Re: [PATCH v4] mm/hugetlb_cma: Fix null nodemask dereference in hugetlb_cma_alloc_frozen_folio

From: Sourav Panda

Date: Fri Aug 07 2026 - 01:55:03 EST


On Thu, Aug 6, 2026 at 10:29 PM Anshuman Khandual
<anshuman.khandual@xxxxxxx> wrote:
>
> On Thu, Aug 06, 2026 at 09:11:29PM -0700, Sourav Panda wrote:
> > On Thu, Aug 6, 2026 at 4:07 AM Usama Arif <usama.arif@xxxxxxxxx> wrote:
> > >
> > >
> > >
> > > On 06/08/2026 06:33, Sourav Panda wrote:
> > > > On Wed, Aug 5, 2026 at 7:47 PM Anshuman Khandual
> > > > <anshuman.khandual@xxxxxxx> wrote:
> > > >>
> > > >> On Wed, Aug 05, 2026 at 01:24:42PM -0700, Usama Arif wrote:
> > > >>> On Sun, 26 Jul 2026 07:29:34 +0000 Sourav Panda <souravpanda@xxxxxxxxxx> wrote:
> > > >>>
> > > >>>> alloc_buddy_hugetlb_folio_with_mpol() can pass a NULL nodemask to
> > > >>>> alloc_fresh_hugetlb_folio() as a fallback to allocate from all
> > > >>>> nodes. If order is gigantic, alloc_fresh_hugetlb_folio() propagates
> > > >>>> the NULL nodemask down to hugetlb_cma_alloc_frozen_folio() via
> > > >>>> alloc_gigantic_frozen_folio().
> > > >>>>
> > > >>>> hugetlb_cma_alloc_frozen_folio() blindly dereferences the nodemask in
> > > >>>> node_isset(nid, *nodemask) and for_each_node_mask(node, *nodemask),
> > > >>>> leading to a null pointer dereference kernel panic.
> > > >>>>
> > > >>>> Fix this by checking if nodemask is NULL in
> > > >>>> hugetlb_cma_alloc_frozen_folio() and defaulting it to
> > > >>>> node_states[N_MEMORY]. This allows hugetlb_cma allocations to fall
> > > >>>> back to any node with memory, keeping behavior consistent with
> > > >>>> alloc_contig_frozen_pages() and alloc_buddy_frozen_folio().
> > > >>>>
> > > >>>> >From a userspace perspective, this bug allows an unprivileged user to
> > > >>>> crash the kernel (trigger a panic) by requesting a gigantic hugepage
> > > >>>> allocation with MPOL_PREFERRED_MANY on a system where CMA is only
> > > >>>> configured on a subset of NUMA nodes.
> > > >>>>
> > > >>>> This can be reproduced by booting a VM with two NUMA nodes, restricting
> > > >>>> CMA to Node 1 (e.g., hugetlb_cma=1:1G default_hugepagesz=1G
> > > >>>> hugepagesz=1G hugepages=0), and running a program that allocates a
> > > >>>> 1GB hugepage area without reserving, restricts allocation to Node 0
> > > >>>> using mbind() with MPOL_PREFERRED_MANY, and triggers a page fault:
> > > >>>>
> > > >>>> void *ptr = mmap(NULL, 1UL << 30, PROT_READ | PROT_WRITE,
> > > >>>> MAP_PRIVATE | MAP_ANONYMOUS | MAP_HUGETLB |
> > > >>>> MAP_HUGE_1GB | MAP_NORESERVE, -1, 0);
> > > >>>> unsigned long nodemask = 1; /* Node 0 */
> > > >>>> mbind(ptr, 1UL << 30, MPOL_PREFERRED_MANY, &nodemask,
> > > >>>> sizeof(nodemask) * 8, 0);
> > > >>>> memset(ptr, 0, 1UL << 30); /* Trigger fault */
> > > >>>>
> > > >>>> This results in a NULL pointer dereference:
> > > >>>>
> > > >>>> BUG: kernel NULL pointer dereference, address: 0000000000000000
> > > >>>> #PF: supervisor read access in kernel mode
> > > >>>> #PF: error_code(0x0000) - not-present page
> > > >>>> Oops: Oops: 0000 [#1] SMP NOPTI
> > > >>>> RIP: 0010:hugetlb_cma_alloc_frozen_folio+0x75/0x120
> > > >>>> Call Trace:
> > > >>>> <TASK>
> > > >>>> only_alloc_fresh_hugetlb_folio.isra.0+0x2c/0x160
> > > >>>> alloc_surplus_hugetlb_folio+0x6d/0x100
> > > >>>> alloc_hugetlb_folio+0x3c5/0x660
> > > >>>> hugetlb_no_page+0x3d9/0x650
> > > >>>>
> > > >>>> Fixes: eb02f14c4a2b ("mm/hugetlb: allow overcommitting gigantic hugepages")
> > > >>>> Cc: stable@xxxxxxxxxxxxxxx
> > > >>>> Signed-off-by: Sourav Panda <souravpanda@xxxxxxxxxx>
> > > >>>> ---
> > > >>>> Changes in v4:
> > > >>>> - Reverted the alloc_fresh_hugetlb_folio() cpuset snapshot approach from v3.
> > > >>>> As Muchun Song pointed out, snapshotting cpuset_current_mems_allowed does
> > > >>>> not prevent false-positive allocation failures without complex retry loops,
> > > >>>> and alloc_contig_frozen_pages() / alloc_buddy_frozen_folio() already handle
> > > >>>> NULL nodemasks safely internally.
