* [PATCH v3 0/2] Add support for cmpxchg16b emulation
@ 2026-08-26 7:00 Sairaj Kodilkar
2026-08-26 7:00 ` [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands Sairaj Kodilkar
2026-08-26 7:00 ` [PATCH v3 2/2] KVM: x86: Add support for cmpxchg16b emulation Sairaj Kodilkar
0 siblings, 2 replies; 12+ messages in thread
From: Sairaj Kodilkar @ 2026-08-26 7:00 UTC (permalink / raw)
To: H. Peter Anvin, Peter Zijlstra (Intel), Borislav Petkov,
Dave Hansen, Ingo Molnar, Mathieu Desnoyers, Paolo Bonzini,
Sairaj Kodilkar, Sean Christopherson, Thomas Gleixner,
Uros Bizjak, kvm, linux-kernel, x86
Cc: vasant.hegde, suravee.suthikulpanit
This series adds 128-bit compare-exchange support needed for KVM to
emulate guest cmpxchg16b instructions.
The AMD IOMMU driver updates 256-bit device table entries with two
128-bit cmpxchg operations. For hardware-accelerated vIOMMU, QEMU traps
those DTE accesses to install nested page tables [1]. KVM must emulate
guest cmpxchg16b on the trapped MMIO regions; without that, DTE access
emulation fails.
Patch 1: extends the x86 user CMPXCHG helpers with
__try_cmpxchg128_user_asm() (cmpxchg16b on x86-64), wired into
unsafe_try_cmpxchg_user().
Patch 2: extends KVM CMPXCHG8B emulation to 16-byte operands (REX.W=1) and
uses the new helper for atomic 16-byte compare-exchange on guest RAM via
emulator_cmpxchg_emulated().
You can find the KUT to test this series at [2].
[1] https://github.com/AMDESE/qemu-iommu/blob/wip/for_iommufd_hw_queue-v8_amd_viommu_20260106/hw/i386/amd_viommu.c#L517
[2] https://lore.kernel.org/kvm/20260706062153.346-1-sarunkod@amd.com/T/#u
Changes since v2:
https://lore.kernel.org/all/20260706063035.1139-1-sarunkod@amd.com/
Patch 1: Trigger build failure if __try_cmpxchg128_user_asm is called on 32 bit
machines [Sean]
Sairaj Kodilkar (2):
x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
KVM: x86: Add support for cmpxchg16b emulation
arch/x86/include/asm/uaccess.h | 56 +++++++++++++++++++++++++++++++++-
arch/x86/kvm/emulate.c | 50 ++++++++++++++++++++----------
arch/x86/kvm/kvm_emulate.h | 6 ++++
arch/x86/kvm/x86.c | 7 ++++-
4 files changed, 101 insertions(+), 18 deletions(-)
base-commit: 45c13f3f9e3bb15fd89ff2864c6f627a3b4b4229
--
2.34.1
^ permalink raw reply [flat|nested] 12+ messages in thread
* [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
2026-08-26 7:00 [PATCH v3 0/2] Add support for cmpxchg16b emulation Sairaj Kodilkar
@ 2026-08-26 7:00 ` Sairaj Kodilkar
2026-08-26 7:23 ` sashiko-bot
2026-08-26 12:30 ` Dave Hansen
2026-08-26 7:00 ` [PATCH v3 2/2] KVM: x86: Add support for cmpxchg16b emulation Sairaj Kodilkar
1 sibling, 2 replies; 12+ messages in thread
From: Sairaj Kodilkar @ 2026-08-26 7:00 UTC (permalink / raw)
To: H. Peter Anvin, Peter Zijlstra (Intel), Borislav Petkov,
Dave Hansen, Ingo Molnar, Mathieu Desnoyers, Paolo Bonzini,
Sairaj Kodilkar, Sean Christopherson, Thomas Gleixner,
Uros Bizjak, kvm, linux-kernel, x86
Cc: vasant.hegde, suravee.suthikulpanit
Extend the existing user CMPXCHG helpers to support 16-byte operands on
x86-64, using LOCK_PREFIX "cmpxchg16b". This mirrors the existing
__try_cmpxchg64_user_asm() / cmpxchg8b path provided for 32-bit kernels,
where KVM needs an atomic compare-exchange wider than the generic
cmpxchg helper can provide.
On 32-bit kernels, stub the helper to always return failure because cmpxchg16b
requires 64-bit GPRs and is not available.
KVM uses this to atomically emulate guest cmpxchg16b on guest RAM mapped
via userspace addresses.
Signed-off-by: Sairaj Kodilkar <sarunkod@amd.com>
---
arch/x86/include/asm/uaccess.h | 56 +++++++++++++++++++++++++++++++++-
1 file changed, 55 insertions(+), 1 deletion(-)
diff --git a/arch/x86/include/asm/uaccess.h b/arch/x86/include/asm/uaccess.h
index 3a0dd3c2b233..39bcf327664e 100644
--- a/arch/x86/include/asm/uaccess.h
+++ b/arch/x86/include/asm/uaccess.h
@@ -407,6 +407,25 @@ do { \
if (unlikely(!success)) \
*_old = __old; \
likely(success); })
+#else // !CONFIG_X86_32
+#define __try_cmpxchg128_user_asm(_ptr, _pold, _new, label) ({ \
+ bool success; \
+ __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \
+ __typeof__(*(_ptr)) __old = *_old; \
+ __typeof__(*(_ptr)) __new = (_new); \
+ asm_goto_output("\n" \
+ "1: " LOCK_PREFIX "cmpxchg16b %[ptr]\n" \
+ _ASM_EXTABLE_UA(1b, %l[label]) \
+ : "=@ccz" (success), \
+ "+A" (__old), \
+ [ptr] "+m" (*_ptr) \
+ : "b" ((u64)__new), \
+ "c" ((u64)((u128)__new >> 64)) \
+ : "memory" \
+ : label); \
+ if (unlikely(!success)) \
+ *_old = __old; \
+ likely(success); })
#endif // CONFIG_X86_32
#else // !CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT
#define __try_cmpxchg_user_asm(itype, ltype, _ptr, _pold, _new, label) ({ \
@@ -463,6 +482,30 @@ do { \
if (unlikely(!__result)) \
*_old = __old; \
likely(__result); })
+#else //!CONFIG_X86_32
+#define __try_cmpxchg128_user_asm(_ptr, _pold, _new, label) ({ \
+ int __result; \
+ __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \
+ __typeof__(*(_ptr)) __old = *_old; \
+ __typeof__(*(_ptr)) __new = (_new); \
+ asm volatile("\n" \
+ "1: " LOCK_PREFIX "cmpxchg16b %[ptr]\n" \
+ "mov $0, %[result]\n\t" \
+ "setz %b[result]\n" \
+ "2:\n" \
+ _ASM_EXTABLE_TYPE_REG(1b, 2b, EX_TYPE_EFAULT_REG, \
+ %[result]) \
+ : [result] "=q" (__result), \
+ "+A" (__old), \
+ [ptr] "+m" (*_ptr) \
+ : "b" ((u64)__new), \
+ "c" ((u64)((u128)__new >> 64)) \
+ : "memory", "cc"); \
+ if (unlikely(__result < 0)) \
+ goto label; \
+ if (unlikely(!__result)) \
+ *_old = __old; \
+ likely(__result); })
#endif // CONFIG_X86_32
#endif // CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT
@@ -551,11 +594,18 @@ do { \
extern void __try_cmpxchg_user_wrong_size(void);
-#ifndef CONFIG_X86_32
+#ifdef CONFIG_X86_32
+/* Always fail on 32 bit arch as it do not support 128 cmpxchg (i.e. cmpxchg16b
+ * instruction).
