2 * Virtio Balloon Device
4 * Copyright IBM, Corp. 2008
5 * Copyright (C) 2011 Red Hat, Inc.
6 * Copyright (C) 2011 Amit Shah <amit.shah@redhat.com>
9 * Anthony Liguori <aliguori@us.ibm.com>
11 * This work is licensed under the terms of the GNU GPL, version 2. See
12 * the COPYING file in the top-level directory.
16 #include "qemu/osdep.h"
18 #include "qemu/module.h"
19 #include "qemu/timer.h"
20 #include "qemu/madvise.h"
21 #include "hw/virtio/virtio.h"
22 #include "hw/mem/pc-dimm.h"
23 #include "hw/qdev-properties.h"
24 #include "hw/boards.h"
25 #include "sysemu/balloon.h"
26 #include "hw/virtio/virtio-balloon.h"
27 #include "exec/address-spaces.h"
28 #include "qapi/error.h"
29 #include "qapi/qapi-events-machine.h"
30 #include "qapi/visitor.h"
32 #include "qemu/error-report.h"
33 #include "migration/misc.h"
34 #include "migration/migration.h"
36 #include "hw/virtio/virtio-bus.h"
37 #include "hw/virtio/virtio-access.h"
39 #define BALLOON_PAGE_SIZE (1 << VIRTIO_BALLOON_PFN_SHIFT)
41 typedef struct PartiallyBalloonedPage
{
43 unsigned long *bitmap
;
44 } PartiallyBalloonedPage
;
46 static void virtio_balloon_pbp_free(PartiallyBalloonedPage
*pbp
)
55 static void virtio_balloon_pbp_alloc(PartiallyBalloonedPage
*pbp
,
59 pbp
->base_gpa
= base_gpa
;
60 pbp
->bitmap
= bitmap_new(subpages
);
63 static bool virtio_balloon_pbp_matches(PartiallyBalloonedPage
*pbp
,
66 return pbp
->base_gpa
== base_gpa
;
69 static bool virtio_balloon_inhibited(void)
72 * Postcopy cannot deal with concurrent discards,
73 * so it's special, as well as background snapshots.
75 return ram_block_discard_is_disabled() || migration_in_incoming_postcopy() ||
76 migration_in_bg_snapshot();
79 static void balloon_inflate_page(VirtIOBalloon
*balloon
,
80 MemoryRegion
*mr
, hwaddr mr_offset
,
81 PartiallyBalloonedPage
*pbp
)
83 void *addr
= memory_region_get_ram_ptr(mr
) + mr_offset
;
84 ram_addr_t rb_offset
, rb_aligned_offset
, base_gpa
;
89 /* XXX is there a better way to get to the RAMBlock than via a
91 rb
= qemu_ram_block_from_host(addr
, false, &rb_offset
);
92 rb_page_size
= qemu_ram_pagesize(rb
);
94 if (rb_page_size
== BALLOON_PAGE_SIZE
) {
97 ram_block_discard_range(rb
, rb_offset
, rb_page_size
);
98 /* We ignore errors from ram_block_discard_range(), because it
99 * has already reported them, and failing to discard a balloon
100 * page is not fatal */
106 * We've put a piece of a larger host page into the balloon - we
107 * need to keep track until we have a whole host page to
111 "Balloon used with backing page size > 4kiB, this may not be reliable");
113 rb_aligned_offset
= QEMU_ALIGN_DOWN(rb_offset
, rb_page_size
);
114 subpages
= rb_page_size
/ BALLOON_PAGE_SIZE
;
115 base_gpa
= memory_region_get_ram_addr(mr
) + mr_offset
-
116 (rb_offset
- rb_aligned_offset
);
118 if (pbp
->bitmap
&& !virtio_balloon_pbp_matches(pbp
, base_gpa
)) {
119 /* We've partially ballooned part of a host page, but now
120 * we're trying to balloon part of a different one. Too hard,
121 * give up on the old partial page */
122 virtio_balloon_pbp_free(pbp
);
126 virtio_balloon_pbp_alloc(pbp
, base_gpa
, subpages
);
129 set_bit((rb_offset
- rb_aligned_offset
) / BALLOON_PAGE_SIZE
,
132 if (bitmap_full(pbp
->bitmap
, subpages
)) {
133 /* We've accumulated a full host page, we can actually discard
136 ram_block_discard_range(rb
, rb_aligned_offset
, rb_page_size
);
137 /* We ignore errors from ram_block_discard_range(), because it
138 * has already reported them, and failing to discard a balloon
139 * page is not fatal */
140 virtio_balloon_pbp_free(pbp
);
144 static void balloon_deflate_page(VirtIOBalloon
*balloon
,
145 MemoryRegion
*mr
, hwaddr mr_offset
)
147 void *addr
= memory_region_get_ram_ptr(mr
) + mr_offset
;
148 ram_addr_t rb_offset
;
154 /* XXX is there a better way to get to the RAMBlock than via a
156 rb
= qemu_ram_block_from_host(addr
, false, &rb_offset
);
157 rb_page_size
= qemu_ram_pagesize(rb
);
159 host_addr
= (void *)((uintptr_t)addr
