vpu_live4.py 72 KB

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  1. #!/usr/bin/python3
  2. import math
  3. import random
  4. import time
  5. import os
  6. import sys
  7. import traceback
  8. import gc
  9. sys.path.insert(0,"/opt/LibreLight/Xdesk/")
  10. from lib.cprint import cprint
  11. HOME = os.getenv('HOME')
  12. import _thread as thread
  13. from optparse import OptionParser
  14. ...
  15. parser = OptionParser()
  16. parser.add_option("-m", "--mode", dest="mode",
  17. help="pixel mode pix,x,y --mode 40,10,8") #, metavar="FILE")
  18. parser.add_option("-X", "--XX", dest="XX", #default=1,
  19. help="x-split") #, metavar="FILE")
  20. parser.add_option("-x", "--xx", dest="xsplit", #default=1,
  21. help="x-split") #, metavar="FILE")
  22. parser.add_option("-y", "--yy", dest="ysplit",#default=1,
  23. help="y-split") #, metavar="FILE")
  24. parser.add_option("", "--start-univ", dest="start_univ",default=2,
  25. help="set start-univers default=2") #, metavar="FILE")
  26. parser.add_option("", "--gobo-ch", dest="gobo_ch",default=0,
  27. help="gobo ch univ on 1") #, metavar="FILE")
  28. parser.add_option("", "--gobo-ch2", dest="gobo_ch2",default=0,
  29. help="gobo ch univ on 1") #, metavar="FILE")
  30. #os.environ['SDL_VIDEO_WINDOW_POS'] = '%i,%i' % (200,164)
  31. parser.add_option("", "--win-pos", dest="win_pos",default="200,164",
  32. help="SDL_VIDEO_WINDOW_POS --win-pos=200,164") #, metavar="FILE")
  33. parser.add_option("", "--pixel-mapping", dest="pixel_mapping",default=0,
  34. help="pixel_mapping file/on --pixel-mapping=_x") #, metavar="FILE")
  35. parser.add_option("", "--dual-vpu", dest="dual_vpu",default=0,
  36. help=" --dual-vpu=1/0") #, metavar="FILE")
  37. parser.add_option("", "--out-idim", dest="out_idim",default="",
  38. help=" out_idim") #, metavar="FILE")
  39. parser.add_option("", "--countdown", dest="countdown",#default=1,
  40. help="enable countdown") #, metavar="FILE")
  41. parser.add_option("", "--videoplayer", dest="videoplayer",#default=1,
  42. help="enable videoplayer") #, metavar="FILE")
  43. parser.add_option("", "--title", dest="title",default="SCREEN",
  44. help="set title") #, metavar="FILE")
  45. (options, args) = parser.parse_args()
  46. import numpy
  47. QUIT = 0
  48. for o in dir(options):
  49. if "_" in o:
  50. continue
  51. print(o,options.__getattribute__(o))
  52. START = time.time()
  53. # ===== ARTNET DMX =========
  54. import memcache
  55. mc = memcache.Client(['127.0.0.1:11211'], debug=0)
  56. def read_index():
  57. ips=mc.get("index")#cmd)
  58. if ips is None:
  59. ips = {}
  60. return ips
  61. def select_ip(ips, univ=2): # artnet univ
  62. _univ = ":{}".format(univ)
  63. for ip in ips: #high priority
  64. if "2.0.0" in ip and _univ in ip:
  65. return ip
  66. for ip in ips:
  67. if "ltp-out" in ip and _univ in ip:
  68. return ip
  69. INPUT_START_POS_X = 40
  70. INPUT_START_POS_Y = 236 #320
  71. FUNC = 0
  72. COUNTER = []
  73. if options.countdown:
  74. cdmx_start = options.countdown.split(",")
  75. for cdmx in cdmx_start:
  76. try:
  77. cdmx = int(cdmx)
  78. _tmp={"DMX":cdmx,"DIM":0,"PAN":127,"TILT":127
  79. ,"CONTROL":0,"SEC":10
  80. ,"RED":255,"GREEN":255,"BLUE":255
  81. ,"_time":time.time(),"_RUN":0,"_pause":0,"_start":0
  82. ,"_SEC":">{}<".format(cdmx)
  83. }
  84. COUNTER.append(_tmp)
  85. except Exception as e:
  86. cprint("EXCEPTION COUNTER INIT ",cdmx,color="red")
  87. def read_dmx(ip):
  88. r = ""
  89. if ip:
  90. #t = int(math.sin(time.time() - s)*10)
  91. r = mc.get(ip) #"2.0.0.13:2")
  92. rr = [0]*512
  93. for i,v in enumerate(r):
  94. try: #cleanup ltp-out to int
  95. v = int(v)
  96. rr[i] = v
  97. except:pass
  98. r = rr
  99. if not r:
  100. c = 0
  101. #time.sleep(0.1)
  102. r = [0] *512
  103. for i in range(12*8+1):
  104. dmx = i*4
  105. #print(dmx)
  106. r[dmx:dmx+4] = [255,10,10,40]
  107. return r
  108. # ===== ARTNET DMX =========
  109. MEDIALIST = []
  110. try:
  111. MEDIALIST = open_medialist()
  112. except:pass
  113. from tool.video_capture import scan_capture #as scan_capture
  114. def _rescale_frame_by_width(frame, width):
  115. #print(type(frame)) #np array
  116. height = int(frame.shape[0]/frame.shape[1] * width )
  117. dim = (width, height)
  118. #return cv2.resize(frame, dim, interpolation =cv2.INTER_AREA)
  119. return cv2.resize(frame, dim, interpolation =cv2.INTER_LINEAR)
  120. def _rescale_frame_by_procent(frame, percent=75):
  121. #print(type(frame))
  122. width = int(frame.shape[1] * percent/ 100)
  123. height = int(frame.shape[0] * percent/ 100)
  124. dim = (width, height)
  125. return cv2.resize(frame, dim, interpolation =cv2.INTER_LINEAR)
  126. def _moveImage(img,x=0,y=0,shape=None):
  127. #print(type(img)) #np.array
  128. # Creating a translation matrix
  129. np = numpy
  130. translation_matrix = np.float32([ [1,0,x], [0,1,y] ])
  131. if shape is None:
  132. num_cols,num_rows = img.shape[1::-1]
  133. else:
  134. num_cols,num_rows = shape #[1::-1]
  135. # Image translation
  136. frame = cv2.warpAffine(img, translation_matrix, (num_cols,num_rows))
  137. return frame
  138. def _rotateImage(image, angle):
  139. #print(type(image)) # nm.array
  140. if angle in [0,360]:
  141. pass#return image
  142. try:
  143. #print("EE",image.shape)
  144. #print("EE",dir(image))
  145. shape = list(image.shape[1::-1])
  146. bg_shape = shape[:]
  147. delta_x = 0 # + nach rechts
  148. delta_y = 0 # + nach unten
  149. r = []
  150. r.extend(list(range(0-3,0+3)))
  151. r.extend(list(range(180-3,180+3)))
  152. r.extend(list(range(360-3,360+3)))
  153. r2 = []
  154. r2.extend(list(range(90-3,90+3)))
  155. r2.extend(list(range(270-3,270+3)))
  156. if angle in r:
  157. pass
  158. elif 0:#angle in r2:
  159. bg_shape = bg_shape[::-1]
  160. delta_y = -65 #shape[1]/2 # # + nach unten
  161. delta_x = 30 #shape[1]/2 # # + nach unten
  162. delta_y -= bg_shape[1]/2 - 20
  163. delta_x = bg_shape[0]/2 - 10
  164. pass
  165. else:
  166. if shape[0] > shape[1]:
  167. # landscape video
  168. bg_shape = (shape[0],shape[0])
  169. delta_y = (shape[0]-shape[1])/2
  170. else:
  171. # portrait video
  172. bg_shape = (shape[1],shape[1])
  173. delta_x = (shape[1]-shape[0])/2
  174. center = (shape[0]/2+delta_x,shape[1]/2+delta_y)
  175. image = _moveImage(image,x=delta_x,y=delta_y,shape=bg_shape)
  176. bg_shape = tuple(bg_shape) # exception ... if angle 0 no tuple !!!
  177. rot_mat = cv2.getRotationMatrix2D(center,angle,1.0)
  178. frame = cv2.warpAffine(image, rot_mat, bg_shape ) #,flags=cv2.INTER_LINEAR)
  179. return frame
  180. except Exception as e:
  181. raise(e)
  182. def calc_dim(dim=1,rgb=[255,255,255]):
  183. rgb[0] = int(rgb[0]*dim/255)
  184. rgb[1] = int(rgb[1]*dim/255)
  185. rgb[2] = int(rgb[2]*dim/255)
  186. return rgb
  187. def draw_media_background(wn,x,y,w,h,rgb):
  188. hx=int(w/2)
  189. hy=int(h/2)
  190. p1 = [x-hx ,y-hy] # links oben
  191. p2 = [x+hx ,y+hy] # recht unten
  192. p3 = [x+hx ,y-hy] # rechts oben
  193. p4 = [x-hx ,y+hy] # links unten
  194. bg_on=0
  195. if bg_on:
  196. #pygame.draw.rect(wn,rgb ,[p1[0] ,p1[1] ,__xw ,__yw])
  197. #pygame.draw.rect(wn,[25,20,20],[p1[0]+1,p1[1]+1,hx-2,hx-2])
  198. pass
  199. # frame border
  200. pygame.draw.line(wn,rgb ,p1 ,p3) # top
  201. pygame.draw.line(wn,rgb ,p2 ,p3) # right
  202. pygame.draw.line(wn,rgb ,p2 ,p4) # bottom
  203. pygame.draw.line(wn,rgb ,p1 ,p4) # right
  204. # cross lines
  205. pygame.draw.line(wn,rgb ,p1 ,p2) # tl - br
  206. pygame.draw.line(wn,rgb ,p3 ,p4) # tr - bl
  207. class MediaImg():
  208. def __init__(self):
  209. pass
  210. class MediaCam():
  211. def __init__(self):
  212. pass
  213. def draw(self,wn,im,x,y):
  214. w2 = int(im.get_width()/2)
  215. h2 = int(im.get_height()/2)
  216. wn.blit(im, (int(x-w2), int(y-h2))) # draw frame
  217. def _open_cam(self,obj):
  218. # LIVE VIDEO INPUT UVC DEVICE
  219. cfg = self._cam_cfg()
  220. print("III",cfg)
  221. res = "HD"
  222. #res = "4K"
  223. #res = ""
  224. if res == "HD":
  225. # HD
  226. w = 1920
  227. h = 1080
  228. elif res == "4K":
  229. # 4K
  230. w = 3840
  231. h = 2160
  232. else:
  233. # LOW
  234. w = 1280
  235. h = 720
  236. d = 0 # VIDEO INPUT DEV
  237. for c in cfg:
  238. try:
  239. if c.startswith("d"):
  240. d = int(c[1:])
  241. if c.startswith("h"):
  242. h = int(c[1:])
  243. if c.startswith("w"):
  244. w = int(c[1:])
  245. if c.startswith("video"):
  246. d = int(c[-1])
  247. except Exception as e:
  248. cprint("Exception", "cam_cfg 878",e,color="red")
  249. df = "video{}".format(d)
  250. if obj._stop:
  251. df += "_stop"
  252. elif os.path.exists("/dev/{}".format(df)):