+ */
+#define __try_cmpxchg128_user_asm(_ptr, _pold, _new, label) ({ BUILD_BUG_ON(1); 0; })
+#else
#define __try_cmpxchg64_user_asm(_ptr, _oldp, _nval, _label) \
__try_cmpxchg_user_asm("q", "r", (_ptr), (_oldp), (_nval), _label)
+
#endif
+
/*
* Force the pointer to u<size> to match the size expected by the asm helper.
* clang/LLVM compiles all cases and only discards the unused paths after
@@ -580,6 +630,10 @@ extern void __try_cmpxchg_user_wrong_size(void);
case 8: __ret = __try_cmpxchg64_user_asm((__force u64 *)(_ptr), (_oldp),\
(_nval), _label); \
break; \
+ case 16: \
+ __ret = __try_cmpxchg128_user_asm((__force u128 *)(_ptr), \
+ (_oldp), (_nval), _label); \
+ break; \
default: __try_cmpxchg_user_wrong_size(); \
} \
__ret; })
--
2.34.1
^ permalink raw reply related [flat|nested] 12+ messages in thread
* [PATCH v3 2/2] KVM: x86: Add support for cmpxchg16b emulation
2026-08-26 7:00 [PATCH v3 0/2] Add support for cmpxchg16b emulation Sairaj Kodilkar
2026-08-26 7:00 ` [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands Sairaj Kodilkar
@ 2026-08-26 7:00 ` Sairaj Kodilkar
2026-08-26 7:31 ` sashiko-bot
2026-08-26 12:50 ` Mathieu Desnoyers
1 sibling, 2 replies; 12+ messages in thread
From: Sairaj Kodilkar @ 2026-08-26 7:00 UTC (permalink / raw)
To: H. Peter Anvin, Peter Zijlstra (Intel), Borislav Petkov,
Dave Hansen, Ingo Molnar, Mathieu Desnoyers, Paolo Bonzini,
Sairaj Kodilkar, Sean Christopherson, Thomas Gleixner,
Uros Bizjak, kvm, linux-kernel, x86
Cc: vasant.hegde, suravee.suthikulpanit
AMD and Intel both provides support for 128 bit cmpxchg operands using
cmpxchg8b/cmpxchg16b instructions (opcode 0FC7). However, kvm does not
support emulating cmpxchg16b (i.e when destination memory is 128 bit and
REX.W = 1) which causes emulation failure when QEMU guest performs a
cmpxchg16b on a memory region setup as a IO.
This failure is seen on the AMD IOMMU driver which writes 256-bit device
table entries with two 128-bit cmpxchg operations. For guests using
hardware-accelerated vIOMMU, QEMU traps device table accesses to set up
nested page tables (see [1]). Without 128-bit cmpxchg emulation, KVM
cannot handle these traps and DTE access emulation fails.
Hence extend cmpxchg8b to perform cmpxchg16b when the destination memory
is 128 bit.
[1] https://github.com/AMDESE/qemu-iommu/blob/wip/for_iommufd_hw_queue-v8_amd_viommu_20260106/hw/i386/amd_viommu.c#L517
Signed-off-by: Sairaj Kodilkar <sarunkod@amd.com>
---
arch/x86/kvm/emulate.c | 50 ++++++++++++++++++++++++++------------
arch/x86/kvm/kvm_emulate.h | 6 +++++
arch/x86/kvm/x86.c | 7 +++++-
3 files changed, 46 insertions(+), 17 deletions(-)
diff --git a/arch/x86/kvm/emulate.c b/arch/x86/kvm/emulate.c
index c1b21282187f..f38c4f1a99c3 100644
--- a/arch/x86/kvm/emulate.c
+++ b/arch/x86/kvm/emulate.c
@@ -2184,24 +2184,36 @@ static int em_call_near_abs(struct x86_emulate_ctxt *ctxt)
return rc;
}
+#define em_cmpxchg8b_16b(__c, rbits, mbits)\
+do { \
+ u##mbits old = __c->dst.orig_val##mbits; \
+ \
+ BUILD_BUG_ON(rbits * 2 != mbits); \
+ \
+ if (((u##rbits) (old >> 0) != (u##rbits) reg_read(ctxt, VCPU_REGS_RAX)) || \
+ ((u##rbits) (old >> rbits) != (u##rbits) reg_read(ctxt, VCPU_REGS_RDX))) { \
+ *reg_write(ctxt, VCPU_REGS_RAX) = (u##rbits) (old >> 0); \
+ *reg_write(ctxt, VCPU_REGS_RDX) = (u##rbits) (old >> rbits); \
+ ctxt->eflags &= ~X86_EFLAGS_ZF; \
+ } else { \
+ ctxt->dst.val##mbits = ((u##mbits)reg_read(ctxt, VCPU_REGS_RCX) << rbits) | \
+ (u##rbits) reg_read(ctxt, VCPU_REGS_RBX); \
+ \
+ ctxt->eflags |= X86_EFLAGS_ZF; \
+ } \
+} while(0)
+
static int em_cmpxchg8b(struct x86_emulate_ctxt *ctxt)
{
- u64 old = ctxt->dst.orig_val64;
-
- if (ctxt->dst.bytes == 16)
+ if (WARN_ON_ONCE(8 + !!(ctxt->rex_bits & REX_W) * 8 != ctxt->dst.bytes))
return X86EMUL_UNHANDLEABLE;
- if (((u32) (old >> 0) != (u32) reg_read(ctxt, VCPU_REGS_RAX)) ||
- ((u32) (old >> 32) != (u32) reg_read(ctxt, VCPU_REGS_RDX))) {
- *reg_write(ctxt, VCPU_REGS_RAX) = (u32) (old >> 0);
- *reg_write(ctxt, VCPU_REGS_RDX) = (u32) (old >> 32);
- ctxt->eflags &= ~X86_EFLAGS_ZF;
- } else {
- ctxt->dst.val64 = ((u64)reg_read(ctxt, VCPU_REGS_RCX) << 32) |
- (u32) reg_read(ctxt, VCPU_REGS_RBX);
-
- ctxt->eflags |= X86_EFLAGS_ZF;
- }
+ if (!(ctxt->rex_bits & REX_W))
+ em_cmpxchg8b_16b(ctxt, 32, 64);
+#ifdef CONFIG_X86_64
+ else
+ em_cmpxchg8b_16b(ctxt, 64, 128);
+#endif
return X86EMUL_CONTINUE;
}
@@ -5414,8 +5426,14 @@ int x86_emulate_insn(struct x86_emulate_ctxt *ctxt, bool check_intercepts)
goto done;
}
}
- /* Copy full 64-bit value for CMPXCHG8B. */
- ctxt->dst.orig_val64 = ctxt->dst.val64;
+ /* Copy full 64/128-bit value for CMPXCHG8B. */
+
+#ifdef CONFIG_X86_64
+ if (ctxt->dst.bytes == 16)
+ ctxt->dst.orig_val128 = ctxt->dst.val128;
+ else
+#endif
+ ctxt->dst.orig_val64 = ctxt->dst.val64;
special_insn:
diff --git a/arch/x86/kvm/kvm_emulate.h b/arch/x86/kvm/kvm_emulate.h
index 3e375af15c03..89911845233d 100644
--- a/arch/x86/kvm/kvm_emulate.h
+++ b/arch/x86/kvm/kvm_emulate.h
@@ -263,6 +263,9 @@ struct operand {
union {
unsigned long orig_val;
u64 orig_val64;
+#ifdef CONFIG_X86_64
+ u128 orig_val128;
+#endif
};
union {
unsigned long *reg;
@@ -276,6 +279,9 @@ struct operand {
union {
unsigned long val;
u64 val64;
+#ifdef CONFIG_X86_64
+ u128 val128;
+#endif
char valptr[sizeof(avx256_t)];
sse128_t vec_val;
avx256_t vec_val2;
diff --git a/arch/x86/kvm/x86.c b/arch/x86/kvm/x86.c
index 79468ddfe473..60be16f05d79 100644
--- a/arch/x86/kvm/x86.c
+++ b/arch/x86/kvm/x86.c