& ~(rb_page_size
- 1));
161 /* When a page is deflated, we hint the whole host page it lives
162 * on, since we can't do anything smaller */
163 ret
= qemu_madvise(host_addr
, rb_page_size
, QEMU_MADV_WILLNEED
);
165 warn_report("Couldn't MADV_WILLNEED on balloon deflate: %s",
167 /* Otherwise ignore, failing to page hint shouldn't be fatal */
171 static const char *balloon_stat_names
[] = {
172 [VIRTIO_BALLOON_S_SWAP_IN
] = "stat-swap-in",
173 [VIRTIO_BALLOON_S_SWAP_OUT
] = "stat-swap-out",
174 [VIRTIO_BALLOON_S_MAJFLT
] = "stat-major-faults",
175 [VIRTIO_BALLOON_S_MINFLT
] = "stat-minor-faults",
176 [VIRTIO_BALLOON_S_MEMFREE
] = "stat-free-memory",
177 [VIRTIO_BALLOON_S_MEMTOT
] = "stat-total-memory",
178 [VIRTIO_BALLOON_S_AVAIL
] = "stat-available-memory",
179 [VIRTIO_BALLOON_S_CACHES
] = "stat-disk-caches",
180 [VIRTIO_BALLOON_S_HTLB_PGALLOC
] = "stat-htlb-pgalloc",
181 [VIRTIO_BALLOON_S_HTLB_PGFAIL
] = "stat-htlb-pgfail",
182 [VIRTIO_BALLOON_S_NR
] = NULL
186 * reset_stats - Mark all items in the stats array as unset
188 * This function needs to be called at device initialization and before
189 * updating to a set of newly-generated stats. This will ensure that no
190 * stale values stick around in case the guest reports a subset of the supported
193 static inline void reset_stats(VirtIOBalloon
*dev
)
196 for (i
= 0; i
< VIRTIO_BALLOON_S_NR
; dev
->stats
[i
++] = -1);
199 static bool balloon_stats_supported(const VirtIOBalloon
*s
)
201 VirtIODevice
*vdev
= VIRTIO_DEVICE(s
);
202 return virtio_vdev_has_feature(vdev
, VIRTIO_BALLOON_F_STATS_VQ
);
205 static bool balloon_stats_enabled(const VirtIOBalloon
*s
)
207 return s
->stats_poll_interval
> 0;
210 static void balloon_stats_destroy_timer(VirtIOBalloon
*s
)
212 if (balloon_stats_enabled(s
)) {
213 timer_free(s
->stats_timer
);
214 s
->stats_timer
= NULL
;
215 s
->stats_poll_interval
= 0;
219 static void balloon_stats_change_timer(VirtIOBalloon
*s
, int64_t secs
)
221 timer_mod(s
->stats_timer
, qemu_clock_get_ms(QEMU_CLOCK_VIRTUAL
) + secs
* 1000);
224 static void balloon_stats_poll_cb(void *opaque
)
226 VirtIOBalloon
*s
= opaque
;
227 VirtIODevice
*vdev
= VIRTIO_DEVICE(s
);
229 if (s
->stats_vq_elem
== NULL
|| !balloon_stats_supported(s
)) {
231 balloon_stats_change_timer(s
, s
->stats_poll_interval
);
235 virtqueue_push(s
->svq
, s
->stats_vq_elem
, 0);
236 virtio_notify(vdev
, s
->svq
);
237 g_free(s
->stats_vq_elem
);
238 s
->stats_vq_elem
= NULL
;
241 static void balloon_stats_get_all(Object
*obj
, Visitor
*v
, const char *name
,
242 void *opaque
, Error
**errp
)
245 VirtIOBalloon
*s
= VIRTIO_BALLOON(obj
);
248 if (!visit_start_struct(v
, name
, NULL
, 0, &err
)) {
251 if (!visit_type_int(v
, "last-update", &s
->stats_last_update
, &err
)) {
255 if (!visit_start_struct(v
, "stats", NULL
, 0, &err
)) {
258 for (i
= 0; i
< VIRTIO_BALLOON_S_NR
; i
++) {
259 if (!visit_type_uint64(v
, balloon_stat_names
[i
], &s
->stats
[i
], &err
)) {
263 visit_check_struct(v
, &err
);
265 visit_end_struct(v
, NULL
);
268 visit_check_struct(v
, &err
);
271 visit_end_struct(v
, NULL
);
273 error_propagate(errp
, err
);
276 static void balloon_stats_get_poll_interval(Object
*obj
, Visitor
*v
,
277 const char *name
, void *opaque
,
280 VirtIOBalloon
*s
= VIRTIO_BALLOON(obj
);
281 visit_type_int(v
, name
, &s
->stats_poll_interval
, errp
);
284 static void balloon_stats_set_poll_interval(Object
*obj
, Visitor
*v
,
285 const char *name
, void *opaque
,
288 VirtIOBalloon
*s
= VIRTIO_BALLOON(obj
);
291 if (!visit_type_int(v
, name
, &value
, errp
)) {
296 error_setg(errp
, "timer value must be greater than zero");
300 if (value
> UINT32_MAX
) {
301 error_setg(errp
, "timer value is too big");
305 if (value
== s
->stats_poll_interval
) {
310 /* timer=0 disables the timer */
311 balloon_stats_destroy_timer(s
);
315 if (balloon_stats_enabled(s
)) {
316 /* timer interval change */
317 s
->stats_poll_interval
= value
;
318 balloon_stats_change_timer(s
