]> git.proxmox.com Git - mirror_qemu.git/blame - hw/virtio/virtio-mem.c
memory,vhost: Allow for marking memory device memory regions unmergeable
[mirror_qemu.git] / hw / virtio / virtio-mem.c
CommitLineData
910b2576
DH
1/*
2 * Virtio MEM device
3 *
4 * Copyright (C) 2020 Red Hat, Inc.
5 *
6 * Authors:
7 * David Hildenbrand <david@redhat.com>
8 *
9 * This work is licensed under the terms of the GNU GPL, version 2.
10 * See the COPYING file in the top-level directory.
11 */
12
13#include "qemu/osdep.h"
910b2576
DH
14#include "qemu/iov.h"
15#include "qemu/cutils.h"
16#include "qemu/error-report.h"
17#include "qemu/units.h"
18#include "sysemu/numa.h"
19#include "sysemu/sysemu.h"
20#include "sysemu/reset.h"
b01fd4b6 21#include "sysemu/runstate.h"
910b2576
DH
22#include "hw/virtio/virtio.h"
23#include "hw/virtio/virtio-bus.h"
910b2576
DH
24#include "hw/virtio/virtio-mem.h"
25#include "qapi/error.h"
26#include "qapi/visitor.h"
27#include "exec/ram_addr.h"
28#include "migration/misc.h"
29#include "hw/boards.h"
30#include "hw/qdev-properties.h"
2becc36a 31#include CONFIG_DEVICES
43e54950 32#include "trace.h"
910b2576 33
3b95a71b
DH
34static const VMStateDescription vmstate_virtio_mem_device_early;
35
23ad8dec
DH
36/*
37 * We only had legacy x86 guests that did not support
38 * VIRTIO_MEM_F_UNPLUGGED_INACCESSIBLE. Other targets don't have legacy guests.
39 */
40#if defined(TARGET_X86_64) || defined(TARGET_I386)
41#define VIRTIO_MEM_HAS_LEGACY_GUESTS
42#endif
43
910b2576 44/*
228957fe
DH
45 * Let's not allow blocks smaller than 1 MiB, for example, to keep the tracking
46 * bitmap small.
910b2576 47 */
228957fe
DH
48#define VIRTIO_MEM_MIN_BLOCK_SIZE ((uint32_t)(1 * MiB))
49
1263615e
GS
50static uint32_t virtio_mem_default_thp_size(void)
51{
52 uint32_t default_thp_size = VIRTIO_MEM_MIN_BLOCK_SIZE;
53
54#if defined(__x86_64__) || defined(__arm__) || defined(__powerpc64__)
55 default_thp_size = 2 * MiB;
56#elif defined(__aarch64__)
8e3b0cbb 57 if (qemu_real_host_page_size() == 4 * KiB) {
1263615e 58 default_thp_size = 2 * MiB;
8e3b0cbb 59 } else if (qemu_real_host_page_size() == 16 * KiB) {
1263615e 60 default_thp_size = 32 * MiB;
8e3b0cbb 61 } else if (qemu_real_host_page_size() == 64 * KiB) {
1263615e
GS
62 default_thp_size = 512 * MiB;
63 }
228957fe
DH
64#endif
65
1263615e
GS
66 return default_thp_size;
67}
68
177f9b1e
DH
69/*
70 * The minimum memslot size depends on this setting ("sane default"), the
71 * device block size, and the memory backend page size. The last (or single)
72 * memslot might be smaller than this constant.
73 */
74#define VIRTIO_MEM_MIN_MEMSLOT_SIZE (1 * GiB)
75
228957fe
DH
76/*
77 * We want to have a reasonable default block size such that
78 * 1. We avoid splitting THPs when unplugging memory, which degrades
79 * performance.
80 * 2. We avoid placing THPs for plugged blocks that also cover unplugged
81 * blocks.
82 *
83 * The actual THP size might differ between Linux kernels, so we try to probe
84 * it. In the future (if we ever run into issues regarding 2.), we might want
85 * to disable THP in case we fail to properly probe the THP size, or if the
86 * block size is configured smaller than the THP size.
87 */
88static uint32_t thp_size;
89
90#define HPAGE_PMD_SIZE_PATH "/sys/kernel/mm/transparent_hugepage/hpage_pmd_size"
91static uint32_t virtio_mem_thp_size(void)
92{
93 gchar *content = NULL;
94 const char *endptr;
95 uint64_t tmp;
96
97 if (thp_size) {
98 return thp_size;
99 }
100
101 /*
102 * Try to probe the actual THP size, fallback to (sane but eventually
103 * incorrect) default sizes.
104 */
105 if (g_file_get_contents(HPAGE_PMD_SIZE_PATH, &content, NULL, NULL) &&
106 !qemu_strtou64(content, &endptr, 0, &tmp) &&
107 (!endptr || *endptr == '\n')) {
1263615e
GS
108 /* Sanity-check the value and fallback to something reasonable. */
109 if (!tmp || !is_power_of_2(tmp)) {
228957fe
DH
110 warn_report("Read unsupported THP size: %" PRIx64, tmp);
111 } else {
112 thp_size = tmp;
113 }
114 }
115
116 if (!thp_size) {
1263615e 117 thp_size = virtio_mem_default_thp_size();
228957fe
DH
118 warn_report("Could not detect THP size, falling back to %" PRIx64
119 " MiB.", thp_size / MiB);
120 }
121
122 g_free(content);
123 return thp_size;
124}
125
126static uint64_t virtio_mem_default_block_size(RAMBlock *rb)
127{
128 const uint64_t page_size = qemu_ram_pagesize(rb);
129
130 /* We can have hugetlbfs with a page size smaller than the THP size. */
8e3b0cbb 131 if (page_size == qemu_real_host_page_size()) {
228957fe
DH
132 return MAX(page_size, virtio_mem_thp_size());
133 }
134 return MAX(page_size, VIRTIO_MEM_MIN_BLOCK_SIZE);
135}
136
23ad8dec
DH
137#if defined(VIRTIO_MEM_HAS_LEGACY_GUESTS)
138static bool virtio_mem_has_shared_zeropage(RAMBlock *rb)
139{
140 /*
141 * We only have a guaranteed shared zeropage on ordinary MAP_PRIVATE
142 * anonymous RAM. In any other case, reading unplugged *can* populate a
143 * fresh page, consuming actual memory.
144 */
21e64350 145 return !qemu_ram_is_shared(rb) && qemu_ram_get_fd(rb) < 0 &&
8e3b0cbb 146 qemu_ram_pagesize(rb) == qemu_real_host_page_size();
23ad8dec
DH
147}
148#endif /* VIRTIO_MEM_HAS_LEGACY_GUESTS */
149
910b2576
DH
150/*
151 * Size the usable region bigger than the requested size if possible. Esp.
152 * Linux guests will only add (aligned) memory blocks in case they fully
153 * fit into the usable region, but plug+online only a subset of the pages.
154 * The memory block size corresponds mostly to the section size.
155 *
156 * This allows e.g., to add 20MB with a section size of 128MB on x86_64, and
b1b87327 157 * a section size of 512MB on arm64 (as long as the start address is properly
910b2576
DH
158 * aligned, similar to ordinary DIMMs).
