start,offset=offset,base=base,clock=c,master=master_fx)
  821. else:
  822. Bdmx[DMX].fx(xtype=xtype,size=size,speed=speed,invert=invert,width=width,start=start,offset=offset,base=base,clock=c,master=master_fx)
  823. elif type(fx) is str and fx: # old fx like sinus:200:12:244
  824. ccm = str(DMX+1)+":"+fx
  825. print("fx",ccm)
  826. if "FLASH" in x:
  827. CB({"cmd":"fxf"+ccm})
  828. else:
  829. CB({"cmd":"fx"+ccm})
  830. cprint("{:0.04} sec.".format(time.time()-t_start),color="yellow")
  831. cprint("{:0.04} t.".format(time.time()),color="yellow")
  832. except Exception as e:
  833. cprint("EXCEPTION JCB",e,color="red")
  834. cprint("----",str(jdata)[:150],"...",color="red")
  835. cprint("Error on line {}".format(sys.exc_info()[-1].tb_lineno),color="red")
  836. cprint()
  837. cprint("{:0.04} sec.".format(time.time()-t_start),color="yellow")
  838. cprint("{:0.04} t.".format(time.time()),color="yellow")
  839. def CB(data): # raw/text client input
  840. #print("CB",data)
  841. cmds = split_cmd(data)
  842. c = clock.time()
  843. c = float(c)
  844. ftime = 0
  845. delay = 0
  846. for xcmd in cmds:
  847. if xcmd:
  848. cprint("CB",xcmd,end=" ")
  849. pass
  850. else:
  851. continue
  852. if xcmd.startswith("fxf"):
  853. xxcmd=xcmd[3:].split(":")
  854. #print("fxf:",xxcmd)
  855. if "alloff" == xxcmd[1].lower():
  856. for i in Bdmx:
  857. if i is not None:
  858. i.flash_fx(xtype="off",clock=c)
  859. l = xxcmd
  860. try:
  861. xtype=""
  862. size=40
  863. speed=100
  864. start=0
  865. offset=0
  866. base=""
  867. k=int(l[0])-1
  868. xtype=l[1]
  869. if len(l) >= 3:
  870. try:size=int(l[2])
  871. except:pass
  872. if len(l) >= 4:
  873. try:speed=int(l[3])
  874. except:pass
  875. if len(l) >= 5:
  876. try:start=int(l[4])
  877. except:pass
  878. if len(l) >= 6:
  879. try:offset=int(l[5])
  880. except:pass
  881. if len(l) >= 7:
  882. try:base=l[6]
  883. except:pass
  884. if len(Bdmx) > k:
  885. #Bdmx[k].fade(target=v,ftime=t, clock=c)
  886. Bdmx[k].flash_fx(xtype=xtype,size=size,speed=speed,start=start,offset=offset,base=base,clock=c)
  887. except Exception as e:
  888. print("EXCEPTION IN FX",e)
  889. print("Error on line {}".format(sys.exc_info()[-1].tb_lineno))
  890. elif xcmd.startswith("fx"):
  891. xxcmd=xcmd[2:].split(":")
  892. print("DMX:",xxcmd)
  893. if len(xxcmd) < 2:
  894. print("xxcmd err",xxcmd,xcmd)
  895. continue
  896. if "alloff" == xxcmd[1].lower():
  897. for i in Bdmx:
  898. i.fx(xtype="off",clock=c)
  899. l = xxcmd
  900. try:
  901. xtype=""
  902. size=40
  903. speed=100
  904. start=0
  905. offset=0
  906. base=""
  907. k=int(l[0])-1
  908. xtype=l[1]
  909. if len(l) >= 3:
  910. try:size=int(l[2])
  911. except:pass
  912. if len(l) >= 4:
  913. try:speed=int(l[3])
  914. except:pass
  915. if len(l) >= 5:
  916. try:start=int(l[4])
  917. except:pass
  918. if len(l) >= 6:
  919. try:offset=int(l[5])
  920. except:pass
  921. if len(l) >= 7:
  922. try:base=l[6]
  923. except:pass
  924. if len(Bdmx) > k:
  925. #Bdmx[k].fade(target=v,ftime=t, clock=c)
  926. Bdmx[k].fx(xtype=xtype,size=size,speed=speed,start=start,offset=offset,base=base,clock=c)
  927. except Exception as e:
  928. print("EXCEPTION IN FX",xcmd,e)
  929. print("Error on line {}".format(sys.exc_info()[-1].tb_lineno))
  930. if __run_main:
  931. #jchat = chat.CMD(CB,port=50001) # server listener
  932. #thread.start_new_thread(jchat.poll,())
  933. chat.cmd(JCB) # server listener
  934. #chat.cmd(JCB,port=50001) # server listener
  935. #input("END")