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* user pointers and race conditions
@ 2007-05-17  4:56 sk b
  2007-05-17  5:04 ` Al Viro
                   ` (2 more replies)
  0 siblings, 3 replies; 4+ messages in thread
From: sk b @ 2007-05-17  4:56 UTC (permalink / raw)
  To: linux-kernel


Hello,

I'm wondering whether there is an exploitable TOCTTOU race condition in the way user pointers are handled in the kernel. Consider the following code:

1: struct st { int *u; };
2: void syscall(struct st * stp) {
3:        if (!access_ok(VERIFY_READ,stp,sizeof(struct st)))
4:                return;
5:        if (!access_ok(VERIFY_WRITE,stp->u,sizeof(int)))
6:                return;
7:        foo();   //user app writes a kernel address to stp->u
8:        *(stp->u) = 0;
9:}

Suppose syscall is some system call and, thus, stp and stp->u are user pointers. The function checks the stp and stp->u pointers using the access_ok macro on lines 3 and 5. Also suppose that the call to foo on line 7  takes a non-trivial amount of time to execute. During the time it takes foo to execute, the user application writes a kernel address to stp->u. Note that this write occurs after the check on line 5. Then, on line 8, the kernel writes to stp->u which contains a kernel address. So, the user application could force the kernel to overwrite itself. Is it possible to exploit this race condition? If so, does Sparse check for this?

-SKB
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^ permalink raw reply	[flat|nested] 4+ messages in thread

end of thread, other threads:[~2007-05-17 12:27 UTC | newest]

Thread overview: 4+ messages (download: mbox.gz / follow: Atom feed)
-- links below jump to the message on this page --
2007-05-17  4:56 user pointers and race conditions sk b
2007-05-17  5:04 ` Al Viro
2007-05-17  5:06 ` David Miller
2007-05-17 12:26 ` Arjan van de Ven

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