From: Fred Griffoul <griffoul@gmail.com>
To: Paolo Bonzini <pbonzini@redhat.com>,
Sean Christopherson <seanjc@google.com>,
Marc Zyngier <maz@kernel.org>, Oliver Upton <oupton@kernel.org>,
Andrew Morton <akpm@linux-foundation.org>,
David Hildenbrand <david@kernel.org>,
Alexander Viro <viro@zeniv.linux.org.uk>,
Christian Brauner <brauner@kernel.org>, Jan Kara <jack@suse.cz>,
Jason Gunthorpe <jgg@ziepe.ca>, Kevin Tian <kevin.tian@intel.com>,
Joerg Roedel <joro@8bytes.org>, Will Deacon <will@kernel.org>,
Robin Murphy <robin.murphy@arm.com>,
Thomas Gleixner <tglx@kernel.org>, Ingo Molnar <mingo@redhat.com>,
Borislav Petkov <bp@alien8.de>,
Dave Hansen <dave.hansen@linux.intel.com>,
x86@kernel.org, "H . Peter Anvin" <hpa@zytor.com>,
Jonathan Corbet <corbet@lwn.net>, Shuah Khan <shuah@kernel.org>
Cc: David Woodhouse <dwmw2@infradead.org>,
Ackerley Tng <ackerleytng@google.com>,
Lorenzo Stoakes <ljs@kernel.org>,
"Liam R . Howlett" <liam@infradead.org>,
Vlastimil Babka <vbabka@kernel.org>,
Mike Rapoport <rppt@kernel.org>,
Suren Baghdasaryan <surenb@google.com>,
Michal Hocko <mhocko@suse.com>, Joey Gouly <joey.gouly@arm.com>,
Suzuki K Poulose <suzuki.poulose@arm.com>,
Zenghui Yu <yuzenghui@huawei.com>,
Steffen Eiden <seiden@linux.ibm.com>,
linux-kernel@vger.kernel.org, kvm@vger.kernel.org,
kvmarm@lists.linux.dev, iommu@lists.linux.dev,
linux-fsdevel@vger.kernel.org, linux-mm@kvack.org,
linux-kselftest@vger.kernel.org
Subject: [PATCH 1/9] KVM: guest_memfd: Add a writable result to get_pfn()
Date: Tue, 6 Oct 2026 18:32:27 +0000 [thread overview]
Message-ID: <20261006183235.16576-2-griffoul@gmail.com> (raw)
In-Reply-To: <20261006183235.16576-1-griffoul@gmail.com>
From: Fred Griffoul <fgriffo@amazon.co.uk>
A guest_memfd backing cannot map a page read-only for the guest:
get_pfn() returns only a frame, and KVM_MEM_READONLY is refused on
guest_memfd slots. A hypervisor therefore cannot give a guest a page it
may read but not write.
Let get_pfn() clear a writable result. The x86 and arm64 fault paths
then map the page without write permission, and a guest write exits
with KVM_EXIT_MEMORY_FAULT. The result covers the whole block that
max_order allows.
Callers that hand the page to something that writes it must refuse a
read-only page: the arm64 VNCR page and the SEV-SNP VMSA. populate() has
no writable result, so a backing cannot report read-only state through
it. The result does not cover KVM's own writes through the slot's host
address.
David's gmem_provider sample gains a read-only ioctl, and a selftest
checks that a guest write to such a page exits and lands once the page
is writable again.
