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I understand how this construct works:

for i in range(10):

    if i == 9:
        print("Too big - I'm giving up!")
    print("Completed successfully")

But I don't understand why else is used as the keyword here, since it suggests the code in question only runs if the for block does not complete, which is the opposite of what it does! No matter how I think about it, my brain can't progress seamlessly from the for statement to the else block. To me, continue or continuewith would make more sense (and I'm trying to train myself to read it as such).

I'm wondering how Python coders read this construct in their head (or aloud, if you like). Perhaps I'm missing something that would make such code blocks more easily decipherable?

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You might like to translate it to "then" in your head. – Marcin Apr 2 '12 at 16:21
Don't forget the key line in the Zen of Python: "... that way may not be obvious at first unless you're Dutch." – Daniel Roseman Apr 2 '12 at 16:38
In my head I translate it into "if not break". And, since break is used a lot in "I've found it" loops, you can translate it to "if not found", which is not far from what else reads – MestreLion May 23 '13 at 3:32
@MestreLion: Well, but you should also add "... or if continue", and then it is really strange. – pepr Apr 24 '14 at 15:59
I think the real question many people have here is "What's the difference between for ... else foo() and just putting foo() after the for loop?" And the answer is that they behave differently only if the loop contains a break (as described in detail below). – Sam Kauffman Aug 20 '14 at 17:06

10 Answers 10

up vote 98 down vote accepted

It's a strange construct even to seasoned Python coders. When used in conjunction with for-loops it basically means "find some item in the iterable, else if none was found do ...". As in:

found_obj = None
for obj in objects:
    if obj.key == search_key:
        found_obj = obj
    print 'No object found.'

But anytime you see this construct, a better alternative is to either encapsulate the search in a function:

def find_obj(search_key):
    for obj in objects:
        if obj.key == search_key:
            return obj

Or use a list comprehension:

matching_objs = [o for o in objects if o.key == search_key]
if matching_objs:
    print 'Found', matching_objs[0]
    print 'No object found.'

It is not semantically equivalent to the other two versions, but works good enough in non-performance critical code where it doesn't matter whether you iterate the whole list or not. Others may disagree, but I personally would avoid ever using the for-else or while-else blocks in production code.

See also [Python-ideas] Summary of for...else threads

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The list comprehension is the wrong one-liner. If you're looking for a single item, as in the for loop examples, and want to use a generator expression / list comprehension, then you want next((o for o in objects if o.key == search_key), None) or wrap it in a try / except and use no default value instead of an if / else. – agf Apr 2 '12 at 16:33
and like Lance Helsten's answer, there are actual cases where it's better to use a for/else construct. – andrean Mar 11 '14 at 8:52
Cheers. I had a badly indented file where an else got paired with a for and I had no idea that was legal. – maxywb May 2 '14 at 22:01
The for...else construct is useful at least for the cases where you want to implement get_or_create() type of operations, i.e. looping through a data structure and get the first match if none was found then create a new entry in the data structure. – Devy Jun 5 '14 at 7:59
It is worth mentioning that the else clause will run even if the for loop has values unless a break statement is explicity run as in this example. From the docs above: "The else clause has another perceived problem: if there is no break in the loop, the else clause is functionally redundant.". e.g. for x in [1, 2, 3]:\n print x\n else:\n print 'this executes due to no break' – dhackner Aug 28 '14 at 1:20
up vote 136 down vote

A common construct is to run a loop until something is found and then to break out of the loop. The problem is that if I break out of the loop or the loop ends I need to determine which case happened. One method is to create a flag or store variable that will let me do a second test to see how the loop was exited.

For example assume that I need to search through a list and process each item until a flag item is found and then stop processing. If the flag item is missing then an exception needs to be raised.

Using the Python for...else construct you have


for i in mylist:
    if i == theflag:
    raise ValueError("List argument missing terminal flag.)


Compare this to a method that does not use this syntactic sugar:


flagfound = False
for i in mylist:
    if i == the flag:
        flagfound = True

if not flagfound:
    raise ValueError("List argument missing terminal flag.)


In the first case the raise is bound tightly to the for loop it works with. In the second the binding is not as strong and errors may be introduced during maintenance.