159 *
160 * We can change this at any time and maybe even make it configurable if
161 * necessary (as the section size can change). But it's more likely that the
162 * section size will rather get smaller and not bigger over time.
163 */
164#if defined(TARGET_X86_64) || defined(TARGET_I386)
165#define VIRTIO_MEM_USABLE_EXTENT (2 * (128 * MiB))
b1b87327
GS
166#elif defined(TARGET_ARM)
167#define VIRTIO_MEM_USABLE_EXTENT (2 * (512 * MiB))
910b2576
DH
168#else
169#error VIRTIO_MEM_USABLE_EXTENT not defined
170#endif
171
172static bool virtio_mem_is_busy(void)
173{
174 /*
175 * Postcopy cannot handle concurrent discards and we don't want to migrate
176 * pages on-demand with stale content when plugging new blocks.
0bc7806c
DH
177 *
178 * For precopy, we don't want unplugged blocks in our migration stream, and
179 * when plugging new blocks, the page content might differ between source
180 * and destination (observable by the guest when not initializing pages
181 * after plugging them) until we're running on the destination (as we didn't
182 * migrate these blocks when they were unplugged).
910b2576 183 */
0bc7806c 184 return migration_in_incoming_postcopy() || !migration_is_idle();
910b2576
DH
185}
186
a45171db 187typedef int (*virtio_mem_range_cb)(VirtIOMEM *vmem, void *arg,
7a9d5d02
DH
188 uint64_t offset, uint64_t size);
189
a45171db 190static int virtio_mem_for_each_unplugged_range(VirtIOMEM *vmem, void *arg,
7a9d5d02
DH
191 virtio_mem_range_cb cb)
192{
193 unsigned long first_zero_bit, last_zero_bit;
194 uint64_t offset, size;
195 int ret = 0;
196
197 first_zero_bit = find_first_zero_bit(vmem->bitmap, vmem->bitmap_size);
198 while (first_zero_bit < vmem->bitmap_size) {
199 offset = first_zero_bit * vmem->block_size;
200 last_zero_bit = find_next_bit(vmem->bitmap, vmem->bitmap_size,
201 first_zero_bit + 1) - 1;
202 size = (last_zero_bit - first_zero_bit + 1) * vmem->block_size;
203
204 ret = cb(vmem, arg, offset, size);
205 if (ret) {
206 break;
207 }
208 first_zero_bit = find_next_zero_bit(vmem->bitmap, vmem->bitmap_size,
209 last_zero_bit + 2);
210 }
211 return ret;
212}
213
a45171db 214static int virtio_mem_for_each_plugged_range(VirtIOMEM *vmem, void *arg,
d71920d4
DH
215 virtio_mem_range_cb cb)
216{
217 unsigned long first_bit, last_bit;
218 uint64_t offset, size;
219 int ret = 0;
220
221 first_bit = find_first_bit(vmem->bitmap, vmem->bitmap_size);
222 while (first_bit < vmem->bitmap_size) {
223 offset = first_bit * vmem->block_size;
224 last_bit = find_next_zero_bit(vmem->bitmap, vmem->bitmap_size,
225 first_bit + 1) - 1;
226 size = (last_bit - first_bit + 1) * vmem->block_size;
227
228 ret = cb(vmem, arg, offset, size);
229 if (ret) {
230 break;
231 }
232 first_bit = find_next_bit(vmem->bitmap, vmem->bitmap_size,
233 last_bit + 2);
234 }
235 return ret;
236}
237
2044969f
DH
238/*
239 * Adjust the memory section to cover the intersection with the given range.
240 *
241 * Returns false if the intersection is empty, otherwise returns true.
242 */
82ba778e 243static bool virtio_mem_intersect_memory_section(MemoryRegionSection *s,
2044969f
DH
244 uint64_t offset, uint64_t size)
245{
246 uint64_t start = MAX(s->offset_within_region, offset);
247 uint64_t end = MIN(s->offset_within_region + int128_get64(s->size),
248 offset + size);
249
250 if (end <= start) {
251 return false;
252 }
253
254 s->offset_within_address_space += start - s->offset_within_region;
255 s->offset_within_region = start;
256 s->size = int128_make64(end - start);
257 return true;
258}
259
260typedef int (*virtio_mem_section_cb)(MemoryRegionSection *s, void *arg);
261
262static int virtio_mem_for_each_plugged_section(const VirtIOMEM *vmem,
263 MemoryRegionSection *s,
264 void *arg,
265 virtio_mem_section_cb cb)
266{
267 unsigned long first_bit, last_bit;
268 uint64_t offset, size;
269 int ret = 0;
270
b11cf32e 271 first_bit = s->offset_within_region / vmem->block_size;
2044969f
DH
272 first_bit = find_next_bit(vmem->bitmap, vmem->bitmap_size, first_bit);
273 while (first_bit < vmem->bitmap_size) {
274 MemoryRegionSection tmp = *s;
275
276 offset = first_bit * vmem->block_size;
277 last_bit = find_next_zero_bit(vmem->bitmap, vmem->bitmap_size,
278 first_bit + 1) - 1;
279 size = (last_bit - first_bit + 1) * vmem->block_size;
280
82ba778e 281 if (!virtio_mem_intersect_memory_section(&tmp, offset, size)) {
2044969f
DH
282 break;
283 }
284 ret = cb(&tmp, arg);
285 if (ret) {
286 break;
287 }
288 first_bit = find_next_bit(vmem->bitmap, vmem->bitmap_size,
289 last_bit + 2);
290 }
291 return ret;
292}
293
372aa6fd
DH
294static int virtio_mem_for_each_unplugged_section(const VirtIOMEM *vmem,
295 MemoryRegionSection *s,
296 void *arg,
297 virtio_mem_section_cb cb)
298{
299 unsigned long first_bit, last_bit;
300 uint64_t offset, size;
301 int ret = 0;
302
b11cf32e 303 first_bit = s->offset_within_region / vmem->block_size;
372aa6fd
DH
304 first_bit = find_next_zero_bit(vmem->bitmap, vmem->bitmap_size, first_bit);
305 while (first_bit < vmem->bitmap_size) {
306 MemoryRegionSection tmp = *s;
307
308 offset = first_bit * vmem->block_size;
309 last_bit = find_next_bit(vmem->bitmap, vmem->bitmap_size,
310 first_bit + 1) - 1;
311 size = (last_bit - first_bit + 1) * vmem->block_size;
312
82ba778e 313 if (!virtio_mem_intersect_memory_section(&tmp, offset, size)) {
372aa6fd
DH
314 break;
315 }
316 ret = cb(&tmp, arg);
