From: Sriram Nambakam <snambakam@linux.microsoft.com>
To: kvm@vger.kernel.org
Cc: linux-kernel@vger.kernel.org
Subject: [RFC PATCH v1 34/42] x86/realmode: skip the sub-1M trampoline for the VBS secure plane
Date: Wed, 5 Aug 2026 04:03:16 -0700 [thread overview]
Message-ID: <20260805110324.25067-35-snambakam@linux.microsoft.com> (raw)
In-Reply-To: <20260805110324.25067-1-snambakam@linux.microsoft.com>
The VBS secure plane (plane >0) boots from a single high-memory region
carved out of the normal plane's address space and therefore has no
sub-1M RAM for the x86 real-mode AP trampoline. reserve_real_mode()
followed by init_real_mode() then panics with "Real mode trampoline was
not allocated".
The secure plane is uniprocessor, enters directly in long mode and never
uses the trampoline, so point x86_platform.realmode_reserve/realmode_init
at x86_init_noop for it. This mirrors how the Hyper-V VTL (hv_vtl.c) and
Xen PV ports disable the trampoline.
Gated at compile time on CONFIG_VBS_SECURE_MONITOR (only the secure-plane
kernel sets it) and at runtime on the "secure_monitor" early param (the
normal plane never passes it), so plane 0 is unaffected.
---
arch/x86/include/asm/kvm_host.h | 17 +++++--
arch/x86/kvm/mmu/mmu.c | 36 ++++++++++++++
arch/x86/kvm/mmu/spte.h | 12 +++--
arch/x86/kvm/x86.c | 85 +++++++++++++++++++++++++++++----
arch/x86/realmode/init.c | 26 ++++++++++
include/linux/kvm_host.h | 35 ++++++++++++++
include/uapi/linux/kvm.h | 1 +
virt/kvm/kvm_main.c | 6 +++
8 files changed, 202 insertions(+), 16 deletions(-)
diff --git a/arch/x86/include/asm/kvm_host.h b/arch/x86/include/asm/kvm_host.h
index b7d478dcc1a5..bbccb9d3d801 100644
--- a/arch/x86/include/asm/kvm_host.h
+++ b/arch/x86/include/asm/kvm_host.h
@@ -380,15 +380,24 @@ union kvm_mmu_page_role {
*/
unsigned cr4_smep:1;
- unsigned:3;
+ /*
+ * Plane (privilege level) that owns this shadow page. VM
+ * planes share memslots but must have independent page
+ * tables so that a higher-privilege plane can restrict a
+ * lower plane's access (e.g. deny reads of secure-plane
+ * memory). Tagging the role keeps each plane's roots and
+ * SPTEs separate. Always 0 when CONFIG_VM_PLANES is off.
+ */
+ unsigned plane:4;
/*
* This is left at the top of the word so that
* kvm_memslots_for_spte_role can extract it with a
- * simple shift. While there is room, give it a whole
- * byte so it is also faster to load it from memory.
+ * simple shift. smm is only ever used as a boolean, so it
+ * is reduced to 7 bits (from a full byte) to make room for
+ * cr4_smep and the VM-planes plane tag above.
*/
- unsigned smm:8;
+ unsigned smm:7;
};
};
diff --git a/arch/x86/kvm/mmu/mmu.c b/arch/x86/kvm/mmu/mmu.c
index 6e41c5df72ed..960e212c5ee3 100644
--- a/arch/x86/kvm/mmu/mmu.c
+++ b/arch/x86/kvm/mmu/mmu.c
@@ -4708,6 +4708,34 @@ static int kvm_mmu_faultin_pfn(struct kvm_vcpu *vcpu,
return -EFAULT;
}
+ /*
+ * A higher-privilege plane may forbid this plane from accessing a gfn
+ * (e.g. to hide secure-plane memory from the normal plane). Two cases
+ * cannot be represented as a present SPTE and must be denied outright,
+ * exiting to userspace with a memory fault rather than (re)building an
+ * SPTE the access will immediately re-fault on:
+ *
+ * - NO_READ: there is no present-but-unreadable EPT entry, so leave the
+ * gfn unmapped for this plane.