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This explains it better than the chosen answer where the author doesn't really get what for-else is about! – erikb85 Jul 15 '14 at 9:20
I'd have to say this syntactic sugar might rot your project's teeth. This would not make a Python: the good parts book. – Mark0978 Feb 1 at 17:10
Can you confirm that in your example, process(i) happens for every item in mylist strictly before theflag, and not to theflag itself? Is it what was intended? – bli Mar 11 at 7:17
process will execute on each i that exists in the list before theflag is reached, it will not be executed on elements in the list after theflag, and it will not be executed on theflag. – Lance Helsten Mar 11 at 14:31
I'm modifying a Python script to export Trello cards to Github, and this construct was blocking correct application of both labels and state. I agree wholeheartedly with Mark0978. To those who might say that a good craftsman doesn't blame their tools, I ask: why do you not use Perl in that case? – Eric Oct 6 at 16:31

There's an excellent presentation by Raymond Hettinger, titled "Transforming Code into Beautiful, Idiomatic Python," in which he briefly addresses the history of the for ... else construct. The relevant section is "Distinguishing multiple exit points in loops" starting at 15:50 and continuing for about three minutes. Here are the high points:

  • The for ... else construct was devised by Donald Knuth as a replacement for certain GOTO use cases
  • Reusing the else keyword made sense because "it's what Knuth used, and people knew, at that time, all for's had embedded an if and GOTO underneath, and they expected the else"
  • In hindsight, it should have been called "no break" (or possibly "nobreak"), and then it wouldn't be confusing1

So, if the question is, "Why don't they change this keyword?" then Cat Plus Plus probably gave the most accurate answer – at this point, it would be too destructive to existing code to be practical. But if the question you're really asking is why else was reused in the first place, well, apparently it seemed like a good idea at the time.

Personally, I like the compromise of commenting # no break in-line wherever the else could be mistaken, at a glance, as belonging inside the loop. It's reasonably clear and concise. This option gets a brief mention in the summary that Bjorn linked at the end of his answer:

For completeness, I should mention that with a slight change in syntax, programmers who want this syntax can have it right now:

for item in sequence:
else:  # no break

1Bonus quote from that part of the video: "Just like if we called lambda makefunction, nobody would ask, 'What does lambda do?'"

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Because they didn't want to introduce a new keyword to the language. Each one steals an identifier and causes backwards compatibility problems, so it's usually a last resort.

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Seems like finally would have been a better choice in that case. Was the finally keyword not yet present at the time this construct was introduced? – Wallacoloo Jan 11 '14 at 23:01
@Wallacoloo finally isn't much better, because it implies the block would always be executed after the loop, and it isn't (because that'd be redundant with just putting the code to run after the loop). – Cat Plus Plus Jan 12 '14 at 1:43
It also cannot be finally because the else clause is executed also when continue is used in the for loop -- that is possibly many times and not only at the end. – pepr Apr 24 '14 at 15:20
@pepr else clause execution is not affected by continue (docs and test code) – Air May 16 '14 at 15:38
@AirThomas: +1. You are right. The else is executed only when the continue was the one for the last iteration. – pepr May 16 '14 at 15:58

I read it something like:

If still on the conditions to run the loop, do stuff, else do something else.

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Your still on the conditions is helpful (+1) although it is wrong - it's human ;-) – Wolf Nov 28 '14 at 10:06

The easiest way I found to 'get' what the for/else did, and more importantly, when to use it, was to concentrate on where the break statement jumps to. The For/else construct is a single block. The break jumps out of the block, and so jumps 'over' the else clause. If the contents of the else clause simply followed the for clause, it would never be jumped over, and so the equivalent logic would have to be provided by putting it in an if. This has been said before, but not quite in these words, so it may help somebody else. Try running the following code fragment. I'm wholeheartedly in favour of the 'no break' comment for clarity.

for a in range(3):
    if a==4: # change value to force break or not
else: #no break  +10 for whoever thought of this decoration
    print('for completed OK')

print('statement after for loop')
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I think documentation has a great explanation of else, continue

"it is executed when the loop terminates through exhaustion of the list (with for) or when the condition becomes false (with while), but not when the loop is terminated by a break statement."


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Loop statements may have an else clause; it is executed when the loop terminates through exhaustion of the list (with for) or when the condition becomes false (with while), but not when the loop is terminated by a break statement. This is exemplified by the following loop, which searches for prime numbers:

>>> for n in range(2, 10):
...     for x in range(2, n):
...         if n % x == 0:
...             print n, 'equals', x, '*', n/x
...             break
...     else:
...         # loop fell through without finding a factor
...         print n, 'is a prime number'

2 is a prime number
3 is a prime number
4 equals 2 * 2
5 is a prime number
6 equals 2 * 3
7 is a prime number
8 equals 2 * 4
9 equals 3 * 3
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You could think of it like, else as in the rest of the stuff, or the other stuff, that wasn't done in the loop.

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I read it like "When the iterable is exhausted completely, and the execution is about to proceed to the next statement after finishing the for, the else clause will be executed." Thus, when the iteration is broken by break, this will not be executed.

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@downvoter: Care to explain? – 0xc0de Oct 30 '14 at 6:31

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