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		1f21eaa15e
		
			
		
	
	
	
	
		
			
			* Use the 'p' format unit instead of manually called PyObject_IsTrue(). * Pass boolean value instead 0/1 integers to functions that needs boolean. * Convert some arguments to boolean only once.
		
			
				
	
	
		
			242 lines
		
	
	
	
		
			7.1 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable file
		
	
	
	
	
			
		
		
	
	
			242 lines
		
	
	
	
		
			7.1 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable file
		
	
	
	
	
| #! /usr/bin/env python3
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| 
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| """Conversions to/from quoted-printable transport encoding as per RFC 1521."""
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| 
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| # (Dec 1991 version).
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| 
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| __all__ = ["encode", "decode", "encodestring", "decodestring"]
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| 
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| ESCAPE = b'='
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| MAXLINESIZE = 76
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| HEX = b'0123456789ABCDEF'
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| EMPTYSTRING = b''
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| 
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| try:
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|     from binascii import a2b_qp, b2a_qp
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| except ImportError:
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|     a2b_qp = None
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|     b2a_qp = None
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| 
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| 
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| def needsquoting(c, quotetabs, header):
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|     """Decide whether a particular byte ordinal needs to be quoted.
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| 
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|     The 'quotetabs' flag indicates whether embedded tabs and spaces should be
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|     quoted.  Note that line-ending tabs and spaces are always encoded, as per
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|     RFC 1521.
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|     """
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|     assert isinstance(c, bytes)
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|     if c in b' \t':
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|         return quotetabs
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|     # if header, we have to escape _ because _ is used to escape space
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|     if c == b'_':
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|         return header
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|     return c == ESCAPE or not (b' ' <= c <= b'~')
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| 
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| def quote(c):
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|     """Quote a single character."""
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|     assert isinstance(c, bytes) and len(c)==1
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|     c = ord(c)
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|     return ESCAPE + bytes((HEX[c//16], HEX[c%16]))
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| 
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| 
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| 
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| def encode(input, output, quotetabs, header=False):
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|     """Read 'input', apply quoted-printable encoding, and write to 'output'.
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| 
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|     'input' and 'output' are binary file objects. The 'quotetabs' flag
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|     indicates whether embedded tabs and spaces should be quoted. Note that
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|     line-ending tabs and spaces are always encoded, as per RFC 1521.
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|     The 'header' flag indicates whether we are encoding spaces as _ as per RFC
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|     1522."""
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| 
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|     if b2a_qp is not None:
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|         data = input.read()
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|         odata = b2a_qp(data, quotetabs=quotetabs, header=header)
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|         output.write(odata)
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|         return
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| 
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|     def write(s, output=output, lineEnd=b'\n'):
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|         # RFC 1521 requires that the line ending in a space or tab must have
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|         # that trailing character encoded.
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|         if s and s[-1:] in b' \t':
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|             output.write(s[:-1] + quote(s[-1:]) + lineEnd)
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|         elif s == b'.':
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|             output.write(quote(s) + lineEnd)
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|         else:
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|             output.write(s + lineEnd)
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| 
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|     prevline = None
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|     while 1:
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|         line = input.readline()
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|         if not line:
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|             break
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|         outline = []
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|         # Strip off any readline induced trailing newline
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|         stripped = b''
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|         if line[-1:] == b'\n':
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|             line = line[:-1]
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|             stripped = b'\n'
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|         # Calculate the un-length-limited encoded line
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|         for c in line:
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|             c = bytes((c,))
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|             if needsquoting(c, quotetabs, header):
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|                 c = quote(c)
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|             if header and c == b' ':
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|                 outline.append(b'_')
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|             else:
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|                 outline.append(c)
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|         # First, write out the previous line
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|         if prevline is not None:
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|             write(prevline)
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|         # Now see if we need any soft line breaks because of RFC-imposed
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|         # length limitations.  Then do the thisline->prevline dance.
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|         thisline = EMPTYSTRING.join(outline)
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|         while len(thisline) > MAXLINESIZE:
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|             # Don't forget to include the soft line break `=' sign in the
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|             # length calculation!
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|             write(thisline[:MAXLINESIZE-1], lineEnd=b'=\n')
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|             thisline = thisline[MAXLINESIZE-1:]
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|         # Write out the current line
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|         prevline = thisline
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|     # Write out the last line, without a trailing newline
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|     if prevline is not None:
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|         write(prevline, lineEnd=stripped)
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| 
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| def encodestring(s, quotetabs=False, header=False):
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|     if b2a_qp is not None:
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|         return b2a_qp(s, quotetabs=quotetabs, header=header)
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|     from io import BytesIO
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|     infp = BytesIO(s)
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|     outfp = BytesIO()
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|     encode(infp, outfp, quotetabs, header)
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|     return outfp.getvalue()
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| 
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| 
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| 