Signed-off-by: Fred Griffoul <fgriffo@amazon.co.uk>
---
arch/arm64/kvm/mmu.c | 13 +-
arch/arm64/kvm/nested.c | 16 +-
arch/x86/kvm/mmu/mmu.c | 18 ++-
arch/x86/kvm/svm/sev.c | 13 +-
include/linux/kvm_host.h | 16 +-
samples/kvm/gmem_provider.c | 67 +++++++-
samples/kvm/gmem_provider.h | 17 ++
tools/testing/selftests/kvm/Makefile.kvm | 1 +
.../kvm/x86/gmem_provider_readonly_test.c | 150 ++++++++++++++++++
virt/kvm/guest_memfd.c | 21 ++-
10 files changed, 309 insertions(+), 23 deletions(-)
create mode 100644 tools/testing/selftests/kvm/x86/gmem_provider_readonly_test.c
diff --git a/arch/arm64/kvm/mmu.c b/arch/arm64/kvm/mmu.c
index 6c941aaa10c6..32e591edc69d 100644
--- a/arch/arm64/kvm/mmu.c
+++ b/arch/arm64/kvm/mmu.c
@@ -1607,7 +1607,7 @@ struct kvm_s2_fault_desc {
static int gmem_abort(const struct kvm_s2_fault_desc *s2fd)
{
- bool write_fault, exec_fault;
+ bool write_fault, exec_fault, writable;
bool perm_fault = kvm_vcpu_trap_is_permission_fault(s2fd->vcpu);
enum kvm_pgtable_walk_flags flags = KVM_PGTABLE_WALK_SHARED;
enum kvm_pgtable_prot prot = KVM_PGTABLE_PROT_R;
@@ -1641,14 +1641,17 @@ static int gmem_abort(const struct kvm_s2_fault_desc *s2fd)
/* Pairs with the smp_wmb() in kvm_mmu_invalidate_end(). */
smp_rmb();
- ret = kvm_gmem_get_pfn(kvm, s2fd->memslot, gfn, &pfn, &page, NULL);
- if (ret) {
+ ret = kvm_gmem_get_pfn(kvm, s2fd->memslot, gfn, &pfn, &page, NULL,
+ &writable);
+ if (ret || (write_fault && !writable)) {
kvm_prepare_memory_fault_exit(s2fd->vcpu, s2fd->fault_ipa, PAGE_SIZE,
write_fault, exec_fault, false);
- return ret;
+ if (!ret)
+ kvm_release_faultin_page(kvm, page, true, false);
+ return ret ?: -EFAULT;
}
- if (!(s2fd->memslot->flags & KVM_MEM_READONLY))
+ if (!(s2fd->memslot->flags & KVM_MEM_READONLY) && writable)
prot |= KVM_PGTABLE_PROT_W;
if (s2fd->nested)
diff --git a/arch/arm64/kvm/nested.c b/arch/arm64/kvm/nested.c
index fb54f6dad995..fa86705df949 100644
--- a/arch/arm64/kvm/nested.c
+++ b/arch/arm64/kvm/nested.c
@@ -1411,11 +1411,19 @@ static int kvm_translate_vncr(struct kvm_vcpu *vcpu, bool *is_gmem)
if (is_error_noslot_pfn(pfn) || (write_fault && !writable))
return -EFAULT;
} else {
- ret = kvm_gmem_get_pfn(vcpu->kvm, memslot, gfn, &pfn, &page, NULL);
- if (ret) {
+ ret = kvm_gmem_get_pfn(vcpu->kvm, memslot, gfn, &pfn, &page, NULL,
+ &writable);
+ /*
+ * The VNCR page is always written, so a read-only page cannot
+ * back it. Exit on the first access, even a read, rather than
+ * map it read-only and fault on the next write.
+ */
+ if (ret || !writable) {
kvm_prepare_memory_fault_exit(vcpu, vt->wr.pa, PAGE_SIZE,
- write_fault, false, false);
- return ret;
+ true, false, false);
+ if (!ret)
+ kvm_release_faultin_page(vcpu->kvm, page, true, false);
+ return ret ?: -EFAULT;
}
}
diff --git a/arch/x86/kvm/mmu/mmu.c b/arch/x86/kvm/mmu/mmu.c
index 234d0a95abf5..f689ef5c2b46 100644
--- a/arch/x86/kvm/mmu/mmu.c
+++ b/arch/x86/kvm/mmu/mmu.c
@@ -4612,6 +4612,7 @@ static void kvm_mmu_finish_page_fault(struct kvm_vcpu *vcpu,
static int kvm_mmu_faultin_pfn_gmem(struct kvm_vcpu *vcpu,
struct kvm_page_fault *fault)
{
+ bool writable;
int max_order, r;
if (!kvm_slot_has_gmem(fault->slot)) {
@@ -4620,13 +4621,26 @@ static int kvm_mmu_faultin_pfn_gmem(struct kvm_vcpu *vcpu,
}
r = kvm_gmem_get_pfn(vcpu->kvm, fault->slot, fault->gfn, &fault->pfn,
- &fault->refcounted_page, &max_order);
+ &fault->refcounted_page, &max_order, &writable);
if (r) {
kvm_mmu_prepare_memory_fault_exit(vcpu, fault);
return r;
}
- fault->map_writable = !(fault->slot->flags & KVM_MEM_READONLY);
+ /*
+ * get_pfn() may clear writable, on top of the memslot's read-only flag:
+ * a read-only page is mapped read-only, and a guest write to it exits to
+ * userspace rather than being installed.