, value
);
322 /* create a new timer */
323 g_assert(s
->stats_timer
== NULL
);
324 s
->stats_timer
= timer_new_ms(QEMU_CLOCK_VIRTUAL
, balloon_stats_poll_cb
, s
);
325 s
->stats_poll_interval
= value
;
326 balloon_stats_change_timer(s
, 0);
329 static void virtio_balloon_handle_report(VirtIODevice
*vdev
, VirtQueue
*vq
)
331 VirtIOBalloon
*dev
= VIRTIO_BALLOON(vdev
);
332 VirtQueueElement
*elem
;
334 while ((elem
= virtqueue_pop(vq
, sizeof(VirtQueueElement
)))) {
338 * When we discard the page it has the effect of removing the page
339 * from the hypervisor itself and causing it to be zeroed when it
340 * is returned to us. So we must not discard the page if it is
341 * accessible by another device or process, or if the guest is
342 * expecting it to retain a non-zero value.
344 if (virtio_balloon_inhibited() || dev
->poison_val
) {
348 for (i
= 0; i
< elem
->in_num
; i
++) {
349 void *addr
= elem
->in_sg
[i
].iov_base
;
350 size_t size
= elem
->in_sg
[i
].iov_len
;
351 ram_addr_t ram_offset
;
355 * There is no need to check the memory section to see if
356 * it is ram/readonly/romd like there is for handle_output
357 * below. If the region is not meant to be written to then
358 * address_space_map will have allocated a bounce buffer
359 * and it will be freed in address_space_unmap and trigger
360 * and unassigned_mem_write before failing to copy over the
361 * buffer. If more than one bad descriptor is provided it
362 * will return NULL after the first bounce buffer and fail
363 * to map any resources.
365 rb
= qemu_ram_block_from_host(addr
, false, &ram_offset
);
367 trace_virtio_balloon_bad_addr(elem
->in_addr
[i
]);
372 * For now we will simply ignore unaligned memory regions, or
373 * regions that overrun the end of the RAMBlock.
375 if (!QEMU_IS_ALIGNED(ram_offset
| size
, qemu_ram_pagesize(rb
)) ||
376 (ram_offset
+ size
) > qemu_ram_get_used_length(rb
)) {
380 ram_block_discard_range(rb
, ram_offset
, size
);
384 virtqueue_push(vq
, elem
, 0);
385 virtio_notify(vdev
, vq
);
390 static void virtio_balloon_handle_output(VirtIODevice
*vdev
, VirtQueue
*vq
)
392 VirtIOBalloon
*s
= VIRTIO_BALLOON(vdev
);
393 VirtQueueElement
*elem
;
394 MemoryRegionSection section
;
397 PartiallyBalloonedPage pbp
= {};
401 elem
= virtqueue_pop(vq
, sizeof(VirtQueueElement
));
406 while (iov_to_buf(elem
->out_sg
, elem
->out_num
, offset
, &pfn
, 4) == 4) {
407 unsigned int p
= virtio_ldl_p(vdev
, &pfn
);
410 pa
= (hwaddr
) p
<< VIRTIO_BALLOON_PFN_SHIFT
;
413 section
= memory_region_find(get_system_memory(), pa
,
416 trace_virtio_balloon_bad_addr(pa
);
419 if (!memory_region_is_ram(section
.mr
) ||
420 memory_region_is_rom(section
.mr
) ||
421 memory_region_is_romd(section
.mr
)) {
422 trace_virtio_balloon_bad_addr(pa
);
423 memory_region_unref(section
.mr
);
427 trace_virtio_balloon_handle_output(memory_region_name(section
.mr
),
429 if (!virtio_balloon_inhibited()) {
431 balloon_inflate_page(s
, section
.mr
,
432 section
.offset_within_region
, &pbp
);
433 } else if (vq
== s
->dvq
) {
434 balloon_deflate_page(s
, section
.mr
, section
.offset_within_region
);
436 g_assert_not_reached();
439 memory_region_unref(section
.mr
);
442 virtqueue_push(vq
, elem
, 0);
443 virtio_notify(vdev
, vq
);
445 virtio_balloon_pbp_free(&pbp
);
449 static void virtio_balloon_receive_stats(VirtIODevice
*vdev
, VirtQueue
*vq
)
451 VirtIOBalloon
*s
= VIRTIO_BALLOON(vdev
);
452 VirtQueueElement
*elem
;
453 VirtIOBalloonStat stat
;
456 elem
= virtqueue_pop(vq
, sizeof(VirtQueueElement
));
461 if (s
->stats_vq_elem
!= NULL
) {
462 /* This should never happen if the driver follows the spec. */
463 virtqueue_push(vq
, s
->stats_vq_elem
, 0);
464 virtio_notify(vdev
, vq
);
465 g_free(s
->stats_vq_elem
);
468 s
->stats_vq_elem
= elem
;
470 /* Initialize the stats to get rid of any stale values. This is only
471 * needed to handle the case where a guest supports fewer stats than it
472 * used to (ie. it has booted into an old kernel).