  253. obj.Rcap = cv2.VideoCapture(d)
  254. obj.Rcap.set(cv2.CAP_PROP_FRAME_WIDTH, w)
  255. obj.Rcap.set(cv2.CAP_PROP_FRAME_HEIGHT, h)
  256. else:
  257. #obj.Rcap = None
  258. #obj.end = 1
  259. df += "_error"
  260. if obj.fname.startswith("cam_"):
  261. obj.fname = "cam_{}".format(df)
  262. def _cam_cfg(self):
  263. fn = HOME+'/LibreLight/video_in.txt'
  264. if not os.path.isfile(fn):
  265. self._cam_cfg_new(fn)
  266. f = open(fn ,"r")
  267. lines = f.readlines()
  268. f.close()
  269. cfg = ""
  270. for i in lines:
  271. if i.startswith("d"):
  272. cfg = i
  273. cfg = cfg.split()
  274. capture = scan_capture(name="MiraBox",serial="")
  275. #capture = scan_capture(name="Integrated",serial="")
  276. if capture:
  277. print("capture",capture)
  278. try:
  279. cfg.append(capture[0][0])
  280. except Exception as e:
  281. cprint("except 2992",e,color="red")
  282. else:
  283. cprint("---- ERROR NO VIDEO CAPTURE DEV - FOUND ----",color="red")
  284. print("_cam_cfg:",len(cfg),[cfg])
  285. return cfg
  286. def _cam_cfg_new(self,fn):
  287. #fn = HOME+'/LibreLight/video_in.txt'
  288. txt = [
  289. "# Example",
  290. "d0 w640 h480 # PAL",
  291. "d0 w800 h600 # SVGA",
  292. "d0 w960 h540 # 540p",
  293. "d0 w1024 h768 # XGA <---",
  294. "d0 w1280 h720 # 720p",
  295. "d0 w1440 h900 # WSXGA+",
  296. "d0 w1600 h900 # WSXGA - Laptop 16:9",
  297. "d0 w1920 h1080 # HD 1080p",
  298. "",
  299. "# config",
  300. "d0 w1024 h768 # XGA",
  301. ]
  302. f = open(fn ,"w")
  303. f.write("\n".join(txt))
  304. f.close()
  305. class PixelMedia():
  306. def __init__(self,dmx=None,_id=None):
  307. global MEDIALIST
  308. self._id = _id
  309. self.fpath = HOME+'/Downloads/'
  310. self.fpath = HOME+'/LibreLight/video/'
  311. self.fname = '' #'bbb_sunflower_480x320.mp4'
  312. #self.fname = 'no-video.mp4'
  313. try:
  314. self.fname = MEDIALIST[0]
  315. except Exception as e:
  316. cprint("Exception set video from MEDIALIST 5543:",e,color="red")
  317. self.cam = MediaCam()
  318. self.img_meta = {}
  319. self.restart_t = time.time()
  320. self.fps = 0
  321. self.scale = 50 #%
  322. self.angle = 0 #%
  323. self.dmx=dmx
  324. if self._id >= 250:
  325. self.fname = "cam_"
  326. self.dim = 0
  327. self.x = 0
  328. self.y = 0
  329. self.init_count = 0
  330. self.cap = None
  331. self.shape = [200,200]
  332. self.img = None
  333. self.success = 1
  334. self._run = 0
  335. self.end = 0
  336. self._media_nr = 0
  337. self._stop = 0 # fix buffer-overflow ... ?? opencv
  338. self.shape_x = 370
  339. self.shape_y = 235
  340. self.dmx_change = 0
  341. self.frame_change = 0
  342. self.init()
  343. def update_dmx(self,x,y,scale,angle,dim):
  344. if int(self.x*100) != int(x*100):
  345. self.x = x
  346. self.dmx_change = 1
  347. if int(self.y*100) != int(y*100):
  348. self.y = y
  349. self.dmx_change = 1
  350. if int(self.scale*100) != int(scale*100):
  351. self.scale = scale
  352. self.dmx_change = 1
  353. if int(self.angle*100) != int(angle*100):
  354. self.angle = angle
  355. self.dmx_change = 1
  356. if int(self.dim*100) != int(dim*100):
  357. self.dim = dim
  358. self.dmx_change = 1
  359. def __repr__(self):
  360. sizeof = int(sys.getsizeof(self.buffer)/8)
  361. return "< id:{} buf:{} run:{} fps:{} scale:{} name:{} {}kb>".format(
  362. id(self),len(self.buffer),self._run,self.fps,self.scale
  363. ,self.fname,sizeof
  364. )
  365. def restart(self):
  366. print(self,"reset()")
  367. self.pos = 0
  368. self.restart_t = time.time()
  369. def init(self):
  370. print("---- ---- PixelMedia.init()",[self.fname,self._media_nr])
  371. #print(MEDIALIST)
  372. self.time = 0
  373. self.t_delta = 0
  374. self.t_last = time.time()
  375. self.im = None
  376. self.pos = 0
  377. self.buffer = []
  378. self._init()
  379. self.init_count = 1
  380. self.dmx_change = 0
  381. self.frame_change = 0
  382. def select_video(self,dmx_value):
  383. try:
  384. dmx_value = int(dmx_value/10)
  385. if self._media_nr != dmx_value:
  386. self._media_nr = dmx_value
  387. if self._media_nr >= 25:
  388. self.fname = "cam_"
  389. self.init()
  390. elif self._media_nr < len(MEDIALIST):
  391. self.fname = str(MEDIALIST[self._media_nr])
  392. self.init()
  393. #finally:pass
  394. except Exception as e:
  395. cprint("PixelMedia.select_video()",dmx_value,e,color="red")
  396. def _init(self):
  397. print(self)
  398. print("videoplayer.init()",self.fpath,self.fname)
  399. if not os.path.isfile(self.fpath+self.fname):
  400. print()
  401. cprint("video file does not exits !! >",self.fpath,self.fname,color="red")
  402. print()
  403. #exit()
  404. self.Rsuccess = 0
  405. if not cv2:
  406. return
  407. if self._stop:
  408. return
  409. if self.fname.endswith(".jpg"):
  410. self.img_meta = create_img_meta()
  411. if self.img_meta["fname"] == self.fname:
  412. return
  413. self.img_meta["_fpath"] = self.fpath
  414. self.img_meta["fname"] = self.fname
  415. img_open(self.img_meta)
  416. self.buffer = [1] #,2,3]
  417. return # STOP
  418. if self.fname.startswith("cam_"):
  419. self.cam._open_cam(obj=self)
  420. self.img_meta = {}
  421. else:
  422. self.Rcap = cv2.VideoCapture(self.fpath+self.fname, cv2.CAP_FFMPEG)
  423. #FFMPEG malloc(): unsorted double linked list corrupted ... Abgebrochen
  424. self.img_meta = {}
  425. print("_init ?",self.Rcap)
  426. print("open ?" ,self.Rcap.isOpened())
  427. self.Rcap.read()
  428. #self.Rfvs = FileVideoStream(self.fpath+self.fname).start()
  429. self.Rsuccess = 1
  430. self.read()
  431. def _del(self):
  432. if self.img_meta:
  433. return
  434. self._stop = 1
  435. self.buffer = [] #.append(self.img)
  436. self.Rcap.release()
  437. self.Rcap.retrieve()
  438. self.Rcap = None
  439. self.cap = None
  440. del self.Rcap #.release()
  441. gc.collect()
  442. def read(self):
  443. if self.img_meta:
  444. return
  445. success = self.Rsuccess
  446. ok = 0
  447. if success and self.fname:
  448. cap = self.Rcap
  449. #fvs = self.Rfvs
  450. _break = 0
  451. try:
  452. success, img = cap.read()
  453. if not success:
  454. self.Rcap.release()
  455. self.Rcap.retrieve()
  456. self.end = 1
  457. #j = json.dumps(self.buffer) #.append(img)
  458. #f = open("/tmp/buff")
  459. #f.write(j)
  460. #f.close()
  461. return
  462. if self.fps == 0:
  463. self.fps = cap.get(cv2.CAP_PROP_FPS)
  464. img = cv2.cvtColor(img, cv2.COLOR_BGR2RGB)
  465. if self.fname.startswith("cam_"):
  466. pass
  467. #img = _rescale_frame_by_width(img, 1200)
  468. else:
  469. img = _rescale_frame_by_width(img, 200)
  470. #img = _rescale_frame_by_width(img, 1200)
  471. # store frame into buffer list
  472. if self.fname.startswith("cam_"):
  473. self.buffer = [ img ]
  474. else:
  475. self.buffer.append(img)
  476. ok = 1
  477. if len(self.buffer) % 100 == 0:
  478. _id = str(self.__repr__)[-5:-1]
  479. print(_id,"video read",self.dmx,len(self.buffer),self.fname,"fps",self.fps,self.dim)
  480. except Exception as e:
  481. cprint("Exception","_init",self,e,end="",color="red")
  482. self.success = 1
  483. return ok
  484. def prev(self):
  485. self.pos -= 1
  486. if self.pos < 0:
  487. self.pos = len(self.buffer)-1
  488. if self.pos >= len(self.buffer):
  489. self.pos = len(self.buffer)-1
  490. self.im = self.buffer[int(self.pos)]
  491. def _rotateImage(self,image, angle):
  492. if self.img_meta:
  493. return
  494. return _rotateImage(image, angle)
  495. def pause(self):
  496. if self.img_meta:
  497. return
  498. #print("pause",self.t_last)
  499. t = time.time()
  500. self.t_delta = 0
  501. self.t_last = t
  502. def next_frame(self):
  503. if self.img_meta:
  504. return
  505. #return 0
  506. if self._run and len(self.buffer) > 30:
  507. t = time.time()
  508. self.t_delta = t-self.t_last
  509. self.pos += int(self.t_delta*self.fps)
  510. self.t_last = t
  511. #self.frame_change = 1
  512. else:
  513. self.pause()
  514. if self.restart_t > time.time()-0.5:
  515. # prevent flickerung by reset
  516. #self.pause()
  517. self.pos = 5
  518. pass
  519. # restart at the end
  520. if int(self.pos) >= len(self.buffer)-1:
  521. self.pos = 0
  522. self.img = None
  523. if self.buffer:
  524. self._img = self.buffer[int(self.pos)]
  525. self.img = self._img
  526. def check_cv2_check(self):
  527. if not cv2:
  528. cprint("cv2 not importet ! no VIDEO support !",color="red")
  529. return 0
  530. return 1
  531. def next(self):
  532. if self.img_meta:
  533. self.next_frame()
  534. return
  535. try:
  536. self.next_frame()
  537. if self.img is None:
  538. return
  539. self.img = _rescale_frame_by_procent(self.img, percent=self.scale)
  540. # rotate frame BUG: x,y offset ??? !!!