317 if (ret) {
318 break;
319 }
320 first_bit = find_next_zero_bit(vmem->bitmap, vmem->bitmap_size,
321 last_bit + 2);
322 }
323 return ret;
324}
325
2044969f
DH
326static int virtio_mem_notify_populate_cb(MemoryRegionSection *s, void *arg)
327{
328 RamDiscardListener *rdl = arg;
329
330 return rdl->notify_populate(rdl, s);
331}
332
333static int virtio_mem_notify_discard_cb(MemoryRegionSection *s, void *arg)
334{
335 RamDiscardListener *rdl = arg;
336
337 rdl->notify_discard(rdl, s);
338 return 0;
339}
340
341static void virtio_mem_notify_unplug(VirtIOMEM *vmem, uint64_t offset,
342 uint64_t size)
343{
344 RamDiscardListener *rdl;
345
346 QLIST_FOREACH(rdl, &vmem->rdl_list, next) {
347 MemoryRegionSection tmp = *rdl->section;
348
82ba778e 349 if (!virtio_mem_intersect_memory_section(&tmp, offset, size)) {
2044969f
DH
350 continue;
351 }
352 rdl->notify_discard(rdl, &tmp);
353 }
354}
355
356static int virtio_mem_notify_plug(VirtIOMEM *vmem, uint64_t offset,
357 uint64_t size)
358{
359 RamDiscardListener *rdl, *rdl2;
360 int ret = 0;
361
362 QLIST_FOREACH(rdl, &vmem->rdl_list, next) {
363 MemoryRegionSection tmp = *rdl->section;
364
82ba778e 365 if (!virtio_mem_intersect_memory_section(&tmp, offset, size)) {
2044969f
DH
366 continue;
367 }
368 ret = rdl->notify_populate(rdl, &tmp);
369 if (ret) {
370 break;
371 }
372 }
373
374 if (ret) {
375 /* Notify all already-notified listeners. */
376 QLIST_FOREACH(rdl2, &vmem->rdl_list, next) {
29f1b328 377 MemoryRegionSection tmp = *rdl2->section;
2044969f
DH
378
379 if (rdl2 == rdl) {
380 break;
381 }
82ba778e 382 if (!virtio_mem_intersect_memory_section(&tmp, offset, size)) {
2044969f
DH
383 continue;
384 }
385 rdl2->notify_discard(rdl2, &tmp);
386 }
387 }
388 return ret;
389}
390
391static void virtio_mem_notify_unplug_all(VirtIOMEM *vmem)
392{
393 RamDiscardListener *rdl;
394
395 if (!vmem->size) {
396 return;
397 }
398
399 QLIST_FOREACH(rdl, &vmem->rdl_list, next) {
400 if (rdl->double_discard_supported) {
401 rdl->notify_discard(rdl, rdl->section);
402 } else {
403 virtio_mem_for_each_plugged_section(vmem, rdl->section, rdl,
404 virtio_mem_notify_discard_cb);
405 }
406 }
407}
408
25c89303
DH
409static bool virtio_mem_is_range_plugged(const VirtIOMEM *vmem,
410 uint64_t start_gpa, uint64_t size)
910b2576
DH
411{
412 const unsigned long first_bit = (start_gpa - vmem->addr) / vmem->block_size;
413 const unsigned long last_bit = first_bit + (size / vmem->block_size) - 1;
414 unsigned long found_bit;
415
416 /* We fake a shorter bitmap to avoid searching too far. */
25c89303 417 found_bit = find_next_zero_bit(vmem->bitmap, last_bit + 1, first_bit);
910b2576
DH
418 return found_bit > last_bit;
419}
420
25c89303
DH
421static bool virtio_mem_is_range_unplugged(const VirtIOMEM *vmem,
422 uint64_t start_gpa, uint64_t size)
423{
424 const unsigned long first_bit = (start_gpa - vmem->addr) / vmem->block_size;
425 const unsigned long last_bit = first_bit + (size / vmem->block_size) - 1;
426 unsigned long found_bit;
427
428 /* We fake a shorter bitmap to avoid searching too far. */
429 found_bit = find_next_bit(vmem->bitmap, last_bit + 1, first_bit);
430 return found_bit > last_bit;
431}
432
433static void virtio_mem_set_range_plugged(VirtIOMEM *vmem, uint64_t start_gpa,
434 uint64_t size)
910b2576
DH
435{
436 const unsigned long bit = (start_gpa - vmem->addr) / vmem->block_size;
437 const unsigned long nbits = size / vmem->block_size;
438
25c89303
DH
439 bitmap_set(vmem->bitmap, bit, nbits);
440}
441
442static void virtio_mem_set_range_unplugged(VirtIOMEM *vmem, uint64_t start_gpa,
443 uint64_t size)
444{
445 const unsigned long bit = (start_gpa - vmem->addr) / vmem->block_size;
446 const unsigned long nbits = size / vmem->block_size;
447
448 bitmap_clear(vmem->bitmap, bit, nbits);
910b2576
DH
449}
450
451static void virtio_mem_send_response(VirtIOMEM *vmem, VirtQueueElement *elem,
452 struct virtio_mem_resp *resp)
453{
454 VirtIODevice *vdev = VIRTIO_DEVICE(vmem);
455 VirtQueue *vq = vmem->vq;
456
43e54950 457 trace_virtio_mem_send_response(le16_to_cpu(resp->type));
910b2576
DH
458 iov_from_buf(elem->in_sg, elem->in_num, 0, resp, sizeof(*resp));
459
460 virtqueue_push(vq, elem, sizeof(*resp));
461 virtio_notify(vdev, vq);
462}
463
464static void virtio_mem_send_response_simple(VirtIOMEM *vmem,
465 VirtQueueElement *elem,
466 uint16_t type)
467{
468 struct virtio_mem_resp resp = {
469 .type = cpu_to_le16(type),
470 };
471
472 virtio_mem_send_response(vmem, elem, &resp);
473}
474
2044969f
DH
475static bool virtio_mem_valid_range(const VirtIOMEM *vmem, uint64_t gpa,
476 uint64_t size)
910b2576
DH
477{
478 if (!QEMU_IS_ALIGNED(gpa, vmem->block_size)) {
479 return false;
480 }
481 if (gpa + size < gpa || !size) {
482 return false;
483 }
484 if (gpa < vmem->addr || gpa >= vmem->addr + vmem->usable_region_size) {
485 return false;
486 }
487 if (gpa + size > vmem->addr + vmem->usable_region_size) {
488 return false;
489 }
490 return true;
491}
492
177f9b1e
DH
493static void virtio_mem_activate_memslot(VirtIOMEM *vmem, unsigned int idx)
494{
495 const uint64_t memslot_offset = idx * vmem->memslot_size;
496
497 assert(vmem->memslots);
498
499 /*
500 * Instead of enabling/disabling memslots, we add/remove them. This should
501 * make address space updates faster, because we don't have to loop over
502 * many disabled subregions.
