scripts: kernel-doc: allow passing desired Sphinx C domain dialect
[qemu/ar7.git] / hw / core / machine.c
blobd7f8fdee4546cd548bd07fcfbf27a368ee18d0c6
1 /*
2 * QEMU Machine
4 * Copyright (C) 2014 Red Hat Inc
6 * Authors:
7 * Marcel Apfelbaum <marcel.a@redhat.com>
9 * This work is licensed under the terms of the GNU GPL, version 2 or later.
10 * See the COPYING file in the top-level directory.
13 #include "qemu/osdep.h"
14 #include "qemu/option.h"
15 #include "qapi/qmp/qerror.h"
16 #include "sysemu/replay.h"
17 #include "qemu/units.h"
18 #include "hw/boards.h"
19 #include "qapi/error.h"
20 #include "qapi/qapi-visit-common.h"
21 #include "qapi/visitor.h"
22 #include "hw/sysbus.h"
23 #include "sysemu/sysemu.h"
24 #include "sysemu/numa.h"
25 #include "qemu/error-report.h"
26 #include "sysemu/qtest.h"
27 #include "hw/pci/pci.h"
28 #include "hw/mem/nvdimm.h"
29 #include "migration/vmstate.h"
31 GlobalProperty hw_compat_5_2[] = {};
32 const size_t hw_compat_5_2_len = G_N_ELEMENTS(hw_compat_5_2);
34 GlobalProperty hw_compat_5_1[] = {
35 { "vhost-scsi", "num_queues", "1"},
36 { "vhost-user-blk", "num-queues", "1"},
37 { "vhost-user-scsi", "num_queues", "1"},
38 { "virtio-blk-device", "num-queues", "1"},
39 { "virtio-scsi-device", "num_queues", "1"},
40 { "nvme", "use-intel-id", "on"},
41 { "pvpanic", "events", "1"}, /* PVPANIC_PANICKED */
43 const size_t hw_compat_5_1_len = G_N_ELEMENTS(hw_compat_5_1);
45 GlobalProperty hw_compat_5_0[] = {
46 { "pci-host-bridge", "x-config-reg-migration-enabled", "off" },
47 { "virtio-balloon-device", "page-poison", "false" },
48 { "vmport", "x-read-set-eax", "off" },
49 { "vmport", "x-signal-unsupported-cmd", "off" },
50 { "vmport", "x-report-vmx-type", "off" },
51 { "vmport", "x-cmds-v2", "off" },
52 { "virtio-device", "x-disable-legacy-check", "true" },
54 const size_t hw_compat_5_0_len = G_N_ELEMENTS(hw_compat_5_0);
56 GlobalProperty hw_compat_4_2[] = {
57 { "virtio-blk-device", "queue-size", "128"},
58 { "virtio-scsi-device", "virtqueue_size", "128"},
59 { "virtio-blk-device", "x-enable-wce-if-config-wce", "off" },
60 { "virtio-blk-device", "seg-max-adjust", "off"},
61 { "virtio-scsi-device", "seg_max_adjust", "off"},
62 { "vhost-blk-device", "seg_max_adjust", "off"},
63 { "usb-host", "suppress-remote-wake", "off" },
64 { "usb-redir", "suppress-remote-wake", "off" },
65 { "qxl", "revision", "4" },
66 { "qxl-vga", "revision", "4" },
67 { "fw_cfg", "acpi-mr-restore", "false" },
69 const size_t hw_compat_4_2_len = G_N_ELEMENTS(hw_compat_4_2);
71 GlobalProperty hw_compat_4_1[] = {
72 { "virtio-pci", "x-pcie-flr-init", "off" },
73 { "virtio-device", "use-disabled-flag", "false" },
75 const size_t hw_compat_4_1_len = G_N_ELEMENTS(hw_compat_4_1);
77 GlobalProperty hw_compat_4_0[] = {
78 { "VGA", "edid", "false" },
79 { "secondary-vga", "edid", "false" },
80 { "bochs-display", "edid", "false" },
81 { "virtio-vga", "edid", "false" },
82 { "virtio-gpu-device", "edid", "false" },
83 { "virtio-device", "use-started", "false" },
84 { "virtio-balloon-device", "qemu-4-0-config-size", "true" },
85 { "pl031", "migrate-tick-offset", "false" },
87 const size_t hw_compat_4_0_len = G_N_ELEMENTS(hw_compat_4_0);
89 GlobalProperty hw_compat_3_1[] = {
90 { "pcie-root-port", "x-speed", "2_5" },
91 { "pcie-root-port", "x-width", "1" },
92 { "memory-backend-file", "x-use-canonical-path-for-ramblock-id", "true" },
93 { "memory-backend-memfd", "x-use-canonical-path-for-ramblock-id", "true" },
94 { "tpm-crb", "ppi", "false" },
95 { "tpm-tis", "ppi", "false" },
96 { "usb-kbd", "serial", "42" },
97 { "usb-mouse", "serial", "42" },
98 { "usb-tablet", "serial", "42" },
99 { "virtio-blk-device", "discard", "false" },
100 { "virtio-blk-device", "write-zeroes", "false" },
101 { "virtio-balloon-device", "qemu-4-0-config-size", "false" },
102 { "pcie-root-port-base", "disable-acs", "true" }, /* Added in 4.1 */
104 const size_t hw_compat_3_1_len = G_N_ELEMENTS(hw_compat_3_1);
106 GlobalProperty hw_compat_3_0[] = {};
107 const size_t hw_compat_3_0_len = G_N_ELEMENTS(hw_compat_3_0);
109 GlobalProperty hw_compat_2_12[] = {
110 { "migration", "decompress-error-check", "off" },
111 { "hda-audio", "use-timer", "false" },
112 { "cirrus-vga", "global-vmstate", "true" },
113 { "VGA", "global-vmstate", "true" },
114 { "vmware-svga", "global-vmstate", "true" },
115 { "qxl-vga", "global-vmstate", "true" },
