210 lines
7.3 KiB
Python
210 lines
7.3 KiB
Python
#!/usr/bin/python
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#
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# This is a python script. You need a Python interpreter to run it.
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# For example, ActiveState Python, which exists for windows.
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#
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# Changelog drmcheck
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# 1.00 - Initial version, with code from various other scripts
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# 1.01 - Moved authorship announcement to usage section.
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#
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# Changelog epubtest
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# 1.00 - Cut to epubtest.py, testing ePub files only by Apprentice Alf
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# 1.01 - Added routine for use by Windows DeDRM
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#
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# Written in 2011 by Paul Durrant
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# Released with unlicense. See http://unlicense.org/
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#
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#############################################################################
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#
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# This is free and unencumbered software released into the public domain.
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#
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# Anyone is free to copy, modify, publish, use, compile, sell, or
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# distribute this software, either in source code form or as a compiled
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# binary, for any purpose, commercial or non-commercial, and by any
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# means.
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#
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# In jurisdictions that recognize copyright laws, the author or authors
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# of this software dedicate any and all copyright interest in the
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# software to the public domain. We make this dedication for the benefit
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# of the public at large and to the detriment of our heirs and
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# successors. We intend this dedication to be an overt act of
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# relinquishment in perpetuity of all present and future rights to this
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# software under copyright law.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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# EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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# MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
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# IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR
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# OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
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# ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
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# OTHER DEALINGS IN THE SOFTWARE.
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#
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#############################################################################
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#
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# It's still polite to give attribution if you do reuse this code.
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#
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from __future__ import with_statement
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from __future__ import print_function
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__version__ = '1.01'
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import sys, struct, os
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import zlib
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import zipfile
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import xml.etree.ElementTree as etree
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NSMAP = {'adept': 'http://ns.adobe.com/adept',
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'enc': 'http://www.w3.org/2001/04/xmlenc#'}
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# Wrap a stream so that output gets flushed immediately
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# and also make sure that any unicode strings get
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# encoded using "replace" before writing them.
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class SafeUnbuffered:
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def __init__(self, stream):
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self.stream = stream
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self.encoding = stream.encoding
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if self.encoding == None:
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self.encoding = "utf-8"
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def write(self, data):
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if isinstance(data,unicode):
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data = data.encode(self.encoding,"replace")
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self.stream.write(data)
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self.stream.flush()
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def __getattr__(self, attr):
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return getattr(self.stream, attr)
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try:
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from calibre.constants import iswindows, isosx
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except:
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iswindows = sys.platform.startswith('win')
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isosx = sys.platform.startswith('darwin')
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def unicode_argv():
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if iswindows:
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# Uses shell32.GetCommandLineArgvW to get sys.argv as a list of Unicode
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# strings.
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# Versions 2.x of Python don't support Unicode in sys.argv on
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# Windows, with the underlying Windows API instead replacing multi-byte
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# characters with '?'. So use shell32.GetCommandLineArgvW to get sys.argv
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# as a list of Unicode strings and encode them as utf-8
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from ctypes import POINTER, byref, cdll, c_int, windll
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from ctypes.wintypes import LPCWSTR, LPWSTR
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GetCommandLineW = cdll.kernel32.GetCommandLineW
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GetCommandLineW.argtypes = []
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GetCommandLineW.restype = LPCWSTR
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CommandLineToArgvW = windll.shell32.CommandLineToArgvW
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CommandLineToArgvW.argtypes = [LPCWSTR, POINTER(c_int)]
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CommandLineToArgvW.restype = POINTER(LPWSTR)
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cmd = GetCommandLineW()
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argc = c_int(0)
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argv = CommandLineToArgvW(cmd, byref(argc))
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if argc.value > 0:
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# Remove Python executable and commands if present
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start = argc.value - len(sys.argv)
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return [argv[i] for i in
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xrange(start, argc.value)]
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# if we don't have any arguments at all, just pass back script name
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# this should never happen
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return [u"epubtest.py"]
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else:
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argvencoding = sys.stdin.encoding
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if argvencoding == None:
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argvencoding = "utf-8"
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return [arg if (type(arg) == unicode) else unicode(arg,argvencoding) for arg in sys.argv]
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_FILENAME_LEN_OFFSET = 26
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_EXTRA_LEN_OFFSET = 28
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_FILENAME_OFFSET = 30
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_MAX_SIZE = 64 * 1024
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def uncompress(cmpdata):
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dc = zlib.decompressobj(-15)
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data = ''
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while len(cmpdata) > 0:
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if len(cmpdata) > _MAX_SIZE :
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newdata = cmpdata[0:_MAX_SIZE]
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cmpdata = cmpdata[_MAX_SIZE:]
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else:
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newdata = cmpdata
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cmpdata = ''
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newdata = dc.decompress(newdata)
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unprocessed = dc.unconsumed_tail
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if len(unprocessed) == 0:
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newdata += dc.flush()
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data += newdata
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cmpdata += unprocessed
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unprocessed = ''
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return data
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def getfiledata(file, zi):
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# get file name length and exta data length to find start of file data
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local_header_offset = zi.header_offset
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file.seek(local_header_offset + _FILENAME_LEN_OFFSET)
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leninfo = file.read(2)
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local_name_length, = struct.unpack('<H', leninfo)
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file.seek(local_header_offset + _EXTRA_LEN_OFFSET)
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exinfo = file.read(2)
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extra_field_length, = struct.unpack('<H', exinfo)
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file.seek(local_header_offset + _FILENAME_OFFSET + local_name_length + extra_field_length)
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data = None
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# if not compressed we are good to go
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if zi.compress_type == zipfile.ZIP_STORED:
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data = file.read(zi.file_size)
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# if compressed we must decompress it using zlib
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if zi.compress_type == zipfile.ZIP_DEFLATED:
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cmpdata = file.read(zi.compress_size)
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data = uncompress(cmpdata)
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return data
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def encryption(infile):
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# returns encryption: one of Unencrypted, Adobe, B&N and Unknown
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encryption = "Unknown"
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try:
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with open(infile,'rb') as infileobject:
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bookdata = infileobject.read(58)
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# Check for Zip
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if bookdata[0:0+2] == "PK":
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foundrights = False
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foundencryption = False
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inzip = zipfile.ZipFile(infile,'r')
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namelist = set(inzip.namelist())
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if 'META-INF/rights.xml' not in namelist or 'META-INF/encryption.xml' not in namelist:
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encryption = "Unencrypted"
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else:
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rights = etree.fromstring(inzip.read('META-INF/rights.xml'))
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adept = lambda tag: '{%s}%s' % (NSMAP['adept'], tag)
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expr = './/%s' % (adept('encryptedKey'),)
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bookkey = ''.join(rights.findtext(expr))
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if len(bookkey) == 172:
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encryption = "Adobe"
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elif len(bookkey) == 64:
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encryption = "B&N"
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else:
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encryption = "Unknown"
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except:
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traceback.print_exc()
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return encryption
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def main():
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argv=unicode_argv()
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print(encryption(argv[1]))
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return 0
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if __name__ == "__main__":
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sys.stdout=SafeUnbuffered(sys.stdout)
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sys.stderr=SafeUnbuffered(sys.stderr)
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sys.exit(main())
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