diff mbox series

[hid,v12,05/15] HID: bpf jmp table: simplify the logic of cleaning up programs

Message ID 20221103155756.687789-6-benjamin.tissoires@redhat.com (mailing list archive)
State Accepted
Commit 0baef37335dd4d5cffd00c9b8bbf2e0b71e4239f
Headers show
Series Introduce eBPF support for HID devices | expand

Commit Message

Benjamin Tissoires Nov. 3, 2022, 3:57 p.m. UTC
Kind of a hack, but works for now:

Instead of listening for any close of eBPF program, we now
decrement the refcount when we insert it in our internal
map of fd progs.

This is safe to do because:
- we listen to any call of destructor of programs
- when a program is being destroyed, we disable it by removing
  it from any RCU list used by any HID device (so it will never
  be called)
- we then trigger a job to cleanup the prog fd map, but we overwrite
  the removal of the elements to not do anything on the programs, just
  remove the allocated space

This is better than previously because we can remove the map of known
programs and their usage count. We now rely on the refcount of
bpf, which has greater chances of being accurate.

Signed-off-by: Benjamin Tissoires <benjamin.tissoires@redhat.com>

---

changes in v12:
- remove now unused counting of attached programs
  (Reported-by: kernel test robot <lkp@intel.com>)

new in v11
---
 drivers/hid/bpf/entrypoints/entrypoints.bpf.c |  40 +-
 .../hid/bpf/entrypoints/entrypoints.lskel.h   | 648 +++++-------------
 drivers/hid/bpf/hid_bpf_dispatch.c            |   2 +-
 drivers/hid/bpf/hid_bpf_dispatch.h            |   2 +-
 drivers/hid/bpf/hid_bpf_jmp_table.c           |  92 ++-
 5 files changed, 211 insertions(+), 573 deletions(-)

Comments

Benjamin Tissoires Dec. 12, 2022, 5:02 p.m. UTC | #1
On Thu, Nov 3, 2022 at 4:58 PM Benjamin Tissoires
<benjamin.tissoires@redhat.com> wrote:
>
> Kind of a hack, but works for now:
>
> Instead of listening for any close of eBPF program, we now
> decrement the refcount when we insert it in our internal
> map of fd progs.
>
> This is safe to do because:
> - we listen to any call of destructor of programs
> - when a program is being destroyed, we disable it by removing
>   it from any RCU list used by any HID device (so it will never
>   be called)
> - we then trigger a job to cleanup the prog fd map, but we overwrite
>   the removal of the elements to not do anything on the programs, just
>   remove the allocated space
>
> This is better than previously because we can remove the map of known
> programs and their usage count. We now rely on the refcount of
> bpf, which has greater chances of being accurate.
>
> Signed-off-by: Benjamin Tissoires <benjamin.tissoires@redhat.com>
>
> ---

So... I am a little bit embarrassed, but it turns out that this hack
is not safe enough.

If I compile the kernel with LLVM=1, the function
bpf_prog_put_deferred() is optimized in a weird way: if we are not in
irq, the function is inlined into __bpf_prog_put(), but if we are, the
function is still kept around as it is called in a scheduled work
item.

This is something I completely overlooked: I assume that if the
function would be inlined, the HID entrypoint BPF preloaded object
would not be able to bind, thus deactivating HID-BPF safely. But if a
function can be both inlined and not inlined, then I have no
guarantees that my cleanup call will be called. Meaning that a HID
device might believe there is still a bpf function to call. And things
will get messy, with kernel crashes and others.

An easy "fix" would be to tag bpf_prog_put_deferred() with "noinline",
but it just feels wrong to have that for this specific reason.

AFAICT, gcc is not doing that optimisation, but nothing prevents it
from doing it, and suddenly that will be a big whole in the kernel.

As much as I wish I had another option, I think for the sake of
everyone (and for my future holidays) I'll postpone HID-BPF to 6.3.

I actually thought of another way of removing that trampoline call. So
I'm not entirely going back to the drawing board hopefully.

[a few hours laters]

Just as a preview, I am reusing the bpf_link idea: when we call
hid_bpf_attach_prog(), this creates a bpf_link, and that link is the
one that needs to be pinned. Whenever all the references of that link
are dropped, I get called in the link's ->release() function, and I
can force the unbinding of the hid-device to the program at that time.

Way safer (no refcount mess up) and no optimisations can interfere,
now that I am not "tracing" the bpf core code.

Cheers,
Benjamin
Jiri Kosina Dec. 12, 2022, 5:08 p.m. UTC | #2
On Mon, 12 Dec 2022, Benjamin Tissoires wrote:

> If I compile the kernel with LLVM=1, the function 
> bpf_prog_put_deferred() is optimized in a weird way: if we are not in 
> irq, the function is inlined into __bpf_prog_put(), but if we are, the 
> function is still kept around as it is called in a scheduled work item.
> 
> This is something I completely overlooked: I assume that if the function 
> would be inlined, the HID entrypoint BPF preloaded object would not be 
> able to bind, thus deactivating HID-BPF safely. But if a function can be 
> both inlined and not inlined, then I have no guarantees that my cleanup 
> call will be called. Meaning that a HID device might believe there is 
> still a bpf function to call. And things will get messy, with kernel 
> crashes and others.
> 
> An easy "fix" would be to tag bpf_prog_put_deferred() with "noinline",
> but it just feels wrong to have that for this specific reason.
> 
> AFAICT, gcc is not doing that optimisation, but nothing prevents it
> from doing it, and suddenly that will be a big whole in the kernel.

It's not doing it on this particular function, but in general it's 
actually quite common for gcc to inline a function in some callsites and 
leave it out-of-line in others (we are dealing with that in livepatching), 
so I agree it has to be taken into account irrespective of the compiler 
used.

> As much as I wish I had another option, I think for the sake of everyone 
> (and for my future holidays) I'll postpone HID-BPF to 6.3.

Thanks,
Yonghong Song Dec. 12, 2022, 5:52 p.m. UTC | #3
On 12/12/22 9:02 AM, Benjamin Tissoires wrote:
> On Thu, Nov 3, 2022 at 4:58 PM Benjamin Tissoires
> <benjamin.tissoires@redhat.com> wrote:
>>
>> Kind of a hack, but works for now:
>>
>> Instead of listening for any close of eBPF program, we now
>> decrement the refcount when we insert it in our internal
>> map of fd progs.
>>
>> This is safe to do because:
>> - we listen to any call of destructor of programs
>> - when a program is being destroyed, we disable it by removing
>>    it from any RCU list used by any HID device (so it will never
>>    be called)
>> - we then trigger a job to cleanup the prog fd map, but we overwrite
>>    the removal of the elements to not do anything on the programs, just
>>    remove the allocated space
>>
>> This is better than previously because we can remove the map of known
>> programs and their usage count. We now rely on the refcount of
>> bpf, which has greater chances of being accurate.
>>
>> Signed-off-by: Benjamin Tissoires <benjamin.tissoires@redhat.com>
>>
>> ---
> 
> So... I am a little bit embarrassed, but it turns out that this hack
> is not safe enough.
> 
> If I compile the kernel with LLVM=1, the function
> bpf_prog_put_deferred() is optimized in a weird way: if we are not in
> irq, the function is inlined into __bpf_prog_put(), but if we are, the
> function is still kept around as it is called in a scheduled work
> item.
> 
> This is something I completely overlooked: I assume that if the
> function would be inlined, the HID entrypoint BPF preloaded object
> would not be able to bind, thus deactivating HID-BPF safely. But if a
> function can be both inlined and not inlined, then I have no
> guarantees that my cleanup call will be called. Meaning that a HID
> device might believe there is still a bpf function to call. And things
> will get messy, with kernel crashes and others.

