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machine-qmp-cmds.c 11 KB

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  1. /*
  2. * QMP commands related to machines and CPUs
  3. *
  4. * Copyright (C) 2014 Red Hat Inc
  5. *
  6. * This work is licensed under the terms of the GNU GPL, version 2 or later.
  7. * See the COPYING file in the top-level directory.
  8. */
  9. #include "qemu/osdep.h"
  10. #include "hw/acpi/vmgenid.h"
  11. #include "hw/boards.h"
  12. #include "hw/intc/intc.h"
  13. #include "hw/mem/memory-device.h"
  14. #include "hw/rdma/rdma.h"
  15. #include "qapi/error.h"
  16. #include "qapi/qapi-builtin-visit.h"
  17. #include "qapi/qapi-commands-machine.h"
  18. #include "qapi/qmp/qobject.h"
  19. #include "qapi/qobject-input-visitor.h"
  20. #include "qapi/type-helpers.h"
  21. #include "qemu/main-loop.h"
  22. #include "qemu/uuid.h"
  23. #include "qom/qom-qobject.h"
  24. #include "sysemu/hostmem.h"
  25. #include "sysemu/hw_accel.h"
  26. #include "sysemu/numa.h"
  27. #include "sysemu/runstate.h"
  28. #include "sysemu/sysemu.h"
  29. /*
  30. * fast means: we NEVER interrupt vCPU threads to retrieve
  31. * information from KVM.
  32. */
  33. CpuInfoFastList *qmp_query_cpus_fast(Error **errp)
  34. {
  35. MachineState *ms = MACHINE(qdev_get_machine());
  36. MachineClass *mc = MACHINE_GET_CLASS(ms);
  37. CpuInfoFastList *head = NULL, **tail = &head;
  38. SysEmuTarget target = qapi_enum_parse(&SysEmuTarget_lookup, target_name(),
  39. -1, &error_abort);
  40. CPUState *cpu;
  41. CPU_FOREACH(cpu) {
  42. CpuInfoFast *value = g_malloc0(sizeof(*value));
  43. value->cpu_index = cpu->cpu_index;
  44. value->qom_path = object_get_canonical_path(OBJECT(cpu));
  45. value->thread_id = cpu->thread_id;
  46. if (mc->cpu_index_to_instance_props) {
  47. CpuInstanceProperties *props;
  48. props = g_malloc0(sizeof(*props));
  49. *props = mc->cpu_index_to_instance_props(ms, cpu->cpu_index);
  50. value->props = props;
  51. }
  52. value->target = target;
  53. if (cpu->cc->query_cpu_fast) {
  54. cpu->cc->query_cpu_fast(cpu, value);
  55. }
  56. QAPI_LIST_APPEND(tail, value);
  57. }
  58. return head;
  59. }
  60. MachineInfoList *qmp_query_machines(Error **errp)
  61. {
  62. GSList *el, *machines = object_class_get_list(TYPE_MACHINE, false);
  63. MachineInfoList *mach_list = NULL;
  64. for (el = machines; el; el = el->next) {
  65. MachineClass *mc = el->data;
  66. MachineInfo *info;
  67. info = g_malloc0(sizeof(*info));
  68. if (mc->is_default) {
  69. info->has_is_default = true;
  70. info->is_default = true;
  71. }
  72. if (mc->alias) {
  73. info->alias = g_strdup(mc->alias);
  74. }
  75. info->name = g_strdup(mc->name);
  76. info->cpu_max = !mc->max_cpus ? 1 : mc->max_cpus;
  77. info->hotpluggable_cpus = mc->has_hotpluggable_cpus;
  78. info->numa_mem_supported = mc->numa_mem_supported;
  79. info->deprecated = !!mc->deprecation_reason;
  80. info->acpi = !!object_class_property_find(OBJECT_CLASS(mc), "acpi");
  81. if (mc->default_cpu_type) {
  82. info->default_cpu_type = g_strdup(mc->default_cpu_type);
  83. }
  84. if (mc->default_ram_id) {
  85. info->default_ram_id = g_strdup(mc->default_ram_id);
  86. }
  87. QAPI_LIST_PREPEND(mach_list, info);
  88. }
  89. g_slist_free(machines);
  90. return mach_list;
  91. }
  92. CurrentMachineParams *qmp_query_current_machine(Error **errp)
  93. {
  94. CurrentMachineParams *params = g_malloc0(sizeof(*params));
  95. params->wakeup_suspend_support = qemu_wakeup_suspend_enabled();
  96. return params;
  97. }
  98. TargetInfo *qmp_query_target(Error **errp)
  99. {
  100. TargetInfo *info = g_malloc0(sizeof(*info));
  101. info->arch = qapi_enum_parse(&SysEmuTarget_lookup, target_name(), -1,
  102. &error_abort);
  103. return info;
  104. }
  105. HotpluggableCPUList *qmp_query_hotpluggable_cpus(Error **errp)