476 while (iov_to_buf(elem
->out_sg
, elem
->out_num
, offset
, &stat
, sizeof(stat
))
478 uint16_t tag
= virtio_tswap16(vdev
, stat
.tag
);
479 uint64_t val
= virtio_tswap64(vdev
, stat
.val
);
481 offset
+= sizeof(stat
);
482 if (tag
< VIRTIO_BALLOON_S_NR
)
485 s
->stats_vq_offset
= offset
;
486 s
->stats_last_update
= g_get_real_time() / G_USEC_PER_SEC
;
489 if (balloon_stats_enabled(s
)) {
490 balloon_stats_change_timer(s
, s
->stats_poll_interval
);
494 static void virtio_balloon_handle_free_page_vq(VirtIODevice
*vdev
,
497 VirtIOBalloon
*s
= VIRTIO_BALLOON(vdev
);
498 qemu_bh_schedule(s
->free_page_bh
);
501 static bool get_free_page_hints(VirtIOBalloon
*dev
)
503 VirtQueueElement
*elem
;
504 VirtIODevice
*vdev
= VIRTIO_DEVICE(dev
);
505 VirtQueue
*vq
= dev
->free_page_vq
;
509 while (dev
->block_iothread
) {
510 qemu_cond_wait(&dev
->free_page_cond
, &dev
->free_page_lock
);
513 elem
= virtqueue_pop(vq
, sizeof(VirtQueueElement
));
520 size_t size
= iov_to_buf(elem
->out_sg
, elem
->out_num
, 0,
523 virtio_tswap32s(vdev
, &id
);
524 if (unlikely(size
!= sizeof(id
))) {
525 virtio_error(vdev
, "received an incorrect cmd id");
529 if (dev
->free_page_hint_status
== FREE_PAGE_HINT_S_REQUESTED
&&
530 id
== dev
->free_page_hint_cmd_id
) {
531 dev
->free_page_hint_status
= FREE_PAGE_HINT_S_START
;
532 } else if (dev
->free_page_hint_status
== FREE_PAGE_HINT_S_START
) {
534 * Stop the optimization only when it has started. This
535 * avoids a stale stop sign for the previous command.
537 dev
->free_page_hint_status
= FREE_PAGE_HINT_S_STOP
;
541 if (elem
->in_num
&& dev
->free_page_hint_status
== FREE_PAGE_HINT_S_START
) {
542 for (i
= 0; i
< elem
->in_num
; i
++) {
543 qemu_guest_free_page_hint(elem
->in_sg
[i
].iov_base
,
544 elem
->in_sg
[i
].iov_len
);
549 virtqueue_push(vq
, elem
, 0);
554 static void virtio_ballloon_get_free_page_hints(void *opaque
)
556 VirtIOBalloon
*dev
= opaque
;
557 VirtIODevice
*vdev
= VIRTIO_DEVICE(dev
);
558 VirtQueue
*vq
= dev
->free_page_vq
;
559 bool continue_to_get_hints
;
562 qemu_mutex_lock(&dev
->free_page_lock
);
563 virtio_queue_set_notification(vq
, 0);
564 continue_to_get_hints
= get_free_page_hints(dev
);
565 qemu_mutex_unlock(&dev
->free_page_lock
);
566 virtio_notify(vdev
, vq
);
568 * Start to poll the vq once the hinting started. Otherwise, continue
569 * only when there are entries on the vq, which need to be given back.
571 } while (continue_to_get_hints
||
572 dev
->free_page_hint_status
== FREE_PAGE_HINT_S_START
);
573 virtio_queue_set_notification(vq
, 1);
576 static bool virtio_balloon_free_page_support(void *opaque
)
578 VirtIOBalloon
*s
= opaque
;
579 VirtIODevice
*vdev
= VIRTIO_DEVICE(s
);
581 return virtio_vdev_has_feature(vdev
, VIRTIO_BALLOON_F_FREE_PAGE_HINT
);
584 static void virtio_balloon_free_page_start(VirtIOBalloon
*s
)
586 VirtIODevice
*vdev
= VIRTIO_DEVICE(s
);
588 qemu_mutex_lock(&s
->free_page_lock
);
590 if (s
->free_page_hint_cmd_id
== UINT_MAX
) {
591 s
->free_page_hint_cmd_id
= VIRTIO_BALLOON_FREE_PAGE_HINT_CMD_ID_MIN
;
593 s
->free_page_hint_cmd_id
++;
596 s
->free_page_hint_status
= FREE_PAGE_HINT_S_REQUESTED
;
597 qemu_mutex_unlock(&s
->free_page_lock
);
599 virtio_notify_config(vdev
);
602 static void virtio_balloon_free_page_stop(VirtIOBalloon
*s
)
604 VirtIODevice
*vdev
= VIRTIO_DEVICE(s
);
606 if (s
->free_page_hint_status
!= FREE_PAGE_HINT_S_STOP
) {
608 * The lock also guarantees us that the
609 * virtio_ballloon_get_free_page_hints exits after the
610 * free_page_hint_status is set to S_STOP.