You should not rely fentry to a static function. This is unstable
as compiler could inline it if that static function is called
directly. You could attach to a global function if it is not
compiled with lto.

> 
> An easy "fix" would be to tag bpf_prog_put_deferred() with "noinline",
> but it just feels wrong to have that for this specific reason.

This is not a right approach just for this purpose.

> 
> AFAICT, gcc is not doing that optimisation, but nothing prevents it
> from doing it, and suddenly that will be a big whole in the kernel.
> 
> As much as I wish I had another option, I think for the sake of
> everyone (and for my future holidays) I'll postpone HID-BPF to 6.3.
> 
> I actually thought of another way of removing that trampoline call. So
> I'm not entirely going back to the drawing board hopefully.
> 
> [a few hours laters]
> 
> Just as a preview, I am reusing the bpf_link idea: when we call
> hid_bpf_attach_prog(), this creates a bpf_link, and that link is the
> one that needs to be pinned. Whenever all the references of that link
> are dropped, I get called in the link's ->release() function, and I
> can force the unbinding of the hid-device to the program at that time.
> 
> Way safer (no refcount mess up) and no optimisations can interfere,
> now that I am not "tracing" the bpf core code.
> 
> Cheers,
> Benjamin
>
Greg Kroah-Hartman Dec. 12, 2022, 6:20 p.m. UTC | #4
On Mon, Dec 12, 2022 at 09:52:03AM -0800, Yonghong Song wrote:
> 
> 
> On 12/12/22 9:02 AM, Benjamin Tissoires wrote:
> > On Thu, Nov 3, 2022 at 4:58 PM Benjamin Tissoires
> > <benjamin.tissoires@redhat.com> wrote:
> > > 
> > > Kind of a hack, but works for now:
> > > 
> > > Instead of listening for any close of eBPF program, we now
> > > decrement the refcount when we insert it in our internal
> > > map of fd progs.
> > > 
> > > This is safe to do because:
> > > - we listen to any call of destructor of programs
> > > - when a program is being destroyed, we disable it by removing
> > >    it from any RCU list used by any HID device (so it will never
> > >    be called)
> > > - we then trigger a job to cleanup the prog fd map, but we overwrite
> > >    the removal of the elements to not do anything on the programs, just
> > >    remove the allocated space
> > > 
> > > This is better than previously because we can remove the map of known
> > > programs and their usage count. We now rely on the refcount of
> > > bpf, which has greater chances of being accurate.
> > > 
> > > Signed-off-by: Benjamin Tissoires <benjamin.tissoires@redhat.com>
> > > 
> > > ---
> > 
> > So... I am a little bit embarrassed, but it turns out that this hack
> > is not safe enough.
> > 
> > If I compile the kernel with LLVM=1, the function
> > bpf_prog_put_deferred() is optimized in a weird way: if we are not in
> > irq, the function is inlined into __bpf_prog_put(), but if we are, the
> > function is still kept around as it is called in a scheduled work
> > item.
> > 
> > This is something I completely overlooked: I assume that if the
> > function would be inlined, the HID entrypoint BPF preloaded object
> > would not be able to bind, thus deactivating HID-BPF safely. But if a
> > function can be both inlined and not inlined, then I have no
> > guarantees that my cleanup call will be called. Meaning that a HID
> > device might believe there is still a bpf function to call. And things
> > will get messy, with kernel crashes and others.
> 
> You should not rely fentry to a static function. This is unstable
> as compiler could inline it if that static function is called
> directly. You could attach to a global function if it is not
> compiled with lto.

But now that the kernel does support LTO, how can you be sure this will
always work properly?  The code author does not know if LTO will kick in
and optimize this away or not, that's the linker's job.

thanks,

greg k-h
Yonghong Song Dec. 12, 2022, 6:39 p.m. UTC | #5
On 12/12/22 10:20 AM, Greg KH wrote:
> On Mon, Dec 12, 2022 at 09:52:03AM -0800, Yonghong Song wrote:
>>
>>
>> On 12/12/22 9:02 AM, Benjamin Tissoires wrote:
>>> On Thu, Nov 3, 2022 at 4:58 PM Benjamin Tissoires
>>> <benjamin.tissoires@redhat.com> wrote:
>>>>
>>>> Kind of a hack, but works for now:
>>>>
>>>> Instead of listening for any close of eBPF program, we now
>>>> decrement the refcount when we insert it in our internal
>>>> map of fd progs.
>>>>
>>>> This is safe to do because:
>>>> - we listen to any call of destructor of programs
>>>> - when a program is being destroyed, we disable it by removing
>>>>     it from any RCU list used by any HID device (so it will never
>>>>     be called)
>>>> - we then trigger a job to cleanup the prog fd map, but we overwrite
>>>>     the removal of the elements to not do anything on the programs, just
>>>>     remove the allocated space
>>>>
>>>> This is better than previously because we can remove the map of known
>>>> programs and their usage count. We now rely on the refcount of
>>>> bpf, which has greater chances of being accurate.
>>>>
>>>> Signed-off-by: Benjamin Tissoires <benjamin.tissoires@redhat.com>
>>>>
>>>> ---
>>>
>>> So... I am a little bit embarrassed, but it turns out that this hack
>>> is not safe enough.
>>>
>>> If I compile the kernel with LLVM=1, the function
>>> bpf_prog_put_deferred() is optimized in a weird way: if we are not in
>>> irq, the function is inlined into __bpf_prog_put(), but if we are, the
>>> function is still kept around as it is called in a scheduled work
>>> item.
>>>
>>> This is something I completely overlooked: I assume that if the
>>> function would be inlined, the HID entrypoint BPF preloaded object
>>> would not be able to bind, thus deactivating HID-BPF safely. But if a
>>> function can be both inlined and not inlined, then I have no
>>> guarantees that my cleanup call will be called. Meaning that a HID
>>> device might believe there is still a bpf function to call. And things
>>> will get messy, with kernel crashes and others.
>>
>> You should not rely fentry to a static function. This is unstable
>> as compiler could inline it if that static function is called
>> directly. You could attach to a global function if it is not
>> compiled with lto.
> 
> But now that the kernel does support LTO, how can you be sure this will
> always work properly?  The code author does not know if LTO will kick in
> and optimize this away or not, that's the linker's job.