+ */
+ fault->map_writable = !(fault->slot->flags & KVM_MEM_READONLY) &&
+ writable;
+ if (fault->write && !fault->map_writable) {
+ kvm_mmu_prepare_memory_fault_exit(vcpu, fault);
+ kvm_release_faultin_page(vcpu->kvm, fault->refcounted_page,
+ true, false);
+ fault->refcounted_page = NULL;
+ return -EFAULT;
+ }
fault->max_level = kvm_max_level_for_order(max_order);
return RET_PF_CONTINUE;
diff --git a/arch/x86/kvm/svm/sev.c b/arch/x86/kvm/svm/sev.c
index 125779c82bc4..f4f944c7da10 100644
--- a/arch/x86/kvm/svm/sev.c
+++ b/arch/x86/kvm/svm/sev.c
@@ -4026,6 +4026,7 @@ static void sev_snp_init_protected_guest_state(struct kvm_vcpu *vcpu)
struct vcpu_svm *svm = to_svm(vcpu);
struct kvm_memory_slot *slot;
struct page *page;
+ bool writable;
kvm_pfn_t pfn;
gfn_t gfn;
@@ -4063,9 +4064,17 @@ static void sev_snp_init_protected_guest_state(struct kvm_vcpu *vcpu)
* The new VMSA will be private memory guest memory, so retrieve the
* PFN from the gmem backend.
*/
- if (kvm_gmem_get_pfn(vcpu->kvm, slot, gfn, &pfn, &page, NULL))
+ if (kvm_gmem_get_pfn(vcpu->kvm, slot, gfn, &pfn, &page, NULL,
+ &writable))
return;
+ /* The CPU writes the VMSA on every VMRUN: a read-only page cannot be one. */
+ if (!writable) {
+ if (page)
+ kvm_release_page_clean(page);
+ return;
+ }
+
/*
* From this point forward, the VMSA will always be a guest-mapped page
* rather than the initial one allocated by KVM in svm->sev_es.vmsa. In
@@ -4996,7 +5005,7 @@ void sev_handle_rmp_fault(struct kvm_vcpu *vcpu, gpa_t gpa, u64 error_code)
return;
}
- ret = kvm_gmem_get_pfn(kvm, slot, gfn, &pfn, &page, &order);
+ ret = kvm_gmem_get_pfn(kvm, slot, gfn, &pfn, &page, &order, NULL);
if (ret) {
pr_warn_ratelimited("SEV: Unexpected RMP fault, no backing page for private GPA 0x%llx\n",
gpa);
diff --git a/include/linux/kvm_host.h b/include/linux/kvm_host.h
index 04fa0cb126f6..7281d0e94121 100644
--- a/include/linux/kvm_host.h
+++ b/include/linux/kvm_host.h
@@ -649,6 +649,15 @@ static inline bool kvm_slot_has_gmem(const struct kvm_memory_slot *slot)
* is responsible for put_page() after use. If *page is left NULL the PFN
* is treated as non-refcounted, and its lifetime is owned by the
* implementation across bind()/unbind().
+ * - *writable, when the caller passes it, is true on entry. Clear it to
+ * have KVM map the page read-only; a guest write then exits as a memory
+ * fault. It covers the whole block that *max_order allows, so that block
+ * must be all writable or all read-only. It applies to stage-2 mappings
+ * only, not to KVM's own writes through the memslot's host address. A
+ * caller that hands the page to hardware that writes it passes @writable
+ * and refuses a read-only page. Only a caller that never writes the page
+ * itself passes NULL. populate() has no writable result, so KVM cannot
+ * learn read-only state through it; it is used only to fill a page.
*
* Memory intended to back guest RAM MUST be reported as E820_TYPE_RAM by the
* host so KVM maps it write-back (and applies the memory-encryption bit on
@@ -662,7 +671,8 @@ struct kvm_gmem_ops {
struct kvm_memory_slot *slot);
int (*get_pfn)(struct file *file, struct kvm *kvm,
struct kvm_memory_slot *slot, gfn_t gfn,
- kvm_pfn_t *pfn, struct page **page, int *max_order);
+ kvm_pfn_t *pfn, struct page **page, int *max_order,
+ bool *writable);
int (*populate)(struct file *file, struct kvm *kvm,
struct kvm_memory_slot *slot, gfn_t gfn,
kvm_pfn_t *pfn, struct page *src_page, int order);
@@ -2651,12 +2661,12 @@ static inline bool kvm_mem_is_private(struct kvm *kvm, gfn_t gfn)
#ifdef CONFIG_KVM_GUEST_MEMFD
int kvm_gmem_get_pfn(struct kvm *kvm, struct kvm_memory_slot *slot,
gfn_t gfn, kvm_pfn_t *pfn, struct page **page,
- int *max_order);
+ int *max_order, bool *writable);
#else
static inline int kvm_gmem_get_pfn(struct kvm *kvm,
struct kvm_memory_slot *slot, gfn_t gfn,
kvm_pfn_t *pfn, struct page **page,
- int *max_order)
+ int *max_order, bool *writable)
{
KVM_BUG_ON(1, kvm);
return -EIO;
diff --git a/samples/kvm/gmem_provider.c b/samples/kvm/gmem_provider.c
index 9728f5a8029b..99b288302d98 100644
--- a/samples/kvm/gmem_provider.c
+++ b/samples/kvm/gmem_provider.c
@@ -95,6 +95,7 @@ struct gmem_info {
gfn_t base_gfn; /* recorded at bind, for revoke */
pgoff_t pgoff; /* provider offset (pages) of the slot */
unsigned long *absent; /* bitmap of currently-revoked pages */
+ unsigned long *readonly; /* bitmap of pages the guest may not write */
struct list_head dmabufs; /* struct gmem_dmabuf entries */
struct mutex dmabufs_lock;
};
@@ -142,6 +143,22 @@ static int gmem_max_order(struct gmem_info *info, gfn_t gfn, unsigned long index
remaining = min(remaining, absent_next - index);
}
+ /*
+ * Likewise a hugepage must be uniformly writable or uniformly
+ * read-only: clamp at the next page whose read-only bit differs.
