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How should I spawn child Toplevel() windows in tkinter that don't close when the parent closes?

Do I need to have the parent keep a 'reference count' of child windows, intercept WM_DELETE_WINDOW and only call root.destroy() when all the children are gone?

Or is it acceptable practice to spawn another thread process with its own tk mainloop?

Or is there a more elegant way?


I am currently doing things this way

root = Tk()
app = App(root) # doesn't call Toplevel()

where App.__init__() adds widgets to root without calling Toplevel(), and at some point spawns a new window with this function:

def new_window():
    root = Tk()
    window = App2(root) # doesn't call Toplevel() either

Note that root in new_window() is a different variable to the original root, obtained by another call to Tk().

All this seems to Do The Right Thing i.e. the child window lives independently of the parent and the python process dies after both are closed.

So my question becomes, does that make sense or am I doing something horribly wrong here?

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1 Answer 1

Instead of having to keep track of which Toplevels are alive, you could use a weakref on a sentinel -- just some object that is passed to each Toplevel and saved in a reference. When each Toplevel dies (is closed), let it delete its reference to the sentinel. When the last reference to the sentinel is deleted, the weakref callback, self.no_sentinel will be called automatically, in turn calling root.destroy for you.

import Tkinter as tk
import weakref

class Sentinel(object):

class Window(tk.Toplevel):
    def __init__(self, master, sentinel, **kwargs):
        title = kwargs.pop('title')
        self.sentinel = sentinel
        tk.Toplevel.__init__(self, master, **kwargs)
        self.protocol("WM_DELETE_WINDOW", self.ondelete)
        self.label = tk.Label(self, text=title)
        self.label.pack(padx=10, pady=10)

    def ondelete(self):
        del self.sentinel

class App(object):
    def __init__(self, master, **kwargs):
        self.master = master
        sentinel = Sentinel()
        parent = Window(master, sentinel, title='Parent')
        child = Window(master, sentinel, title='Child')
        self._ref = weakref.ref(sentinel, self.no_sentinel)            
        # When we exit `__init__` only two strong references to sentinal
        # remain -- in parent and child. When both strong references are
        # deleted, `self.no_sentinel` gets called.
    def no_sentinel(self, *args):

root = tk.Tk()
app = App(root)

Alternatively, you could use the multiprocessing module to spawn another process to make another Tkinter window and mainloop, but would be consumer more memory than the solution above, and would require you to setup some form of interprocess communication if you wanted the separate processes to share information.

share|improve this answer
I am now obtaining a new root with tk.Tk() but not calling mainloop() again - this seems to work while being much simpler - any idea why that might be? You'd think Tk() would be a singleton returning the same master, but creating widgets on it doesn't seem to affect the first window. –  Sideshow Bob Jun 11 '13 at 16:35
Btw see my edit to original question - I meant process not thread. –  Sideshow Bob Jun 11 '13 at 16:35
I'm not quite sure I understand your question. There is a much simpler way than what I show above -- just use Toplevels and call root.withdraw() -- but then you can close all your Toplevels and the program will still run in the background. You'll accumulate zombie processes that way. The purpose of the rigmarole above is to cause the program to end when the last Toplevel is closed. If I'm not answering your question, please post your code. –  unutbu Jun 11 '13 at 18:23
Code posted - see my edit. –  Sideshow Bob Jun 12 '13 at 9:47
I don't know the answer to your edited question. I know the documentation says, "You should only create one root widget for each program", but I don't know what (if anything) goes wrong if you do call tk.Tk() more than once (while calling root.mainloop only once). –  unutbu Jun 12 '13 at 11:54

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