static S390CPUModel *get_max_cpu_model(Error **errp)
{
+ Error *err = NULL;
static S390CPUModel max_model;
static bool cached;
}
if (kvm_enabled()) {
- kvm_s390_get_host_cpu_model(&max_model, errp);
+ kvm_s390_get_host_cpu_model(&max_model, &err);
} else {
max_model.def = s390_find_cpu_def(QEMU_MAX_CPU_TYPE, QEMU_MAX_CPU_GEN,
QEMU_MAX_CPU_EC_GA, NULL);
bitmap_copy(max_model.features, qemu_max_cpu_feat, S390_FEAT_MAX);
- }
- if (!*errp) {
- cached = true;
- return &max_model;
}
- return NULL;
+ if (err) {
+ error_propagate(errp, err);
+ return NULL;
+ }
+ cached = true;
+ return &max_model;
}
static inline void apply_cpu_model(const S390CPUModel *model, Error **errp)
{
#ifndef CONFIG_USER_ONLY
+ Error *err = NULL;
static S390CPUModel applied_model;
static bool applied;
}
if (kvm_enabled()) {
- kvm_s390_apply_cpu_model(model, errp);
+ kvm_s390_apply_cpu_model(model, &err);
+ if (err) {
+ error_propagate(errp, err);
+ return;
+ }
}
- if (!*errp) {
- applied = true;
- if (model) {
- applied_model = *model;
- }
+ applied = true;
+ if (model) {
+ applied_model = *model;
}
#endif
}
void s390_realize_cpu_model(CPUState *cs, Error **errp)
{
+ Error *err = NULL;
S390CPUClass *xcc = S390_CPU_GET_CLASS(cs);
S390CPU *cpu = S390_CPU(cs);
const S390CPUModel *max_model;
}
max_model = get_max_cpu_model(errp);
- if (*errp) {
+ if (!max_model) {
error_prepend(errp, "CPU models are not available: ");
return;
}
cpu->model->cpu_ver = max_model->cpu_ver;
check_consistency(cpu->model);
- check_compatibility(max_model, cpu->model, errp);
- if (*errp) {
+ check_compatibility(max_model, cpu->model, &err);
+ if (err) {
+ error_propagate(errp, err);
return;
}