+ */
+ if (info->readonly) {
+ unsigned long next;
+
+ if (test_bit(index, info->readonly))
+ next = find_next_zero_bit(info->readonly, info->npages,
+ index + 1);
+ else
+ next = find_next_bit(info->readonly, info->npages,
+ index + 1);
+ remaining = min(remaining, next - index);
+ }
+
if (IS_ALIGNED(pfn, 1UL << pud_order) &&
IS_ALIGNED(gfn, 1UL << pud_order) &&
remaining >= (1UL << pud_order))
@@ -157,7 +174,8 @@ static int gmem_max_order(struct gmem_info *info, gfn_t gfn, unsigned long index
static int gmem_get_pfn(struct file *file, struct kvm *kvm,
struct kvm_memory_slot *slot, gfn_t gfn,
- kvm_pfn_t *pfn, struct page **page, int *max_order)
+ kvm_pfn_t *pfn, struct page **page, int *max_order,
+ bool *writable)
{
struct gmem_info *info = to_gmem_info(file);
pgoff_t index = gfn - slot->base_gfn + slot->gmem.pgoff;
@@ -172,6 +190,8 @@ static int gmem_get_pfn(struct file *file, struct kvm *kvm,
*pfn = info->base_pfn + index;
if (max_order)
*max_order = gmem_max_order(info, gfn, index);
+ if (writable)
+ *writable = !(info->readonly && test_bit(index, info->readonly));
return 0;
}
@@ -371,6 +391,7 @@ static void gmem_release(struct file *file)
if (info->cma_pages)
free_contig_range(info->base_pfn, info->npages);
kvfree(info->absent);
+ kvfree(info->readonly);
kfree(info);
module_put(THIS_MODULE);
}
@@ -581,6 +602,46 @@ static long gmem_fd_ioctl(struct file *file, unsigned int cmd, unsigned long arg
if (cmd == GMEM_PROVIDER_GET_DMABUF)
return gmem_provider_get_dmabuf(file);
+ if (cmd == GMEM_PROVIDER_SET_READONLY) {
+ struct gmem_provider_readonly r;
+ unsigned long clamped_start;
+
+ if (copy_from_user(&r, (void __user *)arg, sizeof(r)))
+ return -EFAULT;
+ if (!r.len || !PAGE_ALIGNED(r.offset) || !PAGE_ALIGNED(r.len) ||
+ r.pad)
+ return -EINVAL;
+ start_index = r.offset >> PAGE_SHIFT;
+ end_index = start_index + (r.len >> PAGE_SHIFT);
+ if (end_index > info->npages || end_index < start_index)
+ return -EINVAL;
+
+ /*
+ * Flip the bits, then drop the guest's existing mappings of the
+ * range so the next access re-faults through get_pfn() and
+ * picks up the new permission. Making a range read-only must
+ * tear down writable mappings; making it writable again is
+ * also invalidated so a stale read-only mapping does not keep
+ * exiting.