Ya, that is right. So for in-kernel bpf programs, attaching to global
functions are not safe either. For other not-in-kernel bpf programs, it
may not work but that is user's responsibility to adjust properly
(to different functions based on a particular build, etc.).

> 
> thanks,
> 
> greg k-h
Greg Kroah-Hartman Dec. 13, 2022, 6:28 a.m. UTC | #6
On Mon, Dec 12, 2022 at 10:39:26AM -0800, Yonghong Song wrote:
> 
> 
> On 12/12/22 10:20 AM, Greg KH wrote:
> > On Mon, Dec 12, 2022 at 09:52:03AM -0800, Yonghong Song wrote:
> > > 
> > > 
> > > On 12/12/22 9:02 AM, Benjamin Tissoires wrote:
> > > > On Thu, Nov 3, 2022 at 4:58 PM Benjamin Tissoires
> > > > <benjamin.tissoires@redhat.com> wrote:
> > > > > 
> > > > > Kind of a hack, but works for now:
> > > > > 
> > > > > Instead of listening for any close of eBPF program, we now
> > > > > decrement the refcount when we insert it in our internal
> > > > > map of fd progs.
> > > > > 
> > > > > This is safe to do because:
> > > > > - we listen to any call of destructor of programs
> > > > > - when a program is being destroyed, we disable it by removing
> > > > >     it from any RCU list used by any HID device (so it will never
> > > > >     be called)
> > > > > - we then trigger a job to cleanup the prog fd map, but we overwrite
> > > > >     the removal of the elements to not do anything on the programs, just
> > > > >     remove the allocated space
> > > > > 
> > > > > This is better than previously because we can remove the map of known
> > > > > programs and their usage count. We now rely on the refcount of
> > > > > bpf, which has greater chances of being accurate.
> > > > > 
> > > > > Signed-off-by: Benjamin Tissoires <benjamin.tissoires@redhat.com>
> > > > > 
> > > > > ---
> > > > 
> > > > So... I am a little bit embarrassed, but it turns out that this hack
> > > > is not safe enough.
> > > > 
> > > > If I compile the kernel with LLVM=1, the function
> > > > bpf_prog_put_deferred() is optimized in a weird way: if we are not in
> > > > irq, the function is inlined into __bpf_prog_put(), but if we are, the
> > > > function is still kept around as it is called in a scheduled work
> > > > item.
> > > > 
> > > > This is something I completely overlooked: I assume that if the
> > > > function would be inlined, the HID entrypoint BPF preloaded object
> > > > would not be able to bind, thus deactivating HID-BPF safely. But if a
> > > > function can be both inlined and not inlined, then I have no
> > > > guarantees that my cleanup call will be called. Meaning that a HID
> > > > device might believe there is still a bpf function to call. And things
> > > > will get messy, with kernel crashes and others.
> > > 
> > > You should not rely fentry to a static function. This is unstable
> > > as compiler could inline it if that static function is called
> > > directly. You could attach to a global function if it is not
> > > compiled with lto.
> > 
> > But now that the kernel does support LTO, how can you be sure this will
> > always work properly?  The code author does not know if LTO will kick in
> > and optimize this away or not, that's the linker's job.
> 
> Ya, that is right. So for in-kernel bpf programs, attaching to global
> functions are not safe either. For other not-in-kernel bpf programs, it
> may not work but that is user's responsibility to adjust properly
> (to different functions based on a particular build, etc.).

So if in-kernel bpf programs will not work or are not safe, how will
in-kernel bpf programs properly attach?

confused,

greg k-h
Benjamin Tissoires Dec. 13, 2022, 7:59 a.m. UTC | #7
On Tue, Dec 13, 2022 at 7:28 AM Greg KH <gregkh@linuxfoundation.org> wrote:
>
> On Mon, Dec 12, 2022 at 10:39:26AM -0800, Yonghong Song wrote:
> >
> >
> > On 12/12/22 10:20 AM, Greg KH wrote:
> > > On Mon, Dec 12, 2022 at 09:52:03AM -0800, Yonghong Song wrote:
> > > >
> > > >
> > > > On 12/12/22 9:02 AM, Benjamin Tissoires wrote:
> > > > > On Thu, Nov 3, 2022 at 4:58 PM Benjamin Tissoires
> > > > > <benjamin.tissoires@redhat.com> wrote:
> > > > > >
> > > > > > Kind of a hack, but works for now:
> > > > > >
> > > > > > Instead of listening for any close of eBPF program, we now
> > > > > > decrement the refcount when we insert it in our internal
> > > > > > map of fd progs.
> > > > > >
> > > > > > This is safe to do because:
> > > > > > - we listen to any call of destructor of programs
> > > > > > - when a program is being destroyed, we disable it by removing
> > > > > >     it from any RCU list used by any HID device (so it will never
> > > > > >     be called)
> > > > > > - we then trigger a job to cleanup the prog fd map, but we overwrite
> > > > > >     the removal of the elements to not do anything on the programs, just
> > > > > >     remove the allocated space
> > > > > >
> > > > > > This is better than previously because we can remove the map of known
> > > > > > programs and their usage count. We now rely on the refcount of
> > > > > > bpf, which has greater chances of being accurate.
> > > > > >
> > > > > > Signed-off-by: Benjamin Tissoires <benjamin.tissoires@redhat.com>
> > > > > >
> > > > > > ---
> > > > >
> > > > > So... I am a little bit embarrassed, but it turns out that this hack
> > > > > is not safe enough.
> > > > >
> > > > > If I compile the kernel with LLVM=1, the function
> > > > > bpf_prog_put_deferred() is optimized in a weird way: if we are not in
> > > > > irq, the function is inlined into __bpf_prog_put(), but if we are, the
> > > > > function is still kept around as it is called in a scheduled work
> > > > > item.
> > > > >
> > > > > This is something I completely overlooked: I assume that if the
> > > > > function would be inlined, the HID entrypoint BPF preloaded object
> > > > > would not be able to bind, thus deactivating HID-BPF safely. But if a
> > > > > function can be both inlined and not inlined, then I have no
> > > > > guarantees that my cleanup call will be called. Meaning that a HID
> > > > > device might believe there is still a bpf function to call. And things
> > > > > will get messy, with kernel crashes and others.
> > > >
> > > > You should not rely fentry to a static function. This is unstable
> > > > as compiler could inline it if that static function is called
> > > > directly. You could attach to a global function if it is not
> > > > compiled with lto.
> > >
> > > But now that the kernel does support LTO, how can you be sure this will
> > > always work properly?  The code author does not know if LTO will kick in
> > > and optimize this away or not, that's the linker's job.
> >
> > Ya, that is right. So for in-kernel bpf programs, attaching to global
> > functions are not safe either. For other not-in-kernel bpf programs, it
> > may not work but that is user's responsibility to adjust properly
> > (to different functions based on a particular build, etc.).
>
> So if in-kernel bpf programs will not work or are not safe, how will
> in-kernel bpf programs properly attach?

