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Suppose you are working with some bodgy piece of code which you can't trust, is there a way to run it safely without losing control of your script?

An example might be a function which only works some of the time and might fail randomly/spectacularly, how could you retry until it works? I tried some hacking with using threading module but had trouble to kill a hung thread neatly.

#!/usr/bin/env python

import os
import sys
import random

def unreliable_code():

  def ok():
    return "it worked!!"

  def fail():
    return "it didn't work"

  def crash():

  def hang():
    while True: 

  def bye():

  return random.choice([ok, fail, crash, hang, bye])()

result = None
while result != "it worked!!":
  # ???
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Just how spectacularly can the code crash? Is it even safe to run it in the same python interpreter as your own code? If it uses broken c extensions (or misuses non-broken ones), or potentially modifies python globals, you might have to run it in a completely different python interpreter in a subprocess. – Tuna-Fish Mar 21 '12 at 11:18

3 Answers 3

up vote 4 down vote accepted

You can try running it in a sandbox.

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To be safe against exceptions, use try/except (but I guess you know that).

To be safe against hanging code (endless loop) the only way I know is running the code in another process. This child process you can kill from the father process in case it does not terminate soon enough.

To be safe against nasty code (doing things it shall not do), have a look at .

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There is also PySandbox - – Darb Mar 21 '12 at 17:03

In your real case application can you switch to multiprocessing? Becasue it seems that what you're asking could be done with multiprocessing + threading.Timer + try/except.

Take a look at this:

class SafeProcess(Process):
    def __init__(self, queue, *args, **kwargs):
        self.queue = queue
        super().__init__(*args, **kwargs)
    def run(self):
            result = self._target(*self._args, **self._kwargs)

result = None
while result != 'it worked!!':
    q = Queue()
    p = SafeProcess(q, target=unreliable_code)
    t = Timer(1, p.terminate)   # in case it should hang
        result = q.get_nowait()
    except queues.Empty:

That in one (lucky) case gave me:

it worked!!

In your code samples you have 4 out of 5 chances to get an error, so you might also spawn a pool or something to improve your chances of having a correct result.

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