svm->nested.vmcb = 0;
        svm->vcpu.arch.hflags = 0;
 
-       if (boot_cpu_has(X86_FEATURE_PAUSEFILTER)) {
+       if (boot_cpu_has(X86_FEATURE_PAUSEFILTER) &&
+           !kvm_pause_in_guest(svm->vcpu.kvm)) {
                control->pause_filter_count = 3000;
                set_intercept(svm, INTERCEPT_PAUSE);
        }
 
        }
        if (!enable_unrestricted_guest)
                exec_control &= ~SECONDARY_EXEC_UNRESTRICTED_GUEST;
-       if (!ple_gap)
+       if (kvm_pause_in_guest(vmx->vcpu.kvm))
                exec_control &= ~SECONDARY_EXEC_PAUSE_LOOP_EXITING;
        if (!kvm_vcpu_apicv_active(vcpu))
                exec_control &= ~(SECONDARY_EXEC_APIC_REGISTER_VIRT |
                vmcs_write64(POSTED_INTR_DESC_ADDR, __pa((&vmx->pi_desc)));
        }
 
-       if (ple_gap) {
+       if (!kvm_pause_in_guest(vmx->vcpu.kvm)) {
                vmcs_write32(PLE_GAP, ple_gap);
                vmx->ple_window = ple_window;
                vmx->ple_window_dirty = true;
  */
 static int handle_pause(struct kvm_vcpu *vcpu)
 {
-       if (ple_gap)
+       if (!kvm_pause_in_guest(vcpu->kvm))
                grow_ple_window(vcpu);
 
        /*
        return ERR_PTR(err);
 }
 
+static int vmx_vm_init(struct kvm *kvm)
+{
+       if (!ple_gap)
+               kvm->arch.pause_in_guest = true;
+       return 0;
+}
+
 static void __init vmx_check_processor_compat(void *rtn)
 {
        struct vmcs_config vmcs_conf;
 
 static void vmx_sched_in(struct kvm_vcpu *vcpu, int cpu)
 {
-       if (ple_gap)
+       if (!kvm_pause_in_guest(vcpu->kvm))
                shrink_ple_window(vcpu);
 }
 
        .cpu_has_accelerated_tpr = report_flexpriority,
        .cpu_has_high_real_mode_segbase = vmx_has_high_real_mode_segbase,
 
+       .vm_init = vmx_vm_init,
+
        .vcpu_create = vmx_create_vcpu,
        .vcpu_free = vmx_free_vcpu,
        .vcpu_reset = vmx_vcpu_reset,
 
                r = KVM_CLOCK_TSC_STABLE;
                break;
        case KVM_CAP_X86_DISABLE_EXITS:
-               r |=  KVM_X86_DISABLE_EXITS_HTL;
+               r |=  KVM_X86_DISABLE_EXITS_HTL | KVM_X86_DISABLE_EXITS_PAUSE;
                if(kvm_can_mwait_in_guest())
                        r |= KVM_X86_DISABLE_EXITS_MWAIT;
                break;
                        kvm->arch.mwait_in_guest = true;
                if (cap->args[0] & KVM_X86_DISABLE_EXITS_HTL)
                        kvm->arch.hlt_in_guest = true;
+               if (cap->args[0] & KVM_X86_DISABLE_EXITS_PAUSE)
+                       kvm->arch.pause_in_guest = true;
                r = 0;
                break;
        default:
 
 
 #define KVM_X86_DISABLE_EXITS_MWAIT          (1 << 0)
 #define KVM_X86_DISABLE_EXITS_HTL            (1 << 1)
+#define KVM_X86_DISABLE_EXITS_PAUSE          (1 << 2)
 #define KVM_X86_DISABLE_VALID_EXITS          (KVM_X86_DISABLE_EXITS_MWAIT | \
-                                              KVM_X86_DISABLE_EXITS_HTL)
+                                              KVM_X86_DISABLE_EXITS_HTL | \
+                                              KVM_X86_DISABLE_EXITS_PAUSE)
 
 static inline bool kvm_mwait_in_guest(struct kvm *kvm)
 {
        return kvm->arch.hlt_in_guest;
 }
 
+static inline bool kvm_pause_in_guest(struct kvm *kvm)
+{
+       return kvm->arch.pause_in_guest;
+}
+
 #endif