@@ -5271,7 +5271,7 @@ static int emulator_cmpxchg_emulated(struct x86_emulate_ctxt *ctxt,
int r;
/* guests cmpxchg8b have to be emulated atomically */
- if (bytes > 8 || (bytes & (bytes - 1)))
+ if (bytes > 2 * sizeof(unsigned long) || (bytes & (bytes - 1)))
goto emul_write;
gpa = kvm_mmu_gva_to_gpa_write(vcpu, addr, NULL);
@@ -5311,6 +5311,11 @@ static int emulator_cmpxchg_emulated(struct x86_emulate_ctxt *ctxt,
case 8:
r = emulator_try_cmpxchg_user(u64, hva, old, new);
break;
+#ifdef CONFIG_X86_64
+ case 16:
+ r = emulator_try_cmpxchg_user(u128, hva, old, new);
+ break;
+#endif
default:
BUG();
}
--
2.34.1
^ permalink raw reply related [flat|nested] 12+ messages in thread
* Re: [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
2026-08-26 7:00 ` [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands Sairaj Kodilkar
@ 2026-08-26 7:23 ` sashiko-bot
2026-08-26 8:54 ` Sairaj Kodilkar
2026-08-26 12:30 ` Dave Hansen
1 sibling, 1 reply; 12+ messages in thread
From: sashiko-bot @ 2026-08-26 7:23 UTC (permalink / raw)
To: Sairaj Kodilkar; +Cc: kvm
Thank you for your contribution! Sashiko AI review found 2 potential issue(s) to consider:
- [High] The inline assembly for 128-bit cmpxchg uses the unreliable `+A` constraint on x86-64, risking silent memory corruption or build failures.
- [Medium] The 32-bit stub for `__try_cmpxchg128_user_asm` relies on `BUILD_BUG_ON(1)`, which will break the 32-bit build for all callers of `unsafe_try_cmpxchg_user`.
--
commit 778924f40bf568ddfaeffc09239d3c0e2a09bba6
Author: Sairaj Kodilkar <sarunkod@amd.com>
x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
This commit extends the existing user CMPXCHG helpers to support 16-byte
operands on x86-64 using the "cmpxchg16b" instruction. On 32-bit kernels,
it stubs the helper to fail, as cmpxchg16b requires 64-bit registers. KVM
uses this to atomically emulate guest cmpxchg16b on guest RAM mapped via
userspace addresses.
> diff --git a/arch/x86/include/asm/uaccess.h b/arch/x86/include/asm/uaccess.h
> index 3a0dd3c2b233e..39bcf327664ea 100644
> --- a/arch/x86/include/asm/uaccess.h
> +++ b/arch/x86/include/asm/uaccess.h
> @@ -407,6 +407,25 @@ do { \
[ ... ]
> +#else // !CONFIG_X86_32
> +#define __try_cmpxchg128_user_asm(_ptr, _pold, _new, label) ({ \
> + bool success; \
> + __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \
> + __typeof__(*(_ptr)) __old = *_old; \
> + __typeof__(*(_ptr)) __new = (_new); \
> + asm_goto_output("\n" \
> + "1: " LOCK_PREFIX "cmpxchg16b %[ptr]\n" \
> + _ASM_EXTABLE_UA(1b, %l[label]) \
> + : "=@ccz" (success), \
> + "+A" (__old), \
[Severity: High]
Does using the "+A" constraint for a 128-bit value provide the strict
rdx:rax register ordering required by the cmpxchg16b instruction?
The kernel documents in arch/x86/include/asm/asm.h that the "A" constraint
on x86-64 means rax or rdx, rather than the rdx:rax pair. If the compiler
does not guarantee the rdx:rax ordering for __int128/u128 with "+A", could
this lead to silent memory corruption with swapped operands, or outright
build failures on compilers like Clang?
The standard pattern used elsewhere (like __arch_cmpxchg128 in
arch/x86/include/asm/cmpxchg_64.h) splits the 128-bit value into a union
of two 64-bit halves and explicitly binds them to "+a" (rax) and "+d" (rdx).
Would it be safer to use that pattern here?
> + [ptr] "+m" (*_ptr) \
> + : "b" ((u64)__new), \
> + "c" ((u64)((u128)__new >> 64)) \
> + : "memory" \
> + : label); \
> + if (unlikely(!success)) \
> + *_old = __old; \
> + likely(success); })
> #endif // CONFIG_X86_32
> #else // !CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT
[ ... ]
> +#else //!CONFIG_X86_32
> +#define __try_cmpxchg128_user_asm(_ptr, _pold, _new, label) ({ \
> + int __result; \
> + __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \
> + __typeof__(*(_ptr)) __old = *_old; \
> + __typeof__(*(_ptr)) __new = (_new); \
> + asm volatile("\n" \
> + "1: " LOCK_PREFIX "cmpxchg16b %[ptr]\n" \
> + "mov $0, %[result]\n\t" \
> + "setz %b[result]\n" \
> + "2:\n" \
> + _ASM_EXTABLE_TYPE_REG(1b, 2b, EX_TYPE_EFAULT_REG, \
> + %[result]) \
> + : [result] "=q" (__result), \
> + "+A" (__old), \
[Severity: High]
Similar to the asm_goto_output block above, this fallback path also binds
the 128-bit __old variable to the "+A" constraint.
> + [ptr] "+m" (*_ptr) \
> + : "b" ((u64)__new), \
> + "c" ((u64)((u128)__new >> 64)) \
> + : "memory", "cc"); \
> + if (unlikely(__result < 0)) \
> + goto label; \
> + if (unlikely(!__result)) \
> + *_old = __old; \
> + likely(__result); })
> #endif // CONFIG_X86_32
> #endif // CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT
[ ... ]
> @@ -551,11 +594,18 @@ do { \
>
> extern void __try_cmpxchg_user_wrong_size(void);
>
> -#ifndef CONFIG_X86_32
> +#ifdef CONFIG_X86_32
> +/* Always fail on 32 bit arch as it do not support 128 cmpxchg (i.e. cmpxchg16b
> + * instruction).
> + */
> +#define __try_cmpxchg128_user_asm(_ptr, _pold, _new, label) ({ BUILD_BUG_ON(1); 0; })
[Severity: Medium]
Will this BUILD_BUG_ON(1) break 32-bit x86 builds that call the
unsafe_try_cmpxchg_user() macro for perfectly valid 32-bit or 64-bit sizes?
Because unsafe_try_cmpxchg_user() dispatches via a switch(sizeof(*(_ptr)))
statement, compilers like Clang/LLVM eagerly evaluate all branches during
semantic analysis, including the 16-byte branch. If evaluated on 32-bit
builds, BUILD_BUG_ON(1) will trigger a compile-time error regardless of
whether the 16-byte path is actually reachable.