612 qemu_mutex_lock(&s
->free_page_lock
);
614 * The guest isn't done hinting, so send a notification
615 * to the guest to actively stop the hinting.
617 s
->free_page_hint_status
= FREE_PAGE_HINT_S_STOP
;
618 qemu_mutex_unlock(&s
->free_page_lock
);
619 virtio_notify_config(vdev
);
623 static void virtio_balloon_free_page_done(VirtIOBalloon
*s
)
625 VirtIODevice
*vdev
= VIRTIO_DEVICE(s
);
627 if (s
->free_page_hint_status
!= FREE_PAGE_HINT_S_DONE
) {
628 /* See virtio_balloon_free_page_stop() */
629 qemu_mutex_lock(&s
->free_page_lock
);
630 s
->free_page_hint_status
= FREE_PAGE_HINT_S_DONE
;
631 qemu_mutex_unlock(&s
->free_page_lock
);
632 virtio_notify_config(vdev
);
637 virtio_balloon_free_page_hint_notify(NotifierWithReturn
*n
, void *data
)
639 VirtIOBalloon
*dev
= container_of(n
, VirtIOBalloon
, free_page_hint_notify
);
640 VirtIODevice
*vdev
= VIRTIO_DEVICE(dev
);
641 PrecopyNotifyData
*pnd
= data
;
643 if (!virtio_balloon_free_page_support(dev
)) {
645 * This is an optimization provided to migration, so just return 0 to
646 * have the normal migration process not affected when this feature is
653 * Pages hinted via qemu_guest_free_page_hint() are cleared from the dirty
654 * bitmap and will not get migrated, especially also not when the postcopy
655 * destination starts using them and requests migration from the source; the
656 * faulting thread will stall until postcopy migration finishes and
657 * all threads are woken up. Let's not start free page hinting if postcopy
660 if (migrate_postcopy_ram()) {
664 switch (pnd
->reason
) {
665 case PRECOPY_NOTIFY_BEFORE_BITMAP_SYNC
:
666 virtio_balloon_free_page_stop(dev
);
668 case PRECOPY_NOTIFY_AFTER_BITMAP_SYNC
:
669 if (vdev
->vm_running
) {
670 virtio_balloon_free_page_start(dev
);
674 * Set S_DONE before migrating the vmstate, so the guest will reuse
675 * all hinted pages once running on the destination. Fall through.
677 case PRECOPY_NOTIFY_CLEANUP
:
679 * Especially, if something goes wrong during precopy or if migration
680 * is canceled, we have to properly communicate S_DONE to the VM.
682 virtio_balloon_free_page_done(dev
);
684 case PRECOPY_NOTIFY_SETUP
:
685 case PRECOPY_NOTIFY_COMPLETE
:
688 virtio_error(vdev
, "%s: %d reason unknown", __func__
, pnd
->reason
);
694 static size_t virtio_balloon_config_size(VirtIOBalloon
*s
)
696 uint64_t features
= s
->host_features
;
698 if (s
->qemu_4_0_config_size
) {
699 return sizeof(struct virtio_balloon_config
);
701 if (virtio_has_feature(features
, VIRTIO_BALLOON_F_PAGE_POISON
)) {
702 return sizeof(struct virtio_balloon_config
);
704 if (virtio_has_feature(features
, VIRTIO_BALLOON_F_FREE_PAGE_HINT
)) {
705 return offsetof(struct virtio_balloon_config
, poison_val
);
707 return offsetof(struct virtio_balloon_config
, free_page_hint_cmd_id
);
710 static void virtio_balloon_get_config(VirtIODevice
*vdev
, uint8_t *config_data
)
712 VirtIOBalloon
*dev
= VIRTIO_BALLOON(vdev
);
713 struct virtio_balloon_config config
= {};
715 config
.num_pages
= cpu_to_le32(dev
->num_pages
);
716 config
.actual
= cpu_to_le32(dev
->actual
);
717 config
.poison_val
= cpu_to_le32(dev
->poison_val
);
719 if (dev
->free_page_hint_status
== FREE_PAGE_HINT_S_REQUESTED
) {
720 config
.free_page_hint_cmd_id
=
721 cpu_to_le32(dev
->free_page_hint_cmd_id
);
722 } else if (dev
->free_page_hint_status
== FREE_PAGE_HINT_S_STOP
) {
723 config
.free_page_hint_cmd_id
=
724 cpu_to_le32(VIRTIO_BALLOON_CMD_ID_STOP
);
725 } else if (dev
->free_page_hint_status
== FREE_PAGE_HINT_S_DONE
