Hi,

On Wed, Sep 2, 2026 at 10:16 AM Zqiang <[email protected]> wrote:
>
> >
> > Hi,
> >
> > On Tue, Sep 1, 2026 at 5:19 AM Zqiang <[email protected]> wrote:
> >
> > >
> > > The dlm_lowcomms_exit() and dlm_midcomms_exit() iterate over the
> > >  srcu protected connection and node hash tables and hand each
> > >  element to call_srcu() for deferred freeing (connection_release()
> > >  and midcomms_node_release()). call_srcu() is asynchronous: the
> > >  callbacks are invoked only after an SRCU grace period, which may
> > >  happen after the exit function has already returned.
> > >
> > >  These exit functions are reached from exit_dlm() on module unload.
> > >  Once they return, module teardown continues and the module text
> > >  may be unloaded while call_srcu() callbacks are still pending. When
> > >  such a callback finally runs, it executes freed module code and
> > >  touches the static SRCU domains that are being torn down, resulting
> > >  in a use-after-free.
> > >
> > I thought again about this and in my opinion this is not possible as
> > it is already being handled by DEFINE_STATIC_SRCU() with a cleanup
> > handling when the module is unloaded.
>
> When the moudle unload, the srcu_module_going() will call 
> cleanup_srcu_struct()
> and free_percpu(ssp->sda) to release resource. but we not call srcu_barrier(),
> the srcu_barrier() should be called before cleanup_srcu_struct().
>
>
> > I know that srcu subsystem does a lot of magic with modules init/exit
> > functionality to call init_srcu_struct() and cleanup_srcu_struct().
> > See
> >
> > https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/tree/kernel/module/main.c?h=v7.3-rc1#n2711
> >
> > so this patch should be reverted. If they don't use a barrier there,
> > the fix should be in the SRCU subsystem, but I believe the current
> > SRCU implementation already handles this.
>
> The srcu_barrier() need to be called, there are some description
> from Documentation/RCU/rcubarrier.rst:
>
> rcu_barrier()
> -------------
>
> This situation can be handled by the rcu_barrier() primitive.  Rather
> than waiting for a grace period to elapse, rcu_barrier() waits for all
> outstanding RCU callbacks to complete.  Please note that rcu_barrier()
> does **not** imply synchronize_rcu(), in particular, if there are no RCU
> callbacks queued anywhere, rcu_barrier() is within its rights to return
> immediately, without waiting for anything, let alone a grace period.
>
> Pseudo-code using rcu_barrier() is as follows:
>
>    1. Prevent any new RCU callbacks from being posted.
>    2. Execute rcu_barrier().
>    3. Allow the module to be unloaded.
>
> There is also an srcu_barrier() function for SRCU, and you of course
> must match the flavor of srcu_barrier() with that of call_srcu().
> If your module uses multiple srcu_struct structures, then it must also
> use multiple invocations of srcu_barrier() when unloading that module.
> For example, if it uses call_rcu(), call_srcu() on srcu_struct_1, and
> call_srcu() on srcu_struct_2, then the following three lines of code
> will be required when unloading::
>
>   1  rcu_barrier();
>   2  srcu_barrier(&srcu_struct_1);
>   3  srcu_barrier(&srcu_struct_2);
> ....

yes, I can see this makes problems when there is kmem_cache involved
and you need to be sure it's being done before you destroy the
kmem_cache.

This is not the case here.

I looked more into srcu functionality "cleanup_srcu_struct()"
(srcutiny) and it does "flush_work(&ssp->srcu_work)", workfn is
"srcu_drive_gp()" and the comment states "Workqueue handler to drive
one grace period and invoke any callbacks that become ready as a
result."

In my opinion "cleanup_srcu_struct()" should be sure there are no
pending operations.

- Alex


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