503 */
504 if (memory_region_is_mapped(&vmem->memslots[idx])) {
505 return;
506 }
507 memory_region_add_subregion(vmem->mr, memslot_offset, &vmem->memslots[idx]);
508}
509
510static void virtio_mem_deactivate_memslot(VirtIOMEM *vmem, unsigned int idx)
511{
512 assert(vmem->memslots);
513
514 if (!memory_region_is_mapped(&vmem->memslots[idx])) {
515 return;
516 }
517 memory_region_del_subregion(vmem->mr, &vmem->memslots[idx]);
518}
519
520static void virtio_mem_activate_memslots_to_plug(VirtIOMEM *vmem,
521 uint64_t offset, uint64_t size)
522{
523 const unsigned int start_idx = offset / vmem->memslot_size;
524 const unsigned int end_idx = (offset + size + vmem->memslot_size - 1) /
525 vmem->memslot_size;
526 unsigned int idx;
527
528 if (!vmem->dynamic_memslots) {
529 return;
530 }
531
532 /* Activate all involved memslots in a single transaction. */
533 memory_region_transaction_begin();
534 for (idx = start_idx; idx < end_idx; idx++) {
535 virtio_mem_activate_memslot(vmem, idx);
536 }
537 memory_region_transaction_commit();
538}
539
540static void virtio_mem_deactivate_unplugged_memslots(VirtIOMEM *vmem,
541 uint64_t offset,
542 uint64_t size)
543{
544 const uint64_t region_size = memory_region_size(&vmem->memdev->mr);
545 const unsigned int start_idx = offset / vmem->memslot_size;
546 const unsigned int end_idx = (offset + size + vmem->memslot_size - 1) /
547 vmem->memslot_size;
548 unsigned int idx;
549
550 if (!vmem->dynamic_memslots) {
551 return;
552 }
553
554 /* Deactivate all memslots with unplugged blocks in a single transaction. */
555 memory_region_transaction_begin();
556 for (idx = start_idx; idx < end_idx; idx++) {
557 const uint64_t memslot_offset = idx * vmem->memslot_size;
558 uint64_t memslot_size = vmem->memslot_size;
559
560 /* The size of the last memslot might be smaller. */
561 if (idx == vmem->nb_memslots - 1) {
562 memslot_size = region_size - memslot_offset;
563 }
564
565 /*
566 * Partially covered memslots might still have some blocks plugged and
567 * have to remain active if that's the case.
568 */
569 if (offset > memslot_offset ||
570 offset + size < memslot_offset + memslot_size) {
571 const uint64_t gpa = vmem->addr + memslot_offset;
572
573 if (!virtio_mem_is_range_unplugged(vmem, gpa, memslot_size)) {
574 continue;
575 }
576 }
577
578 virtio_mem_deactivate_memslot(vmem, idx);
579 }
580 memory_region_transaction_commit();
581}
582
910b2576
DH
583static int virtio_mem_set_block_state(VirtIOMEM *vmem, uint64_t start_gpa,
584 uint64_t size, bool plug)
585{
586 const uint64_t offset = start_gpa - vmem->addr;
3aca6380 587 RAMBlock *rb = vmem->memdev->mr.ram_block;
25c89303 588 int ret = 0;
910b2576
DH
589
590 if (virtio_mem_is_busy()) {
591 return -EBUSY;
592 }
593
594 if (!plug) {
3aca6380 595 if (ram_block_discard_range(rb, offset, size)) {
910b2576
DH
596 return -EBUSY;
597 }
2044969f 598 virtio_mem_notify_unplug(vmem, offset, size);
25c89303 599 virtio_mem_set_range_unplugged(vmem, start_gpa, size);
177f9b1e
DH
600 /* Deactivate completely unplugged memslots after updating the state. */
601 virtio_mem_deactivate_unplugged_memslots(vmem, offset, size);
25c89303
DH
602 return 0;
603 }
604
605 if (vmem->prealloc) {
606 void *area = memory_region_get_ram_ptr(&vmem->memdev->mr) + offset;
607 int fd = memory_region_get_fd(&vmem->memdev->mr);
608 Error *local_err = NULL;
609
610 qemu_prealloc_mem(fd, area, size, 1, NULL, &local_err);
611 if (local_err) {
612 static bool warned;
613
614 /*
615 * Warn only once, we don't want to fill the log with these
616 * warnings.
617 */
618 if (!warned) {
619 warn_report_err(local_err);
620 warned = true;
621 } else {
622 error_free(local_err);
09b3b7e0 623 }
25c89303 624 ret = -EBUSY;
09b3b7e0 625 }
25c89303 626 }
09b3b7e0 627
25c89303 628 if (!ret) {
177f9b1e
DH
629 /*
630 * Activate before notifying and rollback in case of any errors.
631 *
632 * When activating a yet inactive memslot, memory notifiers will get
633 * notified about the added memory region and can register with the
634 * RamDiscardManager; this will traverse all plugged blocks and skip the
635 * blocks we are plugging here. The following notification will inform
636 * registered listeners about the blocks we're plugging.
637 */
638 virtio_mem_activate_memslots_to_plug(vmem, offset, size);
25c89303 639 ret = virtio_mem_notify_plug(vmem, offset, size);
177f9b1e
DH
640 if (ret) {
641 virtio_mem_deactivate_unplugged_memslots(vmem, offset, size);
642 }
910b2576 643 }
25c89303
DH
644 if (ret) {
645 /* Could be preallocation or a notifier populated memory. */
646 ram_block_discard_range(vmem->memdev->mr.ram_block, offset, size);
647 return -EBUSY;
648 }
649
650 virtio_mem_set_range_plugged(vmem, start_gpa, size);
910b2576
DH
651 return 0;
652}
653
654static int virtio_mem_state_change_request(VirtIOMEM *vmem, uint64_t gpa,
655 uint16_t nb_blocks, bool plug)
656{
657 const uint64_t size = nb_blocks * vmem->block_size;
658 int ret;
659
660 if (!virtio_mem_valid_range(vmem, gpa, size)) {
661 return VIRTIO_MEM_RESP_ERROR;
662 }
663
664 if (plug && (vmem->size + size > vmem->requested_size)) {
665 return VIRTIO_MEM_RESP_NACK;
666 }
667
668 /* test if really all blocks are in the opposite state */
25c89303
DH
669 if ((plug && !virtio_mem_is_range_unplugged(vmem, gpa, size)) ||
670 (!plug && !virtio_mem_is_range_plugged(vmem, gpa, size))) {
910b2576
DH
671 return VIRTIO_MEM_RESP_ERROR;
672 }
673
674 ret = virtio_mem_set_block_state(vmem, gpa, size, plug);
675 if (ret) {
676 return VIRTIO_MEM_RESP_BUSY;
677 }
678 if (plug) {
679 vmem->size += size;
680 } else {
681 vmem->size -= size;
682 }
c95b4437 683 notifier_list_notify(&vmem->size_change_notifiers, &vmem->size);
910b2576
DH
684 return VIRTIO_MEM_RESP_ACK;
685}
686
687static void virtio_mem_plug_request(VirtIOMEM *vmem, VirtQueueElement *elem,
688 struct virtio_mem_req *req)
689{
690 const uint64_t gpa = le64_to_cpu(req->u.plug.addr);
691 const uint16_t nb_blocks = le16_to_cpu(req->u.plug.nb_blocks);
692 uint16_t type;
693
43e54950 694 trace_virtio_mem_plug_request(gpa, nb_blocks);
910b2576
DH
695 type = virtio_mem_state_change_request(vmem, gpa, nb_blocks, true);
696 virtio_mem_send_response_simple(vmem, elem, type);
697}
698
699static void virtio_mem_unplug_request(VirtIOMEM *vmem, VirtQueueElement *elem,
700 struct virtio_mem_req *req)
701{
702 const uint64_t gpa = le64_to_cpu(req->u.unplug.addr);
703 const uint16_t nb_blocks = le16_to_cpu(req->u.unplug.nb_blocks);
704 uint16_t type;
705
43e54950 706 trace_virtio_mem_unplug_request(gpa, nb_blocks);
910b2576
DH
707 type = virtio_mem_state_change_request(vmem, gpa, nb_blocks, false);
