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I would like to know how to write python function which can flatten generator which yields another generators or iteables (which can also yield another generators/iterables ... possibly infinitely).

Here is example:

gen(gen(1,2,3), gen(4,5,6), [7,8,9], [gen(10,11,12), gen(13,14,15)])

note: gen - means generator object, content between parentheses after gen is data that will generator gen yield.

The expected result after "flattening": gen(1,2,3,4,5,6,7,8,9,10,11,12,13,14,15)

It is necessary for the flatten function to return generator too! (because otherwise, the preceeding usage of generators would be meaningless).

Just to note, I am using python 3.

Thanks!

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2 Answers 2

up vote 9 down vote accepted

The easiest way is a recursive flattening function. Assuming you want to descend into every iterable except for strings, you could do this:

def flatten(it):
    for x in it:
        if (isinstance(x, collections.Iterable) and
            not isinstance(x, str)):
            for y in flatten(x):
                yield y
        else:
            yield x

Starting from Python 3.3, you can also write

def flatten(it):
    for x in it:
        if (isinstance(x, collections.Iterable) and
            not isinstance(x, str)):
            yield from flatten(x)
        else:
            yield x
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Thank you very much! With my attempt I was very near to yours :-) Regards! –  JoshuaBoshi Jul 16 '12 at 11:28
    
+1 - I keep forgetting about yield from and this was a nice reminder. –  Jon Clements Jul 16 '12 at 11:40
2  
@JonClements: You "keep forgetting" features of a Python version wich hasn't even been released yet? I'm surprised. :) –  Sven Marnach Jul 16 '12 at 12:15
    
My crystal ball has recently been in full working order!? ;) [but on a serious note - I happen to follow PEPs] –  Jon Clements Jul 16 '12 at 12:17

The non-recursive method is essentially an unrolling of the recursive method, using a stack:

def flatten(it):
    stack = []
    it = iter(it)
    while True:
        try:
            x = next(it)
        except StopIteration:
            if stack:
                it = stack.pop()
                continue
            else:
                return
        if isinstance(x, collections.Iterable) and not isinstance(x, str):
            stack.append(it)
            it = iter(x)
        else:
            yield x
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