+ */
+ mutex_lock(&info->lock);
+ if (r.readonly)
+ bitmap_set(info->readonly, start_index,
+ end_index - start_index);
+ else
+ bitmap_clear(info->readonly, start_index,
+ end_index - start_index);
+ clamped_start = max_t(unsigned long, start_index, info->pgoff);
+ if (info->kvm && end_index > clamped_start)
+ kvm_gmem_invalidate_range(info->kvm,
+ info->base_gfn + clamped_start -
+ info->pgoff,
+ info->base_gfn + end_index -
+ info->pgoff);
+ mutex_unlock(&info->lock);
+ return 0;
+ }
+
if (cmd != GMEM_PROVIDER_SET_PRESENT)
return -ENOTTY;
if (copy_from_user(&p, (void __user *)arg, sizeof(p)))
@@ -694,7 +755,8 @@ static long gmem_ctl_ioctl(struct file *file, unsigned int cmd, unsigned long ar
info->absent = kvzalloc(BITS_TO_LONGS(info->npages) * sizeof(unsigned long),
GFP_KERNEL);
- if (!info->absent) {
+ info->readonly = kvzalloc_objs(unsigned long, BITS_TO_LONGS(info->npages));
+ if (!info->absent || !info->readonly) {
ret = -ENOMEM;
goto err_free_pages;
}
@@ -733,6 +795,7 @@ static long gmem_ctl_ioctl(struct file *file, unsigned int cmd, unsigned long ar
free_contig_range(page_to_pfn(pages), npages);
err_free_info:
kvfree(info->absent);
+ kvfree(info->readonly);
kfree(info);
err_put_kvm:
kvm_put_kvm(kvm);
diff --git a/samples/kvm/gmem_provider.h b/samples/kvm/gmem_provider.h
index 45f1b8257f60..51b49ef9a3c5 100644
--- a/samples/kvm/gmem_provider.h
+++ b/samples/kvm/gmem_provider.h
@@ -41,6 +41,23 @@ struct gmem_provider_present {
#define GMEM_PROVIDER_SET_PRESENT _IOW(GMEM_PROVIDER_IOCTL_BASE, 2, struct gmem_provider_present)
+/*
+ * ioctl on a provider fd: make a byte range read-only for the guest, or
+ * writable again. KVM maps a read-only page without write permission and a
+ * guest write to it exits to userspace with KVM_EXIT_MEMORY_FAULT. Existing
+ * mappings of the range are dropped so the change takes effect on the next
+ * access.
+ */
+struct gmem_provider_readonly {
+ __u64 offset; /* byte offset into the provider region, page aligned */
+ __u64 len; /* byte length, page aligned */
+ __u32 readonly; /* 1 = guest may not write, 0 = guest may write */
+ __u32 pad;
+};
+
+#define GMEM_PROVIDER_SET_READONLY \
+ _IOW(GMEM_PROVIDER_IOCTL_BASE, 4, struct gmem_provider_readonly)
+
/*
* ioctl on a provider fd (returned by SETUP): export the backing region as a
* dynamic dma-buf and return an fd for it, suitable for
diff --git a/tools/testing/selftests/kvm/Makefile.kvm b/tools/testing/selftests/kvm/Makefile.kvm
index 12004a487c32..4d7082448cea 100644
--- a/tools/testing/selftests/kvm/Makefile.kvm
+++ b/tools/testing/selftests/kvm/Makefile.kvm
@@ -81,6 +81,7 @@ TEST_GEN_PROGS_x86 += x86/fix_hypercall_test
TEST_GEN_PROGS_x86 += x86/gmem_provider_test
TEST_GEN_PROGS_x86 += x86/gmem_provider_hugepage_test
TEST_GEN_PROGS_x86 += x86/gmem_provider_revoke_test
+TEST_GEN_PROGS_x86 += x86/gmem_provider_readonly_test
TEST_GEN_PROGS_x86 += x86/gmem_provider_iommufd_test
TEST_GEN_PROGS_x86 += x86/gmem_provider_vfio_test
TEST_GEN_PROGS_x86 += x86/hwcr_msr_test
diff --git a/tools/testing/selftests/kvm/x86/gmem_provider_readonly_test.c b/tools/testing/selftests/kvm/x86/gmem_provider_readonly_test.c
new file mode 100644
index 000000000000..c3eedba7a16d
--- /dev/null
+++ b/tools/testing/selftests/kvm/x86/gmem_provider_readonly_test.c
@@ -0,0 +1,150 @@
+// SPDX-License-Identifier: GPL-2.0
+/*
+ * gmem_provider_readonly_test - exercise per-range read-only from a provider.
+ *
+ * Marks a provider-backed page read-only via an ioctl on the provider fd and
+ * checks that KVM honours the provider's answer: the guest can still read the
+ * page, a guest write exits to userspace with KVM_EXIT_MEMORY_FAULT rather than
+ * landing, and clearing the bit lets the write through. This is the mechanism
+ * a hypervisor uses to protect a page it shares with the guest, such as a
+ * sidecar's info page, without giving up the mapping.
+ *
+ * The test opens the provider with GMEM_PROVIDER_FLAG_MMAP_CAPABLE at SETUP time
+ * (gmem-only). Load the module with a backing region of at least DATA_SIZE.