117 const size_t hw_compat_2_12_len = G_N_ELEMENTS(hw_compat_2_12);
119 GlobalProperty hw_compat_2_11[] = {
120 { "hpet", "hpet-offset-saved", "false" },
121 { "virtio-blk-pci", "vectors", "2" },
122 { "vhost-user-blk-pci", "vectors", "2" },
123 { "e1000", "migrate_tso_props", "off" },
125 const size_t hw_compat_2_11_len = G_N_ELEMENTS(hw_compat_2_11);
127 GlobalProperty hw_compat_2_10[] = {
128 { "virtio-mouse-device", "wheel-axis", "false" },
129 { "virtio-tablet-device", "wheel-axis", "false" },
131 const size_t hw_compat_2_10_len = G_N_ELEMENTS(hw_compat_2_10);
133 GlobalProperty hw_compat_2_9[] = {
134 { "pci-bridge", "shpc", "off" },
135 { "intel-iommu", "pt", "off" },
136 { "virtio-net-device", "x-mtu-bypass-backend", "off" },
137 { "pcie-root-port", "x-migrate-msix", "false" },
139 const size_t hw_compat_2_9_len = G_N_ELEMENTS(hw_compat_2_9);
141 GlobalProperty hw_compat_2_8[] = {
142 { "fw_cfg_mem", "x-file-slots", "0x10" },
143 { "fw_cfg_io", "x-file-slots", "0x10" },
144 { "pflash_cfi01", "old-multiple-chip-handling", "on" },
145 { "pci-bridge", "shpc", "on" },
146 { TYPE_PCI_DEVICE, "x-pcie-extcap-init", "off" },
147 { "virtio-pci", "x-pcie-deverr-init", "off" },
148 { "virtio-pci", "x-pcie-lnkctl-init", "off" },
149 { "virtio-pci", "x-pcie-pm-init", "off" },
150 { "cirrus-vga", "vgamem_mb", "8" },
151 { "isa-cirrus-vga", "vgamem_mb", "8" },
153 const size_t hw_compat_2_8_len = G_N_ELEMENTS(hw_compat_2_8);
155 GlobalProperty hw_compat_2_7[] = {
156 { "virtio-pci", "page-per-vq", "on" },
157 { "virtio-serial-device", "emergency-write", "off" },
158 { "ioapic", "version", "0x11" },
159 { "intel-iommu", "x-buggy-eim", "true" },
160 { "virtio-pci", "x-ignore-backend-features", "on" },
162 const size_t hw_compat_2_7_len = G_N_ELEMENTS(hw_compat_2_7);
164 GlobalProperty hw_compat_2_6[] = {
165 { "virtio-mmio", "format_transport_address", "off" },
166 /* Optional because not all virtio-pci devices support legacy mode */
167 { "virtio-pci", "disable-modern", "on", .optional = true },
168 { "virtio-pci", "disable-legacy", "off", .optional = true },
170 const size_t hw_compat_2_6_len = G_N_ELEMENTS(hw_compat_2_6);
172 GlobalProperty hw_compat_2_5[] = {
173 { "isa-fdc", "fallback", "144" },
174 { "pvscsi", "x-old-pci-configuration", "on" },
175 { "pvscsi", "x-disable-pcie", "on" },
176 { "vmxnet3", "x-old-msi-offsets", "on" },
177 { "vmxnet3", "x-disable-pcie", "on" },
179 const size_t hw_compat_2_5_len = G_N_ELEMENTS(hw_compat_2_5);
181 GlobalProperty hw_compat_2_4[] = {
182 /* Optional because the 'scsi' property is Linux-only */
183 { "virtio-blk-device", "scsi", "true", .optional = true },
184 { "e1000", "extra_mac_registers", "off" },
185 { "virtio-pci", "x-disable-pcie", "on" },
186 { "virtio-pci", "migrate-extra", "off" },
187 { "fw_cfg_mem", "dma_enabled", "off" },
188 { "fw_cfg_io", "dma_enabled", "off" }
190 const size_t hw_compat_2_4_len = G_N_ELEMENTS(hw_compat_2_4);
192 GlobalProperty hw_compat_2_3[] = {
193 { "virtio-blk-pci", "any_layout", "off" },
194 { "virtio-balloon-pci", "any_layout", "off" },
195 { "virtio-serial-pci", "any_layout", "off" },
196 { "virtio-9p-pci", "any_layout", "off" },
197 { "virtio-rng-pci", "any_layout", "off" },
198 { TYPE_PCI_DEVICE, "x-pcie-lnksta-dllla", "off" },
199 { "migration", "send-configuration", "off" },
200 { "migration", "send-section-footer", "off" },
201 { "migration", "store-global-state", "off" },
203 const size_t hw_compat_2_3_len = G_N_ELEMENTS(hw_compat_2_3);
205 GlobalProperty hw_compat_2_2[] = {};
206 const size_t hw_compat_2_2_len = G_N_ELEMENTS(hw_compat_2_2);
208 GlobalProperty hw_compat_2_1[] = {
209 { "intel-hda", "old_msi_addr", "on" },
210 { "VGA", "qemu-extended-regs", "off" },
211 { "secondary-vga", "qemu-extended-regs", "off" },
212 { "virtio-scsi-pci", "any_layout", "off" },
213 { "usb-mouse", "usb_version", "1" },
214 { "usb-kbd", "usb_version", "1" },
215 { "virtio-pci", "virtio-pci-bus-master-bug-migration", "on" },
217 const size_t hw_compat_2_1_len = G_N_ELEMENTS(hw_compat_2_1);
219 static char *machine_get_kernel(Object *obj, Error **errp)
221 MachineState *ms = MACHINE(obj);
223 return g_strdup(ms->kernel_filename);
226 static void machine_set_kernel(Object *obj, const char *value, Error **errp)
228 MachineState *ms = MACHINE(obj);
230 g_free(ms->kernel_filename);
231 ms->kernel_filename = g_strdup(value);