Sorry if that wasn't clear. Loading a bpf program from the kernel is
fine and safe. But it was the use of it that wasn't.

In my case, HID-BPF to fix devices is safe (whether the program is
loaded from the kernel or from userspace): the bpf JIT/verifier
ensures that there are no out of bound read/write and the API is
properly defined. But the problem I am facing with the generic bpf
implementation is that it is made to be a global processing and to
attach to one given function, when I wanted to have a couple function
+ device.

So in this patch, I actually abused BPF to get free event
notifications when the bpf program was released.
The first implementation (HID: initial BPF implementation) was safer
than this patch because I was using BPF for notifications of my
internals but I wasn't messing up with the reference count. So if I
did not get the events, I wouldn't decrement the bpf_prog and the end
result means that the bpf program would stay forever attached to the
device. Not user friendly but it doesn't introduce a kernel crash.

However, this patch is messing with reference counting of an internal
kernel object assuming I would always get the event. This is not the
case and so I get read after free errors.

TL;DR: (ab)using BPF internally for kernel introspection to manage
kernel structures is just plain wrong. Mea culpa.

Cheers,
Benjamin
Yonghong Song Dec. 13, 2022, 6:13 p.m. UTC | #8
On 12/12/22 10:28 PM, Greg KH wrote:
> On Mon, Dec 12, 2022 at 10:39:26AM -0800, Yonghong Song wrote:
>>
>>
>> On 12/12/22 10:20 AM, Greg KH wrote:
>>> On Mon, Dec 12, 2022 at 09:52:03AM -0800, Yonghong Song wrote:
>>>>
>>>>
>>>> On 12/12/22 9:02 AM, Benjamin Tissoires wrote:
>>>>> On Thu, Nov 3, 2022 at 4:58 PM Benjamin Tissoires
>>>>> <benjamin.tissoires@redhat.com> wrote:
>>>>>>
>>>>>> Kind of a hack, but works for now:
>>>>>>
>>>>>> Instead of listening for any close of eBPF program, we now
>>>>>> decrement the refcount when we insert it in our internal
>>>>>> map of fd progs.
>>>>>>
>>>>>> This is safe to do because:
>>>>>> - we listen to any call of destructor of programs
>>>>>> - when a program is being destroyed, we disable it by removing
>>>>>>      it from any RCU list used by any HID device (so it will never
>>>>>>      be called)
>>>>>> - we then trigger a job to cleanup the prog fd map, but we overwrite
>>>>>>      the removal of the elements to not do anything on the programs, just
>>>>>>      remove the allocated space
>>>>>>
>>>>>> This is better than previously because we can remove the map of known
>>>>>> programs and their usage count. We now rely on the refcount of
>>>>>> bpf, which has greater chances of being accurate.
>>>>>>
>>>>>> Signed-off-by: Benjamin Tissoires <benjamin.tissoires@redhat.com>
>>>>>>
>>>>>> ---
>>>>>
>>>>> So... I am a little bit embarrassed, but it turns out that this hack
>>>>> is not safe enough.
>>>>>
>>>>> If I compile the kernel with LLVM=1, the function
>>>>> bpf_prog_put_deferred() is optimized in a weird way: if we are not in
>>>>> irq, the function is inlined into __bpf_prog_put(), but if we are, the
>>>>> function is still kept around as it is called in a scheduled work
>>>>> item.
>>>>>
>>>>> This is something I completely overlooked: I assume that if the
>>>>> function would be inlined, the HID entrypoint BPF preloaded object
>>>>> would not be able to bind, thus deactivating HID-BPF safely. But if a
>>>>> function can be both inlined and not inlined, then I have no
>>>>> guarantees that my cleanup call will be called. Meaning that a HID
>>>>> device might believe there is still a bpf function to call. And things
>>>>> will get messy, with kernel crashes and others.
>>>>
>>>> You should not rely fentry to a static function. This is unstable
>>>> as compiler could inline it if that static function is called
>>>> directly. You could attach to a global function if it is not
>>>> compiled with lto.
>>>
>>> But now that the kernel does support LTO, how can you be sure this will
>>> always work properly?  The code author does not know if LTO will kick in
>>> and optimize this away or not, that's the linker's job.
>>
>> Ya, that is right. So for in-kernel bpf programs, attaching to global
>> functions are not safe either. For other not-in-kernel bpf programs, it
>> may not work but that is user's responsibility to adjust properly
>> (to different functions based on a particular build, etc.).
> 
> So if in-kernel bpf programs will not work or are not safe, how will
> in-kernel bpf programs properly attach?

Currently, there is no tracepoint in bpf subsystem to avoid various
'recursion' issues. So the best approach might be providing a
callback call in related func. e.g., bpf_prog_put_deferred(),
and this callback call will provide a facility to invoke an
hid in-kernel bpf programs. This is similar to tracepoint, but it is
not exposed as a tracepoint and only available to kernel internal users.

But I didn't study the bpf usage in this patch set, but typically
bpf prog is hooked to run in a particular kernel place with bpf prog
reference count inceased so the program won't go away. So I think
once hid layer explicit removes bpf program from that hook and
decrease the reference count, hid layer might do some cleanup
work as prog might be freed anyway already or could be due to
other factors like user space closing prog fd.

> 
> confused,
> 
> greg k-h
diff mbox series

Patch

diff --git a/drivers/hid/bpf/entrypoints/entrypoints.bpf.c b/drivers/hid/bpf/entrypoints/entrypoints.bpf.c
index 41dd66d5fc7a..7c1895d9e5c0 100644
--- a/drivers/hid/bpf/entrypoints/entrypoints.bpf.c
+++ b/drivers/hid/bpf/entrypoints/entrypoints.bpf.c
@@ -7,7 +7,7 @@ 
 
 #define HID_BPF_MAX_PROGS 1024
 
-extern bool call_hid_bpf_prog_release(u64 prog, int table_cnt) __ksym;
+extern void call_hid_bpf_prog_put_deferred(struct work_struct *work) __ksym;
 
 struct {
 	__uint(type, BPF_MAP_TYPE_PROG_ARRAY);
@@ -16,13 +16,6 @@  struct {
 	__uint(value_size, sizeof(__u32));
 } hid_jmp_table SEC(".maps");
 
-struct {
-	__uint(type, BPF_MAP_TYPE_HASH);
-	__uint(max_entries, HID_BPF_MAX_PROGS * HID_BPF_PROG_TYPE_MAX);
-	__type(key, void *);
-	__type(value, __u8);
-} progs_map SEC(".maps");
-
 SEC("fmod_ret/__hid_bpf_tail_call")
 int BPF_PROG(hid_tail_call, struct hid_bpf_ctx *hctx)
 {
@@ -31,35 +24,10 @@  int BPF_PROG(hid_tail_call, struct hid_bpf_ctx *hctx)
 	return 0;
 }
 