708 virtio_mem_send_response_simple(vmem, elem, type);
709}
710
711static void virtio_mem_resize_usable_region(VirtIOMEM *vmem,
712 uint64_t requested_size,
713 bool can_shrink)
714{
715 uint64_t newsize = MIN(memory_region_size(&vmem->memdev->mr),
716 requested_size + VIRTIO_MEM_USABLE_EXTENT);
717
0aed2800
DH
718 /* The usable region size always has to be multiples of the block size. */
719 newsize = QEMU_ALIGN_UP(newsize, vmem->block_size);
720
910b2576
DH
721 if (!requested_size) {
722 newsize = 0;
723 }
724
725 if (newsize < vmem->usable_region_size && !can_shrink) {
726 return;
727 }
728
43e54950 729 trace_virtio_mem_resized_usable_region(vmem->usable_region_size, newsize);
910b2576
DH
730 vmem->usable_region_size = newsize;
731}
732
733static int virtio_mem_unplug_all(VirtIOMEM *vmem)
734{
177f9b1e 735 const uint64_t region_size = memory_region_size(&vmem->memdev->mr);
910b2576 736 RAMBlock *rb = vmem->memdev->mr.ram_block;
910b2576 737
c95b4437 738 if (vmem->size) {
836f657b
DH
739 if (virtio_mem_is_busy()) {
740 return -EBUSY;
741 }
742 if (ram_block_discard_range(rb, 0, qemu_ram_get_used_length(rb))) {
743 return -EBUSY;
744 }
745 virtio_mem_notify_unplug_all(vmem);
746
747 bitmap_clear(vmem->bitmap, 0, vmem->bitmap_size);
c95b4437
DH
748 vmem->size = 0;
749 notifier_list_notify(&vmem->size_change_notifiers, &vmem->size);
177f9b1e
DH
750
751 /* Deactivate all memslots after updating the state. */
752 virtio_mem_deactivate_unplugged_memslots(vmem, 0, region_size);
c95b4437 753 }
836f657b 754
43e54950 755 trace_virtio_mem_unplugged_all();
910b2576
DH
756 virtio_mem_resize_usable_region(vmem, vmem->requested_size, true);
757 return 0;
758}
759
760static void virtio_mem_unplug_all_request(VirtIOMEM *vmem,
761 VirtQueueElement *elem)
762{
43e54950 763 trace_virtio_mem_unplug_all_request();
910b2576
DH
764 if (virtio_mem_unplug_all(vmem)) {
765 virtio_mem_send_response_simple(vmem, elem, VIRTIO_MEM_RESP_BUSY);
766 } else {
767 virtio_mem_send_response_simple(vmem, elem, VIRTIO_MEM_RESP_ACK);
768 }
769}
770
771static void virtio_mem_state_request(VirtIOMEM *vmem, VirtQueueElement *elem,
772 struct virtio_mem_req *req)
773{
774 const uint16_t nb_blocks = le16_to_cpu(req->u.state.nb_blocks);
775 const uint64_t gpa = le64_to_cpu(req->u.state.addr);
776 const uint64_t size = nb_blocks * vmem->block_size;
777 struct virtio_mem_resp resp = {
778 .type = cpu_to_le16(VIRTIO_MEM_RESP_ACK),
779 };
780
43e54950 781 trace_virtio_mem_state_request(gpa, nb_blocks);
910b2576
DH
782 if (!virtio_mem_valid_range(vmem, gpa, size)) {
783 virtio_mem_send_response_simple(vmem, elem, VIRTIO_MEM_RESP_ERROR);
784 return;
785 }
786
25c89303 787 if (virtio_mem_is_range_plugged(vmem, gpa, size)) {
910b2576 788 resp.u.state.state = cpu_to_le16(VIRTIO_MEM_STATE_PLUGGED);
25c89303 789 } else if (virtio_mem_is_range_unplugged(vmem, gpa, size)) {
910b2576
DH
790 resp.u.state.state = cpu_to_le16(VIRTIO_MEM_STATE_UNPLUGGED);
791 } else {
792 resp.u.state.state = cpu_to_le16(VIRTIO_MEM_STATE_MIXED);
793 }
43e54950 794 trace_virtio_mem_state_response(le16_to_cpu(resp.u.state.state));
910b2576
DH
795 virtio_mem_send_response(vmem, elem, &resp);
796}
797
798static void virtio_mem_handle_request(VirtIODevice *vdev, VirtQueue *vq)
799{
800 const int len = sizeof(struct virtio_mem_req);
801 VirtIOMEM *vmem = VIRTIO_MEM(vdev);
802 VirtQueueElement *elem;
803 struct virtio_mem_req req;
804 uint16_t type;
805
806 while (true) {
807 elem = virtqueue_pop(vq, sizeof(VirtQueueElement));
808 if (!elem) {
809 return;
810 }
811
812 if (iov_to_buf(elem->out_sg, elem->out_num, 0, &req, len) < len) {
813 virtio_error(vdev, "virtio-mem protocol violation: invalid request"
814 " size: %d", len);
0c404e45 815 virtqueue_detach_element(vq, elem, 0);
910b2576
DH
816 g_free(elem);
817 return;
818 }
819
820 if (iov_size(elem->in_sg, elem->in_num) <
821 sizeof(struct virtio_mem_resp)) {
822 virtio_error(vdev, "virtio-mem protocol violation: not enough space"
823 " for response: %zu",
824 iov_size(elem->in_sg, elem->in_num));
0c404e45 825 virtqueue_detach_element(vq, elem, 0);
910b2576
DH
826 g_free(elem);
827 return;
828 }
829
830 type = le16_to_cpu(req.type);
831 switch (type) {
832 case VIRTIO_MEM_REQ_PLUG:
833 virtio_mem_plug_request(vmem, elem, &req);
834 break;
835 case VIRTIO_MEM_REQ_UNPLUG:
836 virtio_mem_unplug_request(vmem, elem, &req);
837 break;
838 case VIRTIO_MEM_REQ_UNPLUG_ALL:
839 virtio_mem_unplug_all_request(vmem, elem);
840 break;
841 case VIRTIO_MEM_REQ_STATE:
842 virtio_mem_state_request(vmem, elem, &req);
843 break;
844 default:
845 virtio_error(vdev, "virtio-mem protocol violation: unknown request"
846 " type: %d", type);
0c404e45 847 virtqueue_detach_element(vq, elem, 0);
910b2576
DH
848 g_free(elem);
849 return;
850 }
851
852 g_free(elem);
853 }
854}
855
856static void virtio_mem_get_config(VirtIODevice *vdev, uint8_t *config_data)
857{
858 VirtIOMEM *vmem = VIRTIO_MEM(vdev);
859 struct virtio_mem_config *config = (void *) config_data;
860
861 config->block_size = cpu_to_le64(vmem->block_size);
862 config->node_id = cpu_to_le16(vmem->node);
863 config->requested_size = cpu_to_le64(vmem->requested_size);
864 config->plugged_size = cpu_to_le64(vmem->size);
865 config->addr = cpu_to_le64(vmem->addr);
866 config->region_size = cpu_to_le64(memory_region_size(&vmem->memdev->mr));
867 config->usable_region_size = cpu_to_le64(vmem->usable_region_size);
868}
869
870static uint64_t virtio_mem_get_features(VirtIODevice *vdev, uint64_t features,
871 Error **errp)
872{
873 MachineState *ms = MACHINE(qdev_get_machine());
23ad8dec 874 VirtIOMEM *vmem = VIRTIO_MEM(vdev);
910b2576
DH
875
876 if (ms->numa_state) {
877#if defined(CONFIG_ACPI)
878 virtio_add_feature(&features, VIRTIO_MEM_F_ACPI_PXM);
879#endif
880 }
23ad8dec
DH
881 assert(vmem->unplugged_inaccessible != ON_OFF_AUTO_AUTO);
882 if (vmem->unplugged_inaccessible == ON_OFF_AUTO_ON) {
883 virtio_add_feature(&features, VIRTIO_MEM_F_UNPLUGGED_INACCESSIBLE);
884 }
910b2576
DH
885 return features;
886}
887
23ad8dec
DH
888static int virtio_mem_validate_features(VirtIODevice *vdev)
889{
890 if (virtio_host_has_feature(vdev, VIRTIO_MEM_F_UNPLUGGED_INACCESSIBLE) &&
891 !virtio_vdev_has_feature(vdev, VIRTIO_MEM_F_UNPLUGGED_INACCESSIBLE)) {
892 return -EFAULT;
893 }
894 return 0;
895}
896
910b2576
DH
897static void virtio_mem_system_reset(void *opaque)
898{
899 VirtIOMEM *vmem = VIRTIO_MEM(opaque);
900
901 /*
902 * During usual resets, we will unplug all memory and shrink the usable
903 * region size. This is, however, not possible in all scenarios. Then,
904 * the guest has to deal with this manually (VIRTIO_MEM_REQ_UNPLUG_ALL).