234 static char *machine_get_initrd(Object *obj, Error **errp)
236 MachineState *ms = MACHINE(obj);
238 return g_strdup(ms->initrd_filename);
241 static void machine_set_initrd(Object *obj, const char *value, Error **errp)
243 MachineState *ms = MACHINE(obj);
245 g_free(ms->initrd_filename);
246 ms->initrd_filename = g_strdup(value);
249 static char *machine_get_append(Object *obj, Error **errp)
251 MachineState *ms = MACHINE(obj);
253 return g_strdup(ms->kernel_cmdline);
256 static void machine_set_append(Object *obj, const char *value, Error **errp)
258 MachineState *ms = MACHINE(obj);
260 g_free(ms->kernel_cmdline);
261 ms->kernel_cmdline = g_strdup(value);
264 static char *machine_get_dtb(Object *obj, Error **errp)
266 MachineState *ms = MACHINE(obj);
268 return g_strdup(ms->dtb);
271 static void machine_set_dtb(Object *obj, const char *value, Error **errp)
273 MachineState *ms = MACHINE(obj);
275 g_free(ms->dtb);
276 ms->dtb = g_strdup(value);
279 static char *machine_get_dumpdtb(Object *obj, Error **errp)
281 MachineState *ms = MACHINE(obj);
283 return g_strdup(ms->dumpdtb);
286 static void machine_set_dumpdtb(Object *obj, const char *value, Error **errp)
288 MachineState *ms = MACHINE(obj);
290 g_free(ms->dumpdtb);
291 ms->dumpdtb = g_strdup(value);
294 static void machine_get_phandle_start(Object *obj, Visitor *v,
295 const char *name, void *opaque,
296 Error **errp)
298 MachineState *ms = MACHINE(obj);
299 int64_t value = ms->phandle_start;
301 visit_type_int(v, name, &value, errp);
304 static void machine_set_phandle_start(Object *obj, Visitor *v,
305 const char *name, void *opaque,
306 Error **errp)
308 MachineState *ms = MACHINE(obj);
309 int64_t value;
311 if (!visit_type_int(v, name, &value, errp)) {
312 return;
315 ms->phandle_start = value;
318 static char *machine_get_dt_compatible(Object *obj, Error **errp)
320 MachineState *ms = MACHINE(obj);
322 return g_strdup(ms->dt_compatible);
325 static void machine_set_dt_compatible(Object *obj, const char *value, Error **errp)
327 MachineState *ms = MACHINE(obj);
329 g_free(ms->dt_compatible);
330 ms->dt_compatible = g_strdup(value);
333 static bool machine_get_dump_guest_core(Object *obj, Error **errp)
335 MachineState *ms = MACHINE(obj);
337 return ms->dump_guest_core;
340 static void machine_set_dump_guest_core(Object *obj, bool value, Error **errp)
342 MachineState *ms = MACHINE(obj);
344 ms->dump_guest_core = value;
347 static bool machine_get_mem_merge(Object *obj, Error **errp)
349 MachineState *ms = MACHINE(obj);
351 return ms->mem_merge;
354 static void machine_set_mem_merge(Object *obj, bool value, Error **errp)
356 MachineState *ms = MACHINE(obj);
358 ms->mem_merge = value;
361 static bool machine_get_usb(Object *obj, Error **errp)
363 MachineState *ms = MACHINE(obj);
365 return ms->usb;
368 static void machine_set_usb(Object *obj, bool value, Error **errp)
370 MachineState *ms = MACHINE(obj);
372 ms->usb = value;
373 ms->usb_disabled = !value;
376 static bool machine_get_graphics(Object *obj, Error **errp)
378 MachineState *ms = MACHINE(obj);
380 return ms->enable_graphics;
383 static void machine_set_graphics(Object *obj, bool value, Error **errp)
385 MachineState *ms = MACHINE(obj);
387 ms->enable_graphics = value;
390 static char *machine_get_firmware(Object *obj, Error **errp)
392 MachineState *ms = MACHINE(obj);
394 return g_strdup(ms->firmware);
397 static void machine_set_firmware(Object *obj, const char *value, Error **errp)
399 MachineState *ms = MACHINE(obj);
401 g_free(ms->firmware);
402 ms->firmware = g_strdup(value);
405 static void machine_set_suppress_vmdesc(Object *obj, bool value, Error **errp)
407 MachineState *ms = MACHINE(obj);
409 ms->suppress_vmdesc = value;
412 static bool machine_get_suppress_vmdesc(Object *obj, Error **errp)
414 MachineState *ms = MACHINE(obj);
416 return ms->suppress_vmdesc;
419 static char *machine_get_memory_encryption(Object *obj, Error **errp)
421 MachineState *ms = MACHINE(obj);
423 return g_strdup(ms->memory_encryption);
426 static void machine_set_memory_encryption(Object *obj, const char *value,
427 Error **errp)
429 MachineState *ms = MACHINE(obj);
431 g_free(ms->memory_encryption);
432 ms->memory_encryption = g_strdup(value);
435 * With memory encryption, the host can't see the real contents of RAM,
436 * so there's no point in it trying to merge areas.