  541. self.img = self._rotateImage(self.img, self.angle)
  542. self.shape = self.img.shape[1::-1]
  543. if len(self.buffer) % 100 == 0:
  544. _id = str(self.__repr__)[-5:-1]
  545. print("next",_id)
  546. # add DIMER to videplayer
  547. cv2.normalize(self.img, self.img, 0, self.dim, cv2.NORM_MINMAX)
  548. img = self.img
  549. if img is None:
  550. return
  551. self.im = None
  552. self.im = pygame.image.frombuffer(img.tobytes(), self.shape, "RGB")
  553. #self.next_frame()
  554. except AttributeError as e:
  555. time.sleep(.05)
  556. #if self.init_count % 100 == 0:
  557. cprint("except 776",e,color="red")
  558. #self.init()
  559. except Exception as e:
  560. cprint("except 756",e,color="red")
  561. cprint(traceback.format_exc(),color="red")
  562. cprint(sys.exc_info()[2],color="red")
  563. cprint()
  564. def calc_im_size(self):
  565. try:
  566. xx ,yy = self.im.get_size()[:2]
  567. self.shape_x = xx
  568. self.shape_y = yy
  569. except AttributeError as e:
  570. pass
  571. def calc_zoom(self,xx,yy):
  572. if self.scale < 255*.05:
  573. self.scale = 255*0.05
  574. xx = int(xx*self.scale/255)
  575. yy = int(yy*self.scale/255)
  576. return xx,yy
  577. def draw_video(self,wn,im,x,y):
  578. w2 = int(im.get_width()/2)
  579. h2 = int(im.get_height()/2)
  580. wn.blit(im, (int(x-w2), int(y-h2))) # draw frame
  581. def draw_img(self,wn,img_meta):
  582. self.img_meta["pos"] = [self.x,self.y]
  583. self.img_meta["scale"] = self.scale #= 50 #%
  584. self.img_meta["dim"] = self.dim #255
  585. self.img_meta["ang"] = self.angle # 0
  586. if 1: #self.is_change():
  587. im2 = self.img_meta["raw_img"]
  588. im2 = img_rescale(im2, percent=self.img_meta["scale"])
  589. # add DIMER to videplayer
  590. im2 = cv2.normalize(im2, im2, 0, self.img_meta["dim"], cv2.NORM_MINMAX)
  591. self.img_meta["img"] = im2
  592. img_draw_raw(self.img_meta)
  593. self.change_reset()
  594. def is_change(self):
  595. #if self.frame_change or self.dmx_change:
  596. if self.frame_change or self.dmx_change:
  597. #if self.dmx_change:
  598. return True
  599. def change_reset(self):
  600. if self.frame_change:
  601. print("media frame change")
  602. if self.dmx_change:
  603. print("media dmx change")
  604. self.frame_change = 0
  605. self.dmx_change = 0
  606. def draw(self,wn=None):
  607. if self.img_meta:
  608. self.draw_img(wn,self.img_meta)
  609. return
  610. if self.dim <= 1:
  611. return
  612. self.calc_im_size()
  613. im = self.im
  614. x=self.x
  615. y=self.y
  616. #w,h = self.calc_zoom(x,y)
  617. w = self.shape_x
  618. h = self.shape_y
  619. if self.success and wn and im:
  620. if self.fname.startswith("cam_"):
  621. self.cam.draw(wn,im,x,y)
  622. else:
  623. self.draw_video(wn,im,x,y)
  624. self.change_reset()
  625. def get_meta(self):
  626. out = {}
  627. mode="x"
  628. if self._run:
  629. mode = "run"
  630. else:
  631. mode = "pause"
  632. out["frames"] = len(self.buffer)
  633. out["mode"] = mode
  634. out["fname"] = self.fname
  635. out["scale"] =self.scale
  636. out["fps"] = int(self.fps)
  637. out["pos"] = self.pos
  638. out["dim"] = self.dim
  639. out["run"] = self._run
  640. out["cur"] = 0
  641. if self.fps > 0: # check if div zerro
  642. out["cur"] = (self.pos/self.fps)
  643. out["x"] = self.x
  644. out["y"] = self.y
  645. out["id"] = self._id
  646. out["nr"] = self._media_nr
  647. out["pz"] = 0
  648. return out
  649. def _overlay_text(self):
  650. meta = self.get_meta()
  651. keys = ["fps","pos","frames","cur","pz","x","y","scale","dim"]
  652. _line = create_format_line(meta,keys)
  653. keys= ["id","nr","mode","fname"]
  654. _line2 = create_format_line(meta,keys)
  655. return [_line,_line2]
  656. def create_format_line(meta,keys):
  657. _line = []
  658. for k in keys:
  659. v=meta.get(k,"-")
  660. _line.append(str(k))
  661. _line.append(":")
  662. if type(v) is float:
  663. _line.append("{:02f}".format(v))
  664. else:
  665. _line.append(str(v))
  666. _line.append(" ")
  667. _line = "".join(_line)
  668. return _line
  669. PixelMedia = PixelMedia
  670. VIDEO = []
  671. videoplayer=[]
  672. cv2 = None
  673. FileVideoStream = None
  674. _vid = 0
  675. if type(options.videoplayer) is str:
  676. try:
  677. import cv2
  678. except Exception as e:
  679. cprint("Except Import:",e,color="red")
  680. try:
  681. # faster video reading ... ???
  682. from imutils.video import FileVideoStream
  683. except Exception as e:
  684. cprint("Except Import:",e,color="red")
  685. max_videoplayer = 4
  686. dmx_start = options.videoplayer.split(",")
  687. for cdmx in dmx_start:
  688. if len(videoplayer) > max_videoplayer:
  689. print("-- videoplayer max count {} !! break".format(max_videoplayer))
  690. break
  691. print("-- videoplayer dmx:",cdmx)
  692. try:
  693. cdmx = int(cdmx)
  694. videoplayer.append( PixelMedia(cdmx,_id=_vid) )
  695. _vid += 1
  696. _tmp = {"DMX":cdmx,"DIM":0,"PAN":127,"TILT":127
  697. ,"CONTROL":0,"SEC":10,"VIDEO":"3"
  698. ,"RED":255,"GREEN":255,"BLUE":255
  699. ,"_time":time.time()
  700. ,"_RUN":0,"_SEC":">{}<".format(cdmx)
  701. }
  702. VIDEO.append(_tmp)
  703. except Exception as e:
  704. cprint("EXCEPTION COUNTER INIT ",cdmx,color="red")
  705. def loop_videoplayer():
  706. while 1:
  707. _videoplayer = videoplayer[:]
  708. #print(".")
  709. ok = 0
  710. for i in _videoplayer: #.append( PixelMedia(cdmx,_id=_vid) )
  711. try:
  712. r = i.read() # read next frame from file
  713. if r:
  714. ok = 1
  715. except Exception as e:
  716. cprint("EXCEPTION loop_videoplayer ",e,color="red")
  717. cprint(traceback.format_exc(),color="red")
  718. cprint(sys.exc_info()[2],color="red")
  719. cprint()
  720. if ok == 0:
  721. time.sleep(0.1)
  722. else:
  723. time.sleep(0.005)
  724. if QUIT:
  725. break
  726. thread.start_new_thread(loop_videoplayer,())
  727. p = 16
  728. block = [p,p]
  729. _x = 8
  730. _y = 8
  731. #HD = "0"
  732. if options.mode:
  733. try:
  734. HD = options.mode
  735. p,_x,_y = HD.split(",")
  736. _x = int(_x)
  737. _y = int(_y)
  738. p = int(p)
  739. block = [p,p]
  740. except Exception as e:
  741. cprint( "Exc",options.mode,e,color="red")
  742. # PARSE COMMANDLINE ARGUMENTS
  743. CFG_IN = {"name":"CFG_IN","x1":40,"y1":60,"x2":0,"y2":0 ,"w":0,"h":300}
  744. # OUTPUT CFG INIT
  745. CFG_OUT = []
  746. out_idim = options.out_idim.split(",")
  747. x1 = 40
  748. for i,v in enumerate(out_idim):
  749. _t = {"name":"CFG_OUT{}".format(i+1),"x1":x1,"y1":60,"x2":0,"y2":0 ,"w":30,"h":30,"on":1,"DMX-CH":v}
  750. CFG_OUT.append(_t)
  751. x1 += p*8
  752. CFG_BLOCK = {"name":"CFG_BLOCK","size":16,"h-split":2,"v-split":2,"h-count":8,"v-count":8}
  753. if _x < 1:
  754. _x = 1
  755. if _y < 1:
  756. _y = 1
  757. CFG_BLOCK["h-count"] = _x
  758. CFG_BLOCK["v-count"] = _y # int(8*8/_x) #/_x+0.5) #_y
  759. CFG_BLOCK["size"] = p
  760. print( [options.xsplit])
  761. print( [options.ysplit])
  762. try:
  763. if options.xsplit:
  764. CFG_BLOCK["h-split"] = int(options.xsplit)
  765. if options.ysplit:
  766. CFG_BLOCK["v-split"] = int(options.ysplit)
  767. except Exception as e:
  768. cprint( "Exc",options.mode,e,color="red")
  769. print("HD",CFG_BLOCK["h-split"],CFG_BLOCK["v-split"])
  770. print("xy",_x,_y)
  771. print("++++++++++++++++++", p,_x,_y)
  772. _x2 = _x
  773. try:
  774. if options.XX:
  775. pass#_x2 = int(options.XX)
  776. except Exception as e:
  777. cprint( "Exc",options.mode,e,color="red")
  778. print("_x2 , -X",_x2)
  779. # ===== GUI =========
  780. import pygame
  781. import pygame.gfxdraw
  782. import pygame.font
  783. clock = pygame.time.Clock()
  784. os.environ['SDL_VIDEO_WINDOW_POS'] = '%i,%i' % (200,164)
  785. if options.win_pos:
  786. if "," in options.win_pos:
  787. win_pos = options.win_pos.split(",")
  788. try:
  789. WIN_POS = '%i,%i' % (int(win_pos[0]),int(win_pos[1]) )
  790. os.environ['SDL_VIDEO_WINDOW_POS'] = WIN_POS
  791. except Excetpion as e:
  792. cprint("win_pos",win_pos,e,color="red")
  793. os.environ['SDL_VIDEO_CENTERED'] = '0'
  794. pg = pygame
  795. pygame.init()
  796. pygame.mixer.quit()
  797. f = pygame.font.get_fonts()
  798. for i in f:
  799. if "mono" in i.lower():
  800. print(i)
  801. font = pygame.font.SysFont("freemonobold",22)
  802. font10 = pygame.font.SysFont("freemonobold",10)
  803. font12 = pygame.font.SysFont("freemonobold",12)
  804. font12l = pygame.font.SysFont("freemono",12)
  805. font15 = pygame.font.SysFont("freemonobold",15)
  806. font40 = pygame.font.SysFont("freemonobold",40)
  807. font80 = pygame.font.SysFont("freemonobold",70)
  808. #font = pygame.font.SysFont(None,30)
  809. fr = font.render("hallo" ,1, (200,0,255))
  810. def clean_path(path):
  811. _path = path[:]
  812. _path = _path.replace("/","-")
  813. _path = _path.replace(".","-")
  814. _path = _path.replace("\"","-")
  815. _path = _path.replace("'","-")
  816. return _path
  817. PIXEL_MAPPING = 0
  818. vpu_wall_conf_file = HOME+"/LibreLight/vpu_wall_conf.csv"
  819. grid_file = "/tmp/vpu_grid_hd.csv"
  820. text_file = HOME+"/LibreLight/vpu_text_hd.csv"
  821. media_list = HOME+"/LibreLight/video/" #.format(path)
  822. pm_wy = 0
  823. if options.pixel_mapping:
  824. PIXEL_MAPPING = 1
  825. path = options.pixel_mapping
  826. path = clean_path(path)
  827. grid_file = HOME+"/LibreLight/vpu_grid_hd{}.csv".format(path)
  828. if options.dual_vpu:
  829. grid_file = HOME+"/LibreLight/vpu_grid_dual{}.csv".format(path)
  830. text_file = HOME+"/LibreLight/vpu_text_hd{}.csv".format(path)
  831. media_list = HOME+"/LibreLight/video/" #.format(path)
  832. print(" ",[options.pixel_mapping],"grid_file",grid_file)
  833. #grid_file = HOME+"/LibreLight/vpu_grid_hd.csv"
  834. MAIN_SIZE=(600,500)
  835. try:
  836. if _x < 8 and PIXEL_MAPPING >= 1:
  837. wx = 30+30+block[0] * 8
  838. CFG_IN["w"] = CFG_BLOCK["size"] * 8
  839. else:
  840. wx = 30+30+block[0] * _x
  841. wy = 40+40+block[1] * _y
  842. if type(options.videoplayer) is str:
  843. wy += 150 # video medialist
  844. MAIN_SIZE=(wx,wy)
  845. if PIXEL_MAPPING >= 1:
  846. pm_wy = 11*p #+ p*3
  847. CFG_IN["y1"] += 11*p
  848. if options.dual_vpu:
  849. if wx < p*16+155:
  850. wx = p*16+155
  851. MAIN_SIZE=(wx,wy+pm_wy)
  852. except Exception as e:
  853. cprint("Exception:",e,color="red")
  854. CFG_IN["w"] = CFG_BLOCK["size"] * CFG_BLOCK["h-count"]
  855. CFG_IN["h"] = CFG_BLOCK["size"] * CFG_BLOCK["v-count"]
  856. for CFG_OUTx in CFG_OUT:
  857. CFG_OUTx["w"] = CFG_BLOCK["size"] * 8
  858. CFG_OUTx["h"] = CFG_BLOCK["size"] * 8
  859. def CFG_CALC_P(CFG):
  860. CFG["x2"] = CFG["x1"]+CFG["w"]
  861. CFG["y2"] = CFG["y1"]+CFG["h"]
  862. CFG["p1"] = [CFG["x1"] ,CFG["y1"]]
  863. CFG["p2"] = [CFG["x2"] ,CFG["y2"]]
  864. print("CFG",CFG)
  865. # ?