+ */
+#include <fcntl.h>
+#include <errno.h>
+#include <stdint.h>
+#include <stdio.h>
+#include <string.h>
+#include <unistd.h>
+#include <sys/ioctl.h>
+#include <sys/mman.h>
+
+#include "test_util.h"
+#include "kvm_util.h"
+#include "processor.h"
+
+/* Mirrors samples/kvm/gmem_provider.h */
+struct gmem_provider_setup {
+ __s32 kvm_fd;
+ __u32 flags;
+ __u64 size;
+};
+
+struct gmem_provider_readonly {
+ __u64 offset;
+ __u64 len;
+ __u32 readonly;
+ __u32 pad;
+};
+
+#define GMEM_PROVIDER_SETUP _IOW('G', 1, struct gmem_provider_setup)
+#define GMEM_PROVIDER_FLAG_MMAP_CAPABLE (1u << 0)
+#define GMEM_PROVIDER_SET_READONLY _IOW('G', 4, struct gmem_provider_readonly)
+
+#define DATA_SLOT 10
+#define DATA_GPA (1ULL << 32)
+#define DATA_SIZE 0x200000ULL /* 2 MiB region */
+#define MAGIC 0x1234abcdULL
+#define MAGIC2 0xfeedf00dULL
+
+/*
+ * Phase 1: read the page and report it.
+ * Phase 2: write to it. With the page read-only this never returns to the
+ * guest until userspace clears the bit; then it completes and the
+ * guest reports what it wrote.
+ */
+static void guest_code(void)
+{
+ GUEST_SYNC(*(volatile uint64_t *)DATA_GPA);
+ *(volatile uint64_t *)DATA_GPA = MAGIC2;
+ GUEST_SYNC(*(volatile uint64_t *)DATA_GPA);
+ GUEST_DONE();
+}
+
+int main(void)
+{
+ struct vm_shape shape = {
+ .mode = VM_MODE_DEFAULT,
+ .type = KVM_X86_SW_PROTECTED_VM,
+ };
+ struct gmem_provider_setup setup = { .flags = GMEM_PROVIDER_FLAG_MMAP_CAPABLE };
+ struct gmem_provider_readonly req;
+ struct kvm_vcpu *vcpu;
+ struct kvm_vm *vm;
+ struct ucall uc;
+ int gmem_ctl, gmem_fd, r;
+ void *hva;
+
+ TEST_REQUIRE(kvm_check_cap(KVM_CAP_VM_TYPES) & BIT(KVM_X86_SW_PROTECTED_VM));
+
+ gmem_ctl = open("/dev/gmem_provider", O_RDWR);
+ __TEST_REQUIRE(gmem_ctl >= 0,
+ "gmem_provider module not loaded (/dev/gmem_provider absent)");
+
+ vm = vm_create_shape_with_one_vcpu(shape, &vcpu, guest_code);
+
+ setup.kvm_fd = vm->fd;
+ setup.size = DATA_SIZE;
+ gmem_fd = ioctl(gmem_ctl, GMEM_PROVIDER_SETUP, &setup);
+ TEST_ASSERT(gmem_fd >= 0, "GMEM_PROVIDER_SETUP failed, errno %d", errno);
+
+ hva = mmap(NULL, DATA_SIZE, PROT_READ | PROT_WRITE, MAP_SHARED, gmem_fd, 0);
+ TEST_ASSERT(hva != MAP_FAILED, "mmap(provider) failed, errno %d", errno);
+
+ r = __vm_set_user_memory_region2(vm, DATA_SLOT, KVM_MEM_GUEST_MEMFD,
+ DATA_GPA, DATA_SIZE, hva, gmem_fd, 0);
+ TEST_ASSERT(!r, "KVM_SET_USER_MEMORY_REGION2 failed: %d errno %d", r, errno);
+ virt_map(vm, DATA_GPA, DATA_GPA, 1);
+
+ /* Seed the page from the host before the guest ever touches it. */
+ *(volatile uint64_t *)hva = MAGIC;
+
+ /* 1) Make the page read-only for the guest. */
+ req = (struct gmem_provider_readonly){ .offset = 0, .len = 4096, .readonly = 1 };
+ r = ioctl(gmem_fd, GMEM_PROVIDER_SET_READONLY, &req);
+ TEST_ASSERT(!r, "set readonly ioctl failed, errno %d", errno);
+
+ /* 2) Guest read must still work and see the host's value. */
+ vcpu_run(vcpu);
+ TEST_ASSERT(get_ucall(vcpu, &uc) == UCALL_SYNC, "expected UCALL_SYNC");
+ TEST_ASSERT(uc.args[1] == MAGIC, "guest read 0x%lx, want MAGIC",
+ (unsigned long)uc.args[1]);
+ pr_info("read-only: guest read 0x%llx\n", MAGIC);
+
+ /* 3) Guest write must exit to userspace, not land. */
+ r = _vcpu_run(vcpu);
+ TEST_ASSERT(r == -1 && errno == EFAULT &&
+ vcpu->run->exit_reason == KVM_EXIT_MEMORY_FAULT,
+ "read-only write: expected KVM_EXIT_MEMORY_FAULT (r=%d errno=%d exit_reason=%u %s)",
+ r, errno, vcpu->run->exit_reason,
+ exit_reason_str(vcpu->run->exit_reason));
