From: Catalin Marinas <catalin.marinas@arm.com>
To: Suzuki K Poulose <suzuki.poulose@arm.com>
Cc: kvm@vger.kernel.org, kvmarm@lists.linux.dev, maz@kernel.org,
will@kernel.org, linux-kernel@vger.kernel.org,
linux-arm-kernel@lists.infradead.org, steven.price@arm.com,
aneesh.kumar@kernel.org, oupton@kernel.org, gshan@redhat.com,
joey.gouly@arm.com, tabba@google.com, yuzenghui@huawei.com,
linux-coco@lists.linux.dev, gankulkarni@os.amperecomputing.com,
sdonthineni@nvidia.com, alpergun@google.com,
fj0570is@fujitsu.com, WeiLin.Chang@arm.com,
lpieralisi@kernel.org, enju.kohei@fujitsu.com
Subject: Re: [PATCH v18] arm64: mm: Handle Granule Protection Faults (GPFs)
Date: Wed, 16 Sep 2026 17:39:24 +0100 [thread overview]
Message-ID: <aqrGPK0lFBFXL2qY@arm.com> (raw)
In-Reply-To: <20260913070459.2547407-1-suzuki.poulose@arm.com>
On Sun, Sep 13, 2026 at 08:04:58AM +0100, Suzuki K Poulose wrote:
> From: Steven Price <steven.price@arm.com>
>
> If the host attempts to access granules that have been delegated for use
> in a realm these accesses will be caught and will trigger a Granule
> Protection Fault (GPF).
>
> A fault during a page walk signals a bug in the kernel and is handled by
> oopsing the kernel. A non-page walk fault could be caused by user space
> having access to a page which has been delegated to the kernel and will
> trigger a SIGBUS to allow debugging why user space is trying to access a
> delegated page.
>
> There is work in progress to unmap the guest_memfd backed private pages from the
> linear map. Until we get that support, we could get spurious GPFs from within
> the kernel, e.g., load_unaligned_zeropad(). So, try to fix them up for now.
>
> Reviewed-by: Suzuki K Poulose <suzuki.poulose@arm.com>
> Reviewed-by: Gavin Shan <gshan@redhat.com>
> Reviewed-by: Catalin Marinas <catalin.marinas@arm.com>
> Signed-off-by: Steven Price <steven.price@arm.com>
> Signed-off-by: Suzuki K Poulose <suzuki.poulose@arm.com>
> ---
> Changes since v17:
> * Pass untagged address to die_kernel_fault() - Sashiko
> * Explicitly check !user_mode() for fixups - Catalin
> * Switch to BUS_OBJERR for si_code from SI_KERNEL - Catalin
> * Clarify the commit description about the upcoming work on
> unmapping guest_memfd backed pages from linear map
> Changes since v16:
> * Update the commit description to indicate why we try to fixup GPFs
> Changes since v10:
> * Don't call arm64_notify_die() in do_gpf() but simply return 1.
> Changes since v2:
> * Include missing "Granule Protection Fault at level -1"
> ---
> arch/arm64/mm/fault.c | 30 ++++++++++++++++++++++++------
> 1 file changed, 24 insertions(+), 6 deletions(-)
>
> diff --git a/arch/arm64/mm/fault.c b/arch/arm64/mm/fault.c
> index 75c3e463df2ef..dc3a87902a60c 100644
> --- a/arch/arm64/mm/fault.c
> +++ b/arch/arm64/mm/fault.c
> @@ -914,6 +914,24 @@ static int do_tag_check_fault(unsigned long far, unsigned long esr,
> return 0;
> }
>
> +static int do_gpf_ptw(unsigned long far, unsigned long esr, struct pt_regs *regs)
> +{
> + const struct fault_info *inf = esr_to_fault_info(esr);
> + unsigned long addr = untagged_addr(far);
> +
> + die_kernel_fault(inf->name, addr, esr, regs);
> + return 0;
> +}
> +
> +static int do_gpf(unsigned long far, unsigned long esr, struct pt_regs *regs)
> +{
> + if (!user_mode(regs) && !is_el1_instruction_abort(esr) &&
> + fixup_exception(regs, esr))
> + return 0;
> +
> + return 1;
> +}
We discussed briefly offline. With the latest patches around, would we
ever end up with private memory mapped in the VMM and hence the GPF? If
not, I would still keep this handling but add a
WARN_ON_ONCE(user_mode(regs)).
However, can we end up delegating a non-guest_memfd memslot page as
protected?
I played a bit with codex and it reckons it's possible if a guest_memfd
memslot is deleted after its IPA range has been initialised with
RIPAS=RAM. Removing the memslot unmaps and undelegates any data pages
but leaves the RMM state as RAM. The VMM can then install an ordinary
memslot over the same GPA range.
A subsequent private-IPA S2 fault sees the non-guest_memfd slot, takes
user_mem_abort(), GUPs the user page and passes it to
realm_map_protected(). The userspace mapping remains present, so a later
EL0 access can generate a GPF.
What's worse, I think it can even trick the kernel into doing a memcpy()
access (via GUP). Hmm, does such ordinary slot page even remain pinned?
There are other kernel parts that could access it.
I don't think it changes this patch but if the above is possible, we
should definitely get it tightened on the other series (and here we can
add the warning).
--
Catalin
next prev parent reply other threads:[~2026-09-16 16:39 UTC|newest]
Thread overview: 6+ messages / expand[flat|nested] mbox.gz Atom feed top
2026-09-13 7:04 Suzuki K Poulose
2026-09-16 16:39 ` Catalin Marinas [this message]
2026-09-16 16:56 ` Catalin Marinas
2026-09-17 7:58 ` Catalin Marinas
2026-09-17 9:03 ` Suzuki K Poulose
2026-09-17 10:36 ` Catalin Marinas
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