-static void release_prog(u64 prog)
-{
-	u8 *value;
-
-	value = bpf_map_lookup_elem(&progs_map, &prog);
-	if (!value)
-		return;
-
-	if (call_hid_bpf_prog_release(prog, *value))
-		bpf_map_delete_elem(&progs_map, &prog);
-}
-
-SEC("fexit/bpf_prog_release")
-int BPF_PROG(hid_prog_release, struct inode *inode, struct file *filp)
+SEC("fentry/bpf_prog_put_deferred")
+int BPF_PROG(hid_bpf_prog_put_deferred, struct work_struct *work)
 {
-	u64 prog = (u64)filp->private_data;
-
-	release_prog(prog);
-
-	return 0;
-}
-
-SEC("fexit/bpf_free_inode")
-int BPF_PROG(hid_free_inode, struct inode *inode)
-{
-	u64 prog = (u64)inode->i_private;
-
-	release_prog(prog);
-
+	call_hid_bpf_prog_put_deferred(work);
 	return 0;
 }
 
diff --git a/drivers/hid/bpf/entrypoints/entrypoints.lskel.h b/drivers/hid/bpf/entrypoints/entrypoints.lskel.h
index aa7b7ab31abb..9ffb991b3e6f 100644
--- a/drivers/hid/bpf/entrypoints/entrypoints.lskel.h
+++ b/drivers/hid/bpf/entrypoints/entrypoints.lskel.h
@@ -9,17 +9,14 @@  struct entrypoints_bpf {
 	struct bpf_loader_ctx ctx;
 	struct {
 		struct bpf_map_desc hid_jmp_table;
-		struct bpf_map_desc progs_map;
 	} maps;
 	struct {
 		struct bpf_prog_desc hid_tail_call;
-		struct bpf_prog_desc hid_prog_release;
-		struct bpf_prog_desc hid_free_inode;
+		struct bpf_prog_desc hid_bpf_prog_put_deferred;
 	} progs;
 	struct {
 		int hid_tail_call_fd;
-		int hid_prog_release_fd;
-		int hid_free_inode_fd;
+		int hid_bpf_prog_put_deferred_fd;
 	} links;
 };
 
@@ -35,24 +32,13 @@  entrypoints_bpf__hid_tail_call__attach(struct entrypoints_bpf *skel)
 }
 
 static inline int
-entrypoints_bpf__hid_prog_release__attach(struct entrypoints_bpf *skel)
+entrypoints_bpf__hid_bpf_prog_put_deferred__attach(struct entrypoints_bpf *skel)
 {
-	int prog_fd = skel->progs.hid_prog_release.prog_fd;
+	int prog_fd = skel->progs.hid_bpf_prog_put_deferred.prog_fd;
 	int fd = skel_raw_tracepoint_open(NULL, prog_fd);
 
 	if (fd > 0)
-		skel->links.hid_prog_release_fd = fd;
-	return fd;
-}
-
-static inline int
-entrypoints_bpf__hid_free_inode__attach(struct entrypoints_bpf *skel)
-{
-	int prog_fd = skel->progs.hid_free_inode.prog_fd;
-	int fd = skel_raw_tracepoint_open(NULL, prog_fd);
-
-	if (fd > 0)
-		skel->links.hid_free_inode_fd = fd;
+		skel->links.hid_bpf_prog_put_deferred_fd = fd;
 	return fd;
 }
 
@@ -62,8 +48,7 @@  entrypoints_bpf__attach(struct entrypoints_bpf *skel)
 	int ret = 0;
 
 	ret = ret < 0 ? ret : entrypoints_bpf__hid_tail_call__attach(skel);
-	ret = ret < 0 ? ret : entrypoints_bpf__hid_prog_release__attach(skel);
-	ret = ret < 0 ? ret : entrypoints_bpf__hid_free_inode__attach(skel);
+	ret = ret < 0 ? ret : entrypoints_bpf__hid_bpf_prog_put_deferred__attach(skel);
 	return ret < 0 ? ret : 0;
 }
 
@@ -71,8 +56,7 @@  static inline void
 entrypoints_bpf__detach(struct entrypoints_bpf *skel)
 {
 	skel_closenz(skel->links.hid_tail_call_fd);
-	skel_closenz(skel->links.hid_prog_release_fd);
-	skel_closenz(skel->links.hid_free_inode_fd);
+	skel_closenz(skel->links.hid_bpf_prog_put_deferred_fd);
 }
 static void
 entrypoints_bpf__destroy(struct entrypoints_bpf *skel)
@@ -81,10 +65,8 @@  entrypoints_bpf__destroy(struct entrypoints_bpf *skel)
 		return;
 	entrypoints_bpf__detach(skel);
 	skel_closenz(skel->progs.hid_tail_call.prog_fd);
-	skel_closenz(skel->progs.hid_prog_release.prog_fd);
-	skel_closenz(skel->progs.hid_free_inode.prog_fd);
+	skel_closenz(skel->progs.hid_bpf_prog_put_deferred.prog_fd);
 	skel_closenz(skel->maps.hid_jmp_table.map_fd);
-	skel_closenz(skel->maps.progs_map.map_fd);
 	skel_free(skel);
 }
 static inline struct entrypoints_bpf *
@@ -109,7 +91,7 @@  entrypoints_bpf__load(struct entrypoints_bpf *skel)
 	int err;
 