  106. {
  107. MachineState *ms = MACHINE(qdev_get_machine());
  108. MachineClass *mc = MACHINE_GET_CLASS(ms);
  109. if (!mc->has_hotpluggable_cpus) {
  110. error_setg(errp, "machine does not support hot-plugging CPUs");
  111. return NULL;
  112. }
  113. return machine_query_hotpluggable_cpus(ms);
  114. }
  115. void qmp_set_numa_node(NumaOptions *cmd, Error **errp)
  116. {
  117. if (phase_check(PHASE_MACHINE_INITIALIZED)) {
  118. error_setg(errp, "The command is permitted only before the machine has been created");
  119. return;
  120. }
  121. set_numa_options(MACHINE(qdev_get_machine()), cmd, errp);
  122. }
  123. static int query_memdev(Object *obj, void *opaque)
  124. {
  125. Error *err = NULL;
  126. MemdevList **list = opaque;
  127. Memdev *m;
  128. QObject *host_nodes;
  129. Visitor *v;
  130. if (object_dynamic_cast(obj, TYPE_MEMORY_BACKEND)) {
  131. m = g_malloc0(sizeof(*m));
  132. m->id = g_strdup(object_get_canonical_path_component(obj));
  133. m->size = object_property_get_uint(obj, "size", &error_abort);
  134. m->merge = object_property_get_bool(obj, "merge", &error_abort);
  135. m->dump = object_property_get_bool(obj, "dump", &error_abort);
  136. m->prealloc = object_property_get_bool(obj, "prealloc", &error_abort);
  137. m->share = object_property_get_bool(obj, "share", &error_abort);
  138. m->reserve = object_property_get_bool(obj, "reserve", &err);
  139. if (err) {
  140. error_free_or_abort(&err);
  141. } else {
  142. m->has_reserve = true;
  143. }
  144. m->policy = object_property_get_enum(obj, "policy", "HostMemPolicy",
  145. &error_abort);
  146. host_nodes = object_property_get_qobject(obj,
  147. "host-nodes",
  148. &error_abort);
  149. v = qobject_input_visitor_new(host_nodes);
  150. visit_type_uint16List(v, NULL, &m->host_nodes, &error_abort);
  151. visit_free(v);
  152. qobject_unref(host_nodes);
  153. QAPI_LIST_PREPEND(*list, m);
  154. }
  155. return 0;
  156. }
  157. MemdevList *qmp_query_memdev(Error **errp)
  158. {
  159. Object *obj = object_get_objects_root();
  160. MemdevList *list = NULL;
  161. object_child_foreach(obj, query_memdev, &list);
  162. return list;
  163. }
  164. HumanReadableText *qmp_x_query_numa(Error **errp)
  165. {
  166. g_autoptr(GString) buf = g_string_new("");
  167. int i, nb_numa_nodes;
  168. NumaNodeMem *node_mem;
  169. CpuInfoFastList *cpu_list, *cpu;
  170. MachineState *ms = MACHINE(qdev_get_machine());
  171. nb_numa_nodes = ms->numa_state ? ms->numa_state->num_nodes : 0;
  172. g_string_append_printf(buf, "%d nodes\n", nb_numa_nodes);
  173. if (!nb_numa_nodes) {
  174. goto done;
  175. }
  176. cpu_list = qmp_query_cpus_fast(&error_abort);
  177. node_mem = g_new0(NumaNodeMem, nb_numa_nodes);
  178. query_numa_node_mem(node_mem, ms);
  179. for (i = 0; i < nb_numa_nodes; i++) {
  180. g_string_append_printf(buf, "node %d cpus:", i);
  181. for (cpu = cpu_list; cpu; cpu = cpu->next) {
  182. if (cpu->value->props && cpu->value->props->has_node_id &&
  183. cpu->value->props->node_id == i) {
  184. g_string_append_printf(buf, " %" PRIi64, cpu->value->cpu_index);
  185. }
  186. }
  187. g_string_append_printf(buf, "\n");
  188. g_string_append_printf(buf, "node %d size: %" PRId64 " MB\n", i,
  189. node_mem[i].node_mem >> 20);
  190. g_string_append_printf(buf, "node %d plugged: %" PRId64 " MB\n", i,
  191. node_mem[i].node_plugged_mem >> 20);
  192. }
  193. qapi_free_CpuInfoFastList(cpu_list);
  194. g_free(node_mem);
  195. done:
  196. return human_readable_text_from_str(buf);
  197. }
  198. KvmInfo *qmp_query_kvm(Error **errp)
  199. {
  200. KvmInfo *info = g_malloc0(sizeof(*info));
  201. info->enabled = kvm_enabled();
  202. info->present = accel_find("kvm");
  203. return info;
  204. }
  205. UuidInfo *qmp_query_uuid(Error **errp)
  206. {
