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I'm trying to do something like this:

import threading
def func1(a,b):
    def func2():
        t=threading.Thread(target=func3)
        return t
    return func2

func2=func1(a,b)
func2()

I have a restriction(the language I'm using is python with some restricted functions) not to use the args parameter for the Thread function instead I want to pass a and b as parameters to func3. How can I do this using closures?

share|improve this question
    
I think you mean func2() and not func1(). – Burhan Khalid Oct 24 '12 at 12:19
up vote 2 down vote accepted

In the absence of lambda I might look into functools.partial. If that isn't allowed, you could probably do:

import threading
def func1(a,b):
    def func2():
        def func4():
            return func3(a,b)
        return threading.Thread(target=func4)
    return func2

func2=func1(a,b)
func2()
share|improve this answer
    
This just works perfect for what I'm trying to do.. I have a little confusion here: How can I catch the thread object returned by the statement threading.Thread(target=func4) – securecoding Oct 24 '12 at 12:47
    
Instead of doing func2() at the last line, you'd do thread_object = func2() – mgilson Oct 24 '12 at 12:50

You can use a lambda:

t=threading.Thread(target=lambda: func3(a,b))

The values of a and b will be held in a closure, even after func1 exits.

Instead of a lambda, you can create a named function:

def thread_func():
    func3(a,b)
t = threading.Thread(target=thread_func)
share|improve this answer
    
oh yes.. srry.. I meant func2() there.. edited now – securecoding Oct 24 '12 at 12:24
    
I'm afraid lambda usage isn't allowed as well.. Can I do it in any other way? – securecoding Oct 24 '12 at 12:32
    
@securecoding -- Can you use functools.partial? – mgilson Oct 24 '12 at 12:35
    
@securecoding: See edit. – interjay Oct 24 '12 at 12:35
    
Here is what the rule says: "The args argument has been removed. If you want to call a function with arguments, then you can define a closure around it". – securecoding Oct 24 '12 at 12:36

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