+ *
+ * - NO_WRITE on a write fault: make_spte() strips ACC_WRITE_MASK and
+ * builds a read-only SPTE, so a guest write would re-fault forever
+ * (an unresolvable EPT write-violation livelock). Deny it instead so
+ * the violation is visible and can be mediated (e.g. HEKI text_poke
+ * is routed through the secure plane rather than written directly).
+ */
+ {
+ unsigned long plane_attrs =
+ kvm_plane_access_attributes(vcpu->plane, fault->gfn);
+
+ if ((plane_attrs & KVM_MEMORY_ATTRIBUTE_NO_READ) ||
+ (fault->write &&
+ (plane_attrs & KVM_MEMORY_ATTRIBUTE_NO_WRITE))) {
+ kvm_mmu_prepare_memory_fault_exit(vcpu, fault);
+ return -EFAULT;
+ }
+ }
+
if (unlikely(!slot))
return kvm_handle_noslot_fault(vcpu, fault, access);
@@ -5884,6 +5912,14 @@ kvm_calc_tdp_mmu_root_page_role(struct kvm_vcpu *vcpu,
role.direct = true;
role.has_4_byte_gpte = false;
+ /*
+ * Give each VM plane its own TDP root. Planes share memslots but
+ * need independent page tables so a higher-privilege plane can
+ * restrict a lower plane's access to a GFN. plane_level is 0 (and
+ * thus a no-op) on non-plane VMs and when CONFIG_VM_PLANES is off.
+ */
+ role.plane = vcpu->plane_level;
+
/* All TDP pages are supervisor-executable */
role.access = ACC_ALL;
if (role.cr4_smep && shadow_user_mask)
diff --git a/arch/x86/kvm/mmu/spte.h b/arch/x86/kvm/mmu/spte.h
index 144f7c5a1040..ed03bcdbf82d 100644
--- a/arch/x86/kvm/mmu/spte.h
+++ b/arch/x86/kvm/mmu/spte.h
@@ -580,9 +580,13 @@ void __init kvm_mmu_spte_module_init(void);
void kvm_mmu_reset_all_pte_masks(void);
/*
- * Apply memory protection attributes to pte_access.
- * If memory attributes have NO_WRITE or NO_EXEC set for a GFN,
- * strip the corresponding access bits before building the SPTE.
+ * Apply cross-plane access restrictions to pte_access when building an SPTE
+ * for the faulting plane. A higher-privilege plane may downgrade a lower
+ * plane's access to a GFN via its per-plane access_attr_array. NO_WRITE and
+ * NO_EXEC are enforced here by stripping the corresponding access bits.
+ * NO_READ cannot be expressed as a present-but-unreadable SPTE on EPT, so it
+ * is enforced earlier in the fault handler (kvm_mmu_faultin_pfn) by refusing
+ * to map the page.
*/
#ifdef CONFIG_KVM_GENERIC_MEMORY_ATTRIBUTES
static inline unsigned int kvm_plane_filter_pte_access(struct kvm_vcpu *vcpu,
@@ -591,7 +595,7 @@ static inline unsigned int kvm_plane_filter_pte_access(struct kvm_vcpu *vcpu,
{
unsigned long attrs;
- attrs = kvm_get_memory_attributes(vcpu->kvm, gfn);
+ attrs = kvm_plane_access_attributes(vcpu->plane, gfn);
if (attrs & KVM_MEMORY_ATTRIBUTE_NO_WRITE)
pte_access &= ~ACC_WRITE_MASK;
if (attrs & KVM_MEMORY_ATTRIBUTE_NO_EXEC)
diff --git a/arch/x86/kvm/x86.c b/arch/x86/kvm/x86.c
index 3c73ab1dcfe8..c8c37d569023 100644
--- a/arch/x86/kvm/x86.c
+++ b/arch/x86/kvm/x86.c
@@ -10494,6 +10494,61 @@ static int complete_hypercall_exit(struct kvm_vcpu *vcpu)
return kvm_skip_emulated_instruction(vcpu);
}
+#if defined(CONFIG_VM_PLANES) && defined(CONFIG_KVM_GENERIC_MEMORY_ATTRIBUTES)
+/*
+ * Apply cross-plane access restrictions requested by a higher-privilege plane.