  207. UuidInfo *info = g_malloc0(sizeof(*info));
  208. info->UUID = qemu_uuid_unparse_strdup(&qemu_uuid);
  209. return info;
  210. }
  211. void qmp_system_reset(Error **errp)
  212. {
  213. qemu_system_reset_request(SHUTDOWN_CAUSE_HOST_QMP_SYSTEM_RESET);
  214. }
  215. void qmp_system_powerdown(Error **errp)
  216. {
  217. qemu_system_powerdown_request();
  218. }
  219. void qmp_system_wakeup(Error **errp)
  220. {
  221. if (!qemu_wakeup_suspend_enabled()) {
  222. error_setg(errp,
  223. "wake-up from suspend is not supported by this guest");
  224. return;
  225. }
  226. qemu_system_wakeup_request(QEMU_WAKEUP_REASON_OTHER, errp);
  227. }
  228. MemoryDeviceInfoList *qmp_query_memory_devices(Error **errp)
  229. {
  230. return qmp_memory_device_list();
  231. }
  232. MemoryInfo *qmp_query_memory_size_summary(Error **errp)
  233. {
  234. MemoryInfo *mem_info = g_new0(MemoryInfo, 1);
  235. MachineState *ms = MACHINE(qdev_get_machine());
  236. mem_info->base_memory = ms->ram_size;
  237. mem_info->plugged_memory = get_plugged_memory_size();
  238. mem_info->has_plugged_memory =
  239. mem_info->plugged_memory != (uint64_t)-1;
  240. return mem_info;
  241. }
  242. static int qmp_x_query_rdma_foreach(Object *obj, void *opaque)
  243. {
  244. RdmaProvider *rdma;
  245. RdmaProviderClass *k;
  246. GString *buf = opaque;
  247. if (object_dynamic_cast(obj, INTERFACE_RDMA_PROVIDER)) {
  248. rdma = RDMA_PROVIDER(obj);
  249. k = RDMA_PROVIDER_GET_CLASS(obj);
  250. if (k->format_statistics) {
  251. k->format_statistics(rdma, buf);
  252. } else {
  253. g_string_append_printf(buf,
  254. "RDMA statistics not available for %s.\n",
  255. object_get_typename(obj));
  256. }
  257. }
  258. return 0;
  259. }
  260. HumanReadableText *qmp_x_query_rdma(Error **errp)
  261. {
  262. g_autoptr(GString) buf = g_string_new("");
  263. object_child_foreach_recursive(object_get_root(),
  264. qmp_x_query_rdma_foreach, buf);
  265. return human_readable_text_from_str(buf);
  266. }
  267. HumanReadableText *qmp_x_query_ramblock(Error **errp)
  268. {
  269. g_autoptr(GString) buf = ram_block_format();
  270. return human_readable_text_from_str(buf);
  271. }
  272. static int qmp_x_query_irq_foreach(Object *obj, void *opaque)
  273. {
  274. InterruptStatsProvider *intc;
  275. InterruptStatsProviderClass *k;
  276. GString *buf = opaque;
  277. if (object_dynamic_cast(obj, TYPE_INTERRUPT_STATS_PROVIDER)) {
  278. intc = INTERRUPT_STATS_PROVIDER(obj);
  279. k = INTERRUPT_STATS_PROVIDER_GET_CLASS(obj);
  280. uint64_t *irq_counts;
  281. unsigned int nb_irqs, i;
  282. if (k->get_statistics &&
  283. k->get_statistics(intc, &irq_counts, &nb_irqs)) {
  284. if (nb_irqs > 0) {
  285. g_string_append_printf(buf, "IRQ statistics for %s:\n",
  286. object_get_typename(obj));
  287. for (i = 0; i < nb_irqs; i++) {
  288. if (irq_counts[i] > 0) {
  289. g_string_append_printf(buf, "%2d: %" PRId64 "\n", i,
  290. irq_counts[i]);
  291. }
  292. }
  293. }
  294. } else {
  295. g_string_append_printf(buf,
  296. "IRQ statistics not available for %s.\n",
  297. object_get_typename(obj));
  298. }
  299. }
  300. return 0;
  301. }
  302. HumanReadableText *qmp_x_query_irq(Error **errp)
  303. {
  304. g_autoptr(GString) buf = g_string_new("");
  305. object_child_foreach_recursive(object_get_root(),
  306. qmp_x_query_irq_foreach, buf);
  307. return human_readable_text_from_str(buf);
  308. }
  309. GuidInfo *qmp_query_vm_generation_id(Error **errp)
  310. {
  311. GuidInfo *info;
  312. VmGenIdState *vms;
  313. Object *obj = find_vmgenid_dev();
  314. if (!obj) {
  315. error_setg(errp, "VM Generation ID device not found");
  316. return NULL;
  317. }
  318. vms = VMGENID(obj);
  319. info = g_malloc0(sizeof(*info));
  320. info->guid = qemu_uuid_unparse_strdup(&vms->guid);
  321. return info;
  322. }