438 if (value) {
439 machine_set_mem_merge(obj, false, errp);
443 static bool machine_get_nvdimm(Object *obj, Error **errp)
445 MachineState *ms = MACHINE(obj);
447 return ms->nvdimms_state->is_enabled;
450 static void machine_set_nvdimm(Object *obj, bool value, Error **errp)
452 MachineState *ms = MACHINE(obj);
454 ms->nvdimms_state->is_enabled = value;
457 static bool machine_get_hmat(Object *obj, Error **errp)
459 MachineState *ms = MACHINE(obj);
461 return ms->numa_state->hmat_enabled;
464 static void machine_set_hmat(Object *obj, bool value, Error **errp)
466 MachineState *ms = MACHINE(obj);
468 ms->numa_state->hmat_enabled = value;
471 static char *machine_get_nvdimm_persistence(Object *obj, Error **errp)
473 MachineState *ms = MACHINE(obj);
475 return g_strdup(ms->nvdimms_state->persistence_string);
478 static void machine_set_nvdimm_persistence(Object *obj, const char *value,
479 Error **errp)
481 MachineState *ms = MACHINE(obj);
482 NVDIMMState *nvdimms_state = ms->nvdimms_state;
484 if (strcmp(value, "cpu") == 0) {
485 nvdimms_state->persistence = 3;
486 } else if (strcmp(value, "mem-ctrl") == 0) {
487 nvdimms_state->persistence = 2;
488 } else {
489 error_setg(errp, "-machine nvdimm-persistence=%s: unsupported option",
490 value);
491 return;
494 g_free(nvdimms_state->persistence_string);
495 nvdimms_state->persistence_string = g_strdup(value);
498 void machine_class_allow_dynamic_sysbus_dev(MachineClass *mc, const char *type)
500 strList *item = g_new0(strList, 1);
502 item->value = g_strdup(type);
503 item->next = mc->allowed_dynamic_sysbus_devices;
504 mc->allowed_dynamic_sysbus_devices = item;
507 static void validate_sysbus_device(SysBusDevice *sbdev, void *opaque)
509 MachineState *machine = opaque;
510 MachineClass *mc = MACHINE_GET_CLASS(machine);
511 bool allowed = false;
512 strList *wl;
514 for (wl = mc->allowed_dynamic_sysbus_devices;
515 !allowed && wl;
516 wl = wl->next) {
517 allowed |= !!object_dynamic_cast(OBJECT(sbdev), wl->value);
520 if (!allowed) {
521 error_report("Option '-device %s' cannot be handled by this machine",
522 object_class_get_name(object_get_class(OBJECT(sbdev))));
523 exit(1);
527 static char *machine_get_memdev(Object *obj, Error **errp)
529 MachineState *ms = MACHINE(obj);
531 return g_strdup(ms->ram_memdev_id);
534 static void machine_set_memdev(Object *obj, const char *value, Error **errp)
536 MachineState *ms = MACHINE(obj);
538 g_free(ms->ram_memdev_id);
539 ms->ram_memdev_id = g_strdup(value);
543 static void machine_init_notify(Notifier *notifier, void *data)
545 MachineState *machine = MACHINE(qdev_get_machine());
548 * Loop through all dynamically created sysbus devices and check if they are
549 * all allowed. If a device is not allowed, error out.
551 foreach_dynamic_sysbus_device(validate_sysbus_device, machine);
554 HotpluggableCPUList *machine_query_hotpluggable_cpus(MachineState *machine)
556 int i;
557 HotpluggableCPUList *head = NULL;
558 MachineClass *mc = MACHINE_GET_CLASS(machine);
560 /* force board to initialize possible_cpus if it hasn't been done yet */
561 mc->possible_cpu_arch_ids(machine);
563 for (i = 0; i < machine->possible_cpus->len; i++) {
564 Object *cpu;
565 HotpluggableCPUList *list_item = g_new0(typeof(*list_item), 1);
566 HotpluggableCPU *cpu_item = g_new0(typeof(*cpu_item), 1);
568 cpu_item->type = g_strdup(machine->possible_cpus->cpus[i].type);
569 cpu_item->vcpus_count = machine->possible_cpus->cpus[i].vcpus_count;
570 cpu_item->props = g_memdup(&machine->possible_cpus->cpus[i].props,
571 sizeof(*cpu_item->props));
573 cpu = machine->possible_cpus->cpus[i].cpu;
574 if (cpu) {
575 cpu_item->has_qom_path = true;
576 cpu_item->qom_path = object_get_canonical_path(cpu);
578 list_item->value = cpu_item;
579 list_item->next = head;
580 head = list_item;
582 return head;
586 * machine_set_cpu_numa_node:
587 * @machine: machine object to modify
588 * @props: specifies which cpu objects to assign to
589 * numa node specified by @props.node_id
590 * @errp: if an error occurs, a pointer to an area to store the error
592 * Associate NUMA node specified by @props.node_id with cpu slots that
593 * match socket/core/thread-ids specified by @props. It's recommended to use
594 * query-hotpluggable-cpus.props values to specify affected cpu slots,
595 * which would lead to exact 1:1 mapping of cpu slots to NUMA node.