  866. #CFG_IN["w"] = int(CFG_BLOCK["v-count"]-2) * CFG_BLOCK["size"]
  867. CFG_CALC_P(CFG_IN)
  868. for CFG_OUTx in CFG_OUT:
  869. CFG_CALC_P(CFG_OUTx)
  870. print("CFG_BLOCK",CFG_BLOCK)
  871. print()
  872. print()
  873. print()
  874. print()
  875. print()
  876. window = pygame.display.set_mode(MAIN_SIZE,pg.RESIZABLE)#,32)#,pygame.FULLSCREEN) #x left->right ,y top-> bottom
  877. pg.display.set_caption('LibreLight VPU-{}'.format(options.title))
  878. class Fix():
  879. def __init__(self,_id,pos,block=[16,16],univ=0,dmx=0,ch=4):
  880. #print("Fix",_id)
  881. self._id = _id
  882. self.dmx = (_id-1) * ch +1 #dmx
  883. self.univ = univ
  884. self.ch = ch
  885. self.pos = pos
  886. self.rgb = [0,0,0]
  887. self.block = block #[10,10]
  888. self.x = pos[0]
  889. self.y = pos[1]
  890. self._x = 0
  891. self._y = 0
  892. self.strobo = time.time()
  893. self.bmp = 250
  894. self.sub_fix = []
  895. sub_block =[block[0]/CFG_BLOCK["h-split"],block[1]/CFG_BLOCK["v-split"]]
  896. if _id <= 0: #exit
  897. return
  898. spalte = (_id-1)%_y +1
  899. zeile = int((_id-1)/_x2) #+1
  900. add_row = _x*CFG_BLOCK["h-split"]*CFG_BLOCK["v-split"]
  901. #zeile 1
  902. sid = (_id-1)*2 + zeile*CFG_BLOCK["h-split"]*_x2
  903. sid = sid+1
  904. sub_pos= [pos[0]*block[0],pos[1]*block[1]]
  905. sub_fix = SubFix(sid,sub_pos,sub_block,univ,dmx,ch)
  906. self.sub_fix.append(sub_fix)
  907. sid = sid+1
  908. sub_pos= [pos[0]*block[0]+block[0]/2,pos[1]*block[1]]
  909. sub_fix = SubFix(sid,sub_pos,sub_block,univ,dmx,ch)
  910. self.sub_fix.append(sub_fix)
  911. #zeile 2
  912. sid = (_id-1)*2+1 + _x2*CFG_BLOCK["h-split"] + zeile*CFG_BLOCK["h-split"]*_x2 # int(add_row)
  913. sub_pos= [pos[0]*block[0],pos[1]*block[1]+block[1]/2]
  914. sub_fix = SubFix(sid,sub_pos,sub_block,univ,dmx,ch)
  915. self.sub_fix.append(sub_fix)
  916. #sid = sid+1
  917. sid = sid+1
  918. sub_pos= [pos[0]*block[0]+block[0]/2,pos[1]*block[1]+block[1]/2]
  919. sub_fix = SubFix(sid,sub_pos,sub_block,univ,dmx,ch)
  920. self.sub_fix.append(sub_fix)
  921. def __repr__(self):
  922. return "<Fix: {} {} {} {}>".format(id(self),self.x,self.y,self.dmx)
  923. def calc(self,data):
  924. _rgb = [0,255,0]
  925. return _rgb
  926. def sub_calc(self,data):
  927. _rgb = [0,255,0]
  928. for sub_fix in self.sub_fix:
  929. sub_fix.block = self.block[:]
  930. _rgb = sub_fix.dmx_calc(data)
  931. return _rgb
  932. def _calc(self,a,b):
  933. A = (self.pos[0])*self.block[0]
  934. B = (self.pos[1])*self.block[1]
  935. C = self.block[0]-a
  936. D = self.block[1]-b
  937. return A,B,C,D
  938. def POS(self,x=None,y=None,a=0,b=0):
  939. if type(x) is int:
  940. self._x=x
  941. if type(y) is int:
  942. self._y=y
  943. A,B,C,D = self._calc(a,b)
  944. return [self._x+A,self._y+B,C,D]
  945. def XXXsubPOS(self,x=0,y=0,a=0,b=0):
  946. __out = []
  947. for sub_fix in self.sub_fix:
  948. __out.append( sub_fix.POS(x,y,a,b) )
  949. return __out
  950. class SubFix():
  951. def __init__(self,_id,pos,block=[16,16],univ=0,dmx=0,ch=4):
  952. #print("Fix",_id)
  953. self._id = _id
  954. self.dmx = (_id-1) * ch +1 #dmx
  955. self.univ = univ
  956. self.ch = ch
  957. self.pos = pos
  958. self.rgb = [0,0,40]
  959. self.block = block #[10,10]
  960. self.x = pos[0]
  961. self.y = pos[1]
  962. self._x = 0
  963. self._y = 0
  964. self.strobo = time.time()
  965. self.bmp = 250
  966. def dmx_calc(self,data):
  967. #return [130,30,20]
  968. dmx_sub = [30]*10
  969. dmx = self.dmx -1
  970. _dmx_sub = []
  971. if self.dmx >= 0:
  972. dmx = rDMX(self.univ,self.dmx)-1
  973. if dmx+self.ch < len(data):
  974. _dmx_sub = data[dmx:dmx+self.ch]
  975. if _dmx_sub:
  976. dmx_sub = _dmx_sub
  977. dim = dmx_sub[0]/255
  978. r = dmx_sub[1]*dim
  979. g = dmx_sub[2]*dim
  980. b = dmx_sub[3]*dim
  981. r = int(r)
  982. g = int(g)
  983. b = int(b)
  984. self.rgb = [r,g,b]
  985. return self.rgb
  986. def _calc(self,a,b):
  987. A = (self.pos[0]) #+self.block[0]
  988. B = (self.pos[1]) #+self.block[1]
  989. C = self.block[0]-a
  990. D = self.block[1]-b
  991. return A,B,C,D
  992. def POS(self,x=None,y=None,a=0,b=0):
  993. if type(x) is int:
  994. self._x=x
  995. if type(y) is int:
  996. self._y=y
  997. A,B,C,D = self._calc(a,b)
  998. #if NR:
  999. # C-=1
  1000. # D-=1
  1001. return [int(self._x+A),int(self._y+B),int(C),int(D)]
  1002. class POINTER():
  1003. def __init__(self):
  1004. self.pos = [0,0,0,0]
  1005. self.on = 0
  1006. self.rgb = [0,100,10]
  1007. self._x = 0
  1008. self._y = 0
  1009. self.x = 0
  1010. self.y = 0
  1011. self.fix = Fix(0 ,[999,999],[16,16],0,0,0)
  1012. def row_move(self,x,y):
  1013. self._x = x
  1014. self._y = y
  1015. def move(self,pos):
  1016. self.pos = pos
  1017. self.on = 1
  1018. def cross(self,x,y):
  1019. self.x = x
  1020. self.y = y
  1021. def draw(self,x,y):
  1022. pos = self.pos[:]
  1023. #print("draw",x,y,pos)
  1024. pos[0] += x
  1025. pos[1] += y
  1026. fix_x= self.fix.x
  1027. fix_y= self.fix.y +y
  1028. if 0:# self.on:
  1029. pygame.draw.rect(window,self.rgb,pos)
  1030. # mouse grid posision
  1031. fr = font15.render("{}/{}".format(fix_x+1,fix_y) ,1, (200,200,200))
  1032. _nr = fix_y * _x + fix_x +1
  1033. fr = font15.render("{:02}".format(_nr ) ,1, (200,200,200))
  1034. window.blit(fr,(pos[0]+2,pos[1]+2 ))
  1035. window.blit(fr,(130,1))
  1036. if 1:# lupe / looking-glass / lens
  1037. __t = 60
  1038. f_x = CFG_IN["y2"]+5
  1039. rgb=[255,0,0]
  1040. pos=[400,400,160,160]
  1041. pos=[400,f_x,160,160]
  1042. #pos=[400,400,f_x,f_x]
  1043. draw_box_frame(window,rgb,pos,offset=1)
  1044. r_sub = grab(x=self._x-__t/2,y=self._y-__t/2,w=__t,h=__t)
  1045. if r_sub:
  1046. r_sub = pygame.transform.scale(r_sub,(160,160))
  1047. if r_sub: # target
  1048. window.blit(r_sub, (400,f_x))
  1049. #pos=[400+40,400+40,80,80]
  1050. pos=[400+80,400+80,80,80]
  1051. pos=[400+80,f_x+80,80,80]
  1052. draw_box_frame(window,rgb,pos,offset=3)
  1053. draw_box_frame(window,rgb,pos,offset=2)
  1054. draw_box_frame(window,rgb,pos,offset=0)
  1055. draw_box_frame(window,rgb,pos,offset=1)
  1056. # fix pos
  1057. #txt=str(pos) #"[0, 0, 0, 0]"
  1058. #fr = font15.render(txt ,1, (200,200,200))
  1059. #window.blit(fr,(10,1))
  1060. # pointer
  1061. fr = font15.render("X:{:03}".format(self._x) ,1, (200,200,200))
  1062. window.blit(fr,(10,30))
  1063. fr = font15.render("Y:{:03}".format(self._y) ,1, (200,200,200))
  1064. window.blit(fr,(10,40))
  1065. if 1: #self._x > 30 and self._y > 230:
  1066. # pointer
  1067. _x = self._x-INPUT_START_POS_X
  1068. _y = self._y-INPUT_START_POS_Y
  1069. rgb = [200,200,200]
  1070. if _x < 0:
  1071. rgb = [200,0,0]
  1072. fr = font40.render("X:{:03}".format(_x) ,1, rgb)
  1073. f_x = CFG_IN["y2"]+8
  1074. window.blit(fr,(100,f_x))
  1075. rgb = [200,200,200]
  1076. if _y < 0:
  1077. rgb = [200,0,0]
  1078. fr = font40.render("Y:{:03}".format(_y) ,1, rgb)
  1079. window.blit(fr,(200,f_x))
  1080. p=110
  1081. # crosshair
  1082. self.rgb = [0,0,200]
  1083. pygame.draw.line(window,self.rgb, (self.x-p,self.y) , (self.x-2,self.y),2 )
  1084. #pygame.draw.line(window,self.rgb, (self.x,self.y-p) , (self.x,self.y-2),2 )
  1085. self.rgb = [0,100,200]
  1086. pygame.draw.line(window,self.rgb, (self.x,self.y-p/3) , (self.x,self.y-2),2 )
  1087. self.rgb = [0,200,0]
  1088. pygame.draw.line(window,self.rgb, (self.x+2,self.y) , (self.x+p,self.y),2 )
  1089. pygame.draw.line(window,self.rgb, (self.x,self.y+2) , (self.x,self.y+p),2 )
  1090. self.rgb = [200,0,0]
  1091. pointer = POINTER()
  1092. NR = 0
  1093. running = True
  1094. def event():
  1095. global NR,running
  1096. for event in pygame.event.get():
  1097. #print(event.dict)
  1098. _button = None
  1099. if "button" in event.dict:
  1100. _button = event.dict["button"]
  1101. _state = None
  1102. if "state" in event.dict:
  1103. _state = event.state
  1104. _key = None
  1105. if "key" in event.dict:
  1106. _key = event.key
  1107. _pos = None
  1108. if "pos" in event.dict:
  1109. _pos = event.pos
  1110. _type = None
  1111. if "type" in event.dict:
  1112. _type = event.type
  1113. _type = event.type
  1114. _mod = None
  1115. if "mod" in event.dict:
  1116. _mod = event.mod
  1117. if 0:
  1118. print( " ")
  1119. print( "{:.02f}".format( time.time() - START ))
  1120. print("button -",_button,end="\t| ")
  1121. #print("state -",_state)
  1122. print("pos -",_pos)
  1123. print("type -",_type, end="\t| ")
  1124. print("key -",_key)
  1125. print("mod -",_mod)
  1126. try:
  1127. if _type in [5,1025]:
  1128. if _button == 1:
  1129. NR += 1
  1130. if NR > 1:
  1131. NR = 0
  1132. if _button == 3:
  1133. NR -= 1
  1134. if NR < 0:
