Is there a python convention for when you should implement __str__() versus __unicode__(). I've seen classes override __unicode__() more frequently than __str__() but it doesn't appear to be consistent. Are there specific rules when it is better to implement one versus the other? Is it necessary/good practice to implement both?


__str__() is the old method -- it returns bytes. __unicode__() is the new, preferred method -- it returns characters. The names are a bit confusing, but in 2.x we're stuck with them for compatibility reasons. Generally, you should put all your string formatting in __unicode__(), and create a stub __str__() method:

def __str__(self):
    return unicode(self).encode('utf-8')

In 3.0, str contains characters, so the same methods are named __bytes__() and __str__(). These behave as expected.

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    sa you mean creating both unicode and str methods or just keep strings in _(u"") and create string (without the unicode method) ? – muntu Sep 3 '10 at 12:59
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    Is there any pitfall in implementing only one of them? What happens when you only implement __unicode__ and then do str(obj)? – RickyA Feb 6 '13 at 9:09
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    unicode raises a NameError on Python 3, is a simple pattern that works across both 2 and 3? – bradley.ayers Mar 24 '13 at 8:05
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    @bradley.ayers the future package also provides python_2_unicode_compatible without having Django as a dependency. – Monkpit May 13 '16 at 13:22
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    It depends. Because python3 does not uses unicode but instead str ;) for python 2 unicode – m1009ct0 Oct 3 '17 at 1:04

If I didn't especially care about micro-optimizing stringification for a given class I'd always implement __unicode__ only, as it's more general. When I do care about such minute performance issues (which is the exception, not the rule), having __str__ only (when I can prove there never will be non-ASCII characters in the stringified output) or both (when both are possible), might help.

These I think are solid principles, but in practice it's very common to KNOW there will be nothing but ASCII characters without doing effort to prove it (e.g. the stringified form only has digits, punctuation, and maybe a short ASCII name;-) in which case it's quite typical to move on directly to the "just __str__" approach (but if a programming team I worked with proposed a local guideline to avoid that, I'd be +1 on the proposal, as it's easy to err in these matters AND "premature optimization is the root of all evil in programming";-).

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    In python 2.6.2, I recently got tripped up because instances of a particular built-in Exception subclass gave different results with str(e) and unicode(e). str(e) gave user-friendly output; unicode(e) gave different, user-unfriendly output. Is this considered buggy behavior? The class is UnicodeDecodeError; I didn't name it up front to avoid confusion -- the fact that the exception is unicode-related is not particularly relevant. – Paul Du Bois Mar 14 '12 at 23:50

With the world getting smaller, chances are that any string you encounter will contain Unicode eventually. So for any new apps, you should at least provide __unicode__(). Whether you also override __str__() is then just a matter of taste.


If you are working in both python2 and python3 in Django, I recommend the python_2_unicode_compatible decorator:

Django provides a simple way to define str() and unicode() methods that work on Python 2 and 3: you must define a str() method returning text and to apply the python_2_unicode_compatible() decorator.

As noted in earlier comments to another answer, some versions of future.utils also support this decorator. On my system, I needed to install a newer future module for python2 and install future for python3. After that, then here is a functional example:

#! /usr/bin/env python

from future.utils import python_2_unicode_compatible
from sys import version_info

class SomeClass():
    def __str__(self):
        return "Called __str__"

if __name__ == "__main__":
    some_inst = SomeClass()
    if (version_info > (3,0)):
        print("Python 3 does not support unicode()")

Here is example output (where venv2/venv3 are virtualenv instances):

~/tmp$ ./venv3/bin/python3 demo_python_2_unicode_compatible.py 
Called __str__
Python 3 does not support unicode()

~/tmp$ ./venv2/bin/python2 demo_python_2_unicode_compatible.py 
Called __str__
Called __str__

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