905 */
906 virtio_mem_unplug_all(vmem);
907}
908
177f9b1e
DH
909static void virtio_mem_prepare_mr(VirtIOMEM *vmem)
910{
911 const uint64_t region_size = memory_region_size(&vmem->memdev->mr);
912
913 assert(!vmem->mr && vmem->dynamic_memslots);
914 vmem->mr = g_new0(MemoryRegion, 1);
915 memory_region_init(vmem->mr, OBJECT(vmem), "virtio-mem",
916 region_size);
917 vmem->mr->align = memory_region_get_alignment(&vmem->memdev->mr);
918}
919
920static void virtio_mem_prepare_memslots(VirtIOMEM *vmem)
921{
922 const uint64_t region_size = memory_region_size(&vmem->memdev->mr);
923 unsigned int idx;
924
925 g_assert(!vmem->memslots && vmem->nb_memslots && vmem->dynamic_memslots);
926 vmem->memslots = g_new0(MemoryRegion, vmem->nb_memslots);
927
928 /* Initialize our memslots, but don't map them yet. */
929 for (idx = 0; idx < vmem->nb_memslots; idx++) {
930 const uint64_t memslot_offset = idx * vmem->memslot_size;
931 uint64_t memslot_size = vmem->memslot_size;
932 char name[20];
933
934 /* The size of the last memslot might be smaller. */
935 if (idx == vmem->nb_memslots - 1) {
936 memslot_size = region_size - memslot_offset;
937 }
938
939 snprintf(name, sizeof(name), "memslot-%u", idx);
940 memory_region_init_alias(&vmem->memslots[idx], OBJECT(vmem), name,
941 &vmem->memdev->mr, memslot_offset,
942 memslot_size);
943 }
944}
945
910b2576
DH
946static void virtio_mem_device_realize(DeviceState *dev, Error **errp)
947{
948 MachineState *ms = MACHINE(qdev_get_machine());
949 int nb_numa_nodes = ms->numa_state ? ms->numa_state->num_nodes : 0;
950 VirtIODevice *vdev = VIRTIO_DEVICE(dev);
951 VirtIOMEM *vmem = VIRTIO_MEM(dev);
952 uint64_t page_size;
953 RAMBlock *rb;
954 int ret;
955
956 if (!vmem->memdev) {
957 error_setg(errp, "'%s' property is not set", VIRTIO_MEM_MEMDEV_PROP);
958 return;
959 } else if (host_memory_backend_is_mapped(vmem->memdev)) {
910b2576 960 error_setg(errp, "'%s' property specifies a busy memdev: %s",
7a309cc9
MA
961 VIRTIO_MEM_MEMDEV_PROP,
962 object_get_canonical_path_component(OBJECT(vmem->memdev)));
910b2576
DH
963 return;
964 } else if (!memory_region_is_ram(&vmem->memdev->mr) ||
965 memory_region_is_rom(&vmem->memdev->mr) ||
966 !vmem->memdev->mr.ram_block) {
967 error_setg(errp, "'%s' property specifies an unsupported memdev",
968 VIRTIO_MEM_MEMDEV_PROP);
969 return;
ce1761f0
DH
970 } else if (vmem->memdev->prealloc) {
971 error_setg(errp, "'%s' property specifies a memdev with preallocation"
972 " enabled: %s. Instead, specify 'prealloc=on' for the"
973 " virtio-mem device. ", VIRTIO_MEM_MEMDEV_PROP,
974 object_get_canonical_path_component(OBJECT(vmem->memdev)));
975 return;
910b2576
DH
976 }
977
978 if ((nb_numa_nodes && vmem->node >= nb_numa_nodes) ||
979 (!nb_numa_nodes && vmem->node)) {
980 error_setg(errp, "'%s' property has value '%" PRIu32 "', which exceeds"
981 "the number of numa nodes: %d", VIRTIO_MEM_NODE_PROP,
982 vmem->node, nb_numa_nodes ? nb_numa_nodes : 1);
983 return;
984 }
985
986 if (enable_mlock) {
987 error_setg(errp, "Incompatible with mlock");
988 return;
989 }
990
991 rb = vmem->memdev->mr.ram_block;
992 page_size = qemu_ram_pagesize(rb);
993
23ad8dec
DH
994#if defined(VIRTIO_MEM_HAS_LEGACY_GUESTS)
995 switch (vmem->unplugged_inaccessible) {
996 case ON_OFF_AUTO_AUTO:
997 if (virtio_mem_has_shared_zeropage(rb)) {
998 vmem->unplugged_inaccessible = ON_OFF_AUTO_OFF;
999 } else {
1000 vmem->unplugged_inaccessible = ON_OFF_AUTO_ON;
1001 }
1002 break;
1003 case ON_OFF_AUTO_OFF:
1004 if (!virtio_mem_has_shared_zeropage(rb)) {
1005 warn_report("'%s' property set to 'off' with a memdev that does"
1006 " not support the shared zeropage.",
1007 VIRTIO_MEM_UNPLUGGED_INACCESSIBLE_PROP);
1008 }
1009 break;
1010 default:
1011 break;
1012 }
1013#else /* VIRTIO_MEM_HAS_LEGACY_GUESTS */
1014 vmem->unplugged_inaccessible = ON_OFF_AUTO_ON;
1015#endif /* VIRTIO_MEM_HAS_LEGACY_GUESTS */
1016
177f9b1e
DH
1017 if (vmem->dynamic_memslots &&
1018 vmem->unplugged_inaccessible != ON_OFF_AUTO_ON) {
1019 error_setg(errp, "'%s' property set to 'on' requires '%s' to be 'on'",
1020 VIRTIO_MEM_DYNAMIC_MEMSLOTS_PROP,
1021 VIRTIO_MEM_UNPLUGGED_INACCESSIBLE_PROP);
1022 return;
1023 }
1024
228957fe
DH
1025 /*
1026 * If the block size wasn't configured by the user, use a sane default. This
1027 * allows using hugetlbfs backends of any page size without manual
1028 * intervention.