  1135. NR = 1
  1136. if _pos:
  1137. posA = _pos
  1138. fix = find_pix(_pos[0]-40,_pos[1]-60+pm_wy)
  1139. if fix:
  1140. #pos = fix.POS(40,60+pm_wy)
  1141. pos = fix.POS() #(CFG_IN["x1"],CFG_IN["y1"])#0,0) #+pm_wy)
  1142. rgb = [0,0,0]
  1143. pointer.move(pos)
  1144. pointer.fix = fix
  1145. else:
  1146. pointer.on = 0
  1147. pointer.row_move(_pos[0],_pos[1])
  1148. pointer.cross(_pos[0],_pos[1])
  1149. if event.type == pygame.VIDEORESIZE:
  1150. window = pygame.display.set_mode((event.w, event.h), pygame.RESIZABLE)
  1151. except Exception as e:
  1152. cprint(e,color="red")
  1153. if event.type==pygame.QUIT:
  1154. global QUIT
  1155. QUIT = 1
  1156. cprint("QUIT",color="red")
  1157. running=False
  1158. #time.sleep(1)
  1159. #sys.exit()
  1160. fps = 0
  1161. fps2 = 0
  1162. frame = 0
  1163. frame2 = 0
  1164. frame_t = time.time()
  1165. frame2_t = time.time()
  1166. IP = "yyy"
  1167. vplay=[]
  1168. vplay1=0
  1169. vplay2=0
  1170. if options.videoplayer:
  1171. try:
  1172. t=options.videoplayer.split(",")
  1173. vplay=t
  1174. vplay1=t[0]
  1175. vplay2=t[1]
  1176. except:pass
  1177. def output_mask(): # oben
  1178. RGB = [0,0,50]
  1179. #RGB = [120,0,0] # test
  1180. start = 0
  1181. # oben
  1182. pygame.draw.rect(window,RGB,[0,start,MAIN_SIZE[0]+200,57]) # background
  1183. # unten
  1184. pygame.draw.rect(window,RGB,[0,start+192,MAIN_SIZE[0]+200,35]) # background
  1185. # links
  1186. pygame.draw.rect(window,RGB,[0,start+0,35,235]) # background
  1187. def input_mask(): # unten
  1188. RGB = [0,0,50]
  1189. #RGB = [120,0,110] # test
  1190. start = 227
  1191. #f_x = CFG_IN["x2"]-50
  1192. f_x = CFG_IN["y2"]+3
  1193. # oben
  1194. pygame.draw.rect(window,RGB,[0,start,MAIN_SIZE[0]+200,7]) # background
  1195. # links
  1196. pygame.draw.rect(window,RGB,[0,start,35,200]) # background
  1197. # unten
  1198. #pygame.draw.rect(window,RGB,[0,start+173,MAIN_SIZE[0]+200,198]) # background
  1199. pygame.draw.rect(window,RGB,[0,f_x,MAIN_SIZE[0]+200,198]) # background
  1200. def draw_main_overlay():
  1201. global fps,fps2
  1202. fr = font15.render("DMX-FPS: {}".format(fps) ,1, (200,0,255))
  1203. window.blit(fr,(10,2))
  1204. fr = font15.render("GUI-FPS : {}".format(fps2) ,1, (200,0,255))
  1205. window.blit(fr,(10,12))
  1206. #fr = font15.render("ip:{}".format(IP) ,1, (200,0,255))
  1207. #window.blit(fr,(100,2))
  1208. fr = font15.render("start-uni: {:}.xx dRGB".format(START_UNIV) ,1, (200,0,255))
  1209. window.blit(fr,(90,2))
  1210. fr = font15.render("gobo_ch1: {}.{:}".format(START_UNIV_A,options.gobo_ch) ,1, (200,0,255))
  1211. window.blit(fr,(210,2))
  1212. fr = font15.render("gobo_ch2: {}.{:}".format(START_UNIV_A,options.gobo_ch2) ,1, (200,0,255))
  1213. window.blit(fr,(210,12))
  1214. for i,v in enumerate(vplay):
  1215. fr = font15.render("v-play{}: {}.{:}".format(i+1,START_UNIV_A,v) ,1, (200,0,255))
  1216. window.blit(fr,(300,2+12*i))
  1217. try:
  1218. global pointer
  1219. # pointer
  1220. fr = font15.render("X:{:03}".format(pointer._x) ,1, (200,200,200))
  1221. window.blit(fr,(10,30))
  1222. fr = font15.render("Y:{:03}".format(pointer._y) ,1, (200,200,200))
  1223. window.blit(fr,(10,40))
  1224. except Exception as e:
  1225. print("Overlay err:",e)
  1226. def draw_marker():
  1227. # kennlinie linker rand
  1228. # limit marker INPUT AREA
  1229. rgb = [0,127,255] # orange
  1230. for CFG_OUTx in CFG_OUT: #["y1"]
  1231. f_x = CFG_OUTx["y1"]
  1232. pygame.draw.line(window,rgb,[0,f_x],[20,f_x])
  1233. f_x = CFG_OUTx["y2"]
  1234. pygame.draw.line(window,rgb,[0,f_x],[20,f_x])
  1235. if CFG_OUT:
  1236. f_x = CFG_OUT[0]["y1"]
  1237. for i,v in enumerate("OUTPUT"):
  1238. fr = font15.render(v ,1, rgb) #(200,0,255))
  1239. if v == "I":
  1240. window.blit(fr,(10+2,f_x+i*15+15))
  1241. else:
  1242. window.blit(fr,(10,f_x+i*15+15))
  1243. # kennlinie linker rand
  1244. # limit marker INPUT AREA
  1245. rgb = [255,127,0] # orange
  1246. f_x = CFG_IN["y1"]
  1247. pygame.draw.line(window,rgb,[0,f_x],[20,f_x])
  1248. f_x = CFG_IN["y2"]
  1249. pygame.draw.line(window,rgb,[0,f_x],[20,f_x])
  1250. f_x = CFG_IN["y1"]
  1251. for i,v in enumerate("INPUT"):
  1252. fr = font15.render(v ,1, rgb) #(200,0,255))
  1253. if v == "I":
  1254. window.blit(fr,(10+2,f_x+i*15+15))
  1255. else:
  1256. window.blit(fr,(10,f_x+i*15+15))
  1257. def draw_box_frame(window,rgb,pos,offset=0):
  1258. p1 = [pos[0],pos[1]]
  1259. p2 = [pos[0]+pos[2],pos[1]+pos[3]]
  1260. o = offset
  1261. _p1 = [p1[0]-o,p1[1]-o]
  1262. _p2 = [p1[0]-o,p2[1]+o]
  1263. pygame.draw.line(window,rgb,_p1,_p2) # left
  1264. _p1 = [p2[0]+o,p2[1]+o]
  1265. pygame.draw.line(window,rgb,_p1,_p2) # bottom
  1266. _p2 = [p2[0]+o,p1[1]-o]
  1267. pygame.draw.line(window,rgb,_p1,_p2) # right
  1268. _p1 = [p1[0]-o,p1[1]-o]
  1269. pygame.draw.line(window,rgb,_p1,_p2) # top
  1270. def draw_frame(window,rgb,p1,p2,offset=0):
  1271. o = offset
  1272. _p1 = [p1[0]-o,p1[1]-o]
  1273. _p2 = [p1[0]-o,p2[1]+o]
  1274. #pygame.draw.line(window,rgb,_p1,_p2) # left
  1275. _p1 = [p2[0]+o,p2[1]+o]
  1276. pygame.draw.line(window,rgb,_p1,_p2) # bottom
  1277. _p2 = [p2[0]+o,p1[1]-o]
  1278. #pygame.draw.line(window,rgb,_p1,_p2) # right
  1279. _p1 = [p1[0]-o,p1[1]-o]
  1280. pygame.draw.line(window,rgb,_p1,_p2) # top
  1281. def calc_fps():
  1282. global fps,frame,frame_t
  1283. t = time.time()
  1284. if frame_t+1 < t:
  1285. fps = frame #frame_t- t #frame
  1286. frame = 1
  1287. frame_t = time.time()
  1288. def calc_fps2():
  1289. global fps2,frame2,frame2_t
  1290. t = time.time()
  1291. if frame2_t+0.1 < t:
  1292. fps2 = frame2*10 #frame_t- t #frame
  1293. frame2 = 1
  1294. frame2_t = t #time.time()
  1295. TEXT_BLOCK = []
  1296. def _create_text_block():
  1297. print("======== CREATE NEW TEXT FILE !!",text_file)
  1298. f = open(text_file,"w")
  1299. for i in range(10):
  1300. f.write("TEXT {}\n".format(i+1))
  1301. f.close()
  1302. def open_text_block():
  1303. print("======== OPEN TEXT FILE !!",text_file)
  1304. _lines = []
  1305. try:
  1306. f = open(text_file,"r")
  1307. _lines = f.readlines()
  1308. f.close()
  1309. except FileNotFoundError as e:
  1310. print("TEXT",e)
  1311. _create_text_block()
  1312. if len(_lines) <= 0:
  1313. _create_text_block()
  1314. lines = []
  1315. for l in _lines:
  1316. #print(">> ",l.strip())
  1317. lines.append(l.strip())
  1318. if len(lines) <= 10:
  1319. for i in range(10-len(lines)):
  1320. lines.append("LINE ERROR")
  1321. return lines
  1322. TEXT_BLOCK = open_text_block()
  1323. TEXT_BLOCK_TIME = time.time()
  1324. # video medialist
  1325. MEDIALIST = []
  1326. def open_medialist():
  1327. print("======== OPEN MEDIALIST DIR !!",media_list)
  1328. if not os.path.isdir(media_list):
  1329. os.system("mkdir -p {}".format(media_list))
  1330. _lines = os.listdir(media_list)
  1331. _lines.sort()
  1332. lines = ['']*25
  1333. i=0
  1334. for l in _lines:
  1335. l = l.strip()
  1336. if "_" in l:
  1337. ll = l.split("_",1)
  1338. #print(">> ",ll)
  1339. try:
  1340. lll = int(ll[0])
  1341. lines[lll] = l
  1342. except:pass
  1343. if len(lines) <= 10:
  1344. for i in range(10-len(lines)):
  1345. lines.append("")#"LINE ERROR")
  1346. return lines
  1347. MEDIALIST_TIME = time.time()
  1348. MEDIALIST = open_medialist()
  1349. # ===== GUI =========
  1350. def draw_circle(surface,color, pos, radius):
  1351. x,y=pos
  1352. pygame.gfxdraw.aacircle(surface, int(x), int(y), radius-1, color)
  1353. pygame.gfxdraw.filled_circle(surface, int(x), int(y), radius-1, color)
  1354. def rDMX(univ,dmx):
  1355. return univ*512+dmx
  1356. def generate_grid(mapping=0):
  1357. _log = []
  1358. #if PIXEL_MAPPING:
  1359. # log = open(grid_file,"w")
  1360. head = "i,univ,dmx,x,y,ch\n"
  1361. head = "i,univ,dmx,ch\n"
  1362. head = "univ,dmx,x,y,ch\n"
  1363. head = "nr,id,info\n"
  1364. print("csv:",head)
  1365. _log.append(head)
  1366. dmx = 1-1
  1367. ch = 4
  1368. y=0
  1369. x=0
  1370. for i in range((_y)*(_x)):
  1371. #if x > _x and i%_x == 0:
  1372. if x > 8 and i%8 == 0:
  1373. #print("--> -->")
  1374. x=0
  1375. y+=1
  1376. _univ = int(dmx/512)
  1377. _dmx = dmx - (_univ)*512
  1378. pos=[x,y]
  1379. line="{},{},x\n".format(i+1,i+1)
  1380. _log.append(line)
  1381. dmx += ch
  1382. x+=1
  1383. if mapping and PIXEL_MAPPING:
  1384. print("CREATE NEW PIXELMAP FILE !!",grid_file)
  1385. log = open(grid_file,"w")
  1386. log.writelines(_log)
  1387. log.close()
  1388. return _log[:] #GRID
  1389. def init_grid(mapping=0,_x=4,_y=4,_xp=0,_yp=0,start=0,name="init_gird"):
  1390. if mapping and PIXEL_MAPPING:
  1391. try:
  1392. log = open(grid_file,"r")
  1393. except:
  1394. generate_grid(mapping=mapping)
  1395. log = open(grid_file,"r")
  1396. lines = log.readlines()
  1397. else:
  1398. lines = generate_grid()
  1399. GRID = []
  1400. y=0
  1401. x=0
  1402. print("CSV header",[lines[0]],[PIXEL_MAPPING,"len:",len(lines),"start:",start,name])
  1403. for i,line in enumerate(lines[1+start:]): #exclude first line
  1404. #print("rcsv",[line])
  1405. line = line.strip()
  1406. line = line.split(",") # csv
  1407. if i >= _x and i%_x == 0:
  1408. x=0
  1409. y+=1
  1410. if y >= _y:
  1411. break
  1412. _id = int(line[1])
  1413. pos = [x+_xp,y+_yp]
  1414. f = Fix(_id,pos,block) #pos,univ,dmx,ch)
  1415. GRID.append(f)
  1416. x+=1
  1417. return GRID
  1418. def find_pix(x,y):
  1419. global GRID
  1420. for fix in GRID:
  1421. X = 0
  1422. Y = 0
  1423. pos = fix.POS()
  1424. if x > pos[0] and x < pos[0]+pos[2]:
  1425. X = 1
  1426. if y > pos[1] and y < pos[1]+pos[3]:
  1427. Y = 1
  1428. if X and Y:
  1429. return fix
  1430. GRID = []
  1431. GRID_A = []
  1432. NR = 0
  1433. START_UNIV_A=1
  1434. START_UNIV=2
  1435. if options.start_univ:
  1436. try:
  1437. START_UNIV=int(options.start_univ)
  1438. except Exception as e:
  1439. print("Exception START UNIV",e)
  1440. gobo_ch=1
  1441. if options.gobo_ch:
  1442. try:
  1443. gobo_ch=int(options.gobo_ch)
  1444. except Exception as e:
  1445. print("Exception gobo_ch",e)
  1446. if gobo_ch <= 0:
  1447. gobo_ch = 1
  1448. def grab(x=55,y=55,w=60,h=60):
  1449. crop = None
  1450. rect = pygame.Rect(x, y, w, h)
  1451. try:
  1452. sub = window.subsurface(rect)
  1453. crop = pygame.Surface((w,h))
  1454. crop.blit(sub, (0,0))
  1455. except ValueError as e:
  1456. pass
  1457. return crop
  1458. vpu_wall_txt="""---,quelle,,---,ziel,---,---
  1459. out,x,y,ang,row,col,info
  1460. Wall1,0,0,0,1,1,
  1461. Wall1,0,0,0,2,2,
  1462. Wall1,0,0,0,3,3,
  1463. Wall1,0,0,0,4,4,
  1464. Wall1,0,0,0,5,5,
  1465. Wall1,0,0,0,6,6,
  1466. Wall1,0,0,0,7,7,
  1467. ,,,,,,
  1468. Wall2,0,0,0,4,1,----
  1469. Wall2,0,0,0,5,2,
  1470. Wall2,4,4,0,6,3,
  1471. Wall2,0,0,0,7,4,
  1472. Wall2,0,0,0,8,5,
  1473. Wall2,0,0,0,9,6,
  1474. ,,,,,,
  1475. ,,,,,,
  1476. Wall3,64,48,0,12,1,----
  1477. Wall3,64,64,0,12,2,
  1478. Wall3,64,80,0,12,3,
  1479. Wall3,64,96,0,12,4,
  1480. Wall3,64,112,0,12,5,
  1481. Wall3,64,128,0,12,6,"""
  1482. def create_vpu_wall_conf():
  1483. f=open(vpu_wall_conf_file,"w")
  1484. f.write(vpu_wall_txt)
  1485. f.close()
  1486. print("CREATE VPU CONFIG !")
  1487. wall_data = []
  1488. _last_wall_config_time = time.time()
  1489. def read_wall_pix(init=0):
  1490. global _last_wall_config_time
  1491. global wall_data, NR
  1492. grid = []
  1493. #if not NR and init==0:
  1494. # return
  1495. ok = 0
  1496. if init:
  1497. ok = 1
  1498. if NR:
  1499. if time.time()-_last_wall_config_time > 3:
  1500. ok = 1
  1501. else:
  1502. if time.time()-_last_wall_config_time > 10:
  1503. ok = 1
  1504. if not ok:
  1505. return
  1506. print("read_wall_pix",vpu_wall_conf_file)
  1507. _last_wall_config_time = time.time()
  1508. if not os.path.isfile(vpu_wall_conf_file):
  1509. create_vpu_wall_conf()
  1510. f=open(vpu_wall_conf_file,"r")
  1511. lines = f.readlines()
  1512. for i,line in enumerate(lines):
  1513. line = line.strip()
  1514. if not line:
  1515. continue
  1516. line = line.split(",")
  1517. if not line[0]:
  1518. continue
  1519. #print(i,line)
  1520. if len(line) >= 3:
  1521. _l = []
  1522. for i in line:
  1523. try:
  1524. _l.append(int(i))
  1525. except Exception as e:
  1526. _l.append(i)
  1527. grid.append(_l)
  1528. #for i,v in enumerate(grid):
  1529. # print(i,v)
  1530. wall_data = grid
  1531. read_wall_pix(init=1)
  1532. def reshape2(GRID,GRID_OUT,_x,_y,name="GRID_Z"):
  1533. _w = 16
  1534. _h = 16
  1535. from_x_min = INPUT_START_POS_X
  1536. from_y_min = INPUT_START_POS_Y
  1537. target_x = 40 # min
  1538. target_y = 60 # min
  1539. ang=0
  1540. #read_block_pix()
  1541. read_wall_pix()
  1542. _wall_data = wall_data[:]
  1543. for i,_wall in enumerate(_wall_data):
  1544. #print(_wall)
  1545. if len(_wall) <=6:
  1546. continue
  1547. try:
  1548. if type(_wall[1]) is str:
  1549. continue
  1550. if type(_wall[2]) is str:
  1551. continue
  1552. if type(_wall[3]) is str:
  1553. continue
  1554. if type(_wall[4]) is str:
  1555. continue
  1556. if type(_wall[5]) is str:
  1557. continue
  1558. from_x=from_x_min+_wall[1]#*_w
  1559. from_y=from_y_min+_wall[2]#*_h
  1560. _a= _wall[3]
  1561. ang=0
  1562. if _a < 0:
  1563. ang=0
  1564. elif _a > 0 and _a <= 90:
  1565. ang = 90
  1566. elif _a > 90 and _a <= 180:
  1567. ang = 180
  1568. elif _a > 180 and _a <= 270:
  1569. ang = 270
  1570. target_x=40+(_wall[4]-1)*_w
  1571. target_y=60+(_wall[5]-1)*_h
  1572. sub = grab(from_x,from_y,_w,_h)
  1573. if sub:
  1574. sub = pygame.transform.rotate(sub,ang)
  1575. window.blit(sub,(target_x,target_y))
  1576. except Exception as e:
  1577. cprint(" ",_wall,color="red")
  1578. cprint("WALL err:",e,color="red")
  1579. def reload_grid():
  1580. print("==== reload_grid")
  1581. global GRID
  1582. global GRID_A
  1583. try:
  1584. GRID = init_grid(_x=_x,_y=_y,name="GRID") #init_gird()
  1585. GRID_A = init_grid(_x=8,_y=16,mapping=1,name="GRID_A") #init_gird()
  1586. except Exception as e:
  1587. cprint("Except: grid re init",e,color="red")
  1588. def draw_kachel_nr(): #GRID,_x=0,_y=0):
  1589. if not NR:
  1590. return
  1591. n = 0
  1592. _max_row = 40
  1593. _y=0
  1594. for i in range(8): # ROW / ZEILEN -> ->
  1595. _x=0
  1596. OUT_COUNT = len(CFG_OUT)
  1597. for j in range(8*OUT_COUNT): # COLUMS / SPALTEN | |
  1598. pygame.draw.rect(window,[10,20,10],[40+_x+2,60+_y+2,14,9]) #background
  1599. _j=j
  1600. fr = font12.render("{}:{}".format(_j+1,i+1) ,1, (200,200,55))
  1601. window.blit(fr,(40+_x+2,60+_y+2))
  1602. _x+=16 # pix
  1603. _y +=16 # pix
  1604. def draw_counter(COUNTER):
  1605. for count in COUNTER:
  1606. cpan = 0
  1607. ctilt = 0
  1608. cr=255
  1609. cg=255
  1610. cb=255
  1611. csize=10
  1612. cdim=0
  1613. k = "DIM"
  1614. if k in count:
  1615. cdim = int(count[k])
  1616. k = "RED"
  1617. if k in count:
  1618. cr = int(count[k])
  1619. k = "GREEN"
  1620. if k in count:
  1621. cg = int(count[k])
  1622. k = "BLUE"
  1623. if k in count:
  1624. cb = int(count[k])
  1625. k = "SIZE"
  1626. if k in count:
  1627. csize = int(count[k]) #/60*p)
  1628. if csize < 5:
  1629. csize = 5
  1630. k = "PAN"
  1631. if k in count:
  1632. cpan = int(count[k])/255*(block[0] *(_x))
  1633. #cpan = int(cpan * 1.2)
  1634. cpan = int(cpan)
  1635. k = "TILT"
  1636. if k in count:
  1637. ctilt = int(count[k])/255*(block[1] *(_y))
  1638. #ctilt = int(cpan * 1.2)
  1639. ctilt = int(ctilt)
  1640. ddim = cdim/255
  1641. if "DIM" in count and count["DIM"] > 0:
  1642. tmp_font = pygame.font.SysFont("freemonobold",int(p/100*csize))
  1643. rgb =(int(cr*ddim),int(cg*ddim),int(cb*ddim),cdim)
  1644. _sec = count["_SEC"]
  1645. try:
  1646. _sec = int(count["_SEC"])
  1647. except:
  1648. pass
  1649. if type(_sec) is int:
  1650. #print(_sec)
  1651. if _sec <= 60:
  1652. fr = tmp_font.render("{:0}".format(_sec) ,1, rgb)
  1653. else:
  1654. _xx = time.strftime("%M:%S",time.localtime(_sec))
  1655. #print("_xx",_xx)
  1656. fr = tmp_font.render("{}".format(_xx) ,1, rgb)
  1657. else:
  1658. fr = tmp_font.render("{}".format((count["_SEC"])) ,1, rgb)
  1659. fr_r = fr.get_rect(center=(40+cpan-(block[0]),60+ctilt+pm_wy))
  1660. pygame.draw.rect(window,[0,0,0],fr_r)
  1661. window.blit(fr,fr_r)
  1662. def video_overlay_draw(wn=None,lines=["line1","line2"],i=0):
  1663. # overlay
  1664. pygame.draw.rect(wn,[255,200,0],[5,MAIN_SIZE[1]-(i+1)*35,380,28])
  1665. font15 = pygame.font.SysFont("freemonobold",17)
  1666. rgb = [255,100,0]
  1667. pygame.draw.rect(wn,rgb,[5,MAIN_SIZE[1]-(i+1)*35,200,13])
  1668. _line = lines[0]
  1669. fr = font15.render(_line ,1, (0,0,0))
  1670. wn.blit(fr,(10,MAIN_SIZE[1]-(i+1)*35))
  1671. _line = lines[1]
  1672. fr = font15.render(_line ,1, (0,0,0))
  1673. wn.blit(fr,(10,MAIN_SIZE[1]-(i+1)*35+15))
  1674. #_line = lines[2]
  1675. #fr = font15.render(_line ,1, (0,0,0))
  1676. #wn.blit(fr,(75,MAIN_SIZE[1]-(i+1)*35+15))
  1677. def draw_all_video_overlay(VIDEO):
  1678. global videplayer
  1679. i=0
  1680. for count in VIDEO:
  1681. video1 = videoplayer[i]
  1682. #video1.overlay_draw(window,"run") # old
  1683. lines = video1._overlay_text()
  1684. video_overlay_draw(wn=window,lines=lines,i=i)
  1685. i += 1
  1686. def del_all_video():
  1687. global videplayer
  1688. i = 0
  1689. print()
  1690. cprint("del_all_video")
  1691. for video in videoplayer:
