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When #SMI is asserted, the CPU can be in interrupt shadow due to sti or mov ss. It is not mandatory in Intel/AMD prm to have the #SMI blocked during the shadow, and on top of that, since neither SVM nor VMX has true support for SMI window, waiting for one instruction would mean single stepping the guest. Instead, allow #SMI in this case, but both reset the interrupt window and stash its value in SMRAM to restore it on exit from SMM. This fixes rare failures seen mostly on windows guests on VMX, when #SMI falls on the sti instruction which mainfest in VM entry failure due to EFLAGS.IF not being set, but STI interrupt window still being set in the VMCS. Signed-off-by: Maxim Levitsky <mlevitsk@redhat.com> Message-Id: <20221025124741.228045-24-mlevitsk@redhat.com> Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
169 lines
3.6 KiB
C
169 lines
3.6 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef ASM_KVM_SMM_H
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#define ASM_KVM_SMM_H
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#include <linux/build_bug.h>
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#ifdef CONFIG_KVM_SMM
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/*
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* 32 bit KVM's emulated SMM layout. Based on Intel P6 layout
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* (https://www.sandpile.org/x86/smm.htm).
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*/
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struct kvm_smm_seg_state_32 {
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u32 flags;
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u32 limit;
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u32 base;
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} __packed;
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struct kvm_smram_state_32 {
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u32 reserved1[62];
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u32 smbase;
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u32 smm_revision;
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u16 io_inst_restart;
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u16 auto_hlt_restart;
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u32 io_restart_rdi;
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u32 io_restart_rcx;
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u32 io_restart_rsi;
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u32 io_restart_rip;
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u32 cr4;
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/* A20M#, CPL, shutdown and other reserved/undocumented fields */
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u16 reserved2;
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u8 int_shadow; /* KVM extension */
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u8 reserved3[17];
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struct kvm_smm_seg_state_32 ds;
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struct kvm_smm_seg_state_32 fs;
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struct kvm_smm_seg_state_32 gs;
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struct kvm_smm_seg_state_32 idtr; /* IDTR has only base and limit */
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struct kvm_smm_seg_state_32 tr;
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u32 reserved;
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struct kvm_smm_seg_state_32 gdtr; /* GDTR has only base and limit */
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struct kvm_smm_seg_state_32 ldtr;
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struct kvm_smm_seg_state_32 es;
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struct kvm_smm_seg_state_32 cs;
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struct kvm_smm_seg_state_32 ss;
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u32 es_sel;
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u32 cs_sel;
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u32 ss_sel;
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u32 ds_sel;
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u32 fs_sel;
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u32 gs_sel;
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u32 ldtr_sel;
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u32 tr_sel;
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u32 dr7;
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u32 dr6;
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u32 gprs[8]; /* GPRS in the "natural" X86 order (EAX/ECX/EDX.../EDI) */
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u32 eip;
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u32 eflags;
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u32 cr3;
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u32 cr0;
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} __packed;
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/* 64 bit KVM's emulated SMM layout. Based on AMD64 layout */
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struct kvm_smm_seg_state_64 {
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u16 selector;
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u16 attributes;
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u32 limit;
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u64 base;
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};
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struct kvm_smram_state_64 {
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struct kvm_smm_seg_state_64 es;
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struct kvm_smm_seg_state_64 cs;
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struct kvm_smm_seg_state_64 ss;
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struct kvm_smm_seg_state_64 ds;
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struct kvm_smm_seg_state_64 fs;
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struct kvm_smm_seg_state_64 gs;
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struct kvm_smm_seg_state_64 gdtr; /* GDTR has only base and limit*/
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struct kvm_smm_seg_state_64 ldtr;
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struct kvm_smm_seg_state_64 idtr; /* IDTR has only base and limit*/
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struct kvm_smm_seg_state_64 tr;
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/* I/O restart and auto halt restart are not implemented by KVM */
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u64 io_restart_rip;
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u64 io_restart_rcx;
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u64 io_restart_rsi;
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u64 io_restart_rdi;
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u32 io_restart_dword;
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u32 reserved1;
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u8 io_inst_restart;
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u8 auto_hlt_restart;
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u8 amd_nmi_mask; /* Documented in AMD BKDG as NMI mask, not used by KVM */
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u8 int_shadow;
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u32 reserved2;
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u64 efer;
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/*
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* Two fields below are implemented on AMD only, to store
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* SVM guest vmcb address if the #SMI was received while in the guest mode.
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*/
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u64 svm_guest_flag;
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u64 svm_guest_vmcb_gpa;
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u64 svm_guest_virtual_int; /* unknown purpose, not implemented */
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u32 reserved3[3];
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u32 smm_revison;
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u32 smbase;
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u32 reserved4[5];
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/* ssp and svm_* fields below are not implemented by KVM */
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u64 ssp;
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u64 svm_guest_pat;
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u64 svm_host_efer;
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u64 svm_host_cr4;
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u64 svm_host_cr3;
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u64 svm_host_cr0;
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u64 cr4;
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u64 cr3;
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u64 cr0;
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u64 dr7;
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u64 dr6;
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u64 rflags;
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u64 rip;
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u64 gprs[16]; /* GPRS in a reversed "natural" X86 order (R15/R14/../RCX/RAX.) */
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};
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union kvm_smram {
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struct kvm_smram_state_64 smram64;
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struct kvm_smram_state_32 smram32;
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u8 bytes[512];
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};
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static inline int kvm_inject_smi(struct kvm_vcpu *vcpu)
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{
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kvm_make_request(KVM_REQ_SMI, vcpu);
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return 0;
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}
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static inline bool is_smm(struct kvm_vcpu *vcpu)
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{
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return vcpu->arch.hflags & HF_SMM_MASK;
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}
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void kvm_smm_changed(struct kvm_vcpu *vcpu, bool in_smm);
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void enter_smm(struct kvm_vcpu *vcpu);
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int emulator_leave_smm(struct x86_emulate_ctxt *ctxt);
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void process_smi(struct kvm_vcpu *vcpu);
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#else
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static inline int kvm_inject_smi(struct kvm_vcpu *vcpu) { return -ENOTTY; }
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static inline bool is_smm(struct kvm_vcpu *vcpu) { return false; }
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/*
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* emulator_leave_smm is used as a function pointer, so the
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* stub is defined in x86.c.
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*/
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#endif
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#endif
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