1029 */
1030 if (!vmem->block_size) {
1031 vmem->block_size = virtio_mem_default_block_size(rb);
1032 }
1033
910b2576
DH
1034 if (vmem->block_size < page_size) {
1035 error_setg(errp, "'%s' property has to be at least the page size (0x%"
1036 PRIx64 ")", VIRTIO_MEM_BLOCK_SIZE_PROP, page_size);
1037 return;
228957fe
DH
1038 } else if (vmem->block_size < virtio_mem_default_block_size(rb)) {
1039 warn_report("'%s' property is smaller than the default block size (%"
1040 PRIx64 " MiB)", VIRTIO_MEM_BLOCK_SIZE_PROP,
1041 virtio_mem_default_block_size(rb) / MiB);
7656d9ce
DH
1042 }
1043 if (!QEMU_IS_ALIGNED(vmem->requested_size, vmem->block_size)) {
910b2576
DH
1044 error_setg(errp, "'%s' property has to be multiples of '%s' (0x%" PRIx64
1045 ")", VIRTIO_MEM_REQUESTED_SIZE_PROP,
1046 VIRTIO_MEM_BLOCK_SIZE_PROP, vmem->block_size);
1047 return;
d31992ae
DH
1048 } else if (!QEMU_IS_ALIGNED(vmem->addr, vmem->block_size)) {
1049 error_setg(errp, "'%s' property has to be multiples of '%s' (0x%" PRIx64
1050 ")", VIRTIO_MEM_ADDR_PROP, VIRTIO_MEM_BLOCK_SIZE_PROP,
1051 vmem->block_size);
1052 return;
910b2576
DH
1053 } else if (!QEMU_IS_ALIGNED(memory_region_size(&vmem->memdev->mr),
1054 vmem->block_size)) {
1055 error_setg(errp, "'%s' property memdev size has to be multiples of"
1056 "'%s' (0x%" PRIx64 ")", VIRTIO_MEM_MEMDEV_PROP,
1057 VIRTIO_MEM_BLOCK_SIZE_PROP, vmem->block_size);
1058 return;
1059 }
1060
bc072ed4 1061 if (ram_block_coordinated_discard_require(true)) {
910b2576
DH
1062 error_setg(errp, "Discarding RAM is disabled");
1063 return;
1064 }
1065
b01fd4b6
DH
1066 /*
1067 * We don't know at this point whether shared RAM is migrated using
1068 * QEMU or migrated using the file content. "x-ignore-shared" will be
1069 * configured after realizing the device. So in case we have an
1070 * incoming migration, simply always skip the discard step.
1071 *
1072 * Otherwise, make sure that we start with a clean slate: either the
1073 * memory backend might get reused or the shared file might still have
1074 * memory allocated.
1075 */
1076 if (!runstate_check(RUN_STATE_INMIGRATE)) {
1077 ret = ram_block_discard_range(rb, 0, qemu_ram_get_used_length(rb));
1078 if (ret) {
1079 error_setg_errno(errp, -ret, "Unexpected error discarding RAM");
1080 ram_block_coordinated_discard_require(false);
1081 return;
1082 }
910b2576
DH
1083 }
1084
1085 virtio_mem_resize_usable_region(vmem, vmem->requested_size, true);
1086
1087 vmem->bitmap_size = memory_region_size(&vmem->memdev->mr) /
1088 vmem->block_size;
1089 vmem->bitmap = bitmap_new(vmem->bitmap_size);
1090
3857cd5c 1091 virtio_init(vdev, VIRTIO_ID_MEM, sizeof(struct virtio_mem_config));
910b2576
DH
1092 vmem->vq = virtio_add_queue(vdev, 128, virtio_mem_handle_request);
1093
177f9b1e
DH
1094 /*
1095 * With "dynamic-memslots=off" (old behavior) we always map the whole
1096 * RAM memory region directly.
1097 */
1098 if (vmem->dynamic_memslots) {
1099 if (!vmem->mr) {
1100 virtio_mem_prepare_mr(vmem);
1101 }
1102 if (vmem->nb_memslots <= 1) {
1103 vmem->nb_memslots = 1;
1104 vmem->memslot_size = memory_region_size(&vmem->memdev->mr);
1105 }
1106 if (!vmem->memslots) {
1107 virtio_mem_prepare_memslots(vmem);
1108 }
1109 } else {
1110 assert(!vmem->mr && !vmem->nb_memslots && !vmem->memslots);
1111 }
1112
910b2576
DH
1113 host_memory_backend_set_mapped(vmem->memdev, true);
1114 vmstate_register_ram(&vmem->memdev->mr, DEVICE(vmem));
3b95a71b
DH
1115 if (vmem->early_migration) {
1116 vmstate_register(VMSTATE_IF(vmem), VMSTATE_INSTANCE_ID_ANY,
1117 &vmstate_virtio_mem_device_early, vmem);
1118 }
910b2576 1119 qemu_register_reset(virtio_mem_system_reset, vmem);
2044969f
DH
1120
1121 /*
1122 * Set ourselves as RamDiscardManager before the plug handler maps the
1123 * memory region and exposes it via an address space.
1124 */
1125 memory_region_set_ram_discard_manager(&vmem->memdev->mr,
1126 RAM_DISCARD_MANAGER(vmem));
910b2576
DH
1127}
1128
1129static void virtio_mem_device_unrealize(DeviceState *dev)
1130{
1131 VirtIODevice *vdev = VIRTIO_DEVICE(dev);
1132 VirtIOMEM *vmem = VIRTIO_MEM(dev);
1133
2044969f
DH
1134 /*
1135 * The unplug handler unmapped the memory region, it cannot be
1136 * found via an address space anymore. Unset ourselves.
1137 */
1138 memory_region_set_ram_discard_manager(&vmem->memdev->mr, NULL);
910b2576 1139 qemu_unregister_reset(virtio_mem_system_reset, vmem);
3b95a71b
DH
1140 if (vmem->early_migration) {
1141 vmstate_unregister(VMSTATE_IF(vmem), &vmstate_virtio_mem_device_early,
1142 vmem);
1143 }
910b2576
DH
1144 vmstate_unregister_ram(&vmem->memdev->mr, DEVICE(vmem));
1145 host_memory_backend_set_mapped(vmem->memdev, false);
1146 virtio_del_queue(vdev, 0);
1147 virtio_cleanup(vdev);
1148 g_free(vmem->bitmap);
bc072ed4 1149 ram_block_coordinated_discard_require(false);
910b2576
DH
1150}
1151
a45171db 1152static int virtio_mem_discard_range_cb(VirtIOMEM *vmem, void *arg,
7a9d5d02 1153 uint64_t offset, uint64_t size)
910b2576
DH
1154{
1155 RAMBlock *rb = vmem->memdev->mr.ram_block;
910b2576 1156
3aca6380 1157 return ram_block_discard_range(rb, offset, size) ? -EINVAL : 0;
910b2576
DH
1158}
1159
7a9d5d02
DH
1160static int virtio_mem_restore_unplugged(VirtIOMEM *vmem)
1161{
1162 /* Make sure all memory is really discarded after migration. */
1163 return virtio_mem_for_each_unplugged_range(vmem, NULL,
1164 virtio_mem_discard_range_cb);
1165}
1166
177f9b1e
DH
1167static int virtio_mem_activate_memslot_range_cb(VirtIOMEM *vmem, void *arg,
1168 uint64_t offset, uint64_t size)
1169{
1170 virtio_mem_activate_memslots_to_plug(vmem, offset, size);
1171 return 0;
1172}
1173
884a0c20 1174static int virtio_mem_post_load_bitmap(VirtIOMEM *vmem)
910b2576 1175{
2044969f
DH
1176 RamDiscardListener *rdl;
1177 int ret;
1178
177f9b1e
DH
1179 /*
1180 * We restored the bitmap and updated the requested size; activate all
1181 * memslots (so listeners register) before notifying about plugged blocks.
