mirror of https://github.com/python/cpython
269 lines
5.6 KiB
Python
Executable File
269 lines
5.6 KiB
Python
Executable File
#! /ufs/guido/bin/sgi/python
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import sys
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import audio
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import stdwin
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import string
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import getopt
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from stdwinevents import *
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from Buttons import *
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from Sliders import *
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#from Soundogram import Soundogram
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from VUMeter import VUMeter
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from WindowParent import WindowParent, MainLoop
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from HVSplit import HSplit, VSplit
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class TimeOutToggleButton(ToggleButton):
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def define(self, parent):
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self = ToggleButton.define(self, parent)
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self.parent.need_timer(self)
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self.timer_hook = 0
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return self
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def timer(self):
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if self.timer_hook:
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self.timer_hook(self)
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K = 1024
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BUFSIZE = 30*8*K
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Rates = [0, 32*K, 16*K, 8*K]
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Magics = ['', '0032', '0016', '0008']
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class Struct: pass
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G = Struct()
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def main():
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#
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# Turn off scroll bars
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#
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stdwin.setdefscrollbars(0, 0)
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#
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# Set default state
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#
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G.gain = 60
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G.rate = 3
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G.nomuting = 0
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G.savefile = '@rec'
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#
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# Set default values
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#
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G.data = ''
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G.playing = 0
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G.recording = 0
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G.sogram = 0
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#
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# Parse options
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#
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optlist, args = getopt.getopt(sys.argv[1:], 'mdg:r:')
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#
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for optname, optarg in optlist:
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if 0: # (So all cases start with elif)
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pass
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elif optname == '-d':
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G.debug = 1
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elif optname == '-g':
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G.gain = string.atoi(optarg)
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if not (0 < G.gain < 256):
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raise optarg.error, '-g gain out of range'
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elif optname == '-m':
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G.nomuting = (not G.nomuting)
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elif optname == '-r':
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G.rate = string.atoi(optarg)
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if not (1 <= G.rate <= 3):
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raise optarg.error, '-r rate out of range'
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#
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if args:
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G.savefile = args[0]
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#
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# Initialize the sound package
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#
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audio.setoutgain(G.nomuting * G.gain) # Silence the speaker
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audio.setrate(G.rate)
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#
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# Create the WindowParent and VSplit
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#
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G.window = WindowParent().create('Recorder', (0, 0))
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w = G.vsplit = VSplit().create(G.window)
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#
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# VU-meter
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#
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G.vubtn = VUMeter().define(w)
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#
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# Radiobuttons for rates
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#
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r1btn = RadioButton().definetext(w, '32 K/sec')
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r1btn.on_hook = rate_hook
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r1btn.rate = 1
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#
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r2btn = RadioButton().definetext(w, '16 K/sec')
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r2btn.on_hook = rate_hook
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r2btn.rate = 2
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#
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r3btn = RadioButton().definetext(w, '8 K/sec')
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r3btn.on_hook = rate_hook
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r3btn.rate = 3
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#
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radios = [r1btn, r2btn, r3btn]
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r1btn.group = r2btn.group = r3btn.group = radios
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for r in radios:
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if r.rate == G.rate: r.select(1)
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#
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# Other controls
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#
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G.recbtn = TimeOutToggleButton().definetext(w, 'Record')
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G.recbtn.on_hook = record_on_hook
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G.recbtn.timer_hook = record_timer_hook
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G.recbtn.off_hook = record_off_hook
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#
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G.mutebtn = CheckButton().definetext(w, 'Mute')
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G.mutebtn.select(not G.nomuting)
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G.mutebtn.hook = mute_hook
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#
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G.playbtn = TimeOutToggleButton().definetext(w, 'Playback')
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G.playbtn.on_hook = play_on_hook
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G.playbtn.timer_hook = play_timer_hook
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G.playbtn.off_hook = play_off_hook
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#
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G.gainbtn = ComplexSlider().define(w)
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G.gainbtn.settexts(' Volume: ', ' ')
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G.gainbtn.setminvalmax(0, G.gain, 255)
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G.gainbtn.sethook(gain_hook)
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#
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G.sizebtn = Label().definetext(w, `len(G.data)` + ' bytes')
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#
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#G.showbtn = PushButton().definetext(w, 'Sound-o-gram...')