Since the commit message says "stub the helper to always return failure",
would it be better to return a runtime error code here instead of using
a build bug?
> +#else
> #define __try_cmpxchg64_user_asm(_ptr, _oldp, _nval, _label) \
> __try_cmpxchg_user_asm("q", "r", (_ptr), (_oldp), (_nval), _label)
--
Sashiko AI review · https://sashiko.dev/#/patchset/20260826070004.8100-1-sarunkod@amd.com?part=1
^ permalink raw reply [flat|nested] 12+ messages in thread
* Re: [PATCH v3 2/2] KVM: x86: Add support for cmpxchg16b emulation
2026-08-26 7:00 ` [PATCH v3 2/2] KVM: x86: Add support for cmpxchg16b emulation Sairaj Kodilkar
@ 2026-08-26 7:31 ` sashiko-bot
2026-08-26 9:17 ` Sairaj Kodilkar
2026-08-26 12:50 ` Mathieu Desnoyers
1 sibling, 1 reply; 12+ messages in thread
From: sashiko-bot @ 2026-08-26 7:31 UTC (permalink / raw)
To: Sairaj Kodilkar; +Cc: kvm
Thank you for your contribution! Sashiko AI review found 3 potential issue(s) to consider:
New issues:
- [High] Emulation of CMPXCHG16B lacks the mandatory 16-byte alignment check, leading to a guest-triggerable VM crash.
- [Low] The macro `em_cmpxchg8b_16b` incorrectly captures the variable `ctxt` from the surrounding scope instead of solely using its argument `__c`.
Pre-existing issues:
- [Critical] TOCTOU vulnerability in atomic CMPXCHG emulation leads to silent data corruption in the guest when a native compare fails.
--
commit f6a8a67f38b03c4522f119ac54d63d97691e1289
Author: Sairaj Kodilkar <sarunkod@amd.com>
KVM: x86: Add support for cmpxchg16b emulation
This patch adds support for emulating cmpxchg16b when the destination memory
is 128-bit and REX.W = 1. This prevents QEMU guests from hitting emulation
failures during 256-bit device table entries accesses on AMD vIOMMU.
> diff --git a/arch/x86/kvm/emulate.c b/arch/x86/kvm/emulate.c
> index c1b21282187f3..f38c4f1a99c31 100644
> --- a/arch/x86/kvm/emulate.c
> +++ b/arch/x86/kvm/emulate.c
[ ... ]
> @@ -2184,24 +2184,36 @@ static int em_call_near_abs(struct x86_emulate_ctxt *ctxt)
> return rc;
> }
>
> +#define em_cmpxchg8b_16b(__c, rbits, mbits)\
> +do { \
> + u##mbits old = __c->dst.orig_val##mbits; \
> + \
> + BUILD_BUG_ON(rbits * 2 != mbits); \
> + \
> + if (((u##rbits) (old >> 0) != (u##rbits) reg_read(ctxt, VCPU_REGS_RAX)) || \
[Severity: Low]
Does this macro intentionally reference the unpassed variable ctxt instead of
the provided argument __c?
This uses ctxt to read registers, which makes the macro rely on the specific
variable name ctxt in the caller's scope instead of its parameter.
> + ((u##rbits) (old >> rbits) != (u##rbits) reg_read(ctxt, VCPU_REGS_RDX))) { \
> + *reg_write(ctxt, VCPU_REGS_RAX) = (u##rbits) (old >> 0); \
> + *reg_write(ctxt, VCPU_REGS_RDX) = (u##rbits) (old >> rbits); \
> + ctxt->eflags &= ~X86_EFLAGS_ZF; \
> + } else { \
> + ctxt->dst.val##mbits = ((u##mbits)reg_read(ctxt, VCPU_REGS_RCX) << rbits) | \
> + (u##rbits) reg_read(ctxt, VCPU_REGS_RBX); \
> + \
> + ctxt->eflags |= X86_EFLAGS_ZF; \
> + } \
> +} while(0)
> +
> static int em_cmpxchg8b(struct x86_emulate_ctxt *ctxt)
> {
> - u64 old = ctxt->dst.orig_val64;
> -
> - if (ctxt->dst.bytes == 16)
> + if (WARN_ON_ONCE(8 + !!(ctxt->rex_bits & REX_W) * 8 != ctxt->dst.bytes))
> return X86EMUL_UNHANDLEABLE;
>
> - if (((u32) (old >> 0) != (u32) reg_read(ctxt, VCPU_REGS_RAX)) ||
> - ((u32) (old >> 32) != (u32) reg_read(ctxt, VCPU_REGS_RDX))) {
> - *reg_write(ctxt, VCPU_REGS_RAX) = (u32) (old >> 0);
> - *reg_write(ctxt, VCPU_REGS_RDX) = (u32) (old >> 32);
> - ctxt->eflags &= ~X86_EFLAGS_ZF;
> - } else {
> - ctxt->dst.val64 = ((u64)reg_read(ctxt, VCPU_REGS_RCX) << 32) |
> - (u32) reg_read(ctxt, VCPU_REGS_RBX);
> -
> - ctxt->eflags |= X86_EFLAGS_ZF;
> - }
> + if (!(ctxt->rex_bits & REX_W))
> + em_cmpxchg8b_16b(ctxt, 32, 64);
> +#ifdef CONFIG_X86_64
> + else
> + em_cmpxchg8b_16b(ctxt, 64, 128);
> +#endif
[Severity: High]
Are we missing a 16-byte alignment check for the destination memory when
executing CMPXCHG16B here?
The x86 architecture strictly mandates that the memory operand for CMPXCHG16B
must be 16-byte aligned. If it is not, a #GP(0) exception is generated
unconditionally.
Without this check, KVM will later attempt a native unaligned lock cmpxchg16b,
which will raise a host #GP(0). The host exception table catches this and
returns -EFAULT, translating to X86EMUL_UNHANDLEABLE, which immediately
crashes the VM via KVM_EXIT_INTERNAL_ERROR. Can this regression be used by a
guest to trigger a denial of service?
> return X86EMUL_CONTINUE;
> }
[ ... ]
> diff --git a/arch/x86/kvm/x86.c b/arch/x86/kvm/x86.c
> index 79468ddfe4736..60be16f05d794 100644
> --- a/arch/x86/kvm/x86.c
> +++ b/arch/x86/kvm/x86.c
[ ... ]
> @@ -5311,6 +5311,11 @@ static int emulator_cmpxchg_emulated(struct x86_emulate_ctxt *ctxt,
> case 8:
> r = emulator_try_cmpxchg_user(u64, hva, old, new);
> break;
> +#ifdef CONFIG_X86_64
> + case 16:
> + r = emulator_try_cmpxchg_user(u128, hva, old, new);
> + break;
> +#endif
[Severity: Critical]
This is a pre-existing issue, but does the emulation of atomic CMPXCHG suffer
from a TOCTOU race leading to silent data corruption in the guest?
When emulator_try_cmpxchg_user() fails due to concurrent memory modification,
emulator_cmpxchg_emulated() returns X86EMUL_CMPXCHG_FAILED.