+ TEST_ASSERT(*(volatile uint64_t *)hva == MAGIC,
+ "guest write landed on a read-only page: host sees 0x%lx",
+ (unsigned long)*(volatile uint64_t *)hva);
+ pr_info("read-only: guest write exited with KVM_EXIT_MEMORY_FAULT, page unchanged\n");
+
+ /* 4) Make it writable again; the retried write must complete. */
+ req.readonly = 0;
+ r = ioctl(gmem_fd, GMEM_PROVIDER_SET_READONLY, &req);
+ TEST_ASSERT(!r, "clear readonly ioctl failed, errno %d", errno);
+
+ vcpu_run(vcpu);
+ TEST_ASSERT(get_ucall(vcpu, &uc) == UCALL_SYNC, "expected UCALL_SYNC after clear");
+ TEST_ASSERT(uc.args[1] == MAGIC2, "after clear guest read 0x%lx, want MAGIC2",
+ (unsigned long)uc.args[1]);
+ TEST_ASSERT(*(volatile uint64_t *)hva == MAGIC2,
+ "host sees 0x%lx after guest write, want MAGIC2",
+ (unsigned long)*(volatile uint64_t *)hva);
+ pr_info("writable: guest write 0x%llx landed -- read-only path works\n", MAGIC2);
+
+ vcpu_run(vcpu);
+ TEST_ASSERT(get_ucall(vcpu, &uc) == UCALL_DONE, "expected UCALL_DONE");
+
+ kvm_vm_free(vm);
+ munmap(hva, DATA_SIZE);
+ close(gmem_fd);
+ close(gmem_ctl);
+ return 0;
+}
diff --git a/virt/kvm/guest_memfd.c b/virt/kvm/guest_memfd.c
index d284bb70fe05..a509f1a96c0b 100644
--- a/virt/kvm/guest_memfd.c
+++ b/virt/kvm/guest_memfd.c
@@ -624,7 +624,7 @@ static void kvm_gmem_native_unbind(struct file *slot_file, struct kvm *kvm,
static int kvm_gmem_native_get_pfn(struct file *file, struct kvm *kvm,
struct kvm_memory_slot *slot, gfn_t gfn,
kvm_pfn_t *pfn, struct page **page,
- int *max_order);
+ int *max_order, bool *writable);
static void kvm_gmem_native_release(struct file *file);
static int kvm_gmem_native_mmap(struct file *file,
struct vm_area_struct *vma);
@@ -988,7 +988,7 @@ static struct folio *__kvm_gmem_get_pfn(struct file *file,
static int kvm_gmem_native_get_pfn(struct file *file, struct kvm *kvm,
struct kvm_memory_slot *slot, gfn_t gfn,
kvm_pfn_t *pfn, struct page **page,
- int *max_order)
+ int *max_order, bool *writable)
{
pgoff_t index = kvm_gmem_get_index(slot, gfn);
struct folio *folio;
@@ -1016,7 +1016,7 @@ static int kvm_gmem_native_get_pfn(struct file *file, struct kvm *kvm,
int kvm_gmem_get_pfn(struct kvm *kvm, struct kvm_memory_slot *slot,
gfn_t gfn, kvm_pfn_t *pfn, struct page **page,
- int *max_order)
+ int *max_order, bool *writable)
{
const struct kvm_gmem_ops *ops;
@@ -1029,7 +1029,10 @@ int kvm_gmem_get_pfn(struct kvm *kvm, struct kvm_memory_slot *slot,
return -EFAULT;
*page = NULL;
- return ops->get_pfn(file, kvm, slot, gfn, pfn, page, max_order);
+ if (writable)
+ *writable = true;
+ return ops->get_pfn(file, kvm, slot, gfn, pfn, page, max_order,
+ writable);
}
EXPORT_SYMBOL_FOR_KVM_INTERNAL(kvm_gmem_get_pfn);
@@ -1080,6 +1083,7 @@ static int kvm_gmem_populate_one(const struct kvm_gmem_ops *ops,
void *opaque)
{
struct page *ignored_page = NULL;
+ bool writable = true;
kvm_pfn_t pfn;
int ret;
@@ -1093,10 +1097,17 @@ static int kvm_gmem_populate_one(const struct kvm_gmem_ops *ops,
src_page, 0);
else
ret = ops->get_pfn(file, kvm, slot, gfn, &pfn,
- &ignored_page, NULL);
+ &ignored_page, NULL, &writable);
if (ret)
return ret;
+ /* post_populate() writes the page, so it cannot be read-only. */
+ if (!writable) {
+ if (ignored_page)
+ put_page(ignored_page);
+ return -EPERM;
+ }
+
ret = post_populate(kvm, gfn, pfn, src_page, opaque);
/*
next prev parent reply other threads:[~2026-10-06 18:32 UTC|newest]
Thread overview: 38+ messages / expand[flat|nested] mbox.gz Atom feed top