+ * Stores @attrs (NO_READ/NO_WRITE/NO_EXEC) for [@start, @end) in @plane's
+ * access_attr_array and zaps the range so any pages already mapped in @plane's
+ * EPT re-fault and pick up the restriction. @attrs == 0 clears the
+ * restriction for the range.
+ */
+static int kvm_plane_set_access_attrs(struct kvm *kvm, struct kvm_plane *plane,
+ gfn_t start, gfn_t end, unsigned long attrs)
+{
+ void *entry = attrs ? xa_mk_value(attrs) : NULL;
+ gfn_t gfn;
+ int r = 0;
+
+ mutex_lock(&kvm->slots_lock);
+
+ /*
+ * Reserve slots up front so the store loop below cannot fail partway
+ * through and leave a gap (a still-readable page) in the protected
+ * range. Clearing a restriction (entry == NULL) never allocates.
+ */
+ if (entry) {
+ for (gfn = start; gfn < end; gfn++) {
+ r = xa_reserve(&plane->access_attr_array, gfn,
+ GFP_KERNEL_ACCOUNT);
+ if (r)
+ goto out_unlock;
+
+ cond_resched();
+ }
+ }
+
+ for (gfn = start; gfn < end; gfn++) {
+ r = xa_err(xa_store(&plane->access_attr_array, gfn, entry,
+ GFP_KERNEL_ACCOUNT));
+ if (KVM_BUG_ON(r, kvm))
+ goto out_unlock;
+
+ cond_resched();
+ }
+
+ /*
+ * Re-fault the affected gfns in the plane's EPT so the new restriction
+ * takes effect on existing mappings. Zapping all roots is harmless;
+ * other planes simply rebuild identical entries on next access.
+ */
+ kvm_zap_gfn_range(kvm, start, end);
+
+out_unlock:
+ mutex_unlock(&kvm->slots_lock);
+ return r;
+}
+#endif /* CONFIG_VM_PLANES && CONFIG_KVM_GENERIC_MEMORY_ATTRIBUTES */
+
int ____kvm_emulate_hypercall(struct kvm_vcpu *vcpu, int cpl,
int (*complete_hypercall)(struct kvm_vcpu *))
{
@@ -10683,16 +10738,21 @@ int ____kvm_emulate_hypercall(struct kvm_vcpu *vcpu, int cpl,
case KVM_HC_VBS_SET_MEM_ATTRS:
#if defined(CONFIG_VM_PLANES) && defined(CONFIG_KVM_GENERIC_MEMORY_ATTRIBUTES)
/*
- * The secure plane (plane >0) enforces EPT permissions on the
- * normal plane's memory. It cannot issue the host
+ * The secure plane (plane >0) enforces EPT permissions on a
+ * lower plane's memory. It cannot issue the host
* KVM_SET_MEMORY_ATTRIBUTES ioctl, so it asks KVM to do it via
- * this hypercall. Only a higher-privilege plane may call it.
+ * this hypercall. Only a higher-privilege plane may call it;
+ * the restriction is applied to the plane directly below the
+ * caller.
*
* a0 = guest-physical address (page aligned)
* a1 = region size in bytes (page aligned)
- * a2 = access bits to retain for lower planes:
- * bit0 read (implicit), bit1 write, bit2 exec
- * (matches VBS_MEM_READ/WRITE/EXEC)
+ * a2 = access bits to retain for the lower plane:
+ * bit0 read, bit1 write, bit2 exec
+ * (matches VBS_MEM_READ/WRITE/EXEC). A cleared bit adds
+ * the corresponding NO_READ/NO_WRITE/NO_EXEC restriction;
+ * a2 = 0 hides the range entirely (e.g. secure-plane
+ * memory that the normal plane must not read).