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| def decode(input, output, header=False):
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|     """Read 'input', apply quoted-printable decoding, and write to 'output'.
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|     'input' and 'output' are binary file objects.
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|     If 'header' is true, decode underscore as space (per RFC 1522)."""
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| 
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|     if a2b_qp is not None:
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|         data = input.read()
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|         odata = a2b_qp(data, header=header)
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|         output.write(odata)
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|         return
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| 
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|     new = b''
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|     while 1:
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|         line = input.readline()
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|         if not line: break
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|         i, n = 0, len(line)
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|         if n > 0 and line[n-1:n] == b'\n':
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|             partial = 0; n = n-1
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|             # Strip trailing whitespace
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|             while n > 0 and line[n-1:n] in b" \t\r":
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|                 n = n-1
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|         else:
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|             partial = 1
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|         while i < n:
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|             c = line[i:i+1]
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|             if c == b'_' and header:
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|                 new = new + b' '; i = i+1
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|             elif c != ESCAPE:
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|                 new = new + c; i = i+1
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|             elif i+1 == n and not partial:
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|                 partial = 1; break
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|             elif i+1 < n and line[i+1:i+2] == ESCAPE:
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|                 new = new + ESCAPE; i = i+2
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|             elif i+2 < n and ishex(line[i+1:i+2]) and ishex(line[i+2:i+3]):
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|                 new = new + bytes((unhex(line[i+1:i+3]),)); i = i+3
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|             else: # Bad escape sequence -- leave it in
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|                 new = new + c; i = i+1
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|         if not partial:
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|             output.write(new + b'\n')
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|             new = b''
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|     if new:
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|         output.write(new)
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| 
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| def decodestring(s, header=False):
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|     if a2b_qp is not None:
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|         return a2b_qp(s, header=header)
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|     from io import BytesIO
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|     infp = BytesIO(s)
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|     outfp = BytesIO()
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|     decode(infp, outfp, header=header)
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|     return outfp.getvalue()
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| 
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| 
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| 
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| # Other helper functions
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| def ishex(c):
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|     """Return true if the byte ordinal 'c' is a hexadecimal digit in ASCII."""
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|     assert isinstance(c, bytes)
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|     return b'0' <= c <= b'9' or b'a' <= c <= b'f' or b'A' <= c <= b'F'
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| 
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| def unhex(s):
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|     """Get the integer value of a hexadecimal number."""
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|     bits = 0
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|     for c in s:
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|         c = bytes((c,))
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|         if b'0' <= c <= b'9':
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|             i = ord('0')
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|         elif b'a' <= c <= b'f':
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|             i = ord('a')-10
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|         elif b'A' <= c <= b'F':
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|             i = ord(b'A')-10
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|         else:
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|             assert False, "non-hex digit "+repr(c)
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|         bits = bits*16 + (ord(c) - i)
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|     return bits
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| 
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| 
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| 
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| def main():
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|     import sys
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|     import getopt
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|     try:
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|         opts, args = getopt.getopt(sys.argv[1:], 'td')
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|     except getopt.error as msg:
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|         sys.stdout = sys.stderr
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|         print(msg)
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|         print("usage: quopri [-t | -d] [file] ...")
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|         print("-t: quote tabs")
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|         print("-d: decode; default encode")
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|         sys.exit(2)
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|     deco = False
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|     tabs = False
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|     for o, a in opts:
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|         if o == '-t': tabs = True
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|         if o == '-d': deco = True
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|     if tabs and deco:
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|         sys.stdout = sys.stderr
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|         print("-t and -d are mutually exclusive")
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|         sys.exit(2)
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|     if not args: args = ['-']
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|     sts = 0
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|     for file in args:
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|         if file == '-':
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|             fp = sys.stdin.buffer
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|         else:
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|             try:
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|                 fp = open(file, "rb")
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|             except OSError as msg:
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|                 sys.stderr.write("%s: can't open (%s)\n" % (file, msg))
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|                 sts = 1
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|                 continue
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|         try:
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|             if deco:
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|                 decode(fp, sys.stdout.buffer)
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|             else:
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|                 encode(fp, sys.stdout.buffer, tabs)
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|         finally:
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|             if file != '-':
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|                 fp.close()
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|     if sts:
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|         sys.exit(sts)
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| 
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| 
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| 
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| if __name__ == '__main__':
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|     main()
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