2026-07-20 11:03 [RFC PATCH v2 00/11] KVM: Allow alternative providers of guest_memfd backed by PFNMAP memory David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 01/11] KVM: selftests: sev_smoke_test: Only run VM types the host offers David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 02/11] KVM: selftests: sev_init2_tests: Derive SEV availability from KVM David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 03/11] KVM: SEV: Remove struct page dependency from SNP gmem paths David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 04/11] KVM: guest_memfd: Introduce guest memory ops and route native gmem through them David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 05/11] iommufd: Look up private-interconnect phys via exporter symbols David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 06/11] iommufd: Plumb dma-buf memory-type (RAM vs MMIO) through the phys map David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 07/11] KVM: guest_memfd: Add ops-driven page revocation David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 08/11] samples/kvm: Add guest_memfd backing sample David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 09/11] selftests/kvm: gmem_provider KVM-only tests David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 10/11] selftests/kvm: gmem_provider iommufd tests David Woodhouse
2026-07-20 11:03 ` [RFC PATCH v2 11/11] samples/kvm, selftests/kvm: Allow the gmem_provider NVMe DMA test on arm64 David Woodhouse
2026-07-20 15:11 ` [RFC PATCH v2 00/11] KVM: Allow alternative providers of guest_memfd backed by PFNMAP memory Paolo Bonzini
2026-07-20 16:39 ` David Woodhouse
2026-07-23 0:24 ` Ackerley Tng
2026-07-23 9:40 ` David Woodhouse
2026-07-23 16:01 ` Ackerley Tng
2026-10-05 9:55 ` [RFC PATCH 0/6] KVM: guest_memfd: back guest_memfd with an imported dma-buf Fred Griffoul
2026-10-05 9:55 ` [RFC PATCH 1/6] KVM: guest_memfd: Add a writable result to get_pfn() Fred Griffoul
2026-10-05 9:55 ` [RFC PATCH 2/6] dma-buf: Add get_phys() to describe a physical run Fred Griffoul
2026-10-05 10:07 ` Christian König
2026-10-05 13:20 ` Fred Griffoul
2026-10-05 14:53 ` Christian König
2026-10-05 9:55 ` [RFC PATCH 3/6] dma-buf: Add ranged mapping invalidation Fred Griffoul
2026-10-05 10:08 ` Christian König
2026-10-05 9:55 ` [RFC PATCH 4/6] dma-buf: Allow dynamic attach without a device Fred Griffoul
2026-10-05 9:55 ` [RFC PATCH 5/6] KVM: guest_memfd: Add dma-buf backing Fred Griffoul
2026-10-05 9:55 ` [RFC PATCH 6/6] samples/kvm, selftests/kvm: Exercise " Fred Griffoul
2026-10-06 18:32 ` [RFC PATCH 0/9] mm: Memory providers for guest_memfd and iommufd Fred Griffoul
2026-10-06 18:32 ` Fred Griffoul [this message]
2026-10-06 18:32 ` [PATCH 2/9] mm: Add memory providers Fred Griffoul
2026-10-06 18:32 ` [PATCH 3/9] KVM: guest_memfd: Add a memory provider backing Fred Griffoul
2026-10-06 18:32 ` [PATCH 4/9] iommufd: Track the domains of pages that are not pinned Fred Griffoul
2026-10-06 18:32 ` [PATCH 5/9] iommufd: Map memory provider files Fred Griffoul
2026-10-06 18:32 ` [PATCH 6/9] iommufd/selftest: Add mock-domain IOVA queries Fred Griffoul
2026-10-06 18:32 ` [PATCH 7/9] iommufd/selftest: Add a mock memory provider Fred Griffoul
2026-10-06 18:32 ` [PATCH 8/9] samples/kvm: Add a memory provider sample Fred Griffoul
2026-10-06 18:32 ` [PATCH 9/9] KVM: selftests: Test a memory provider shared by KVM and iommufd Fred Griffoul
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