return ret;
}
+static const char *
+snp_page_type_to_str(int type)
+{
+ switch (type) {
+ case KVM_SEV_SNP_PAGE_TYPE_NORMAL: return "Normal";
+ case KVM_SEV_SNP_PAGE_TYPE_ZERO: return "Zero";
+ case KVM_SEV_SNP_PAGE_TYPE_UNMEASURED: return "Unmeasured";
+ case KVM_SEV_SNP_PAGE_TYPE_SECRETS: return "Secrets";
+ case KVM_SEV_SNP_PAGE_TYPE_CPUID: return "Cpuid";
+ default: return "unknown";
+ }
+}
+
+static int
+sev_snp_launch_update(SevSnpGuestState *sev_snp_guest,
+ SevLaunchUpdateData *data)
+{
+ int ret, fw_error;
+ struct kvm_sev_snp_launch_update update = {0};
+
+ if (!data->hva || !data->len) {
+ error_report("SNP_LAUNCH_UPDATE called with invalid address"
+ "/ length: %p / %lx",
+ data->hva, data->len);
+ return 1;
+ }
+
+ update.uaddr = (__u64)(unsigned long)data->hva;
+ update.gfn_start = data->gpa >> TARGET_PAGE_BITS;
+ update.len = data->len;
+ update.type = data->type;
+
+ /*
+ * KVM_SEV_SNP_LAUNCH_UPDATE requires that GPA ranges have the private
+ * memory attribute set in advance.
+ */
+ ret = kvm_set_memory_attributes_private(data->gpa, data->len);
+ if (ret) {
+ error_report("SEV-SNP: failed to configure initial"
+ "private guest memory");
+ goto out;
+ }
+
+ while (update.len || ret == -EAGAIN) {
+ trace_kvm_sev_snp_launch_update(update.uaddr, update.gfn_start <<
+ TARGET_PAGE_BITS, update.len,
+ snp_page_type_to_str(update.type));
+
+ ret = sev_ioctl(SEV_COMMON(sev_snp_guest)->sev_fd,
+ KVM_SEV_SNP_LAUNCH_UPDATE,
+ &update, &fw_error);
+ if (ret && ret != -EAGAIN) {
+ error_report("SNP_LAUNCH_UPDATE ret=%d fw_error=%d '%s'",
+ ret, fw_error, fw_error_to_str(fw_error));
+ break;
+ }
+ }
+
+out:
+ if (!ret && update.gfn_start << TARGET_PAGE_BITS != data->gpa + data->len) {
+ error_report("SEV-SNP: expected update of GPA range %lx-%lx,"
+ "got GPA range %lx-%llx",
+ data->gpa, data->gpa + data->len, data->gpa,
+ update.gfn_start << TARGET_PAGE_BITS);
+ ret = -EIO;
+ }
+
+ return ret;
+}
+
static int
sev_launch_update_data(SevGuestState *sev_guest, uint8_t *addr, uint64_t len)
{
migrate_add_blocker(&sev_mig_blocker, &error_fatal);
}
+static void
+sev_snp_launch_finish(SevCommonState *sev_common)
+{
+ int ret, error;
+ Error *local_err = NULL;
+ SevLaunchUpdateData *data;
+ SevSnpGuestState *sev_snp = SEV_SNP_GUEST(sev_common);
+ struct kvm_sev_snp_launch_finish *finish = &sev_snp->kvm_finish_conf;
+
+ QTAILQ_FOREACH(data, &launch_update, next) {
+ ret = sev_snp_launch_update(sev_snp, data);
+ if (ret) {
+ exit(1);
+ }
+ }
+
+ trace_kvm_sev_snp_launch_finish(sev_snp->id_block, sev_snp->id_auth,
+ sev_snp->host_data);
+ ret = sev_ioctl(sev_common->sev_fd, KVM_SEV_SNP_LAUNCH_FINISH,
+ finish, &error);
+ if (ret) {
+ error_report("SNP_LAUNCH_FINISH ret=%d fw_error=%d '%s'",
+ ret, error, fw_error_to_str(error));
+ exit(1);
+ }
+
+ sev_set_guest_state(sev_common, SEV_STATE_RUNNING);
+
+ /* add migration blocker */
+ error_setg(&sev_mig_blocker,
+ "SEV-SNP: Migration is not implemented");
+ ret = migrate_add_blocker(&sev_mig_blocker, &local_err);
+ if (local_err) {
+ error_report_err(local_err);
+ error_free(sev_mig_blocker);
+ exit(1);
+ }
+}
+
+
static void
sev_vm_state_change(void *opaque, bool running, RunState state)
{
X86ConfidentialGuestClass *x86_klass = X86_CONFIDENTIAL_GUEST_CLASS(oc);
klass->launch_start = sev_snp_launch_start;
+ klass->launch_finish = sev_snp_launch_finish;
klass->kvm_init = sev_snp_kvm_init;
x86_klass->kvm_type = sev_snp_kvm_type;
-
object_class_property_add(oc, "policy", "uint64",
sev_snp_guest_get_policy,
sev_snp_guest_set_policy, NULL, NULL);