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219 lines
5.2 KiB
Python
Executable File
219 lines
5.2 KiB
Python
Executable File
#! /ufs/guido/bin/sgi/python
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#! /ufs/guido/src/video/py
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# Capture a CMIF movie using the Indigo video library and board
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# Usage:
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#
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# makemovie [-q queuesize] [-t recordtime] [-a] [moviefile [audiofile]]
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# Options:
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#
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# -q queuesize : set the capture queue size (default and max 16)
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# -t recordtime : set the record time in seconds (default 5 seconds)
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# -a : record audio as well
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# moviefile : here goes the movie data (default film.video);
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# the format is documented in cmif-film.ms
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# audiofile : with -a, here goes the audio data (default film.aiff);
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# audio data is recorded in AIFF format, using the
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# input sampling rate, source and volume set by the
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# audio panel, in mono, 8 bits/sample
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# User interface:
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#
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# Start the application. Resize the window to the desired movie size.
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# Click the left mouse button to start recording (recording starts
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# when you release the mouse button). Recording time is specified by
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# the -t option (XXX this should change).
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#
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# Press ESC or select the window manager Quit or Close window option
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# to quit. (You can do this without recording -- then the output
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# files are untouched.)
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#
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# (It is possible to record more than once; but this doesn't set the
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# time stamps correctly yet, and doesn't work at all with audio. So
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# don't use.)
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# XXX To do:
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#
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# fix timestamps for second and further recordings
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# fix audio " " " " "
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# flush audio buffer when recording starts
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# make code more readable
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import sys
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sys.path.append('/ufs/guido/src/video')
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import sv, SV
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import VFile
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import gl, GL, DEVICE
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import al, AL
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import time
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import posix
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import getopt
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import string
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def main():
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QSIZE = 16
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TIME = 5
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audio = 0
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opts, args = getopt.getopt(sys.argv[1:], 'aq:t:')
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for opt, arg in opts:
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if opt == '-a':
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audio = 1
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elif opt == '-q':
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QSIZE = string.atoi(arg)
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elif opt == '-t':
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TIME = string.atoi(arg)
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if args:
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filename = args[0]
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else:
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filename = 'film.video'
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if audio:
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if args[1:]:
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audiofilename = args[1]
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else:
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audiofilename = 'film.aiff'
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gl.foreground()
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x, y = SV.PAL_XMAX / 4, SV.PAL_YMAX / 4
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print x, 'x', y
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gl.minsize(40, 30)
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gl.stepunit(8, 6)
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gl.maxsize(SV.PAL_XMAX, SV.PAL_YMAX)
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gl.keepaspect(SV.PAL_XMAX, SV.PAL_YMAX)
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win = gl.winopen(filename)
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x, y = gl.getsize()
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print x, 'x', y
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v = sv.OpenVideo()
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v.BindGLWindow(win, SV.IN_REPLACE)
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v.SetSize(x, y)
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v.BindGLWindow(win, SV.IN_REPLACE)
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v.SetCaptureFormat(SV.RGB_FRAMES)
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v.SetCaptureMode(SV.BLOCKING_CAPTURE)
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v.SetQueueSize(QSIZE)
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v.InitCapture()
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if v.GetQueueSize() != QSIZE:
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QSIZE = v.GetQueueSize()
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print 'Warning: QSIZE reduced to', QSIZE
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gl.qdevice(DEVICE.LEFTMOUSE)
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gl.qdevice(DEVICE.WINQUIT)
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gl.qdevice(DEVICE.WINSHUT)
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gl.qdevice(DEVICE.ESCKEY)
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print 'Click left mouse to start recording', TIME, 'seconds'
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ofile = None
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afile = None
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# Mouse down opens the file & freezes window
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# Mouse up starts recording frames
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while 1:
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dev, val = gl.qread()
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if dev == DEVICE.LEFTMOUSE:
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# Start recording
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if val == 1:
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# Mouse down -- preparations
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if ofile == None:
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ofile = VFile.VoutFile().init(filename)
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ofile.format = 'rgb8'
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ofile.width = x
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ofile.height = y
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ofile.writeheader()
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# XXX other format bits?
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# The window can't be resized from now
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gl.prefsize(x, y)
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gl.winconstraints()
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gl.wintitle('* ' + filename)
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if audio:
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afile = initaudio(audiofilename)
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continue
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# Mouse up -- start actual recording
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global recording, stop_recording
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if audio:
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stop_recording = 0
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recording.release()
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t0 = time.millitimer()
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v.StartCapture()
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while 1:
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t = time.millitimer() - t0
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if t >= TIME*1000:
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break
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if v.GetCaptured() > 2:
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doframe(v, ofile, x, y, t)
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v.StopCapture()
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stop_recording = 1
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while v.GetCaptured() > 0:
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doframe(v, ofile, x, y, t)
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t = time.millitimer() - t0
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gl.wintitle(filename)
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elif dev == DEVICE.REDRAW:
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# Window resize (or move)
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x, y = gl.getsize()
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print x, 'x', y
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v.SetSize(x, y)
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v.BindGLWindow(win, SV.IN_REPLACE)
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elif dev in (DEVICE.ESCKEY, DEVICE.WINQUIT, DEVICE.WINSHUT):
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# Quit
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if ofile:
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ofile.close()
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if afile:
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afile.destroy()
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posix._exit(0)
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# EndCapture dumps core...
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v.EndCapture()
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v.CloseVideo()
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gl.winclose(win)
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def doframe(v, ofile, x, y, t):
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cd, start = v.GetCaptureData()
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data = cd.interleave(x, y)
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cd.UnlockCaptureData()
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ofile.writeframe(t, data, None)
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AQSIZE = 16000
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def initaudio(filename):
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import thread, aiff
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global recording, stop_recording
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afile = aiff.Aiff().init(filename, 'w')
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afile.nchannels = AL.MONO
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afile.sampwidth = AL.SAMPLE_8
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params = [AL.INPUT_RATE, 0]
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al.getparams(AL.DEFAULT_DEVICE, params)
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print 'rate =', params[1]
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afile.samprate = params[1]
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c = al.newconfig()
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c.setchannels(AL.MONO)
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c.setqueuesize(AQSIZE)
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c.setwidth(AL.SAMPLE_8)
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aport = al.openport(filename, 'r', c)
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recording = thread.allocate_lock()
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recording.acquire()
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stop_recording = 0
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thread.start_new_thread(recorder, (afile, aport))
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return afile
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def recorder(afile, aport):
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# XXX recording more than one fragment doesn't work
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# XXX (the thread never dies)
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recording.acquire()
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while not stop_recording:
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data = aport.readsamps(AQSIZE/2)
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afile.writesampsraw(data)
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del data
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main()
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