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#G.showbtn.hook = show_hook
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#
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G.savebtn = PushButton().definetext(w, 'Save...')
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G.savebtn.hook = save_hook
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#
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G.quitbtn = PushButton().definetext(w, 'Quit')
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G.quitbtn.hook = quit_hook
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G.playbtn.enable(0)
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G.savebtn.enable(0)
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#G.showbtn.enable(0)
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start_vu()
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G.window.realize()
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#
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# Event loop
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#
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MainLoop()
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# XXX Disabled...
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def show_hook(self):
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savetext = self.text
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self.settext('Be patient...')
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close_sogram()
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stdwin.setdefwinsize(400, 300)
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win = stdwin.open('Sound-o-gram')
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G.sogram = Soundogram().define(win, G.data)
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win.buttons = [G.sogram]
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self.settext(savetext)
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def close_sogram():
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if G.sogram:
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# Break circular references
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G.sogram.win.buttons[:] = []
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del G.sogram.win
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G.sogram = 0
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def mute_hook(self):
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G.nomuting = (not self.selected)
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audio.setoutgain(G.nomuting * G.gain)
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def rate_hook(self):
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G.rate = self.rate
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audio.setrate(G.rate)
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def record_on_hook(self):
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stop_vu()
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close_sogram()
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audio.setrate(G.rate)
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audio.setoutgain(G.nomuting * G.gain)
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audio.start_recording(BUFSIZE)
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G.recording = 1
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G.playbtn.enable(0)
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G.window.settimer(10 * BUFSIZE / Rates[G.rate])
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def record_timer_hook(self):
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if G.recording:
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if audio.poll_recording():
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self.hilite(0)
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record_off_hook(self)
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else:
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self.parent.settimer(5)
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def record_off_hook(self):
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if not G.recording:
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return
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G.data = audio.stop_recording()
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G.recording = 0
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G.sizebtn.settext(`len(G.data)` + ' bytes')
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audio.setoutgain(G.nomuting * G.gain)
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G.playbtn.enable((len(G.data) > 0))
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G.savebtn.enable((len(G.data) > 0))
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#G.showbtn.enable((len(G.data) > 0))
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G.window.settimer(0)
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start_vu()
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def play_on_hook(self):
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stop_vu()
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audio.setrate(G.rate)
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audio.setoutgain(G.gain)
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audio.start_playing(G.data)
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G.playing = 1
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G.recbtn.enable(0)
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G.window.settimer(max(10 * len(G.data) / Rates[G.rate], 1))
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def play_timer_hook(self):
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if G.playing:
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if audio.poll_playing():
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self.hilite(0)
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play_off_hook(self)
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else:
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self.parent.settimer(5)
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def play_off_hook(self):
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if not G.playing:
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return
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x = audio.stop_playing()
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G.playing = 0
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audio.setoutgain(G.nomuting * G.gain)
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G.recbtn.enable(1)
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G.window.settimer(0)
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start_vu()
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def gain_hook(self):
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G.gain = self.val
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if G.playing or G.nomuting: audio.setoutgain(G.gain)
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def save_hook(self):
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if not G.data:
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stdwin.fleep()
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else:
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prompt = 'Store sampled data on file: '
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try:
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G.savefile = stdwin.askfile(prompt, G.savefile, 1)
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except KeyboardInterrupt:
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return
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try:
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fp = open(G.savefile, 'w')
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fp.write(Magics[G.rate] + G.data)
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except:
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stdwin.message('Cannot create ' + file)
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def stop_vu():
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G.vubtn.stop()
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def start_vu():
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G.vubtn.start()
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def quit_hook(self):
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G.window.delayed_destroy()
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try:
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main()
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finally:
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audio.setoutgain(0)
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