*/
if (vcpu->plane_level == 0) {
ret = -KVM_EPERM;
@@ -10704,17 +10764,26 @@ int ____kvm_emulate_hypercall(struct kvm_vcpu *vcpu, int cpl,
ret = -KVM_EINVAL;
goto out;
} else {
+ struct kvm_plane *target;
unsigned long attrs = 0;
gfn_t start = a0 >> PAGE_SHIFT;
gfn_t end = (a0 + a1) >> PAGE_SHIFT;
+ target = vcpu->kvm->planes[vcpu->plane_level - 1];
+ if (!target) {
+ ret = -KVM_EINVAL;
+ goto out;
+ }
+
+ if (!(a2 & BIT(0)))
+ attrs |= KVM_MEMORY_ATTRIBUTE_NO_READ;
if (!(a2 & BIT(1)))
attrs |= KVM_MEMORY_ATTRIBUTE_NO_WRITE;
if (!(a2 & BIT(2)))
attrs |= KVM_MEMORY_ATTRIBUTE_NO_EXEC;
- if (kvm_vm_set_mem_attributes(vcpu->kvm, start, end,
- attrs))
+ if (kvm_plane_set_access_attrs(vcpu->kvm, target, start,
+ end, attrs))
ret = -KVM_EINVAL;
else
ret = 0;
diff --git a/arch/x86/realmode/init.c b/arch/x86/realmode/init.c
index 694d80a5c68e..01855a913b10 100644
--- a/arch/x86/realmode/init.c
+++ b/arch/x86/realmode/init.c
@@ -11,6 +11,7 @@
#include <asm/crash.h>
#include <asm/msr.h>
#include <asm/sev.h>
+#include <asm/x86_init.h>
struct real_mode_header *real_mode_header;
u32 *trampoline_cr4_features;
@@ -44,6 +45,31 @@ void load_trampoline_pgtable(void)
__flush_tlb_all();
}
+#ifdef CONFIG_VBS_SECURE_MONITOR
+/*
+ * A KVM VM-planes secure plane (plane > 0) is entered directly in 64-bit long
+ * mode and boots from a single carved-out high-memory region that contains no
+ * RAM below 1 MiB. It runs uniprocessor with no firmware, ACPI sleep, or
+ * hibernation, so the 16-bit real-mode trampoline can neither be allocated
+ * (there is no sub-1M memory) nor is it ever used (no AP bringup or wakeup).
+ *
+ * Disable the real-mode setup the same way Hyper-V VTL and Xen PV do, by
+ * pointing the x86_platform real-mode hooks at the no-op handler. This is
+ * installed from an early_param so it takes effect before setup_arch() calls
+ * x86_platform.realmode_reserve(). Triggered by the "secure_monitor"
+ * command-line option, the same switch that activates the in-kernel
+ * secure-plane monitor.
+ */
+static int __init secure_plane_no_real_mode(char *arg)
+{
+ x86_platform.realmode_reserve = x86_init_noop;
+ x86_platform.realmode_init = x86_init_noop;
+ pr_info("realmode: secure plane: skipping sub-1M trampoline\n");
+ return 0;
+}
+early_param("secure_monitor", secure_plane_no_real_mode);
+#endif /* CONFIG_VBS_SECURE_MONITOR */
+
void __init reserve_real_mode(void)
{
phys_addr_t mem, limit = x86_init.resources.realmode_limit;
diff --git a/include/linux/kvm_host.h b/include/linux/kvm_host.h
index f14d78fd8cd3..05c9edd4a73d 100644
--- a/include/linux/kvm_host.h
+++ b/include/linux/kvm_host.h
@@ -895,6 +895,18 @@ struct kvm_plane {
/* Per-Plane VCPU array */
struct xarray vcpu_array;
+#ifdef CONFIG_VM_PLANES
+ /*
+ * Cross-plane access restrictions imposed on THIS plane by a
+ * higher-privilege plane. Each entry holds NO_READ/NO_WRITE/NO_EXEC
+ * bits for a gfn and is enforced when building this plane's SPTEs
+ * (planes have independent EPT roots). Distinct from
+ * kvm->mem_attr_array, which holds VM-wide PRIVATE/CoCo attributes.