) {
726 config
.free_page_hint_cmd_id
=
727 cpu_to_le32(VIRTIO_BALLOON_CMD_ID_DONE
);
730 trace_virtio_balloon_get_config(config
.num_pages
, config
.actual
);
731 memcpy(config_data
, &config
, virtio_balloon_config_size(dev
));
734 static int build_dimm_list(Object
*obj
, void *opaque
)
736 GSList
**list
= opaque
;
738 if (object_dynamic_cast(obj
, TYPE_PC_DIMM
)) {
739 DeviceState
*dev
= DEVICE(obj
);
740 if (dev
->realized
) { /* only realized DIMMs matter */
741 *list
= g_slist_prepend(*list
, dev
);
745 object_child_foreach(obj
, build_dimm_list
, opaque
);
749 static ram_addr_t
get_current_ram_size(void)
751 GSList
*list
= NULL
, *item
;
752 ram_addr_t size
= current_machine
->ram_size
;
754 build_dimm_list(qdev_get_machine(), &list
);
755 for (item
= list
; item
; item
= g_slist_next(item
)) {
756 Object
*obj
= OBJECT(item
->data
);
757 if (!strcmp(object_get_typename(obj
), TYPE_PC_DIMM
)) {
758 size
+= object_property_get_int(obj
, PC_DIMM_SIZE_PROP
,
767 static bool virtio_balloon_page_poison_support(void *opaque
)
769 VirtIOBalloon
*s
= opaque
;
770 VirtIODevice
*vdev
= VIRTIO_DEVICE(s
);
772 return virtio_vdev_has_feature(vdev
, VIRTIO_BALLOON_F_PAGE_POISON
);
775 static void virtio_balloon_set_config(VirtIODevice
*vdev
,
776 const uint8_t *config_data
)
778 VirtIOBalloon
*dev
= VIRTIO_BALLOON(vdev
);
779 struct virtio_balloon_config config
;
780 uint32_t oldactual
= dev
->actual
;
781 ram_addr_t vm_ram_size
= get_current_ram_size();
783 memcpy(&config
, config_data
, virtio_balloon_config_size(dev
));
784 dev
->actual
= le32_to_cpu(config
.actual
);
785 if (dev
->actual
!= oldactual
) {
786 qapi_event_send_balloon_change(vm_ram_size
-
787 ((ram_addr_t
) dev
->actual
<< VIRTIO_BALLOON_PFN_SHIFT
));
790 if (virtio_balloon_page_poison_support(dev
)) {
791 dev
->poison_val
= le32_to_cpu(config
.poison_val
);
793 trace_virtio_balloon_set_config(dev
->actual
, oldactual
);
796 static uint64_t virtio_balloon_get_features(VirtIODevice
*vdev
, uint64_t f
,
799 VirtIOBalloon
*dev
= VIRTIO_BALLOON(vdev
);
800 f
|= dev
->host_features
;
801 virtio_add_feature(&f
, VIRTIO_BALLOON_F_STATS_VQ
);
806 static void virtio_balloon_stat(void *opaque
, BalloonInfo
*info
)
808 VirtIOBalloon
*dev
= opaque
;
809 info
->actual
= get_current_ram_size() - ((uint64_t) dev
->actual
<<
810 VIRTIO_BALLOON_PFN_SHIFT
);
813 static void virtio_balloon_to_target(void *opaque
, ram_addr_t target
)
815 VirtIOBalloon
*dev
= VIRTIO_BALLOON(opaque
);
816 VirtIODevice
*vdev
= VIRTIO_DEVICE(dev
);
817 ram_addr_t vm_ram_size
= get_current_ram_size();
819 if (target
> vm_ram_size
) {
820 target
= vm_ram_size
;
823 dev
->num_pages
= (vm_ram_size
- target
) >> VIRTIO_BALLOON_PFN_SHIFT
;
824 virtio_notify_config(vdev
);
826 trace_virtio_balloon_to_target(target
, dev
->num_pages
);
829 static int virtio_balloon_post_load_device(void *opaque
, int version_id
)
831 VirtIOBalloon
*s
= VIRTIO_BALLOON(opaque
);
833 if (balloon_stats_enabled(s
)) {
834 balloon_stats_change_timer(s
, s
->stats_poll_interval
);
839 static const VMStateDescription vmstate_virtio_balloon_free_page_hint
= {
840 .name
= "virtio-balloon-device/free-page-report",
842 .minimum_version_id
= 1,
843 .needed
= virtio_balloon_free_page_support
,
844 .fields
= (VMStateField
[]) {
845 VMSTATE_UINT32(free_page_hint_cmd_id
, VirtIOBalloon
),
846 VMSTATE_UINT32(free_page_hint_status
, VirtIOBalloon
),
847 VMSTATE_END_OF_LIST()
851 static const VMStateDescription vmstate_virtio_balloon_page_poison
= {
852 .name