 	opts.ctx = (struct bpf_loader_ctx *)skel;
-	opts.data_sz = 10624;
+	opts.data_sz = 3792;
 	opts.data = (void *)"\
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@@ -144,475 +126,175 @@  entrypoints_bpf__load(struct entrypoints_bpf *skel)
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+	opts.insns_sz = 2056;
 	opts.insns = (void *)"\
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+\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x80\x0e\0\0\x7b\x01\0\0\0\0\0\0\x61\x60\
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+\x60\x0c\0\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x24\x0e\0\0\x63\x01\0\0\0\0\0\0\
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+\0\0\x61\xa0\x78\xff\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x50\x0e\0\0\x63\x01\0\
+\0\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x98\x0e\0\0\xb7\x02\0\0\x16\0\0\0\xb7\
+\x03\0\0\x0c\0\0\0\xb7\x04\0\0\0\0\0\0\x85\0\0\0\xa7\0\0\0\xbf\x07\0\0\0\0\0\0\
+\xc5\x07\x45\xff\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\x08\x0e\0\0\x63\x70\x6c\0\
+\0\0\0\0\x77\x07\0\0\x20\0\0\0\x63\x70\x70\0\0\0\0\0\x18\x68\0\0\0\0\0\0\0\0\0\
+\0\xb8\x0d\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\xb0\x0e\0\0\xb7\x02\0\0\x1f\0\0\0\
 \xb7\x03\0\0\x0c\0\0\0\xb7\x04\0\0\0\0\0\0\x85\0\0\0\xa7\0\0\0\xbf\x07\0\0\0\0\
-\0\0\xc5\x07\x72\xff\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\x50\x24\0\0\x63\x70\
-\x6c\0\0\0\0\0\x77\x07\0\0\x20\0\0\0\x63\x70\x70\0\0\0\0\0\xb7\x01\0\0\x05\0\0\
-\0\x18\x62\0\0\0\0\0\0\0\0\0\0\x50\x24\0\0\xb7\x03\0\0\x8c\0\0\0\x85\0\0\0\xa6\
-\0\0\0\xbf\x07\0\0\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\xc0\x24\0\0\x61\x01\0\0\
+\0\0\xc5\x07\x36\xff\0\0\0\0\x75\x07\x03\0\0\0\0\0\x62\x08\x04\0\0\0\0\0\x6a\
+\x08\x02\0\0\0\0\0\x05\0\x0a\0\0\0\0\0\x63\x78\x04\0\0\0\0\0\xbf\x79\0\0\0\0\0\
+\0\x77\x09\0\0\x20\0\0\0\x55\x09\x02\0\0\0\0\0\x6a\x08\x02\0\0\0\0\0\x05\0\x04\
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+\x02\0\x40\0\0\0\xb7\x01\0\0\x05\0\0\0\x18\x62\0\0\0\0\0\0\0\0\0\0\x08\x0e\0\0\
+\xb7\x03\0\0\x8c\0\0\0\x85\0\0\0\xa6\0\0\0\xbf\x07\0\0\0\0\0\0\x18\x60\0\0\0\0\
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 \0\0\0\0\xd5\x01\x02\0\0\0\0\0\xbf\x19\0\0\0\0\0\0\x85\0\0\0\xa8\0\0\0\xc5\x07\
-\x60\xff\0\0\0\0\x63\x7a\x80\xff\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\xf8\x24\0\
-\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x88\x26\0\0\x7b\x01\0\0\0\0\0\0\x18\x60\0\0\0\0\
-\0\0\0\0\0\0\0\x25\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x80\x26\0\0\x7b\x01\0\0\0\0\
-\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\xa0\x25\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\xc8\
-\x26\0\0\x7b\x01\0\0\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\xa8\x25\0\0\x18\x61\0\
-\0\0\0\0\0\0\0\0\0\xd8\x26\0\0\x7b\x01\0\0\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\
-\x68\x26\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\xf8\x26\0\0\x7b\x01\0\0\0\0\0\0\x18\
-\x60\0\0\0\0\0\0\0\0\0\0\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\xf0\x26\0\0\x7b\
-\x01\0\0\0\0\0\0\x61\x60\x08\0\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x90\x26\0\0\
-\x63\x01\0\0\0\0\0\0\x61\x60\x0c\0\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x94\x26\
-\0\0\x63\x01\0\0\0\0\0\0\x79\x60\x10\0\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x98\
-\x26\0\0\x7b\x01\0\0\0\0\0\0\x61\xa0\x78\xff\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\
-\0\xc0\x26\0\0\x63\x01\0\0\0\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x08\x27\0\0\xb7\
-\x02\0\0\x11\0\0\0\xb7\x03\0\0\x0c\0\0\0\xb7\x04\0\0\0\0\0\0\x85\0\0\0\xa7\0\0\
-\0\xbf\x07\0\0\0\0\0\0\xc5\x07\x29\xff\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\x78\
-\x26\0\0\x63\x70\x6c\0\0\0\0\0\x77\x07\0\0\x20\0\0\0\x63\x70\x70\0\0\0\0\0\x18\
-\x68\0\0\0\0\0\0\0\0\0\0\x58\x25\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x20\x27\0\0\
-\xb7\x02\0\0\x1a\0\0\0\xb7\x03\0\0\x0c\0\0\0\xb7\x04\0\0\0\0\0\0\x85\0\0\0\xa7\
-\0\0\0\xbf\x07\0\0\0\0\0\0\xc5\x07\x1a\xff\0\0\0\0\x75\x07\x03\0\0\0\0\0\x62\
-\x08\x04\0\0\0\0\0\x6a\x08\x02\0\0\0\0\0\x05\0\x0a\0\0\0\0\0\x63\x78\x04\0\0\0\
-\0\0\xbf\x79\0\0\0\0\0\0\x77\x09\0\0\x20\0\0\0\x55\x09\x02\0\0\0\0\0\x6a\x08\