+ * Protected by kvm->slots_lock for writes, RCU for reads.
+ */
+ struct xarray access_attr_array;
+#endif
+
struct kvm_arch_plane arch;
};
@@ -2739,6 +2751,29 @@ static inline bool kvm_mem_is_private(struct kvm *kvm, gfn_t gfn)
}
#endif /* CONFIG_KVM_GENERIC_MEMORY_ATTRIBUTES */
+#ifdef CONFIG_VM_PLANES
+/*
+ * Cross-plane access restrictions: a higher-privilege plane downgrades a
+ * lower plane's access (NO_READ/NO_WRITE/NO_EXEC) to a gfn by storing bits in
+ * that lower plane's access_attr_array. Enforced when building the lower
+ * plane's SPTEs (planes have independent EPT roots). Returns 0 when no
+ * restriction applies.
+ */
+static inline unsigned long kvm_plane_access_attributes(struct kvm_plane *plane,
+ gfn_t gfn)
+{
+ if (!plane)
+ return 0;
+ return xa_to_value(xa_load(&plane->access_attr_array, gfn));
+}
+#else
+static inline unsigned long kvm_plane_access_attributes(struct kvm_plane *plane,
+ gfn_t gfn)
+{
+ return 0;
+}
+#endif /* CONFIG_VM_PLANES */
+
#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,
diff --git a/include/uapi/linux/kvm.h b/include/uapi/linux/kvm.h
index 348628c7b17e..3118b31d13f6 100644
--- a/include/uapi/linux/kvm.h
+++ b/include/uapi/linux/kvm.h
@@ -1688,6 +1688,7 @@ struct kvm_memory_attributes {
#define KVM_MEMORY_ATTRIBUTE_PRIVATE (1ULL << 3)
#define KVM_MEMORY_ATTRIBUTE_NO_WRITE (1ULL << 4)
#define KVM_MEMORY_ATTRIBUTE_NO_EXEC (1ULL << 5)
+#define KVM_MEMORY_ATTRIBUTE_NO_READ (1ULL << 6)
#define KVM_CREATE_GUEST_MEMFD _IOWR(KVMIO, 0xd4, struct kvm_create_guest_memfd)
#define GUEST_MEMFD_FLAG_MMAP (1ULL << 0)
diff --git a/virt/kvm/kvm_main.c b/virt/kvm/kvm_main.c
index 553c282500fd..3a1a09f26340 100644
--- a/virt/kvm/kvm_main.c
+++ b/virt/kvm/kvm_main.c
@@ -1236,6 +1236,9 @@ static struct kvm_plane *kvm_create_plane(struct kvm *kvm, unsigned plane_level)
plane->level = plane_level;
xa_init(&plane->vcpu_array);
+#ifdef CONFIG_VM_PLANES
+ xa_init(&plane->access_attr_array);
+#endif
if (kvm_arch_plane_init(kvm, plane, plane_level))
goto out_free_plane;
@@ -1254,6 +1257,9 @@ static struct kvm_plane *kvm_create_plane(struct kvm *kvm, unsigned plane_level)
static void kvm_destroy_one_plane(struct kvm_plane *plane)
{
kvm_arch_plane_destroy(plane);
+#ifdef CONFIG_VM_PLANES
+ xa_destroy(&plane->access_attr_array);
+#endif
kvm_free_plane(plane);
}
--
2.55.0
next prev parent reply other threads:[~2026-08-05 11:04 UTC|newest]
Thread overview: 43+ messages / expand[flat|nested] mbox.gz Atom feed top
2026-08-05 11:02 [RFC PATCH v1 00/42] VBS/VSM-on-KVM: VBS integration for KVM VM planes Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 01/42] Fix merge issue - Remove duplicate definition for kvm_arch_has_irq_bypass Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 02/42] Fix compilation Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 03/42] Fix compile error Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 04/42] Fix compile errors Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 05/42] Initial support for VM Planes - Add kernel config for CONFIG_VM_PLANES - Parse vm plane config from initrd for plane configuration - Make hypercalls to allocate memory for the vm planes Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 06/42] Use vcpu count from the plane configuration Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 07/42] skip processing plane configuration for plane 0 - plane 0 is the boot plane Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 08/42] Add plane config param to specify kernel image format Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 09/42] Activate the VM Planes through the Hypervisor - Using KVM as the VMM Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 10/42] allow the command line to be specified for kernels in other planes Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 