However, in x86_emulate_insn(), this failure appears to be silently swallowed:
arch/x86/kvm/emulate.c:x86_emulate_insn() {
...
if (rc == X86EMUL_CONTINUE)
writeback_registers(ctxt);
return (rc == X86EMUL_UNHANDLEABLE) ? EMULATION_FAILED : EMULATION_OK;
}
Because rc is not X86EMUL_CONTINUE, writeback_registers() is skipped and the
guest registers are not updated. Because EMULATION_OK is returned, KVM retires
the instruction as successful, advancing RIP and leaving the guest with a
stale ZF=1 flag. Doesn't this cause the guest to mistakenly believe it
acquired a lock?
--
Sashiko AI review · https://sashiko.dev/#/patchset/20260826070004.8100-1-sarunkod@amd.com?part=2
^ permalink raw reply [flat|nested] 12+ messages in thread
* Re: [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
2026-08-26 7:23 ` sashiko-bot
@ 2026-08-26 8:54 ` Sairaj Kodilkar
0 siblings, 0 replies; 12+ messages in thread
From: Sairaj Kodilkar @ 2026-08-26 8:54 UTC (permalink / raw)
To: sashiko-reviews; +Cc: sarunkod, kvm
On 8/26/2026 12:53 PM, sashiko-bot@kernel.org wrote:
> Thank you for your contribution! Sashiko AI review found 2 potential issue(s) to consider:
> - [High] The inline assembly for 128-bit cmpxchg uses the unreliable `+A` constraint on x86-64, risking silent memory corruption or build failures.
> - [Medium] The 32-bit stub for `__try_cmpxchg128_user_asm` relies on `BUILD_BUG_ON(1)`, which will break the 32-bit build for all callers of `unsafe_try_cmpxchg_user`.
> --
>
> commit 778924f40bf568ddfaeffc09239d3c0e2a09bba6
> Author: Sairaj Kodilkar <sarunkod@amd.com>
>
> x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
>
> This commit extends the existing user CMPXCHG helpers to support 16-byte
> operands on x86-64 using the "cmpxchg16b" instruction. On 32-bit kernels,
> it stubs the helper to fail, as cmpxchg16b requires 64-bit registers. KVM
> uses this to atomically emulate guest cmpxchg16b on guest RAM mapped via
> userspace addresses.
>
>> diff --git a/arch/x86/include/asm/uaccess.h b/arch/x86/include/asm/uaccess.h
>> index 3a0dd3c2b233e..39bcf327664ea 100644
>> --- a/arch/x86/include/asm/uaccess.h
>> +++ b/arch/x86/include/asm/uaccess.h
>> @@ -407,6 +407,25 @@ do { \
> [ ... ]
>> +#else // !CONFIG_X86_32
>> +#define __try_cmpxchg128_user_asm(_ptr, _pold, _new, label) ({ \
>> + bool success; \
>> + __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \
>> + __typeof__(*(_ptr)) __old = *_old; \
>> + __typeof__(*(_ptr)) __new = (_new); \
>> + asm_goto_output("\n" \
>> + "1: " LOCK_PREFIX "cmpxchg16b %[ptr]\n" \
>> + _ASM_EXTABLE_UA(1b, %l[label]) \
>> + : "=@ccz" (success), \
>> + "+A" (__old), \
>
> [Severity: High]
> Does using the "+A" constraint for a 128-bit value provide the strict
> rdx:rax register ordering required by the cmpxchg16b instruction?
>
> The kernel documents in arch/x86/include/asm/asm.h that the "A" constraint
> on x86-64 means rax or rdx, rather than the rdx:rax pair. If the compiler
> does not guarantee the rdx:rax ordering for __int128/u128 with "+A", could
> this lead to silent memory corruption with swapped operands, or outright
> build failures on compilers like Clang?
>
> The standard pattern used elsewhere (like __arch_cmpxchg128 in
> arch/x86/include/asm/cmpxchg_64.h) splits the 128-bit value into a union
> of two 64-bit halves and explicitly binds them to "+a" (rax) and "+d" (rdx).
> Would it be safer to use that pattern here?
It is easy to misread/misunderstand the official gcc documentations [1].
It specifically mentions that
"Single word values will be allocated either in ax or dx".
Here on x86_64 arch, the __old is 128 bit (i.e. it cannot fit in single
register) so the compiler will always split it in rdx:rax pair.
>> + [ptr] "+m" (*_ptr) \
>> + : "b" ((u64)__new), \
>> + "c" ((u64)((u128)__new >> 64)) \
>> + : "memory" \
>> + : label); \
>> + if (unlikely(!success)) \
>> + *_old = __old; \
>> + likely(success); })
>> #endif // CONFIG_X86_32
>> #else // !CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT
> [ ... ]
>> +#else //!CONFIG_X86_32
>> +#define __try_cmpxchg128_user_asm(_ptr, _pold, _new, label) ({ \
>> + int __result; \
>> + __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \
>> + __typeof__(*(_ptr)) __old = *_old; \
>> + __typeof__(*(_ptr)) __new = (_new); \
>> + asm volatile("\n" \
>> + "1: " LOCK_PREFIX "cmpxchg16b %[ptr]\n" \
>> + "mov $0, %[result]\n\t" \
>> + "setz %b[result]\n" \
>> + "2:\n" \
>> + _ASM_EXTABLE_TYPE_REG(1b, 2b, EX_TYPE_EFAULT_REG, \
>> + %[result]) \
>> + : [result] "=q" (__result), \
>> + "+A" (__old), \
>
> [Severity: High]
> Similar to the asm_goto_output block above, this fallback path also binds
> the 128-bit __old variable to the "+A" constraint.
>
>> + [ptr] "+m" (*_ptr) \
>> + : "b" ((u64)__new), \
>> + "c" ((u64)((u128)__new >> 64)) \
>> + : "memory", "cc"); \
>> + if (unlikely(__result < 0)) \
>> + goto label; \
>> + if (unlikely(!__result)) \
>> + *_old = __old; \
>> + likely(__result); })
>> #endif // CONFIG_X86_32
>> #endif // CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT
> [ ... ]
>> @@ -551,11 +594,18 @@ do { \
>>
>> extern void __try_cmpxchg_user_wrong_size(void);
>>
>> -#ifndef CONFIG_X86_32
>> +#ifdef CONFIG_X86_32
>> +/* Always fail on 32 bit arch as it do not support 128 cmpxchg (i.e. cmpxchg16b
>> + * instruction).
>> + */
>> +#define __try_cmpxchg128_user_asm(_ptr, _pold, _new, label) ({ BUILD_BUG_ON(1); 0; })
>
> [Severity: Medium]
> Will this BUILD_BUG_ON(1) break 32-bit x86 builds that call the
> unsafe_try_cmpxchg_user() macro for perfectly valid 32-bit or 64-bit sizes?
>
> Because unsafe_try_cmpxchg_user() dispatches via a switch(sizeof(*(_ptr)))
> statement, compilers like Clang/LLVM eagerly evaluate all branches during
> semantic analysis, including the 16-byte branch. If evaluated on 32-bit
> builds, BUILD_BUG_ON(1) will trigger a compile-time error regardless of
> whether the 16-byte path is actually reachable.
>
> Since the commit message says "stub the helper to always return failure",
> would it be better to return a runtime error code here instead of using
> a build bug?
>
The BUILD_BUG_ON(1) will only cause compile failure if there the code is
getting used. As sean mentioned in the previous version, compiler
elimiates this code if it is not used.