-\x02\0\0\0\0\0\x05\0\x04\0\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\0\x01\0\0\x63\
-\x90\0\0\0\0\0\0\x6a\x08\x02\0\x40\0\0\0\xb7\x01\0\0\x05\0\0\0\x18\x62\0\0\0\0\
-\0\0\0\0\0\0\x78\x26\0\0\xb7\x03\0\0\x8c\0\0\0\x85\0\0\0\xa6\0\0\0\xbf\x07\0\0\
-\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\0\x01\0\0\x61\x01\0\0\0\0\0\0\xd5\x01\x02\
-\0\0\0\0\0\xbf\x19\0\0\0\0\0\0\x85\0\0\0\xa8\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\
-\xe8\x26\0\0\x61\x01\0\0\0\0\0\0\xd5\x01\x02\0\0\0\0\0\xbf\x19\0\0\0\0\0\0\x85\
-\0\0\0\xa8\0\0\0\xc5\x07\xf9\xfe\0\0\0\0\x63\x7a\x84\xff\0\0\0\0\x18\x60\0\0\0\
-\0\0\0\0\0\0\0\x40\x27\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\xd0\x28\0\0\x7b\x01\0\0\
-\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\x48\x27\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\
-\xc8\x28\0\0\x7b\x01\0\0\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\xe8\x27\0\0\x18\
-\x61\0\0\0\0\0\0\0\0\0\0\x10\x29\0\0\x7b\x01\0\0\0\0\0\0\x18\x60\0\0\0\0\0\0\0\
-\0\0\0\xf0\x27\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x20\x29\0\0\x7b\x01\0\0\0\0\0\0\
-\x18\x60\0\0\0\0\0\0\0\0\0\0\xb0\x28\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x40\x29\0\
-\0\x7b\x01\0\0\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\0\0\0\0\x18\x61\0\0\0\0\0\0\
-\0\0\0\0\x38\x29\0\0\x7b\x01\0\0\0\0\0\0\x61\x60\x08\0\0\0\0\0\x18\x61\0\0\0\0\
-\0\0\0\0\0\0\xd8\x28\0\0\x63\x01\0\0\0\0\0\0\x61\x60\x0c\0\0\0\0\0\x18\x61\0\0\
-\0\0\0\0\0\0\0\0\xdc\x28\0\0\x63\x01\0\0\0\0\0\0\x79\x60\x10\0\0\0\0\0\x18\x61\
-\0\0\0\0\0\0\0\0\0\0\xe0\x28\0\0\x7b\x01\0\0\0\0\0\0\x61\xa0\x78\xff\0\0\0\0\
-\x18\x61\0\0\0\0\0\0\0\0\0\0\x08\x29\0\0\x63\x01\0\0\0\0\0\0\x18\x61\0\0\0\0\0\
-\0\0\0\0\0\x50\x29\0\0\xb7\x02\0\0\x0f\0\0\0\xb7\x03\0\0\x0c\0\0\0\xb7\x04\0\0\
-\0\0\0\0\x85\0\0\0\xa7\0\0\0\xbf\x07\0\0\0\0\0\0\xc5\x07\xc2\xfe\0\0\0\0\x18\
-\x60\0\0\0\0\0\0\0\0\0\0\xc0\x28\0\0\x63\x70\x6c\0\0\0\0\0\x77\x07\0\0\x20\0\0\
-\0\x63\x70\x70\0\0\0\0\0\x18\x68\0\0\0\0\0\0\0\0\0\0\xa0\x27\0\0\x18\x61\0\0\0\
-\0\0\0\0\0\0\0\x60\x29\0\0\xb7\x02\0\0\x1a\0\0\0\xb7\x03\0\0\x0c\0\0\0\xb7\x04\
-\0\0\0\0\0\0\x85\0\0\0\xa7\0\0\0\xbf\x07\0\0\0\0\0\0\xc5\x07\xb3\xfe\0\0\0\0\
-\x75\x07\x03\0\0\0\0\0\x62\x08\x04\0\0\0\0\0\x6a\x08\x02\0\0\0\0\0\x05\0\x0a\0\
-\0\0\0\0\x63\x78\x04\0\0\0\0\0\xbf\x79\0\0\0\0\0\0\x77\x09\0\0\x20\0\0\0\x55\
-\x09\x02\0\0\0\0\0\x6a\x08\x02\0\0\0\0\0\x05\0\x04\0\0\0\0\0\x18\x60\0\0\0\0\0\
-\0\0\0\0\0\0\x01\0\0\x63\x90\0\0\0\0\0\0\x6a\x08\x02\0\x40\0\0\0\xb7\x01\0\0\
-\x05\0\0\0\x18\x62\0\0\0\0\0\0\0\0\0\0\xc0\x28\0\0\xb7\x03\0\0\x8c\0\0\0\x85\0\
-\0\0\xa6\0\0\0\xbf\x07\0\0\0\0\0\0\x18\x60\0\0\0\0\0\0\0\0\0\0\0\x01\0\0\x61\
-\x01\0\0\0\0\0\0\xd5\x01\x02\0\0\0\0\0\xbf\x19\0\0\0\0\0\0\x85\0\0\0\xa8\0\0\0\
-\x18\x60\0\0\0\0\0\0\0\0\0\0\x30\x29\0\0\x61\x01\0\0\0\0\0\0\xd5\x01\x02\0\0\0\
-\0\0\xbf\x19\0\0\0\0\0\0\x85\0\0\0\xa8\0\0\0\xc5\x07\x92\xfe\0\0\0\0\x63\x7a\
-\x88\xff\0\0\0\0\x61\xa1\x78\xff\0\0\0\0\xd5\x01\x02\0\0\0\0\0\xbf\x19\0\0\0\0\
-\0\0\x85\0\0\0\xa8\0\0\0\x61\xa0\x80\xff\0\0\0\0\x63\x06\x38\0\0\0\0\0\x61\xa0\
-\x84\xff\0\0\0\0\x63\x06\x3c\0\0\0\0\0\x61\xa0\x88\xff\0\0\0\0\x63\x06\x40\0\0\
-\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\0\0\0\0\x61\x10\0\0\0\0\0\0\x63\x06\x18\0\0\
-\0\0\0\x18\x61\0\0\0\0\0\0\0\0\0\0\x04\0\0\0\x61\x10\0\0\0\0\0\0\x63\x06\x28\0\
-\0\0\0\0\xb7\0\0\0\0\0\0\0\x95\0\0\0\0\0\0\0";
+\x15\xff\0\0\0\0\x63\x7a\x84\xff\0\0\0\0\x61\xa1\x78\xff\0\0\0\0\xd5\x01\x02\0\
+\0\0\0\0\xbf\x19\0\0\0\0\0\0\x85\0\0\0\xa8\0\0\0\x61\xa0\x80\xff\0\0\0\0\x63\
+\x06\x28\0\0\0\0\0\x61\xa0\x84\xff\0\0\0\0\x63\x06\x2c\0\0\0\0\0\x18\x61\0\0\0\
+\0\0\0\0\0\0\0\0\0\0\0\x61\x10\0\0\0\0\0\0\x63\x06\x18\0\0\0\0\0\xb7\0\0\0\0\0\
+\0\0\x95\0\0\0\0\0\0\0";
 	err = bpf_load_and_run(&opts);
 	if (err < 0)
 		return err;
diff --git a/drivers/hid/bpf/hid_bpf_dispatch.c b/drivers/hid/bpf/hid_bpf_dispatch.c
index 600b00fdf6c1..0ef99caf937a 100644
--- a/drivers/hid/bpf/hid_bpf_dispatch.c
+++ b/drivers/hid/bpf/hid_bpf_dispatch.c
@@ -94,7 +94,7 @@  hid_bpf_get_data(struct hid_bpf_ctx *ctx, unsigned int offset, const size_t rdwr
  * can use.
  */
 BTF_SET8_START(hid_bpf_kfunc_ids)
-BTF_ID_FLAGS(func, call_hid_bpf_prog_release)
+BTF_ID_FLAGS(func, call_hid_bpf_prog_put_deferred)
 BTF_ID_FLAGS(func, hid_bpf_get_data, KF_RET_NULL)
 BTF_SET8_END(hid_bpf_kfunc_ids)
 