= "virtio-balloon-device/page-poison",
854 .minimum_version_id
= 1,
855 .needed
= virtio_balloon_page_poison_support
,
856 .fields
= (VMStateField
[]) {
857 VMSTATE_UINT32(poison_val
, VirtIOBalloon
),
858 VMSTATE_END_OF_LIST()
862 static const VMStateDescription vmstate_virtio_balloon_device
= {
863 .name
= "virtio-balloon-device",
865 .minimum_version_id
= 1,
866 .post_load
= virtio_balloon_post_load_device
,
867 .fields
= (VMStateField
[]) {
868 VMSTATE_UINT32(num_pages
, VirtIOBalloon
),
869 VMSTATE_UINT32(actual
, VirtIOBalloon
),
870 VMSTATE_END_OF_LIST()
872 .subsections
= (const VMStateDescription
* []) {
873 &vmstate_virtio_balloon_free_page_hint
,
874 &vmstate_virtio_balloon_page_poison
,
879 static void virtio_balloon_device_realize(DeviceState
*dev
, Error
**errp
)
881 VirtIODevice
*vdev
= VIRTIO_DEVICE(dev
);
882 VirtIOBalloon
*s
= VIRTIO_BALLOON(dev
);
885 virtio_init(vdev
, VIRTIO_ID_BALLOON
, virtio_balloon_config_size(s
));
887 ret
= qemu_add_balloon_handler(virtio_balloon_to_target
,
888 virtio_balloon_stat
, s
);
891 error_setg(errp
, "Only one balloon device is supported");
892 virtio_cleanup(vdev
);
896 if (virtio_has_feature(s
->host_features
, VIRTIO_BALLOON_F_FREE_PAGE_HINT
) &&
898 error_setg(errp
, "'free-page-hint' requires 'iothread' to be set");
899 virtio_cleanup(vdev
);
903 s
->ivq
= virtio_add_queue(vdev
, 128, virtio_balloon_handle_output
);
904 s
->dvq
= virtio_add_queue(vdev
, 128, virtio_balloon_handle_output
);
905 s
->svq
= virtio_add_queue(vdev
, 128, virtio_balloon_receive_stats
);
907 if (virtio_has_feature(s
->host_features
, VIRTIO_BALLOON_F_FREE_PAGE_HINT
)) {
908 s
->free_page_vq
= virtio_add_queue(vdev
, VIRTQUEUE_MAX_SIZE
,
909 virtio_balloon_handle_free_page_vq
);
910 precopy_add_notifier(&s
->free_page_hint_notify
);
912 object_ref(OBJECT(s
->iothread
));
913 s
->free_page_bh
= aio_bh_new(iothread_get_aio_context(s
->iothread
),
914 virtio_ballloon_get_free_page_hints
, s
);
917 if (virtio_has_feature(s
->host_features
, VIRTIO_BALLOON_F_REPORTING
)) {
918 s
->reporting_vq
= virtio_add_queue(vdev
, 32,
919 virtio_balloon_handle_report
);
925 static void virtio_balloon_device_unrealize(DeviceState
*dev
)
927 VirtIODevice
*vdev
= VIRTIO_DEVICE(dev
);
928 VirtIOBalloon
*s
= VIRTIO_BALLOON(dev
);
930 if (s
->free_page_bh
) {
931 qemu_bh_delete(s
->free_page_bh
);
932 object_unref(OBJECT(s
->iothread
));
933 virtio_balloon_free_page_stop(s
);
934 precopy_remove_notifier(&s
->free_page_hint_notify
);
936 balloon_stats_destroy_timer(s
);
937 qemu_remove_balloon_handler(s
);
939 virtio_delete_queue(s
->ivq
);
940 virtio_delete_queue(s
->dvq
);
941 virtio_delete_queue(s
->svq
);
942 if (s
->free_page_vq
) {
943 virtio_delete_queue(s
->free_page_vq
);
945 if (s
->reporting_vq
) {
946 virtio_delete_queue(s
->reporting_vq
);
948 virtio_cleanup(vdev
);
951 static void virtio_balloon_device_reset(VirtIODevice
*vdev
)
953 VirtIOBalloon
*s
= VIRTIO_BALLOON(vdev
);
955 if (virtio_balloon_free_page_support(s
)) {
956 virtio_balloon_free_page_stop(s
);
959 if (s
->stats_vq_elem
!= NULL
) {
960 virtqueue_unpop(s
->svq
, s
->stats_vq_elem
, 0);
961 g_free(s
->stats_vq_elem
);
962 s
->stats_vq_elem
= NULL
;
968 static void virtio_balloon_set_status(VirtIODevice
*vdev
, uint8_t status
)
970 VirtIOBalloon
*s
= VIRTIO_BALLOON(vdev
);
972 if (!s
->stats_vq_elem
&& vdev
->vm_running
&&
973 (status
& VIRTIO_CONFIG_S_DRIVER_OK
) && virtqueue_rewind(s
->svq
, 1)) {
974 /* poll stats queue for the element we have discarded when the VM