Thanks
Sairaj
>> +#else
>> #define __try_cmpxchg64_user_asm(_ptr, _oldp, _nval, _label) \
>> __try_cmpxchg_user_asm("q", "r", (_ptr), (_oldp), (_nval), _label)
>
^ permalink raw reply [flat|nested] 12+ messages in thread
* Re: [PATCH v3 2/2] KVM: x86: Add support for cmpxchg16b emulation
2026-08-26 7:31 ` sashiko-bot
@ 2026-08-26 9:17 ` Sairaj Kodilkar
0 siblings, 0 replies; 12+ messages in thread
From: Sairaj Kodilkar @ 2026-08-26 9:17 UTC (permalink / raw)
To: sashiko-reviews; +Cc: sarunkod, kvm
On 8/26/2026 1:01 PM, sashiko-bot@kernel.org wrote:
> Thank you for your contribution! Sashiko AI review found 3 potential issue(s) to consider:
>
> New issues:
> - [High] Emulation of CMPXCHG16B lacks the mandatory 16-byte alignment check, leading to a guest-triggerable VM crash.
> - [Low] The macro `em_cmpxchg8b_16b` incorrectly captures the variable `ctxt` from the surrounding scope instead of solely using its argument `__c`.
>
> Pre-existing issues:
> - [Critical] TOCTOU vulnerability in atomic CMPXCHG emulation leads to silent data corruption in the guest when a native compare fails.
> --
>
> commit f6a8a67f38b03c4522f119ac54d63d97691e1289
> Author: Sairaj Kodilkar <sarunkod@amd.com>
>
> KVM: x86: Add support for cmpxchg16b emulation
>
> This patch adds support for emulating cmpxchg16b when the destination memory
> is 128-bit and REX.W = 1. This prevents QEMU guests from hitting emulation
> failures during 256-bit device table entries accesses on AMD vIOMMU.
>
>> diff --git a/arch/x86/kvm/emulate.c b/arch/x86/kvm/emulate.c
>> index c1b21282187f3..f38c4f1a99c31 100644
>> --- a/arch/x86/kvm/emulate.c
>> +++ b/arch/x86/kvm/emulate.c
>
> [ ... ]
>
>> @@ -2184,24 +2184,36 @@ static int em_call_near_abs(struct x86_emulate_ctxt *ctxt)
>> return rc;
>> }
>>
>> +#define em_cmpxchg8b_16b(__c, rbits, mbits)\
>> +do { \
>> + u##mbits old = __c->dst.orig_val##mbits; \
>> + \
>> + BUILD_BUG_ON(rbits * 2 != mbits); \
>> + \
>> + if (((u##rbits) (old >> 0) != (u##rbits) reg_read(ctxt, VCPU_REGS_RAX)) || \
>
> [Severity: Low]
> Does this macro intentionally reference the unpassed variable ctxt instead of
> the provided argument __c?
>
> This uses ctxt to read registers, which makes the macro rely on the specific
> variable name ctxt in the caller's scope instead of its parameter.
>
Its a bug, the macro should use __c instead of ctxt everywhere.
>> + ((u##rbits) (old >> rbits) != (u##rbits) reg_read(ctxt, VCPU_REGS_RDX))) { \
>> + *reg_write(ctxt, VCPU_REGS_RAX) = (u##rbits) (old >> 0); \
>> + *reg_write(ctxt, VCPU_REGS_RDX) = (u##rbits) (old >> rbits); \
>> + ctxt->eflags &= ~X86_EFLAGS_ZF; \
>> + } else { \
>> + ctxt->dst.val##mbits = ((u##mbits)reg_read(ctxt, VCPU_REGS_RCX) << rbits) | \
>> + (u##rbits) reg_read(ctxt, VCPU_REGS_RBX); \
>> + \
>> + ctxt->eflags |= X86_EFLAGS_ZF; \
>> + } \
>> +} while(0)
>> +
>> static int em_cmpxchg8b(struct x86_emulate_ctxt *ctxt)
>> {
>> - u64 old = ctxt->dst.orig_val64;
>> -
>> - if (ctxt->dst.bytes == 16)
>> + if (WARN_ON_ONCE(8 + !!(ctxt->rex_bits & REX_W) * 8 != ctxt->dst.bytes))
>> return X86EMUL_UNHANDLEABLE;
>>
>> - if (((u32) (old >> 0) != (u32) reg_read(ctxt, VCPU_REGS_RAX)) ||
>> - ((u32) (old >> 32) != (u32) reg_read(ctxt, VCPU_REGS_RDX))) {
>> - *reg_write(ctxt, VCPU_REGS_RAX) = (u32) (old >> 0);
>> - *reg_write(ctxt, VCPU_REGS_RDX) = (u32) (old >> 32);
>> - ctxt->eflags &= ~X86_EFLAGS_ZF;
>> - } else {
>> - ctxt->dst.val64 = ((u64)reg_read(ctxt, VCPU_REGS_RCX) << 32) |
>> - (u32) reg_read(ctxt, VCPU_REGS_RBX);
>> -
>> - ctxt->eflags |= X86_EFLAGS_ZF;
>> - }
>> + if (!(ctxt->rex_bits & REX_W))
>> + em_cmpxchg8b_16b(ctxt, 32, 64);
>> +#ifdef CONFIG_X86_64
>> + else
>> + em_cmpxchg8b_16b(ctxt, 64, 128);
>> +#endif
>
> [Severity: High]
> Are we missing a 16-byte alignment check for the destination memory when
> executing CMPXCHG16B here?
>
> The x86 architecture strictly mandates that the memory operand for CMPXCHG16B
> must be 16-byte aligned. If it is not, a #GP(0) exception is generated
> unconditionally.
>
> Without this check, KVM will later attempt a native unaligned lock cmpxchg16b,
> which will raise a host #GP(0). The host exception table catches this and
> returns -EFAULT, translating to X86EMUL_UNHANDLEABLE, which immediately
> crashes the VM via KVM_EXIT_INTERNAL_ERROR. Can this regression be used by a
> guest to trigger a denial of service?
insn_alignment checks for any alignment issues. Its comment explicitly
mentions that
"Also included is CMPXCHG16B which is not a vector instruction, yet it
is subject to the same check. FXSAVE and FXRSTOR are checked here too
as their 512 bytes of data must be aligned to a 16 byte boundary."
Hence kvm will raise an #GP(0) to guest before it performs cmpxchg8b.
Thanks
Sairaj
>
>> return X86EMUL_CONTINUE;
>> }
>
> [ ... ]
>
>> diff --git a/arch/x86/kvm/x86.c b/arch/x86/kvm/x86.c
>> index 79468ddfe4736..60be16f05d794 100644
>> --- a/arch/x86/kvm/x86.c
>> +++ b/arch/x86/kvm/x86.c
>
> [ ... ]
>
>> @@ -5311,6 +5311,11 @@ static int emulator_cmpxchg_emulated(struct x86_emulate_ctxt *ctxt,
>> case 8:
>> r = emulator_try_cmpxchg_user(u64, hva, old, new);
>> break;
>> +#ifdef CONFIG_X86_64
>> + case 16:
>> + r = emulator_try_cmpxchg_user(u128, hva, old, new);
>> + break;
>> +#endif
>
> [Severity: Critical]
> This is a pre-existing issue, but does the emulation of atomic CMPXCHG suffer
> from a TOCTOU race leading to silent data corruption in the guest?
>
> When emulator_try_cmpxchg_user() fails due to concurrent memory modification,
> emulator_cmpxchg_emulated() returns X86EMUL_CMPXCHG_FAILED.
>
> However, in x86_emulate_insn(), this failure appears to be silently swallowed:
>
> arch/x86/kvm/emulate.c:x86_emulate_insn() {
> ...