diff --git a/drivers/hid/bpf/hid_bpf_dispatch.h b/drivers/hid/bpf/hid_bpf_dispatch.h
index 98c378e18b2b..e2d64faa3932 100644
--- a/drivers/hid/bpf/hid_bpf_dispatch.h
+++ b/drivers/hid/bpf/hid_bpf_dispatch.h
@@ -22,6 +22,6 @@  int hid_bpf_prog_run(struct hid_device *hdev, enum hid_bpf_prog_type type,
 struct bpf_prog;
 
 /* HID-BPF internal kfuncs API */
-bool call_hid_bpf_prog_release(u64 prog, int table_cnt);
+void call_hid_bpf_prog_put_deferred(struct work_struct *work);
 
 #endif
diff --git a/drivers/hid/bpf/hid_bpf_jmp_table.c b/drivers/hid/bpf/hid_bpf_jmp_table.c
index 05225ff3cc27..e5f171ab480c 100644
--- a/drivers/hid/bpf/hid_bpf_jmp_table.c
+++ b/drivers/hid/bpf/hid_bpf_jmp_table.c
@@ -39,7 +39,6 @@  struct hid_bpf_prog_entry {
 
 struct hid_bpf_jmp_table {
 	struct bpf_map *map;
-	struct bpf_map *prog_keys;
 	struct hid_bpf_prog_entry entries[HID_BPF_MAX_PROGS]; /* compacted list, circular buffer */
 	int tail, head;
 	struct bpf_prog *progs[HID_BPF_MAX_PROGS]; /* idx -> progs mapping */
@@ -286,32 +285,23 @@  static void hid_bpf_release_prog_at(int idx)
  */
 static int hid_bpf_insert_prog(int prog_fd, struct bpf_prog *prog)
 {
-	int i, cnt, index = -1, map_fd = -1, progs_map_fd = -1, err = -EINVAL;
+	int i, index = -1, map_fd = -1, err = -EINVAL;
 
 	/* retrieve a fd of our prog_array map in BPF */
 	map_fd = skel_map_get_fd_by_id(jmp_table.map->id);
-	/* take an fd for the table of progs we monitor with SEC("fexit/bpf_prog_release") */
-	progs_map_fd = skel_map_get_fd_by_id(jmp_table.prog_keys->id);
 
-	if (map_fd < 0 || progs_map_fd < 0) {
+	if (map_fd < 0) {
 		err = -EINVAL;
 		goto out;
 	}
 
-	cnt = 0;
-	/* find the first available index in the jmp_table
-	 * and count how many time this program has been inserted
-	 */
+	/* find the first available index in the jmp_table */
 	for (i = 0; i < HID_BPF_MAX_PROGS; i++) {
 		if (!jmp_table.progs[i] && index < 0) {
 			/* mark the index as used */
 			jmp_table.progs[i] = prog;
 			index = i;
 			__set_bit(i, jmp_table.enabled);
-			cnt++;
-		} else {
-			if (jmp_table.progs[i] == prog)
-				cnt++;
 		}
 	}
 	if (index < 0) {
@@ -324,10 +314,15 @@  static int hid_bpf_insert_prog(int prog_fd, struct bpf_prog *prog)
 	if (err)
 		goto out;
 
-	/* insert the program in the prog list table */
-	err = skel_map_update_elem(progs_map_fd, &prog, &cnt, 0);
-	if (err)
-		goto out;
+	/*
+	 * The program has been safely inserted, decrement the reference count
+	 * so it doesn't interfere with the number of actual user handles.
+	 * This is safe to do because:
+	 * - we overrite the put_ptr in the prog fd map
+	 * - we also have a cleanup function that monitors when a program gets
+	 *   released and we manually do the cleanup in the prog fd map
+	 */
+	bpf_prog_sub(prog, 1);
 
 	/* return the index */
 	err = index;
@@ -337,8 +332,6 @@  static int hid_bpf_insert_prog(int prog_fd, struct bpf_prog *prog)
 		__hid_bpf_do_release_prog(map_fd, index);
 	if (map_fd >= 0)
 		close_fd(map_fd);
-	if (progs_map_fd >= 0)
-		close_fd(progs_map_fd);
 	return err;
 }
 
@@ -457,41 +450,38 @@  void __hid_bpf_destroy_device(struct hid_device *hdev)
 	schedule_work(&release_work);
 }
 
-noinline bool
-call_hid_bpf_prog_release(u64 prog_key, int table_cnt)
+void call_hid_bpf_prog_put_deferred(struct work_struct *work)
 {
-	/* compare with how many refs are left in the bpf program */
-	struct bpf_prog *prog = (struct bpf_prog *)prog_key;
-	int idx;
-
-	if (!prog)
-		return false;
+	struct bpf_prog_aux *aux;
+	struct bpf_prog *prog;
+	bool found = false;
+	int i;
 
-	if (atomic64_read(&prog->aux->refcnt) != table_cnt)
-		return false;
+	aux = container_of(work, struct bpf_prog_aux, work);
+	prog = aux->prog;
 
 	/* we don't need locking here because the entries in the progs table
 	 * are stable:
 	 * if there are other users (and the progs entries might change), we
-	 * would return in the statement above.
+	 * would simply not have been called.
 	 */
-	for (idx = 0; idx < HID_BPF_MAX_PROGS; idx++) {
-		if (jmp_table.progs[idx] == prog) {
-			__clear_bit(idx, jmp_table.enabled);
-			break;
+	for (i = 0; i < HID_BPF_MAX_PROGS; i++) {
+		if (jmp_table.progs[i] == prog) {
+			__clear_bit(i, jmp_table.enabled);
+			found = true;
 		}
 	}
-	if (idx >= HID_BPF_MAX_PROGS) {
-		/* should never happen if we get our refcount right */
-		idx = -1;
-	}
 
-	/* schedule release of all detached progs */
-	schedule_work(&release_work);
-	return idx >= 0;
+	if (found)
+		/* schedule release of all detached progs */
+		schedule_work(&release_work);
+}
+
+static void hid_bpf_prog_fd_array_put_ptr(void *ptr)
+{
 }
 
-#define HID_BPF_PROGS_COUNT 3
+#define HID_BPF_PROGS_COUNT 2
 
 static struct bpf_link *links[HID_BPF_PROGS_COUNT];
 static struct entrypoints_bpf *skel;
@@ -501,9 +491,6 @@  void hid_bpf_free_links_and_skel(void)
 	int i;
 
 	/* the following is enough to release all programs attached to hid */
-	if (jmp_table.prog_keys)
-		bpf_map_put_with_uref(jmp_table.prog_keys);
-
 	if (jmp_table.map)
 		bpf_map_put_with_uref(jmp_table.map);
 
@@ -533,6 +520,8 @@  void hid_bpf_free_links_and_skel(void)
 	idx++;									\
 } while (0)
 
+static struct bpf_map_ops hid_bpf_prog_fd_maps_ops;
+
 int hid_bpf_preload_skel(void)
 {
 	int err, idx = 0;
@@ -551,15 +540,14 @@  int hid_bpf_preload_skel(void)
 		goto out;
 	}
 
-	jmp_table.prog_keys = bpf_map_get_with_uref(skel->maps.progs_map.map_fd);
-	if (IS_ERR(jmp_table.prog_keys)) {
-		err = PTR_ERR(jmp_table.prog_keys);
-		goto out;
-	}
+	/* our jump table is stealing refs, so we should not decrement on removal of elements */
+	hid_bpf_prog_fd_maps_ops = *jmp_table.map->ops;
+	hid_bpf_prog_fd_maps_ops.map_fd_put_ptr = hid_bpf_prog_fd_array_put_ptr;
+
+	jmp_table.map->ops = &hid_bpf_prog_fd_maps_ops;
 
 	ATTACH_AND_STORE_LINK(hid_tail_call);
-	ATTACH_AND_STORE_LINK(hid_prog_release);
-	ATTACH_AND_STORE_LINK(hid_free_inode);
+	ATTACH_AND_STORE_LINK(hid_bpf_prog_put_deferred);
 
 	return 0;
 out: