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$ amodem-cli send -vv -c 'pactl set-sink-volume @DEFAULT_SINK@' will set speaker level to 100%. $ amodem-cli recv -vv -c 'pactl set-source-volume @DEFAULT_SOURCE@' will use "binary search", to find the best microphone gain.
194 lines
5.9 KiB
Python
Executable File
194 lines
5.9 KiB
Python
Executable File
#!/usr/bin/env python
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# PYTHON_ARGCOMPLETE_OK
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import os
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import sys
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import zlib
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import logging
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import argparse
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if sys.version_info.major == 2:
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_stdin = sys.stdin
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_stdout = sys.stdout
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else:
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_stdin = sys.stdin.buffer
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_stdout = sys.stdout.buffer
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try:
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import argcomplete
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except ImportError:
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argcomplete = None
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log = logging.getLogger('__name__')
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from amodem import recv, send, calib, audio
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from amodem.config import bitrates
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bitrate = os.environ.get('BITRATE', 1)
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config = bitrates.get(int(bitrate))
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class Compressor(object):
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def __init__(self, stream):
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self.obj = zlib.compressobj()
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self.stream = stream
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def read(self, size):
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while True:
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data = self.stream.read(size)
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if data:
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result = self.obj.compress(data)
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if not result: # compression is too good :)
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continue # try again (since falsy data = EOF)
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elif self.obj:
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result = self.obj.flush()
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self.obj = None
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else:
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result = '' # EOF marker
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return result
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class Decompressor(object):
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def __init__(self, stream):
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self.obj = zlib.decompressobj()
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self.stream = stream
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def write(self, data):
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self.stream.write(self.obj.decompress(bytes(data)))
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def flush(self):
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self.stream.write(self.obj.flush())
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def FileType(mode, audio_interface=None):
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def opener(fname):
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assert 'r' in mode or 'w' in mode
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if audio_interface is None and fname is None:
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fname = '-'
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if fname is None:
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assert audio_interface is not None
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if 'r' in mode:
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return audio_interface.recorder()
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if 'w' in mode:
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return audio_interface.player()
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if fname == '-':
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if 'r' in mode:
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return _stdin
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if 'w' in mode:
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return _stdout
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return open(fname, mode)
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return opener
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def main():
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fmt = ('Audio OFDM MODEM: {0:.1f} kb/s ({1:d}-QAM x {2:d} carriers) '
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'Fs={3:.1f} kHz')
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description = fmt.format(config.modem_bps / 1e3, len(config.symbols),
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config.Nfreq, config.Fs / 1e3)
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interface = audio.Interface('libportaudio.so', config=config)
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p = argparse.ArgumentParser(description=description)
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subparsers = p.add_subparsers()
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def wrap(cls, stream, enable):
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return cls(stream) if enable else stream
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# Modulator
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sender = subparsers.add_parser(
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'send', help='modulate binary data into audio signal.')
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sender.add_argument(
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'-i', '--input', help='input file (use "-" for stdin).')
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sender.add_argument(
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'-o', '--output', help='output file (use "-" for stdout).'
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' if not specified, `aplay` tool will be used.')
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sender.add_argument(
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'-c', '--calibrate', nargs='?', default=False)
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sender.set_defaults(
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main=lambda config, args: send.main(
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config, src=wrap(Compressor, args.src, args.zip), dst=args.dst
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),
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calib=lambda config, args: calib.send(
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config=config, dst=args.dst, volume_cmd=args.calibrate
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),
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input_type=FileType('rb'),
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output_type=FileType('wb', interface)
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)
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# Demodulator
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receiver = subparsers.add_parser(
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'recv', help='demodulate audio signal into binary data.')
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receiver.add_argument(
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'-i', '--input', help='input file (use "-" for stdin).'
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' if not specified, `arecord` tool will be used.')
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receiver.add_argument(
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'-o', '--output', help='output file (use "-" for stdout).')
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receiver.add_argument(
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'-c', '--calibrate', nargs='?', default=False)
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receiver.add_argument(
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'-d', '--dump', type=FileType('wb'),
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help='Filename to save recorded audio')
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receiver.add_argument(
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'--plot', action='store_true', default=False,
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help='plot results using pylab module')
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receiver.set_defaults(
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main=lambda config, args: recv.main(
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config, src=args.src, dst=wrap(Decompressor, args.dst, args.zip),
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pylab=args.pylab, dump_audio=args.dump
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),
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calib=lambda config, args: calib.recv(
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config=config, src=args.src, verbose=args.verbose,
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volume_cmd=args.calibrate
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),
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input_type=FileType('rb', interface),
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output_type=FileType('wb')
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)
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for sub in subparsers.choices.values():
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sub.add_argument('-z', '--zip', default=False, action='store_true')
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g = sub.add_mutually_exclusive_group()
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g.add_argument('-v', '--verbose', default=0, action='count')
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g.add_argument('-q', '--quiet', default=False, action='store_true')
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if argcomplete:
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argcomplete.autocomplete(p)
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with interface:
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args = p.parse_args()
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if args.verbose == 0:
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level, format = 'INFO', '%(message)s'
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elif args.verbose == 1:
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level, format = 'DEBUG', '%(message)s'
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elif args.verbose >= 2:
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level, format = ('DEBUG', '%(asctime)s %(levelname)-10s '
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'%(message)-100s '
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'%(filename)s:%(lineno)d')
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if args.quiet:
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level, format = 'WARNING', '%(message)s'
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logging.basicConfig(level=level, format=format)
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log.info('Interface "%s" loaded succesfully', interface.version)
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# Parsing and execution
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log.debug(description)
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args.pylab = None
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if getattr(args, 'plot', False):
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import pylab
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args.pylab = pylab
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args.src = args.input_type(args.input)
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args.dst = args.output_type(args.output)
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if args.calibrate is False:
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return args.main(config=config, args=args)
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else:
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args.calib(config=config, args=args)
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if __name__ == '__main__':
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success = main()
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sys.exit(0 if success else 1)
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