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Trying to answer to another post whose solution deals with IP addresses and netmasks, I got stuck with plain bitwise arithmetic.

Is there a standard way, in Python, to carry on bitwise AND, OR, XOR, NOT operations assuming that the inputs are "32 bit" (maybe negative) integers or longs, and that the result must be a long in the range [0, 2**32]?

In other words, I need a working Python counterpart to the C bitwise operations between unsigned longs.

EDIT: the specific issue is this:

>>> m = 0xFFFFFF00   # netmask 255.255.255.0
>>> ~m
-4294967041L         # wtf?! I want 255
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I imagine Pythons loose typing would play hell with any algorithm like this... I want to see one too, just out of curiousity. –  Matthew Scharley Oct 16 '08 at 23:40
    
As of Python 3.3, some users encountering this might be interested in the ipaddress module. –  gerrit Feb 5 at 9:41

4 Answers 4

up vote 27 down vote accepted

You can mask everything by 0xFFFFFFFF:

>>> m = 0xFFFFFF00
>>> allf = 0xFFFFFFFF
>>> ~m & allf
255L
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1  
This strategy also helps with bash arithmetic. –  bstpierre Mar 2 '11 at 21:53
    
You're doing one more operation than necessary. ANDing a NOT is the same as an XOR. So, m ^ allf is what you need. –  mlefavor Dec 13 '12 at 21:48
    
@mlefavor I don't know where you got the idea that ~a & b is the same as a ^ b. It's not in general. –  Ned Batchelder Dec 28 '12 at 17:33
    
I guess that was overexuberant of me. But I think it's true in the case of 0xFFFFFFFF. –  mlefavor Dec 29 '12 at 19:45

You can use ctypes and its c_uint32:

>>> import ctypes
>>> m = 0xFFFFFF00
>>> ctypes.c_uint32(~m).value
255L

So what I did here was casting ~m to a C 32-bit unsigned integer and retrieving its value back in Python format.

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Portable, and it works. +1 –  Federico A. Ramponi Oct 17 '08 at 0:37
from numpy import uint32
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Not portable, but it works. +1 –  Federico A. Ramponi Oct 17 '08 at 0:17
1  
Why not portable? –  gerrit Feb 5 at 9:40

This is a module that I created a long time ago, and it might be of help to you:

IPv4Utils

It provides at least a CIDR class with subnet arithmetic. Check the test cases at the end of the module for examples.

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