> if (rc == X86EMUL_CONTINUE)
> writeback_registers(ctxt);
>
> return (rc == X86EMUL_UNHANDLEABLE) ? EMULATION_FAILED : EMULATION_OK;
> }
>
> Because rc is not X86EMUL_CONTINUE, writeback_registers() is skipped and the
> guest registers are not updated. Because EMULATION_OK is returned, KVM retires
> the instruction as successful, advancing RIP and leaving the guest with a
> stale ZF=1 flag. Doesn't this cause the guest to mistakenly believe it
> acquired a lock?
>
^ permalink raw reply [flat|nested] 12+ messages in thread
* Re: [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
2026-08-26 7:00 ` [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands Sairaj Kodilkar
2026-08-26 7:23 ` sashiko-bot
@ 2026-08-26 12:30 ` Dave Hansen
2026-08-26 13:19 ` Uros Bizjak
1 sibling, 1 reply; 12+ messages in thread
From: Dave Hansen @ 2026-08-26 12:30 UTC (permalink / raw)
To: Sairaj Kodilkar, H. Peter Anvin, Peter Zijlstra (Intel),
Borislav Petkov, Dave Hansen, Ingo Molnar, Mathieu Desnoyers,
Paolo Bonzini, Sean Christopherson, Thomas Gleixner, Uros Bizjak,
kvm, linux-kernel, x86
Cc: vasant.hegde, suravee.suthikulpanit
On 8/26/26 00:00, Sairaj Kodilkar wrote:
> Extend the existing user CMPXCHG helpers to support 16-byte operands on
> x86-64, using LOCK_PREFIX "cmpxchg16b". This mirrors the existing
> __try_cmpxchg64_user_asm() / cmpxchg8b path provided for 32-bit kernels,
> where KVM needs an atomic compare-exchange wider than the generic
> cmpxchg helper can provide.
Please take a good look at the Sashiko review:
https://sashiko.dev/#/patchset/20260826070004.8100-2-sarunkod%40amd.com
It looks like the "A" constraint isn't one that you can cleanly mirror
from cmpxchg8b => cmpxchg16b.
Uros, any chance you can give these a good once-over? This seems to be
just the kind of thing you've been fixing up lately. It would be nice to
get them right the first time.
^ permalink raw reply [flat|nested] 12+ messages in thread
* Re: [PATCH v3 2/2] KVM: x86: Add support for cmpxchg16b emulation
2026-08-26 7:00 ` [PATCH v3 2/2] KVM: x86: Add support for cmpxchg16b emulation Sairaj Kodilkar
2026-08-26 7:31 ` sashiko-bot
@ 2026-08-26 12:50 ` Mathieu Desnoyers
1 sibling, 0 replies; 12+ messages in thread
From: Mathieu Desnoyers @ 2026-08-26 12:50 UTC (permalink / raw)
To: Sairaj Kodilkar, H. Peter Anvin, Peter Zijlstra (Intel),
Borislav Petkov, Dave Hansen, Ingo Molnar, Paolo Bonzini,
Sean Christopherson, Thomas Gleixner, Uros Bizjak, kvm,
linux-kernel, x86
Cc: vasant.hegde, suravee.suthikulpanit
On 2026-08-26 03:00, Sairaj Kodilkar wrote:
> AMD and Intel both provides support for 128 bit cmpxchg operands using
> cmpxchg8b/cmpxchg16b instructions (opcode 0FC7). However, kvm does not
> support emulating cmpxchg16b (i.e when destination memory is 128 bit and
> REX.W = 1) which causes emulation failure when QEMU guest performs a
> cmpxchg16b on a memory region setup as a IO.
>
> This failure is seen on the AMD IOMMU driver which writes 256-bit device
> table entries with two 128-bit cmpxchg operations. For guests using
> hardware-accelerated vIOMMU, QEMU traps device table accesses to set up
> nested page tables (see [1]). Without 128-bit cmpxchg emulation, KVM
> cannot handle these traps and DTE access emulation fails.
>
> Hence extend cmpxchg8b to perform cmpxchg16b when the destination memory
> is 128 bit.
>
> [1] https://github.com/AMDESE/qemu-iommu/blob/wip/for_iommufd_hw_queue-v8_amd_viommu_20260106/hw/i386/amd_viommu.c#L517
>
You may want to test for the X86_FEATURE_CX16 cpu feature and only
enable this on 64-bit x86 CPUs implementing this instruction.
Thanks,
Mathieu
--
Mathieu Desnoyers
EfficiOS Inc.
https://www.efficios.com
^ permalink raw reply [flat|nested] 12+ messages in thread
* Re: [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
2026-08-26 12:30 ` Dave Hansen
@ 2026-08-26 13:19 ` Uros Bizjak
2026-08-26 13:28 ` Sairaj Kodilkar
2026-08-27 9:01 ` David Laight
0 siblings, 2 replies; 12+ messages in thread
From: Uros Bizjak @ 2026-08-26 13:19 UTC (permalink / raw)
To: Dave Hansen
Cc: Sairaj Kodilkar, H. Peter Anvin, Peter Zijlstra (Intel),
Borislav Petkov, Dave Hansen, Ingo Molnar, Mathieu Desnoyers,
Paolo Bonzini, Sean Christopherson, Thomas Gleixner, kvm,
linux-kernel, x86, vasant.hegde, suravee.suthikulpanit
On Wed, Aug 26, 2026 at 2:30 PM Dave Hansen <dave.hansen@intel.com> wrote:
>
> On 8/26/26 00:00, Sairaj Kodilkar wrote:
> > Extend the existing user CMPXCHG helpers to support 16-byte operands on
> > x86-64, using LOCK_PREFIX "cmpxchg16b". This mirrors the existing
> > __try_cmpxchg64_user_asm() / cmpxchg8b path provided for 32-bit kernels,
> > where KVM needs an atomic compare-exchange wider than the generic
> > cmpxchg helper can provide.
>
> Please take a good look at the Sashiko review:
>
> https://sashiko.dev/#/patchset/20260826070004.8100-2-sarunkod%40amd.com
>
> It looks like the "A" constraint isn't one that you can cleanly mirror
> from cmpxchg8b => cmpxchg16b.
Actually, "+A" will work for 64bit targets, as long as the variable is
128-bit. The comment in asm.h applies to 64-bit values, where on
32-bit targets they fit in eax *and* edx, while on 64-bit targets, the
64-bit values fit into rax *or* rdx.
This is documented in GCC documentation:
‘A’
The ‘a’ and ‘d’ registers. This class is used for
instructions that return double word results in the ‘ax:dx’
register pair. Single word values will be allocated either in
‘ax’ or ‘dx’.
And can be confirmed with e.g.:
__int128 val;
void foo (void)
{
__int128 _v = val;
asm volatile ("" : "+A" (_v));
val = _v;
}
which will fail compilation with -ffixed-rax or -ffixed-rdx.
That said, the approach with union of two 64-bit halves can lead to
slightly better code, because the compiler splits the value earlier in
the compilation pipeline.
> Uros, any chance you can give these a good once-over? This seems to be
> just the kind of thing you've been fixing up lately. It would be nice to
> get them right the first time.
Based on the above explanation, these *can* be copied from 32-bit asm
patterns. Even "q" constraint will include all integer registers on
64-bit targets.
Uros.