597 * However for CLI convenience it's possible to pass in subset of properties,
598 * which would affect all cpu slots that match it.
599 * Ex for pc machine:
600 * -smp 4,cores=2,sockets=2 -numa node,nodeid=0 -numa node,nodeid=1 \
601 * -numa cpu,node-id=0,socket_id=0 \
602 * -numa cpu,node-id=1,socket_id=1
603 * will assign all child cores of socket 0 to node 0 and
604 * of socket 1 to node 1.
606 * On attempt of reassigning (already assigned) cpu slot to another NUMA node,
607 * return error.
608 * Empty subset is disallowed and function will return with error in this case.
610 void machine_set_cpu_numa_node(MachineState *machine,
611 const CpuInstanceProperties *props, Error **errp)
613 MachineClass *mc = MACHINE_GET_CLASS(machine);
614 NodeInfo *numa_info = machine->numa_state->nodes;
615 bool match = false;
616 int i;
618 if (!mc->possible_cpu_arch_ids) {
619 error_setg(errp, "mapping of CPUs to NUMA node is not supported");
620 return;
623 /* disabling node mapping is not supported, forbid it */
624 assert(props->has_node_id);
626 /* force board to initialize possible_cpus if it hasn't been done yet */
627 mc->possible_cpu_arch_ids(machine);
629 for (i = 0; i < machine->possible_cpus->len; i++) {
630 CPUArchId *slot = &machine->possible_cpus->cpus[i];
632 /* reject unsupported by board properties */
633 if (props->has_thread_id && !slot->props.has_thread_id) {
634 error_setg(errp, "thread-id is not supported");
635 return;
638 if (props->has_core_id && !slot->props.has_core_id) {
639 error_setg(errp, "core-id is not supported");
640 return;
643 if (props->has_socket_id && !slot->props.has_socket_id) {
644 error_setg(errp, "socket-id is not supported");
645 return;
648 if (props->has_die_id && !slot->props.has_die_id) {
649 error_setg(errp, "die-id is not supported");
650 return;
653 /* skip slots with explicit mismatch */
654 if (props->has_thread_id && props->thread_id != slot->props.thread_id) {
655 continue;
658 if (props->has_core_id && props->core_id != slot->props.core_id) {
659 continue;
662 if (props->has_die_id && props->die_id != slot->props.die_id) {
663 continue;
666 if (props->has_socket_id && props->socket_id != slot->props.socket_id) {
667 continue;
670 /* reject assignment if slot is already assigned, for compatibility
671 * of legacy cpu_index mapping with SPAPR core based mapping do not
672 * error out if cpu thread and matched core have the same node-id */
673 if (slot->props.has_node_id &&
674 slot->props.node_id != props->node_id) {
675 error_setg(errp, "CPU is already assigned to node-id: %" PRId64,
676 slot->props.node_id);
677 return;
680 /* assign slot to node as it's matched '-numa cpu' key */
681 match = true;
682 slot->props.node_id = props->node_id;
683 slot->props.has_node_id = props->has_node_id;
685 if (machine->numa_state->hmat_enabled) {
686 if ((numa_info[props->node_id].initiator < MAX_NODES) &&
687 (props->node_id != numa_info[props->node_id].initiator)) {
688 error_setg(errp, "The initiator of CPU NUMA node %" PRId64
689 " should be itself", props->node_id);
690 return;
692 numa_info[props->node_id].has_cpu = true;
693 numa_info[props->node_id].initiator = props->node_id;
697 if (!match) {
698 error_setg(errp, "no match found");
702 static void smp_parse(MachineState *ms, QemuOpts *opts)
704 if (opts) {
705 unsigned cpus = qemu_opt_get_number(opts, "cpus", 0);
706 unsigned sockets = qemu_opt_get_number(opts, "sockets", 0);
707 unsigned cores = qemu_opt_get_number(opts, "cores", 0);
708 unsigned threads = qemu_opt_get_number(opts, "threads", 0);
710 /* compute missing values, prefer sockets over cores over threads */
711 if (cpus == 0 || sockets == 0) {
712 cores = cores > 0 ? cores : 1;
713 threads = threads > 0 ? threads : 1;
714 if (cpus == 0) {
715 sockets = sockets > 0 ? sockets : 1;
716 cpus = cores * threads * sockets;
717 } else {
718 ms->smp.max_cpus =
719 qemu_opt_get_number(opts, "maxcpus", cpus);
720 sockets = ms->smp.max_cpus / (cores * threads);
722 } else if (cores == 0) {
723 threads = threads > 0 ? threads : 1;
724 cores = cpus / (sockets * threads);
725 cores = cores > 0 ? cores : 1;
726 } else if (threads == 0) {
727 threads = cpus / (cores * sockets);
728 threads = threads > 0 ? threads : 1;
729 } else if (sockets * cores * threads < cpus) {
730 error_report("cpu topology: "
731 "sockets (%u) * cores (%u) * threads (%u) < "
732 "smp_cpus (%u)",
733 sockets, cores, threads, cpus);
734 exit(1);
737 ms->smp.max_cpus =
738 qemu_opt_get_number(opts, "maxcpus", cpus);
740 if (ms->smp.max_cpus < cpus) {
741 error_report("maxcpus must be equal to or greater than smp");
742 exit(1);
745 if (sockets * cores * threads != ms->smp.max_cpus) {
746 error_report("Invalid CPU topology: "
747 "sockets (%u) * cores (%u) * threads (%u) "
748 "!= maxcpus (%u)",
749 sockets, cores, threads,
750 ms->smp.max_cpus);
751 exit(1);
754 ms->smp.cpus = cpus;
755 ms->smp.cores = cores;
756 ms->smp.threads = threads;
757 ms->smp.sockets = sockets;
760 if (ms->smp.cpus > 1) {
761 Error *blocker = NULL;
762 error_setg(&blocker, QERR_REPLAY_NOT_SUPPORTED, "smp");
763 replay_add_blocker(blocker);
767 static void machine_class_init(ObjectClass *oc, void *data)
769 MachineClass *mc = MACHINE_CLASS(oc);
771 /* Default 128 MB as guest ram size */
772 mc->default_ram_size = 128 * MiB;
773 mc->rom_file_has_mr = true;
774 mc->smp_parse = smp_parse;
776 /* numa node memory size aligned on 8MB by default.
