return sclp;
}
+static inline bool sclp_command_code_valid(uint32_t code)
+{
+ switch (code & SCLP_CMD_CODE_MASK) {
+ case SCLP_CMDW_READ_SCP_INFO:
+ case SCLP_CMDW_READ_SCP_INFO_FORCED:
+ case SCLP_CMDW_READ_CPU_INFO:
+ case SCLP_CMDW_CONFIGURE_IOA:
+ case SCLP_CMDW_DECONFIGURE_IOA:
+ case SCLP_CMD_READ_EVENT_DATA:
+ case SCLP_CMD_WRITE_EVENT_DATA:
+ case SCLP_CMD_WRITE_EVENT_MASK:
+ return true;
+ }
+ return false;
+}
+
static void prepare_cpu_entries(SCLPDevice *sclp, CPUEntry *entry, int *count)
{
MachineState *ms = MACHINE(qdev_get_machine());
}
}
+/*
+ * We only need the address to have something valid for the
+ * service_interrupt call.
+ */
+#define SCLP_PV_DUMMY_ADDR 0x4000
+int sclp_service_call_protected(CPUS390XState *env, uint64_t sccb,
+ uint32_t code)
+{
+ SCLPDevice *sclp = get_sclp_device();
+ SCLPDeviceClass *sclp_c = SCLP_GET_CLASS(sclp);
+ SCCB work_sccb;
+ hwaddr sccb_len = sizeof(SCCB);
+
+ s390_cpu_pv_mem_read(env_archcpu(env), 0, &work_sccb, sccb_len);
+
+ if (!sclp_command_code_valid(code)) {
+ work_sccb.h.response_code = cpu_to_be16(SCLP_RC_INVALID_SCLP_COMMAND);
+ goto out_write;
+ }
+
+ sclp_c->execute(sclp, &work_sccb, code);
+out_write:
+ s390_cpu_pv_mem_write(env_archcpu(env), 0, &work_sccb,
+ be16_to_cpu(work_sccb.h.length));
+ sclp_c->service_interrupt(sclp, SCLP_PV_DUMMY_ADDR);
+ return 0;
+}
+
int sclp_service_call(CPUS390XState *env, uint64_t sccb, uint32_t code)
{
SCLPDevice *sclp = get_sclp_device();
return -PGM_SPECIFICATION;
}
- switch (code & SCLP_CMD_CODE_MASK) {
- case SCLP_CMDW_READ_SCP_INFO:
- case SCLP_CMDW_READ_SCP_INFO_FORCED:
- case SCLP_CMDW_READ_CPU_INFO:
- case SCLP_CMDW_CONFIGURE_IOA:
- case SCLP_CMDW_DECONFIGURE_IOA:
- case SCLP_CMD_READ_EVENT_DATA:
- case SCLP_CMD_WRITE_EVENT_DATA:
- case SCLP_CMD_WRITE_EVENT_MASK:
- break;
- default:
+ if (!sclp_command_code_valid(code)) {
work_sccb.h.response_code = cpu_to_be16(SCLP_RC_INVALID_SCLP_COMMAND);
goto out_write;
}
sccb = env->regs[ipbh0 & 0xf];
code = env->regs[(ipbh0 & 0xf0) >> 4];
- r = sclp_service_call(env, sccb, code);
- if (r < 0) {
- kvm_s390_program_interrupt(cpu, -r);
- return;
+ switch (run->s390_sieic.icptcode) {
+ case ICPT_PV_INSTR_NOTIFICATION:
+ g_assert(s390_is_pv());
+ /* The notification intercepts are currently handled by KVM */
+ error_report("unexpected SCLP PV notification");
+ exit(1);
+ break;
+ case ICPT_PV_INSTR:
+ g_assert(s390_is_pv());
+ sclp_service_call_protected(env, sccb, code);
+ /* Setting the CC is done by the Ultravisor. */
+ break;
+ case ICPT_INSTRUCTION:
+ g_assert(!s390_is_pv());
+ r = sclp_service_call(env, sccb, code);
+ if (r < 0) {
+ kvm_s390_program_interrupt(cpu, -r);
+ return;
+ }
+ setcc(cpu, r);
}
- setcc(cpu, r);
}
static int handle_b2(S390CPU *cpu, struct kvm_run *run, uint8_t ipa1)