^ permalink raw reply [flat|nested] 12+ messages in thread
* Re: [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
2026-08-26 13:19 ` Uros Bizjak
@ 2026-08-26 13:28 ` Sairaj Kodilkar
2026-08-27 9:01 ` David Laight
1 sibling, 0 replies; 12+ messages in thread
From: Sairaj Kodilkar @ 2026-08-26 13:28 UTC (permalink / raw)
To: Uros Bizjak, Dave Hansen
Cc: sarunkod, H. Peter Anvin, Peter Zijlstra (Intel), Borislav Petkov,
Dave Hansen, Ingo Molnar, Mathieu Desnoyers, Paolo Bonzini,
Sean Christopherson, Thomas Gleixner, kvm, linux-kernel, x86,
vasant.hegde, suravee.suthikulpanit
On 8/26/2026 6:49 PM, Uros Bizjak wrote:
> [You don't often get email from ubizjak@gmail.com. Learn why this is important at https://aka.ms/LearnAboutSenderIdentification ]
>
> On Wed, Aug 26, 2026 at 2:30 PM Dave Hansen <dave.hansen@intel.com> wrote:
>>
>> On 8/26/26 00:00, Sairaj Kodilkar wrote:
>>> Extend the existing user CMPXCHG helpers to support 16-byte operands on
>>> x86-64, using LOCK_PREFIX "cmpxchg16b". This mirrors the existing
>>> __try_cmpxchg64_user_asm() / cmpxchg8b path provided for 32-bit kernels,
>>> where KVM needs an atomic compare-exchange wider than the generic
>>> cmpxchg helper can provide.
>>
>> Please take a good look at the Sashiko review:
>>
>> https://sashiko.dev/#/patchset/20260826070004.8100-2-sarunkod%40amd.com
>>
>> It looks like the "A" constraint isn't one that you can cleanly mirror
>> from cmpxchg8b => cmpxchg16b.
>
> Actually, "+A" will work for 64bit targets, as long as the variable is
> 128-bit. The comment in asm.h applies to 64-bit values, where on
> 32-bit targets they fit in eax *and* edx, while on 64-bit targets, the
> 64-bit values fit into rax *or* rdx.
>
> This is documented in GCC documentation:
>
> ‘A’
> The ‘a’ and ‘d’ registers. This class is used for
> instructions that return double word results in the ‘ax:dx’
> register pair. Single word values will be allocated either in
> ‘ax’ or ‘dx’.
>
> And can be confirmed with e.g.:
>
> __int128 val;
>
> void foo (void)
> {
> __int128 _v = val;
> asm volatile ("" : "+A" (_v));
> val = _v;
> }
>
> which will fail compilation with -ffixed-rax or -ffixed-rdx.
>
> That said, the approach with union of two 64-bit halves can lead to
> slightly better code, because the compiler splits the value earlier in
> the compilation pipeline.
>
>> Uros, any chance you can give these a good once-over? This seems to be
>> just the kind of thing you've been fixing up lately. It would be nice to
>> get them right the first time.
>
> Based on the above explanation, these *can* be copied from 32-bit asm
> patterns. Even "q" constraint will include all integer registers on
> 64-bit targets.
Yep, this is what I was trying to say in my reply to sashiko. Basically
+A can be safely used for 64 bit values on 32 bit machines and 128 bit
values on 64 bit machines.
Also if you prefer split one, I can do that as well.
Sairaj
>
> Uros.
^ permalink raw reply [flat|nested] 12+ messages in thread
* Re: [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands
2026-08-26 13:19 ` Uros Bizjak
2026-08-26 13:28 ` Sairaj Kodilkar
@ 2026-08-27 9:01 ` David Laight
1 sibling, 0 replies; 12+ messages in thread
From: David Laight @ 2026-08-27 9:01 UTC (permalink / raw)
To: Uros Bizjak
Cc: Dave Hansen, Sairaj Kodilkar, H. Peter Anvin,
Peter Zijlstra (Intel), Borislav Petkov, Dave Hansen, Ingo Molnar,
Mathieu Desnoyers, Paolo Bonzini, Sean Christopherson,
Thomas Gleixner, kvm, linux-kernel, x86, vasant.hegde,
suravee.suthikulpanit
On Wed, 26 Aug 2026 15:19:57 +0200
Uros Bizjak <ubizjak@gmail.com> wrote:
> On Wed, Aug 26, 2026 at 2:30 PM Dave Hansen <dave.hansen@intel.com> wrote:
> >
> > On 8/26/26 00:00, Sairaj Kodilkar wrote:
> > > Extend the existing user CMPXCHG helpers to support 16-byte operands on
> > > x86-64, using LOCK_PREFIX "cmpxchg16b". This mirrors the existing
> > > __try_cmpxchg64_user_asm() / cmpxchg8b path provided for 32-bit kernels,
> > > where KVM needs an atomic compare-exchange wider than the generic
> > > cmpxchg helper can provide.
> >
> > Please take a good look at the Sashiko review:
> >
> > https://sashiko.dev/#/patchset/20260826070004.8100-2-sarunkod%40amd.com
> >
> > It looks like the "A" constraint isn't one that you can cleanly mirror
> > from cmpxchg8b => cmpxchg16b.
>
> Actually, "+A" will work for 64bit targets, as long as the variable is
> 128-bit. The comment in asm.h applies to 64-bit values, where on
> 32-bit targets they fit in eax *and* edx, while on 64-bit targets, the
> 64-bit values fit into rax *or* rdx.
>
...
>
> That said, the approach with union of two 64-bit halves can lead to
> slightly better code, because the compiler splits the value earlier in
> the compilation pipeline.
I think I agree...
From experiments I did with 64bit values on 32bit it is more the case
that the value never gets assigned to a 64bit (on 32bit) 'virtual'
register. If that ever happens all the operations are initially done
with the 'wide' register and then later split (rather than being
generated as a pair of 32bit ops).
This causes excessive register pressure and even spilling of constant
zero values to stack.
You do seem to 'get away' with returning hi << 32 | lo.
I'd guess the same happens for 128bit values on 64bit.
(This is gcc, clang does a lot better.)
David
>
> > Uros, any chance you can give these a good once-over? This seems to be
> > just the kind of thing you've been fixing up lately. It would be nice to
> > get them right the first time.
>
> Based on the above explanation, these *can* be copied from 32-bit asm
> patterns. Even "q" constraint will include all integer registers on
> 64-bit targets.
>
> Uros.
>
^ permalink raw reply [flat|nested] 12+ messages in thread
end of thread, other threads:[~2026-08-27 9:01 UTC | newest]
Thread overview: 12+ messages (download: mbox.gz follow: Atom feed
-- links below jump to the message on this page --
2026-08-26 7:00 [PATCH v3 0/2] Add support for cmpxchg16b emulation Sairaj Kodilkar
2026-08-26 7:00 ` [PATCH v3 1/2] x86/uaccess: Extend CMPXCHG user helpers to 128-bit operands Sairaj Kodilkar
2026-08-26 7:23 ` sashiko-bot
2026-08-26 8:54 ` Sairaj Kodilkar
2026-08-26 12:30 ` Dave Hansen
2026-08-26 13:19 ` Uros Bizjak
2026-08-26 13:28 ` Sairaj Kodilkar
2026-08-27 9:01 ` David Laight
2026-08-26 7:00 ` [PATCH v3 2/2] KVM: x86: Add support for cmpxchg16b emulation Sairaj Kodilkar
2026-08-26 7:31 ` sashiko-bot
2026-08-26 9:17 ` Sairaj Kodilkar
2026-08-26 12:50 ` Mathieu Desnoyers
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