777 * On Linux, each node's border has to be 8MB aligned
779 mc->numa_mem_align_shift = 23;
781 object_class_property_add_str(oc, "kernel",
782 machine_get_kernel, machine_set_kernel);
783 object_class_property_set_description(oc, "kernel",
784 "Linux kernel image file");
786 object_class_property_add_str(oc, "initrd",
787 machine_get_initrd, machine_set_initrd);
788 object_class_property_set_description(oc, "initrd",
789 "Linux initial ramdisk file");
791 object_class_property_add_str(oc, "append",
792 machine_get_append, machine_set_append);
793 object_class_property_set_description(oc, "append",
794 "Linux kernel command line");
796 object_class_property_add_str(oc, "dtb",
797 machine_get_dtb, machine_set_dtb);
798 object_class_property_set_description(oc, "dtb",
799 "Linux kernel device tree file");
801 object_class_property_add_str(oc, "dumpdtb",
802 machine_get_dumpdtb, machine_set_dumpdtb);
803 object_class_property_set_description(oc, "dumpdtb",
804 "Dump current dtb to a file and quit");
806 object_class_property_add(oc, "phandle-start", "int",
807 machine_get_phandle_start, machine_set_phandle_start,
808 NULL, NULL);
809 object_class_property_set_description(oc, "phandle-start",
810 "The first phandle ID we may generate dynamically");
812 object_class_property_add_str(oc, "dt-compatible",
813 machine_get_dt_compatible, machine_set_dt_compatible);
814 object_class_property_set_description(oc, "dt-compatible",
815 "Overrides the \"compatible\" property of the dt root node");
817 object_class_property_add_bool(oc, "dump-guest-core",
818 machine_get_dump_guest_core, machine_set_dump_guest_core);
819 object_class_property_set_description(oc, "dump-guest-core",
820 "Include guest memory in a core dump");
822 object_class_property_add_bool(oc, "mem-merge",
823 machine_get_mem_merge, machine_set_mem_merge);
824 object_class_property_set_description(oc, "mem-merge",
825 "Enable/disable memory merge support");
827 object_class_property_add_bool(oc, "usb",
828 machine_get_usb, machine_set_usb);
829 object_class_property_set_description(oc, "usb",
830 "Set on/off to enable/disable usb");
832 object_class_property_add_bool(oc, "graphics",
833 machine_get_graphics, machine_set_graphics);
834 object_class_property_set_description(oc, "graphics",
835 "Set on/off to enable/disable graphics emulation");
837 object_class_property_add_str(oc, "firmware",
838 machine_get_firmware, machine_set_firmware);
839 object_class_property_set_description(oc, "firmware",
840 "Firmware image");
842 object_class_property_add_bool(oc, "suppress-vmdesc",
843 machine_get_suppress_vmdesc, machine_set_suppress_vmdesc);
844 object_class_property_set_description(oc, "suppress-vmdesc",
845 "Set on to disable self-describing migration");
847 object_class_property_add_str(oc, "memory-encryption",
848 machine_get_memory_encryption, machine_set_memory_encryption);
849 object_class_property_set_description(oc, "memory-encryption",
850 "Set memory encryption object to use");
852 object_class_property_add_str(oc, "memory-backend",
853 machine_get_memdev, machine_set_memdev);
854 object_class_property_set_description(oc, "memory-backend",
855 "Set RAM backend"
856 "Valid value is ID of hostmem based backend");
859 static void machine_class_base_init(ObjectClass *oc, void *data)
861 MachineClass *mc = MACHINE_CLASS(oc);
862 mc->max_cpus = mc->max_cpus ?: 1;
863 mc->min_cpus = mc->min_cpus ?: 1;
864 mc->default_cpus = mc->default_cpus ?: 1;
866 if (!object_class_is_abstract(oc)) {
867 const char *cname = object_class_get_name(oc);
868 assert(g_str_has_suffix(cname, TYPE_MACHINE_SUFFIX));
869 mc->name = g_strndup(cname,
870 strlen(cname) - strlen(TYPE_MACHINE_SUFFIX));
871 mc->compat_props = g_ptr_array_new();
875 static void machine_initfn(Object *obj)
877 MachineState *ms = MACHINE(obj);
878 MachineClass *mc = MACHINE_GET_CLASS(obj);
880 container_get(obj, "/peripheral");
881 container_get(obj, "/peripheral-anon");
883 ms->dump_guest_core = true;
884 ms->mem_merge = true;
885 ms->enable_graphics = true;
886 ms->kernel_cmdline = g_strdup("");
888 if (mc->nvdimm_supported) {
889 Object *obj = OBJECT(ms);
891 ms->nvdimms_state = g_new0(NVDIMMState, 1);
892 object_property_add_bool(obj, "nvdimm",
893 machine_get_nvdimm, machine_set_nvdimm);
894 object_property_set_description(obj, "nvdimm",
895 "Set on/off to enable/disable "
896 "NVDIMM instantiation");