> > > >>>> - Handled NULL nodemask directly inside hugetlb_cma_alloc_frozen_folio()
> > > >>>> by defaulting nodemask to node_states[N_MEMORY] (Option 2), keeping
> > > >>>> HugeTLB allocators clean and consistent.
> > > >>>> - v3: https://lore.kernel.org/linux-mm/20260705175119.440599-1-souravpanda@xxxxxxxxxx/
> > > >>>> - v2: https://lore.kernel.org/linux-mm/20260704174930.2885785-1-souravpanda@xxxxxxxxxx/
> > > >>>> - v1: https://lore.kernel.org/linux-mm/20260702215713.627941-1-souravpanda@xxxxxxxxxx/
> > > >>>>
> > > >>>> mm/hugetlb_cma.c | 5 ++++-
> > > >>>> 1 file changed, 4 insertions(+), 1 deletion(-)
> > > >>>>
> > > >>>> diff --git a/mm/hugetlb_cma.c b/mm/hugetlb_cma.c
> > > >>>> index 39344d6c78d8..5744de0ceeb7 100644
> > > >>>> --- a/mm/hugetlb_cma.c
> > > >>>> +++ b/mm/hugetlb_cma.c
> > > >>>> @@ -34,7 +34,10 @@ struct folio *hugetlb_cma_alloc_frozen_folio(int order, gfp_t gfp_mask,
> > > >>>> if (!hugetlb_cma_size)
> > > >>>> return NULL;
> > > >>>>
> > > >>>> - if (hugetlb_cma[nid])
> > > >>>> + if (!nodemask)
> > > >>>> + nodemask = &node_states[N_MEMORY];
> > > >>>
> > > >>> Hi Sourav,
> > > >>>
> > > >>> hmm what if cpuset.mems only allows allocation from node 0, and hugetlb CMA
> > > >>> is only available on node 1. This will no now allow allocating a gigantic page
> > > >>> on node 1 when its explicitly not allowed?
> > > >>
> > > >> That's fair point but should not the user be also responsible in provding a right
> > > >> nodemask containing CMA memory if it prefers avoiding node_states[N_MEMORY] based
> > > >> fallback mechanism in kernel ?
> > > >>
> > >
> > > I don't think the task can be made responsible for providing a CMA-aware fallback mask
> > > here. Userspace supplies the MPOL_PREFERRED_MANY preference, but the kernel itself
> > > changes the second attempt to a NULL nodemask. That permits fallback outside the
> > > preferred policy nodes; it does not permit fallback outside the task's hardwall cpuset.
> > >
> > > >
> > > > We have precedence for three options, which makes selecting one difficult :)
> > > >
> > > > 1) nodemask = &cpuset_current_mems_allowed is currently being used in:
> > > > only_alloc_fresh_hugetlb_folio --> alloc_buddy_frozen_folio -->
> > > > __alloc_frozen_pages_noprof --> prepare_alloc_pages.
> > >
> > > Here I think using &cpuset_current_mems_allowed is part of the page allocator's wider cpuset handling.
> > >
> > > > 2) Some places use cookies with cpuset_current_mems_allowed to prevent
> > > > torn writes. But this adds complexity.
> > > > An example would be dequeue_hugetlb_folio_nodemask()
> > > > 3) node_states[N_MEMORY] is sprinkled all over the kernel (simplest).
> > > >
> > >
> > > I would prefer option 2. A NULL mempolicy mask should fall back to
> > > cpuset_current_mems_allowed, not all N_MEMORY nodes.
> > >
> >
> > Sounds good Usama :)
> >
> > I will send a patch that replaces nodemask = &node_states[N_MEMORY];
> > with the below:
> >
> > + unsigned int cpuset_mems_cookie;
> > +
> > + do {
> > + cpuset_mems_cookie = read_mems_allowed_begin();
> > + local_node_mask = cpuset_current_mems_allowed;
> > + } while (read_mems_allowed_retry(cpuset_mems_cookie));
> > +
> > + nodemask = &local_node_mask;
>
> Although complexity increases with the above mechanism but probably
> it might be better in terms of being compliant with task's hardwall
> cpuset as explained by Usama earlier.
>
> >
> > Will send it out tomorrow! Let me know if anyone has any objections.
>
> I would say let's wait for a day or two before sending the respin.
>

Ack!

Thanks Usama and Anshuman :)

> >
> > >
> > > >>>
> > > >>> Would it not be better to check cpuset as well?
> > > >>>
> > > >>> Thanks,
> > > >>> Usama
> > > >>>
> > > >>>> +
> > > >>>> + if (hugetlb_cma[nid] && node_isset(nid, *nodemask))
> > > >>>> page = cma_alloc_frozen_compound(hugetlb_cma[nid], order);
> > > >>>>
> > > >>>> if (!page && !(gfp_mask & __GFP_THISNODE)) {
> > > >>>> --
> > > >>>> 2.55.0
> > > >>>>
> > >