* cdrdao: eject empty disc while reading toc
- introduce EjectError
- move {eject,load,unmount}_device to program.utils
* remove duplicated eject
* remove unnecessary ejection
* add --eject option
349 lines
9.5 KiB
Python
349 lines
9.5 KiB
Python
# -*- Mode: Python; test-case-name: morituri.test.test_common_common -*-
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# vi:si:et:sw=4:sts=4:ts=4
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# Morituri - for those about to RIP
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# Copyright (C) 2009 Thomas Vander Stichele
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# This file is part of morituri.
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#
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# morituri is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# morituri is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with morituri. If not, see <http://www.gnu.org/licenses/>.
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import os
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import os.path
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import commands
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import math
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import subprocess
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from morituri.extern import asyncsub
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import logging
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logger = logging.getLogger(__name__)
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FRAMES_PER_SECOND = 75
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SAMPLES_PER_FRAME = 588 # a sample is 2 16-bit values, left and right channel
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WORDS_PER_FRAME = SAMPLES_PER_FRAME * 2
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BYTES_PER_FRAME = SAMPLES_PER_FRAME * 4
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class EjectError(SystemError):
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"""
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Possibly ejects the drive in command.main.
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"""
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def __init__(self, device, *args):
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"""
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args is a tuple used by BaseException.__str__
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device is the device path to eject
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"""
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self.args = args
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self.device = device
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def msfToFrames(msf):
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"""
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Converts a string value in MM:SS:FF to frames.
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@param msf: the MM:SS:FF value to convert
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@type msf: str
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@rtype: int
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@returns: number of frames
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"""
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if not ':' in msf:
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return int(msf)
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m, s, f = msf.split(':')
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return 60 * FRAMES_PER_SECOND * int(m) \
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+ FRAMES_PER_SECOND * int(s) \
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+ int(f)
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def framesToMSF(frames, frameDelimiter=':'):
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f = frames % FRAMES_PER_SECOND
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frames -= f
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s = (frames / FRAMES_PER_SECOND) % 60
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frames -= s * 60
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m = frames / FRAMES_PER_SECOND / 60
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return "%02d:%02d%s%02d" % (m, s, frameDelimiter, f)
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def framesToHMSF(frames):
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# cdparanoia style
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f = frames % FRAMES_PER_SECOND
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frames -= f
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s = (frames / FRAMES_PER_SECOND) % 60
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frames -= s * FRAMES_PER_SECOND
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m = (frames / FRAMES_PER_SECOND / 60) % 60
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frames -= m * FRAMES_PER_SECOND * 60
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h = frames / FRAMES_PER_SECOND / 60 / 60
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return "%02d:%02d:%02d.%02d" % (h, m, s, f)
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def formatTime(seconds, fractional=3):
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"""
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Nicely format time in a human-readable format, like
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HH:MM:SS.mmm
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If fractional is zero, no seconds will be shown.
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If it is greater than 0, we will show seconds and fractions of seconds.
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As a side consequence, there is no way to show seconds without fractions.
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@param seconds: the time in seconds to format.
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@type seconds: int or float
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@param fractional: how many digits to show for the fractional part of
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seconds.
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@type fractional: int
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@rtype: string
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@returns: a nicely formatted time string.
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"""
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chunks = []
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if seconds < 0:
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chunks.append(('-'))
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seconds = -seconds
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hour = 60 * 60
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hours = seconds / hour
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seconds %= hour
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minute = 60
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minutes = seconds / minute
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seconds %= minute
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chunk = '%02d:%02d' % (hours, minutes)
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if fractional > 0:
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chunk += ':%0*.*f' % (fractional + 3, fractional, seconds)
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chunks.append(chunk)
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return " ".join(chunks)
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def tagListToDict(tl):
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"""
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Converts gst.TagList to dict.
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Also strips it of tags that are not writable.
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"""
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import gst
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d = {}
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for key in tl.keys():
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if key == gst.TAG_DATE:
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date = tl[key]
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d[key] = "%4d-%2d-%2d" % (date.year, date.month, date.day)
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elif key in [
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gst.TAG_AUDIO_CODEC,
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gst.TAG_VIDEO_CODEC,
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gst.TAG_MINIMUM_BITRATE,
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gst.TAG_BITRATE,
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gst.TAG_MAXIMUM_BITRATE,
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]:
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pass
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else:
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d[key] = tl[key]
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return d
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def tagListEquals(tl1, tl2):
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d1 = tagListToDict(tl1)
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d2 = tagListToDict(tl2)
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return d1 == d2
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def tagListDifference(tl1, tl2):
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d1 = tagListToDict(tl1)
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d2 = tagListToDict(tl2)
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return set(d1.keys()) - set(d2.keys())
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return d1 == d2
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class MissingDependencyException(Exception):
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dependency = None
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def __init__(self, *args):
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self.args = args
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self.dependency = args[0]
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class EmptyError(Exception):
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pass
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class MissingFrames(Exception):
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"""
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Less frames decoded than expected.
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"""
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pass
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def shrinkPath(path):
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"""
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Shrink a full path to a shorter version.
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Used to handle ENAMETOOLONG
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"""
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parts = list(os.path.split(path))
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length = len(parts[-1])
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target = 127
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if length <= target:
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target = pow(2, int(math.log(length, 2))) - 1
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name, ext = os.path.splitext(parts[-1])
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target -= len(ext) + 1
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# split on space, then reassemble
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words = name.split(' ')
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length = 0
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pieces = []
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for word in words:
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if length + 1 + len(word) <= target:
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pieces.append(word)
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length += 1 + len(word)
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else:
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break
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name = " ".join(pieces)
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# ext includes period
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parts[-1] = u'%s%s' % (name, ext)
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path = os.path.join(*parts)
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return path
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def getRealPath(refPath, filePath):
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"""
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Translate a .cue or .toc's FILE argument to an existing path.
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Does Windows path translation.
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Will look for the given file name, but with .flac and .wav as extensions.
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@param refPath: path to the file from which the track is referenced;
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for example, path to the .cue file in the same directory
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@type refPath: unicode
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@type filePath: unicode
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"""
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assert type(filePath) is unicode, "%r is not unicode" % filePath
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if os.path.exists(filePath):
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return filePath
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candidatePaths = []
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# .cue FILE statements can have Windows-style path separators, so convert
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# them as one possible candidate
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# on the other hand, the file may indeed contain a backslash in the name
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# on linux
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# FIXME: I guess we might do all possible combinations of splitting or
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# keeping the slash, but let's just assume it's either Windows
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# or linux
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# See https://thomas.apestaart.org/morituri/trac/ticket/107
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parts = filePath.split('\\')
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if parts[0] == '':
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parts[0] = os.path.sep
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tpath = os.path.join(*parts)
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for path in [filePath, tpath]:
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if path == os.path.abspath(path):
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candidatePaths.append(path)
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else:
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# if the path is relative:
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# - check relatively to the cue file
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# - check only the filename part relative to the cue file
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candidatePaths.append(os.path.join(
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os.path.dirname(refPath), path))
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candidatePaths.append(os.path.join(
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os.path.dirname(refPath), os.path.basename(path)))
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# Now look for .wav and .flac files, as .flac files are often named .wav
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for candidate in candidatePaths:
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noext, _ = os.path.splitext(candidate)
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for ext in ['wav', 'flac']:
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cpath = '%s.%s' % (noext, ext)
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if os.path.exists(cpath):
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return cpath
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raise KeyError("Cannot find file for %r" % filePath)
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def getRelativePath(targetPath, collectionPath):
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"""
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Get a relative path from the directory of collectionPath to
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targetPath.
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Used to determine the path to use in .cue/.m3u files
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"""
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logger.debug('getRelativePath: target %r, collection %r' % (
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targetPath, collectionPath))
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targetDir = os.path.dirname(targetPath)
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collectionDir = os.path.dirname(collectionPath)
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if targetDir == collectionDir:
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logger.debug('getRelativePath: target and collection in same dir')
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return os.path.basename(targetPath)
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else:
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rel = os.path.relpath(
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targetDir + os.path.sep,
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collectionDir + os.path.sep)
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logger.debug(
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'getRelativePath: target and collection in different dir, %r' % rel
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)
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return os.path.join(rel, os.path.basename(targetPath))
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class VersionGetter(object):
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"""
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I get the version of a program by looking for it in command output
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according to a regexp.
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"""
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def __init__(self, dependency, args, regexp, expander):
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"""
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@param dependency: name of the dependency providing the program
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@param args: the arguments to invoke to show the version
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@type args: list of str
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@param regexp: the regular expression to get the version
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@param expander: the expansion string for the version using the
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regexp group dict
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"""
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self._dep = dependency
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self._args = args
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self._regexp = regexp
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self._expander = expander
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def get(self):
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version = "(Unknown)"
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try:
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p = asyncsub.Popen(self._args,
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stdin=subprocess.PIPE, stdout=subprocess.PIPE,
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stderr=subprocess.PIPE, close_fds=True)
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p.wait()
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output = asyncsub.recv_some(p, e=0, stderr=1)
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vre = self._regexp.search(output)
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if vre:
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version = self._expander % vre.groupdict()
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except OSError, e:
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import errno
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if e.errno == errno.ENOENT:
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raise MissingDependencyException(self._dep)
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raise
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return version
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