898 object_property_add_str(obj, "nvdimm-persistence",
899 machine_get_nvdimm_persistence,
900 machine_set_nvdimm_persistence);
901 object_property_set_description(obj, "nvdimm-persistence",
902 "Set NVDIMM persistence"
903 "Valid values are cpu, mem-ctrl");
906 if (mc->cpu_index_to_instance_props && mc->get_default_cpu_node_id) {
907 ms->numa_state = g_new0(NumaState, 1);
908 object_property_add_bool(obj, "hmat",
909 machine_get_hmat, machine_set_hmat);
910 object_property_set_description(obj, "hmat",
911 "Set on/off to enable/disable "
912 "ACPI Heterogeneous Memory Attribute "
913 "Table (HMAT)");
916 /* Register notifier when init is done for sysbus sanity checks */
917 ms->sysbus_notifier.notify = machine_init_notify;
918 qemu_add_machine_init_done_notifier(&ms->sysbus_notifier);
920 /* default to mc->default_cpus */
921 ms->smp.cpus = mc->default_cpus;
922 ms->smp.max_cpus = mc->default_cpus;
923 ms->smp.cores = 1;
924 ms->smp.threads = 1;
925 ms->smp.sockets = 1;
928 static void machine_finalize(Object *obj)
930 MachineState *ms = MACHINE(obj);
932 g_free(ms->kernel_filename);
933 g_free(ms->initrd_filename);
934 g_free(ms->kernel_cmdline);
935 g_free(ms->dtb);
936 g_free(ms->dumpdtb);
937 g_free(ms->dt_compatible);
938 g_free(ms->firmware);
939 g_free(ms->device_memory);
940 g_free(ms->nvdimms_state);
941 g_free(ms->numa_state);
944 bool machine_usb(MachineState *machine)
946 return machine->usb;
949 int machine_phandle_start(MachineState *machine)
951 return machine->phandle_start;
954 bool machine_dump_guest_core(MachineState *machine)
956 return machine->dump_guest_core;
959 bool machine_mem_merge(MachineState *machine)
961 return machine->mem_merge;
964 static char *cpu_slot_to_string(const CPUArchId *cpu)
966 GString *s = g_string_new(NULL);
967 if (cpu->props.has_socket_id) {
968 g_string_append_printf(s, "socket-id: %"PRId64, cpu->props.socket_id);
970 if (cpu->props.has_die_id) {
971 g_string_append_printf(s, "die-id: %"PRId64, cpu->props.die_id);
973 if (cpu->props.has_core_id) {
974 if (s->len) {
975 g_string_append_printf(s, ", ");
977 g_string_append_printf(s, "core-id: %"PRId64, cpu->props.core_id);
979 if (cpu->props.has_thread_id) {
980 if (s->len) {
981 g_string_append_printf(s, ", ");
983 g_string_append_printf(s, "thread-id: %"PRId64, cpu->props.thread_id);
985 return g_string_free(s, false);
988 static void numa_validate_initiator(NumaState *numa_state)
990 int i;
991 NodeInfo *numa_info = numa_state->nodes;
993 for (i = 0; i < numa_state->num_nodes; i++) {
994 if (numa_info[i].initiator == MAX_NODES) {
995 error_report("The initiator of NUMA node %d is missing, use "
996 "'-numa node,initiator' option to declare it", i);
997 exit(1);
1000 if (!numa_info[numa_info[i].initiator].present) {
1001 error_report("NUMA node %" PRIu16 " is missing, use "
1002 "'-numa node' option to declare it first",
1003 numa_info[i].initiator);
1004 exit(1);
1007 if (!numa_info[numa_info[i].initiator].has_cpu) {
1008 error_report("The initiator of NUMA node %d is invalid", i);
1009 exit(1);
1014 static void machine_numa_finish_cpu_init(MachineState *machine)
1016 int i;
1017 bool default_mapping;
1018 GString *s = g_string_new(NULL);
1019 MachineClass *mc = MACHINE_GET_CLASS(machine);
1020 const CPUArchIdList *possible_cpus = mc->possible_cpu_arch_ids(machine);
1022 assert(machine->numa_state->num_nodes);
1023 for (i = 0; i < possible_cpus->len; i++) {
1024 if (possible_cpus->cpus[i].props.has_node_id) {
1025 break;
1028 default_mapping = (i == possible_cpus->len);
1030 for (i = 0; i < possible_cpus->len; i++) {
1031 const CPUArchId *cpu_slot = &possible_cpus->cpus[i];
1033 if (!cpu_slot->props.has_node_id) {
1034 /* fetch default mapping from board and enable it */
1035 CpuInstanceProperties props = cpu_slot->props;
1037 props.node_id = mc->get_default_cpu_node_id(machine, i);
1038 if (!default_mapping) {
1039 /* record slots with not set mapping,
1040 * TODO: make it hard error in future */
1041 char *cpu_str = cpu_slot_to_string(cpu_slot);
1042 g_string_append_printf(s, "%sCPU %d [%s]",
1043 s->len ? ", " : "", i, cpu_str);
1044 g_free(cpu_str);
1046 /* non mapped cpus used to fallback to node 0 */
1047 props.node_id = 0;
1050 props.has_node_id = true;
1051 machine_set_cpu_numa_node(machine, &props, &error_fatal);
1055 if (machine->numa_state->hmat_enabled) {
1056 numa_validate_initiator(machine->numa_state);
1059 if (s->len && !qtest_enabled()) {