11/42] Various changes to support VM Planes Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 12/42] Add a Virtualization Based Security (VBS) framework. - Add backends for AMD SEV-SNP, Intel TDX, Arm CCA and KVM Planes. - Support VTL on Hyper-V in addition to Planes on KVM Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 13/42] Add a inter-plane communication mechanism through KVM. - model this to use a single page similar to SEV-SNP Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 14/42] KVM: Add per-plane memory attribute support for cross-plane EPT protection Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 15/42] KVM: x86: Add KVM_HC_VBS_VTL_CALL hypercall for VBS inter-plane calls Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 16/42] vbs: Add HEKI kernel sealing and fix KVM plane memory attribute guards Sriram Nambakam
2026-08-05 11:02 ` [RFC PATCH v1 17/42] vbs: Add module authentication via VBS/HEKI Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 18/42] vbs: Add kexec validation and make module auth non-fatal Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 19/42] Merge branch 'master' into vm-planes Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 20/42] kvm: x86: fix merged plane API/stat build regressions Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 21/42] KVM: x86: exit VM planes and VBS hypercalls to userspace Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 22/42] kexec: block legacy kexec_load when VBS is active Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 23/42] kvm: x86: fix merged plane API/stat build regressions Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 24/42] KVM: planes: expose memory-attribute setting to in-kernel callers Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 25/42] vm_planes: drop unused per-plane vcpu_count Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 26/42] drivers/virt: add VBS secure-plane park loop Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 27/42] KVM: planes: add arch-neutral in-kernel plane switch helper Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 28/42] KVM: x86: add VBS VTL call/return and cross-plane set-mem-attrs hypercalls Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 29/42] init/vm_planes: set up planes from rootfs_initcall and load ELF payloads Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 30/42] security/vbs: run backend probe and HEKI seal at rootfs_initcall Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 31/42] security/vbs: pin the VTL call hypercall to CPU0 Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 32/42] security/vbs: add secure-plane monitor backend Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 33/42] drivers/virt: rename VBS park loop to secure_monitor Sriram Nambakam
2026-08-05 11:03 ` Sriram Nambakam [this message]
2026-08-05 11:03 ` [RFC PATCH v1 35/42] KVM: x86: deny normal-plane access to secure-plane memory Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 36/42] KVM: plane: handle KVM_CHECK_EXTENSION on the plane fd Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 37/42] KVM: selftests: run plane tests with a split IRQ chip Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 38/42] kvm: x86: drop obsolete kvm_cache_regs.h Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 39/42] kvm: arch: finalize plane hooks and kvm_arch_vcpu_create signature Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 40/42] kvm: x86: use kvm_vcpu scheduling-state accessors and struct stat fields Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 41/42] kvm: x86: finalize per-plane APIC state and CPUID placement Sriram Nambakam
2026-08-05 11:03 ` [RFC PATCH v1 42/42] kvm: planes: reconcile core plane state, UAPI and hypercall exit Sriram Nambakam
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