  1692. cprint("- del video",video)
  1693. video._del()
  1694. def draw_all_video(VIDEO):
  1695. global videplayer
  1696. i = 0
  1697. # set DMX-VALUE to videoplayer Object
  1698. for count in VIDEO:
  1699. cpan = 0
  1700. ctilt = 0
  1701. cr=255
  1702. cg=255
  1703. cb=255
  1704. csize=10
  1705. cang=0
  1706. cdim=0
  1707. video1 = videoplayer[i]
  1708. k = "VIDEO"
  1709. if k in count:
  1710. #video1.select_video(count[k])
  1711. play_nr = int(count[k]/10)
  1712. if play_nr != video1._media_nr:
  1713. print( "+ + + + + + + + + + +", play_nr , video1._media_nr ,str(video1))
  1714. _vid = video1._id
  1715. _cdmx = video1.dmx
  1716. del_video1 = video1
  1717. video1 = PixelMedia(cdmx,_id=_vid)
  1718. video1.select_video(count[k])
  1719. videoplayer[i] = video1
  1720. del_video1._del()
  1721. del del_video1
  1722. k = "DIM"
  1723. if k in count:
  1724. cdim = int(count[k])
  1725. #video1.dim = cdim
  1726. #if i == 0:
  1727. # print(i,cdim)
  1728. k = "ANG"
  1729. if k in count:
  1730. cang = int(count[k])
  1731. k = "SIZE"
  1732. if k in count:
  1733. csize = int(count[k]/16*p)
  1734. if csize < 5:
  1735. csize = 5
  1736. k = "PAN"
  1737. cpan_max = block[0] *(_x) #+block[0]
  1738. if k in count:
  1739. cpan = int(count[k]) / 255*cpan_max
  1740. cpan = int(cpan)
  1741. k = "TILT"
  1742. ctilt_max = block[1] *(_y) #+block[1]
  1743. if k in count:
  1744. ctilt = int(count[k]) / 255*ctilt_max
  1745. ctilt = int(ctilt)
  1746. k = "_reset"
  1747. if k in count:
  1748. if count[k]:
  1749. count[k] = 0
  1750. video1.restart()
  1751. k = "_RUN"
  1752. if k in count:
  1753. video1._run = count[k]
  1754. #video1.pos
  1755. #video1.x=40+0+cpan
  1756. #video1.y=60+0+pm_wy+ctilt
  1757. x=CFG_IN["x1"]+cpan
  1758. y=CFG_IN["y1"]+ctilt
  1759. scale = int((csize))
  1760. angle = int(360-(cang))
  1761. video1.update_dmx(x,y,scale,angle,cdim)
  1762. if cdim:
  1763. video1.next()
  1764. i += 1
  1765. # draw
  1766. i=0
  1767. for count in VIDEO:
  1768. video1 = videoplayer[i]
  1769. video1.draw(window) #,x=0,y=0)
  1770. i+=1
  1771. def counter_dmx(COUNTER,dataA):
  1772. for count in COUNTER:
  1773. cDMX=count["DMX"]-1
  1774. try:
  1775. count["DIM"] = dataA[cDMX]
  1776. count["PAN"] = dataA[cDMX+1]
  1777. count["TILT"] = dataA[cDMX+2]
  1778. count["CONTROL"] = dataA[cDMX+3]
  1779. count["SIZE"] = dataA[cDMX+4]
  1780. count["SEC"] = dataA[cDMX+5]
  1781. count["RED"] = dataA[cDMX+6]
  1782. count["GREEN"] = dataA[cDMX+7]
  1783. count["BLUE"] = dataA[cDMX+8]
  1784. if count["CONTROL"] >= 10 and count["CONTROL"] < 20: # RESET COUNTER
  1785. count["_RUN"] = 0
  1786. count["_pause"] = 0
  1787. count["_time"] = time.time()
  1788. count["_start"] = int(count["SEC"])
  1789. count["_SEC"] = int(count["_start"])
  1790. if count["CONTROL"] >= 20 and count["CONTROL"] < 30: # PAUSE COUNTER
  1791. count["_RUN"] = 0
  1792. if count["CONTROL"] >= 30 and count["CONTROL"] < 40: # PLAY COUNTER
  1793. count["_RUN"] = 1
  1794. if count["_RUN"]:
  1795. try:
  1796. if count["_pause"] > 0:
  1797. count["_time"] += time.time()-count["_pause"]
  1798. count["_pause"] = 0
  1799. count["_SEC"] = int(count["_start"] - (time.time() - count["_time"]))
  1800. except Exception as e:
  1801. pass
  1802. else:
  1803. if count["_pause"] == 0:
  1804. count["_pause"] = time.time()
  1805. if type(count["_SEC"]) is int:
  1806. if count["_SEC"] < 0:
  1807. count["_SEC"] = 0
  1808. for ti in range(10):
  1809. #print(ti,(ti+6)*10)
  1810. if count["CONTROL"] >= (ti+6)*10 and count["CONTROL"] < (ti+7)*10:
  1811. count["_SEC"] = "----" #text 1
  1812. try:
  1813. count["_SEC"] = TEXT_BLOCK[ti]
  1814. except Exception as e:
  1815. pass
  1816. if count["CONTROL"] >= 250 and count["CONTROL"] < 256:
  1817. count["_SEC"] = "DMX:{}-{}".format(cDMX+1,cDMX+8+1)
  1818. except Exception as e:
  1819. cprint("EXC FUNC",e,count,color="red")
  1820. #print(count)
  1821. def video_dmx(VIDEO,dataA):
  1822. for count in VIDEO:
  1823. cDMX=count["DMX"]-1
  1824. try:
  1825. count["DIM"] = dataA[cDMX]
  1826. count["PAN"] = dataA[cDMX+1]
  1827. count["TILT"] = dataA[cDMX+2]
  1828. count["CONTROL"] = dataA[cDMX+3]
  1829. if count["CONTROL"] >= 10 and count["CONTROL"] < 20:
  1830. count["_reset"] = 1
  1831. if count["CONTROL"] >= 20 and count["CONTROL"] < 30:
  1832. if count["_RUN"] == 1:
  1833. print( "_RUN:0",count["DMX"]-1)
  1834. count["_RUN"] = 0
  1835. if count["CONTROL"] >= 30 and count["CONTROL"] < 40:
  1836. if count["_RUN"] == 0:
  1837. print( "_RUN:1",count["DMX"]-1)
  1838. count["_RUN"] = 1
  1839. count["SIZE"] = dataA[cDMX+4]#*2
  1840. count["SEC"] = dataA[cDMX+5]
  1841. #count["RED"] = dataA[cDMX+6]
  1842. count["VIDEO"] = dataA[cDMX+6]
  1843. #count["GREEN"] = dataA[cDMX+7]
  1844. count["ANG"] = (int(dataA[cDMX+7])/255*360)
  1845. #count["BLUE"] = dataA[cDMX+8]
  1846. except Exception as e:
  1847. cprint("VIDEOPLAYER EXCEPT FUNC",e,count,color="red")
  1848. #print(count)
  1849. def read_dmx_data(ip,ips):
  1850. ip = select_ip(ips,univ=START_UNIV)
  1851. IP = ip
  1852. data = read_dmx(ip)
  1853. ip = select_ip(ips,univ=START_UNIV+1)
  1854. data3 = read_dmx(ip)
  1855. data.extend(data3)
  1856. ip = select_ip(ips,univ=START_UNIV+2)
  1857. data3 = read_dmx(ip)
  1858. data.extend(data3)
  1859. ip = select_ip(ips,univ=START_UNIV+3)
  1860. data3 = read_dmx(ip)
  1861. data.extend(data3)
  1862. if options.dual_vpu:
  1863. ip = select_ip(ips,univ=START_UNIV+4)
  1864. data3 = read_dmx(ip)
  1865. data.extend(data3)
  1866. ip = select_ip(ips,univ=START_UNIV+5)
  1867. data3 = read_dmx(ip)
  1868. data.extend(data3)
  1869. return data
  1870. def set_pos(GRID,_x=0,_y=0):
  1871. for fix in GRID:
  1872. pos = fix.POS(_x,_y)#40,60+pm_wy)
  1873. for subfix in fix.sub_fix:
  1874. #subfix.dmc_calc(data)
  1875. spos = subfix.POS(_x,_y)
  1876. def draw_gobo(GRID,data,_x=0,_y=0):
  1877. i = 0
  1878. dmx = 1
  1879. h = 1
  1880. v = 1
  1881. for fix in GRID:
  1882. rgb = fix.rgb
  1883. pos = fix.POS() #CFG_IN["x1"],CFG_IN["y1"])
  1884. pygame.draw.rect(window,rgb,pos)
  1885. # DRAW SUB-FIXTURE
  1886. j = 0
  1887. for subfix in fix.sub_fix:#calc(data):
  1888. subfix.dmx_calc(data)
  1889. spos = subfix.POS() #_x,_y)#+pm_wy)
  1890. srgb = subfix.rgb
  1891. if FUNC > 10 and FUNC <= 20: # big dot
  1892. draw_circle(window,srgb,(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)),int(spos[3]/2))
  1893. elif FUNC > 20 and FUNC <= 30:#small dot
  1894. draw_circle(window,srgb,(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)),int(spos[3]/3.5))
  1895. elif FUNC > 30 and FUNC <= 40:#donut
  1896. draw_circle(window,srgb,(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)),int(spos[3]/2))
  1897. draw_circle(window,[0,0,0],(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)),int(spos[3]/3.5))
  1898. elif FUNC > 40 and FUNC <= 50: # rec with hole
  1899. pygame.draw.rect(window,srgb,spos)
  1900. draw_circle(window,[0,0,0],(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)),int(spos[3]/3.5))
  1901. elif FUNC > 50 and FUNC <= 60: # rec with big hole
  1902. pygame.draw.rect(window,srgb,spos)
  1903. draw_circle(window,[0,0,0],(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)),int(spos[3]/2))
  1904. elif FUNC > 60 and FUNC <= 70: # rec with donat
  1905. pygame.draw.rect(window,srgb,spos)
  1906. draw_circle(window,[0,0,0],(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)),int(spos[3]/2))
  1907. draw_circle(window,srgb,(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)),int(spos[3]/3.5))
  1908. elif FUNC > 70 and FUNC <= 80: # rec boarder
  1909. pygame.draw.rect(window,srgb,[spos[0]+1,spos[1]+1,spos[2]-2,spos[3]-2])
  1910. elif FUNC > 80 and FUNC <= 90: # rec big boarder
  1911. pygame.draw.rect(window,srgb,[spos[0]+2,spos[1]+2,spos[2]-4,spos[3]-4])
  1912. elif FUNC > 90 and FUNC <= 100: # rec thin line
  1913. pygame.draw.rect(window,srgb,spos)
  1914. pygame.draw.rect(window,[0,0,0],[spos[0]+1,spos[1]+1,spos[2]-2,spos[3]-2])
  1915. elif FUNC > 100 and FUNC <= 110: # rec big line
  1916. pygame.draw.rect(window,srgb,spos)
  1917. pygame.draw.rect(window,[0,0,0],[spos[0]+2,spos[1]+2,spos[2]-4,spos[3]-4])
  1918. elif FUNC > 110 and FUNC <= 120: # rec with dot
  1919. pygame.draw.rect(window,srgb,spos)
  1920. pygame.draw.rect(window,[0,0,0],[spos[0]+1,spos[1]+1,spos[2]-2,spos[3]-2])
  1921. draw_circle(window,srgb,(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)),int(spos[3]/3.5))
  1922. elif FUNC > 120 and FUNC <= 130: # rec inline
  1923. pygame.draw.rect(window,srgb,[spos[0]+2,spos[1]+2,spos[2]-4,spos[3]-4])
