u32 kvm_get_inst(u32 *opc, struct kvm_vcpu *vcpu);
enum emulation_result update_pc(struct kvm_vcpu *vcpu, u32 cause);
+/**
+ * kvm_is_ifetch_fault() - Find whether a TLBL exception is due to ifetch fault.
+ * @vcpu: Virtual CPU.
+ *
+ * Returns: Whether the TLBL exception was likely due to an instruction
+ * fetch fault rather than a data load fault.
+ */
+static inline bool kvm_is_ifetch_fault(struct kvm_vcpu_arch *vcpu)
+{
+ unsigned long badvaddr = vcpu->host_cp0_badvaddr;
+ unsigned long epc = msk_isa16_mode(vcpu->pc);
+ u32 cause = vcpu->host_cp0_cause;
+
+ if (epc == badvaddr)
+ return true;
+
+ /*
+ * Branches may be 32-bit or 16-bit instructions.
+ * This isn't exact, but we don't really support MIPS16 or microMIPS yet
+ * in KVM anyway.
+ */
+ if ((cause & CAUSEF_BD) && badvaddr - epc <= 4)
+ return true;
+
+ return false;
+}
+
extern enum emulation_result kvm_mips_emulate_inst(u32 cause,
u32 *opc,
struct kvm_run *run,
}
} else if (KVM_GUEST_KERNEL_MODE(vcpu)
&& (KSEGX(badvaddr) == CKSEG0 || KSEGX(badvaddr) == CKSEG1)) {
+ /* A code fetch fault doesn't count as an MMIO */
+ if (!store && kvm_is_ifetch_fault(&vcpu->arch)) {
+ run->exit_reason = KVM_EXIT_INTERNAL_ERROR;
+ return RESUME_HOST;
+ }
+
/*
* With EVA we may get a TLB exception instead of an address
* error when the guest performs MMIO to KSeg1 addresses.
int ret = RESUME_GUEST;
if (KSEGX(badvaddr) == CKSEG0 || KSEGX(badvaddr) == CKSEG1) {
+ /* A code fetch fault doesn't count as an MMIO */
+ if (kvm_is_ifetch_fault(&vcpu->arch)) {
+ run->exit_reason = KVM_EXIT_INTERNAL_ERROR;
+ return RESUME_HOST;
+ }
+
kvm_debug("Emulate Load from MMIO space @ %#lx\n", badvaddr);
er = kvm_mips_emulate_inst(cause, opc, run, vcpu);
if (er == EMULATE_FAIL) {