976 virtio_balloon_receive_stats(vdev
, s
->svq
);
979 if (virtio_balloon_free_page_support(s
)) {
981 * The VM is woken up and the iothread was blocked, so signal it to
984 if (vdev
->vm_running
&& s
->block_iothread
) {
985 qemu_mutex_lock(&s
->free_page_lock
);
986 s
->block_iothread
= false;
987 qemu_cond_signal(&s
->free_page_cond
);
988 qemu_mutex_unlock(&s
->free_page_lock
);
991 /* The VM is stopped, block the iothread. */
992 if (!vdev
->vm_running
) {
993 qemu_mutex_lock(&s
->free_page_lock
);
994 s
->block_iothread
= true;
995 qemu_mutex_unlock(&s
->free_page_lock
);
1000 static void virtio_balloon_instance_init(Object
*obj
)
1002 VirtIOBalloon
*s
= VIRTIO_BALLOON(obj
);
1004 qemu_mutex_init(&s
->free_page_lock
);
1005 qemu_cond_init(&s
->free_page_cond
);
1006 s
->free_page_hint_cmd_id
= VIRTIO_BALLOON_FREE_PAGE_HINT_CMD_ID_MIN
;
1007 s
->free_page_hint_notify
.notify
= virtio_balloon_free_page_hint_notify
;
1009 object_property_add(obj
, "guest-stats", "guest statistics",
1010 balloon_stats_get_all
, NULL
, NULL
, NULL
);
1012 object_property_add(obj
, "guest-stats-polling-interval", "int",
1013 balloon_stats_get_poll_interval
,
1014 balloon_stats_set_poll_interval
,
1018 static const VMStateDescription vmstate_virtio_balloon
= {
1019 .name
= "virtio-balloon",
1020 .minimum_version_id
= 1,
1022 .fields
= (VMStateField
[]) {
1023 VMSTATE_VIRTIO_DEVICE
,
1024 VMSTATE_END_OF_LIST()
1028 static Property virtio_balloon_properties
[] = {
1029 DEFINE_PROP_BIT("deflate-on-oom", VirtIOBalloon
, host_features
,
1030 VIRTIO_BALLOON_F_DEFLATE_ON_OOM
, false),
1031 DEFINE_PROP_BIT("free-page-hint", VirtIOBalloon
, host_features
,
1032 VIRTIO_BALLOON_F_FREE_PAGE_HINT
, false),
1033 DEFINE_PROP_BIT("page-poison", VirtIOBalloon
, host_features
,
1034 VIRTIO_BALLOON_F_PAGE_POISON
, true),
1035 DEFINE_PROP_BIT("free-page-reporting", VirtIOBalloon
, host_features
,
1036 VIRTIO_BALLOON_F_REPORTING
, false),
1037 /* QEMU 4.0 accidentally changed the config size even when free-page-hint
1038 * is disabled, resulting in QEMU 3.1 migration incompatibility. This
1039 * property retains this quirk for QEMU 4.1 machine types.
1041 DEFINE_PROP_BOOL("qemu-4-0-config-size", VirtIOBalloon
,
1042 qemu_4_0_config_size
, false),
1043 DEFINE_PROP_LINK("iothread", VirtIOBalloon
, iothread
, TYPE_IOTHREAD
,
1045 DEFINE_PROP_END_OF_LIST(),
1048 static void virtio_balloon_class_init(ObjectClass
*klass
, void *data
)
1050 DeviceClass
*dc
= DEVICE_CLASS(klass
);
1051 VirtioDeviceClass
*vdc
= VIRTIO_DEVICE_CLASS(klass
);
1053 device_class_set_props(dc
, virtio_balloon_properties
);
1054 dc
->vmsd
= &vmstate_virtio_balloon
;
1055 set_bit(DEVICE_CATEGORY_MISC
, dc
->categories
);
1056 vdc
->realize
= virtio_balloon_device_realize
;
1057 vdc
->unrealize
= virtio_balloon_device_unrealize
;
1058 vdc
->reset
= virtio_balloon_device_reset
;
1059 vdc
->get_config
= virtio_balloon_get_config
;
1060 vdc
->set_config
= virtio_balloon_set_config
;
1061 vdc
->get_features
= virtio_balloon_get_features
;
1062 vdc
->set_status
= virtio_balloon_set_status
;
1063 vdc
->vmsd
= &vmstate_virtio_balloon_device
;
1066 static const TypeInfo virtio_balloon_info
= {
1067 .name
= TYPE_VIRTIO_BALLOON
,
1068 .parent
= TYPE_VIRTIO_DEVICE
,
1069 .instance_size
= sizeof(VirtIOBalloon
),
1070 .instance_init
= virtio_balloon_instance_init
,
1071 .class_init
= virtio_balloon_class_init
,
1074 static void virtio_register_types(void)
1076 type_register_static(&virtio_balloon_info
);
1079 type_init(virtio_register_types
)