  1924. pygame.draw.rect(window,[0,0,0],[spos[0]+3,spos[1]+3,spos[2]-6,spos[3]-6])
  1925. elif FUNC > 130 and FUNC <= 140: # 3 dot (heart)
  1926. draw_circle(window,srgb,(spos[0]+int(spos[2]/2)+2,spos[1]+int(spos[3]/2)),int(spos[3]/3.5))
  1927. draw_circle(window,srgb,(spos[0]+int(spos[2]/2)-2,spos[1]+int(spos[3]/2)),int(spos[3]/3.5))
  1928. draw_circle(window,srgb,(spos[0]+int(spos[2]/2),spos[1]+int(spos[3]/2)+2),int(spos[3]/3.5))
  1929. else:
  1930. pygame.draw.rect(window,srgb,spos)
  1931. i += 1
  1932. def grid_label(GRID,_x=0,_y=0):
  1933. for fix in GRID:
  1934. #pos = fix.POS(_x,_y)
  1935. pos = fix.POS() #CFG_IN["x1"],CFG_IN["y1"])
  1936. rgb = fix.rgb
  1937. # draw row/col grid number
  1938. if pos[0] == 0:
  1939. fr = font12.render("{}".format(pos[1]+1) ,1, (200,200,200))
  1940. window.blit(fr,(10,pos[1]+3 ))
  1941. if pos[1] == 0:
  1942. fr = font12.render("{}".format(pos[0]+1) ,1, (200,200,200))
  1943. window.blit(fr,(pos[0]+2,35 ))
  1944. def out_frame():
  1945. rgb = [255,255,0]
  1946. rgb = [255,0,0]
  1947. for CFG_OUTx in CFG_OUT:
  1948. if CFG_OUTx["on"]:
  1949. rgb = [255,0,0]
  1950. p1 = CFG_OUTx["p1"][:]
  1951. p2 = CFG_OUTx["p2"][:]
  1952. p1[0] += 4
  1953. p2[0] -= 4
  1954. draw_frame(window,rgb,p1,p2,offset=3)
  1955. ips=[]
  1956. dataA=[]
  1957. data=[]
  1958. def dmx_raw():
  1959. global frame
  1960. frame += 1
  1961. global ips,dataA,data
  1962. ips = read_index()
  1963. # ----
  1964. ip = select_ip(ips,univ=1) # univ 1 gobo
  1965. dataA = read_dmx(ip)
  1966. # ----
  1967. data = read_dmx_data(ip,ips)
  1968. if options.countdown:
  1969. counter_dmx(COUNTER,dataA)
  1970. if len(VIDEO) > 0:
  1971. video_dmx(VIDEO,dataA)
  1972. return ips,dataA,data
  1973. def dmx_loop():
  1974. while 1:
  1975. dmx_raw()
  1976. time.sleep(1/40) # fast high cpu
  1977. if QUIT:
  1978. break
  1979. thread.start_new_thread(dmx_loop,())
  1980. def draw_output_label(CFG,value,dmx="0.0",name="GRID_XX"):
  1981. dim_raw = value
  1982. pygame.draw.rect(window,[5,5,155],[CFG["x1"]+2,CFG["y2"]+5,CFG["w"]-6,25]) # background
  1983. # GRID_A1_DIM_LABEL
  1984. fr = font15.render("Name: "+name,1, (255,255,255))
  1985. fr_r = fr.get_rect(center=(int(wx/2),int(0+pm_wy-p*0-10)))
  1986. window.blit(fr,(CFG["x1"]+4,CFG["y2"]+5))
  1987. fr = font15.render("inv-dim: "+str(dim_raw) ,1, (255,255,255))
  1988. fr_r = fr.get_rect(center=(int(wx/2),int(0+pm_wy-p*0-10)))
  1989. window.blit(fr,(CFG["x1"]+64,CFG["y2"]+20))
  1990. fr = font15.render("dmx: {}.{}".format(START_UNIV_A,dmx) ,1, (255,255,255))
  1991. window.blit(fr,(CFG["x1"]+4,CFG["y2"]+20))
  1992. def _check_dim(_dim):
  1993. dim = 255
  1994. try:
  1995. dim = int(_dim)
  1996. if dim > 255:
  1997. dim = 255
  1998. if dim <=0:
  1999. dim = 0
  2000. except:
  2001. pass
  2002. return dim
  2003. def _GRID_DIM(dim,x,y):
  2004. dim = _check_dim(dim)
  2005. dim_raw = dim*-1
  2006. s = pygame.Surface((p*8,p*8)) # the size of your rect
  2007. s.set_alpha(dim) # alpha level
  2008. s.fill((0,0,0)) # this fills the entire surface
  2009. window.blit(s, (x,y))
  2010. def GRID_DIM():
  2011. for CFG in CFG_OUT:
  2012. dim_ch = int(CFG["DMX-CH"])
  2013. dim = dataA[dim_ch-1]
  2014. _GRID_DIM(dim,x=CFG["x1"],y=CFG["y2"]-p*8)
  2015. draw_output_label(CFG,dim,dim_ch,name=CFG["name"])
  2016. def cvImageToSurface(cvImage):
  2017. if cvImage.dtype.name == 'uint16':
  2018. cvImage = (cvImage / 256).astype('uint8')
  2019. size = cvImage.shape[1::-1]
  2020. if len(cvImage.shape) == 2:
  2021. cvImage = np.repeat(cvImage.reshape(size[1], size[0], 1), 3, axis = 2)
  2022. format = 'RGB'
  2023. else:
  2024. format = 'RGBA' if cvImage.shape[2] == 4 else 'RGB'
  2025. cvImage[:, :, [0, 2]] = cvImage[:, :, [2, 0]]
  2026. surface = pygame.image.frombuffer(cvImage.flatten(), size, format)
  2027. return surface.convert_alpha() if format == 'RGBA' else surface.convert()
  2028. def create_img_meta():
  2029. out = {}
  2030. #40 235
  2031. out["pos"] = (0,0) # x,y
  2032. out["ipos"] = (0,0) # x,y
  2033. out["scale"] = 50
  2034. out["dim"] = 100
  2035. out["ang"] = 0
  2036. out["_fpath"] = '/opt/LibreLight/Xdesk/icon/'
  2037. out["fname"] = "picker.png"
  2038. out["raw_img"] = ""
  2039. out["img"] = ""
  2040. out["err"] = []
  2041. return out
  2042. def img_open(img_meta):
  2043. cprint("img_open",img_meta["fname"],"-------")
  2044. fname = img_meta["_fpath"] +"/"+ img_meta["fname"] #'/opt/LibreLight/Xdesk/icon/picker.png'
  2045. im2 = cv2.imread(fname)
  2046. width = int(im2.shape[1])
  2047. height = int(im2.shape[0])
  2048. w_max = 480
  2049. h_max = 320
  2050. #w_max = 600
  2051. #h_max = 400
  2052. w_max = 4800 # max input jpg resolution
  2053. h_max = 3200 # max input jpg resolution
  2054. if width > w_max:
  2055. h = int(height*(w_max/width))
  2056. w = w_max
  2057. im2 = cv2.resize(im2, (w,h), interpolation =cv2.INTER_LINEAR)
  2058. if height > h_max:
  2059. w = int(width*(h_max/height))
  2060. h = h_max
  2061. if w < w_max:
  2062. im2 = cv2.resize(im2, (w,h), interpolation =cv2.INTER_LINEAR)
  2063. img_meta["raw_img"] = im2
  2064. img_meta["img"] = im2
  2065. return im2
  2066. def img_jitter(img_meta):
  2067. r1=random.randint(0,3)
  2068. r2=random.randint(0,3)
  2069. img_meta["ipos"] = [r1,r2]
  2070. def img_rescale_width(img_meta, _width):
  2071. frame = img_meta["raw_img"]
  2072. width = int(frame.shape[1])
  2073. height = int(frame.shape[0])
  2074. dim = (width, height)
  2075. if 1: #width > _width:
  2076. h = int(height*( width/_width))
  2077. dim = (_width, h)
  2078. im = cv2.resize(frame, dim, interpolation =cv2.INTER_LINEAR)
  2079. else:
  2080. im = cv2.resize(frame, dim, interpolation =cv2.INTER_LINEAR)
  2081. return im
  2082. def img_rescale(img, percent=75):
  2083. frame = img
  2084. #frame = img_meta["raw_img"]
  2085. width = int(frame.shape[1] * percent/ 100)
  2086. height = int(frame.shape[0] * percent/ 100)
  2087. dim = (width, height)
  2088. return cv2.resize(frame, dim, interpolation =cv2.INTER_LINEAR)
  2089. def img_draw_raw(img_meta):
  2090. #img_jitter(img_meta)
  2091. pos = img_meta["pos"]
  2092. ipos = img_meta["ipos"]
  2093. im2 = img_meta["img"]
  2094. dim = img_meta["dim"]
  2095. im2 = cvImageToSurface(im2)
  2096. w2 = int(im2.get_width()/2)
  2097. h2 = int(im2.get_height()/2)
  2098. x=pos[0]+ipos[0]
  2099. y=pos[1]+ipos[1]
  2100. window.blit(im2, (x-w2,y-h2))
  2101. img_meta_a = create_img_meta()
  2102. count_tilt = 0
  2103. def main():
  2104. global IP
  2105. global GRID
  2106. global GRID_A
  2107. global FUNC
  2108. global count_tilt
  2109. global TEXT_BLOCK
  2110. global TEXT_BLOCK_TIME
  2111. global MEDIALIST
  2112. global MEDIALIST_TIME
  2113. global dataA
  2114. global frame2
  2115. global runnung
  2116. reload_grid()
  2117. s=time.time()
  2118. r = ""
  2119. IP = "xx"
  2120. while running:
  2121. if TEXT_BLOCK_TIME+5 < time.time():
  2122. TEXT_BLOCK = open_text_block()
  2123. TEXT_BLOCK_TIME = time.time()
  2124. if MEDIALIST_TIME+6 < time.time():
  2125. MEDIALIST = open_medialist()
  2126. MEDIALIST_TIME = time.time()
  2127. pygame.display.flip()
  2128. set_pos(GRID,_x=CFG_IN["x1"],_y=CFG_IN["y1"])
  2129. event()
  2130. window.fill((10,0,30))
  2131. calc_fps()
  2132. calc_fps2()
  2133. # GRID loop
  2134. try:
  2135. FUNC = dataA[gobo_ch-1]
  2136. FUNC2 = FUNC
  2137. except Exception as e:
  2138. print("EXC FUNC",e)
  2139. draw_gobo(GRID,data) #,_x=CFG_IN["x1"],_y=CFG_IN["y1"])
  2140. grid_label(GRID,_x=CFG_IN["x1"],_y=CFG_IN["y1"])
  2141. if VIDEO:
  2142. draw_all_video(VIDEO)
  2143. if options.countdown:
  2144. draw_counter(COUNTER)
  2145. # output background mask
  2146. _w = 8*16
  2147. if len(out_idim):
  2148. _w = len(out_idim)*8*16
  2149. pygame.draw.rect(window,[0,0,0],[35,57,_w+16,135]) # background
  2150. pointer.draw(0,pm_wy) #wy
  2151. spos = [0,0,0,0]
  2152. if PIXEL_MAPPING >= 1:
  2153. #try:
  2154. if options.dual_vpu:
  2155. GRID_X = GRID_A[8*8:]
  2156. xx = p*8
  2157. reshape2(GRID,GRID_A,CFG_OUT[0]["x1"],CFG_OUT[0]["y1"],name="GRID_A1") #start pos
  2158. out_frame()
  2159. # OUTPUT -> MAPING
  2160. draw_kachel_nr()
  2161. input_mask() # mask background
  2162. output_mask() # mask background
  2163. GRID_DIM() # overlay
  2164. if VIDEO:
  2165. draw_all_video_overlay(VIDEO)
  2166. draw_main_overlay()
  2167. draw_marker()
  2168. pointer.draw(0,pm_wy) #wy
  2169. pygame.display.flip()
  2170. clock.tick(25)
  2171. if 'SDL_VIDEO_WINDOW_POS' in os.environ:
  2172. del os.environ['SDL_VIDEO_WINDOW_POS'] #= '%i,%i' % (200,164)
  2173. frame2 += 1
  2174. if __name__ == "__main__":
  2175. try:
  2176. main()
  2177. finally:
  2178. del_all_video()