1060 warn_report("CPU(s) not present in any NUMA nodes: %s",
1061 s->str);
1062 warn_report("All CPU(s) up to maxcpus should be described "
1063 "in NUMA config, ability to start up with partial NUMA "
1064 "mappings is obsoleted and will be removed in future");
1066 g_string_free(s, true);
1069 MemoryRegion *machine_consume_memdev(MachineState *machine,
1070 HostMemoryBackend *backend)
1072 MemoryRegion *ret = host_memory_backend_get_memory(backend);
1074 if (memory_region_is_mapped(ret)) {
1075 error_report("memory backend %s can't be used multiple times.",
1076 object_get_canonical_path_component(OBJECT(backend)));
1077 exit(EXIT_FAILURE);
1079 host_memory_backend_set_mapped(backend, true);
1080 vmstate_register_ram_global(ret);
1081 return ret;
1084 bool machine_smp_parse(MachineState *ms, QemuOpts *opts, Error **errp)
1086 MachineClass *mc = MACHINE_GET_CLASS(ms);
1088 mc->smp_parse(ms, opts);
1090 /* sanity-check smp_cpus and max_cpus against mc */
1091 if (ms->smp.cpus < mc->min_cpus) {
1092 error_setg(errp, "Invalid SMP CPUs %d. The min CPUs "
1093 "supported by machine '%s' is %d",
1094 ms->smp.cpus,
1095 mc->name, mc->min_cpus);
1096 return false;
1097 } else if (ms->smp.max_cpus > mc->max_cpus) {
1098 error_setg(errp, "Invalid SMP CPUs %d. The max CPUs "
1099 "supported by machine '%s' is %d",
1100 current_machine->smp.max_cpus,
1101 mc->name, mc->max_cpus);
1102 return false;
1104 return true;
1107 void machine_run_board_init(MachineState *machine)
1109 MachineClass *machine_class = MACHINE_GET_CLASS(machine);
1110 ObjectClass *oc = object_class_by_name(machine->cpu_type);
1111 CPUClass *cc;
1113 /* This checkpoint is required by replay to separate prior clock
1114 reading from the other reads, because timer polling functions query
1115 clock values from the log. */
1116 replay_checkpoint(CHECKPOINT_INIT);
1118 if (machine->ram_memdev_id) {
1119 Object *o;
1120 o = object_resolve_path_type(machine->ram_memdev_id,
1121 TYPE_MEMORY_BACKEND, NULL);
1122 machine->ram = machine_consume_memdev(machine, MEMORY_BACKEND(o));
1125 if (machine->numa_state) {
1126 numa_complete_configuration(machine);
1127 if (machine->numa_state->num_nodes) {
1128 machine_numa_finish_cpu_init(machine);
1132 /* If the machine supports the valid_cpu_types check and the user
1133 * specified a CPU with -cpu check here that the user CPU is supported.
1135 if (machine_class->valid_cpu_types && machine->cpu_type) {
1136 int i;
1138 for (i = 0; machine_class->valid_cpu_types[i]; i++) {
1139 if (object_class_dynamic_cast(oc,
1140 machine_class->valid_cpu_types[i])) {
1141 /* The user specificed CPU is in the valid field, we are
1142 * good to go.
1144 break;
1148 if (!machine_class->valid_cpu_types[i]) {
1149 /* The user specified CPU is not valid */
1150 error_report("Invalid CPU type: %s", machine->cpu_type);
1151 error_printf("The valid types are: %s",
1152 machine_class->valid_cpu_types[0]);
1153 for (i = 1; machine_class->valid_cpu_types[i]; i++) {
1154 error_printf(", %s", machine_class->valid_cpu_types[i]);
1156 error_printf("\n");
1158 exit(1);
1162 /* Check if CPU type is deprecated and warn if so */
1163 cc = CPU_CLASS(oc);
1164 if (cc && cc->deprecation_note) {
1165 warn_report("CPU model %s is deprecated -- %s", machine->cpu_type,
1166 cc->deprecation_note);
1169 machine_class->init(machine);
1172 static NotifierList machine_init_done_notifiers =
1173 NOTIFIER_LIST_INITIALIZER(machine_init_done_notifiers);
1175 bool machine_init_done;
1177 void qemu_add_machine_init_done_notifier(Notifier *notify)
1179 notifier_list_add(&machine_init_done_notifiers, notify);
1180 if (machine_init_done) {
1181 notify->notify(notify, NULL);
1185 void qemu_remove_machine_init_done_notifier(Notifier *notify)
1187 notifier_remove(notify);
1190 void qemu_run_machine_init_done_notifiers(void)
1192 machine_init_done = true;
1193 notifier_list_notify(&machine_init_done_notifiers, NULL);
1196 static const TypeInfo machine_info = {
1197 .name = TYPE_MACHINE,
1198 .parent = TYPE_OBJECT,
1199 .abstract = true,
1200 .class_size = sizeof(MachineClass),
1201 .class_init = machine_class_init,
1202 .class_base_init = machine_class_base_init,
1203 .instance_size = sizeof(MachineState),
1204 .instance_init = machine_initfn,
1205 .instance_finalize = machine_finalize,
1208 static void machine_register_types(void)
1210 type_register_static(&machine_info);
1213 type_init(machine_register_types)