1182 */
1183 if (vmem->dynamic_memslots) {
1184 /*
1185 * We don't expect any active memslots at this point to deactivate: no
1186 * memory was plugged on the migration destination.
1187 */
1188 virtio_mem_for_each_plugged_range(vmem, NULL,
1189 virtio_mem_activate_memslot_range_cb);
1190 }
1191
2044969f
DH
1192 /*
1193 * We started out with all memory discarded and our memory region is mapped
1194 * into an address space. Replay, now that we updated the bitmap.
1195 */
1196 QLIST_FOREACH(rdl, &vmem->rdl_list, next) {
1197 ret = virtio_mem_for_each_plugged_section(vmem, rdl->section, rdl,
1198 virtio_mem_notify_populate_cb);
1199 if (ret) {
1200 return ret;
1201 }
1202 }
884a0c20
DH
1203 return 0;
1204}
1205
1206static int virtio_mem_post_load(void *opaque, int version_id)
1207{
1208 VirtIOMEM *vmem = VIRTIO_MEM(opaque);
1209 int ret;
1210
1211 if (!vmem->early_migration) {
1212 ret = virtio_mem_post_load_bitmap(vmem);
1213 if (ret) {
1214 return ret;
1215 }
1216 }
2044969f 1217
b01fd4b6
DH
1218 /*
1219 * If shared RAM is migrated using the file content and not using QEMU,
1220 * don't mess with preallocation and postcopy.
1221 */
1222 if (migrate_ram_is_ignored(vmem->memdev->mr.ram_block)) {
1223 return 0;
1224 }
1225
1226 if (vmem->prealloc && !vmem->early_migration) {
1227 warn_report("Proper preallocation with migration requires a newer QEMU machine");
1228 }
1229
910b2576
DH
1230 if (migration_in_incoming_postcopy()) {
1231 return 0;
1232 }
1233
2044969f 1234 return virtio_mem_restore_unplugged(vmem);
910b2576
DH
1235}
1236
a45171db 1237static int virtio_mem_prealloc_range_cb(VirtIOMEM *vmem, void *arg,
d71920d4
DH
1238 uint64_t offset, uint64_t size)
1239{
1240 void *area = memory_region_get_ram_ptr(&vmem->memdev->mr) + offset;
1241 int fd = memory_region_get_fd(&vmem->memdev->mr);
1242 Error *local_err = NULL;
1243
1244 qemu_prealloc_mem(fd, area, size, 1, NULL, &local_err);
1245 if (local_err) {
1246 error_report_err(local_err);
1247 return -ENOMEM;
1248 }
1249 return 0;
1250}
1251
1252static int virtio_mem_post_load_early(void *opaque, int version_id)
1253{
1254 VirtIOMEM *vmem = VIRTIO_MEM(opaque);
1255 RAMBlock *rb = vmem->memdev->mr.ram_block;
1256 int ret;
1257
1258 if (!vmem->prealloc) {
884a0c20 1259 goto post_load_bitmap;
d71920d4
DH
1260 }
1261
b01fd4b6
DH
1262 /*
1263 * If shared RAM is migrated using the file content and not using QEMU,
1264 * don't mess with preallocation and postcopy.
1265 */
1266 if (migrate_ram_is_ignored(rb)) {
884a0c20 1267 goto post_load_bitmap;
b01fd4b6
DH
1268 }
1269
d71920d4
DH
1270 /*
1271 * We restored the bitmap and verified that the basic properties
1272 * match on source and destination, so we can go ahead and preallocate
1273 * memory for all plugged memory blocks, before actual RAM migration starts
1274 * touching this memory.
1275 */
1276 ret = virtio_mem_for_each_plugged_range(vmem, NULL,
1277 virtio_mem_prealloc_range_cb);
1278 if (ret) {
1279 return ret;
1280 }
1281
1282 /*
1283 * This is tricky: postcopy wants to start with a clean slate. On
1284 * POSTCOPY_INCOMING_ADVISE, postcopy code discards all (ordinarily
1285 * preallocated) RAM such that postcopy will work as expected later.
1286 *
1287 * However, we run after POSTCOPY_INCOMING_ADVISE -- but before actual
1288 * RAM migration. So let's discard all memory again. This looks like an
1289 * expensive NOP, but actually serves a purpose: we made sure that we
1290 * were able to allocate all required backend memory once. We cannot
1291 * guarantee that the backend memory we will free will remain free
1292 * until we need it during postcopy, but at least we can catch the
1293 * obvious setup issues this way.
1294 */
1295 if (migration_incoming_postcopy_advised()) {
1296 if (ram_block_discard_range(rb, 0, qemu_ram_get_used_length(rb))) {
1297 return -EBUSY;
1298 }
1299 }
884a0c20
DH
1300
1301post_load_bitmap:
1302 /* Finally, update any other state to be consistent with the new bitmap. */
1303 return virtio_mem_post_load_bitmap(vmem);
d71920d4
DH
1304}
1305
383ee445
DH
1306typedef struct VirtIOMEMMigSanityChecks {
1307 VirtIOMEM *parent;
1308 uint64_t addr;
1309 uint64_t region_size;
1310 uint64_t block_size;
1311 uint32_t node;
1312} VirtIOMEMMigSanityChecks;
1313
1314static int virtio_mem_mig_sanity_checks_pre_save(void *opaque)
1315{
1316 VirtIOMEMMigSanityChecks *tmp = opaque;
1317 VirtIOMEM *vmem = tmp->parent;
1318
1319 tmp->addr = vmem->addr;
1320 tmp->region_size = memory_region_size(&vmem->memdev->mr);
1321 tmp->block_size = vmem->block_size;
1322 tmp->node = vmem->node;
1323 return 0;
1324}
1325
1326static int virtio_mem_mig_sanity_checks_post_load(void *opaque, int version_id)
1327{
1328 VirtIOMEMMigSanityChecks *tmp = opaque;
1329 VirtIOMEM *vmem = tmp->parent;
1330 const uint64_t new_region_size = memory_region_size(&vmem->memdev->mr);
1331
1332 if (tmp->addr != vmem->addr) {
1333 error_report("Property '%s' changed from 0x%" PRIx64 " to 0x%" PRIx64,
1334 VIRTIO_MEM_ADDR_PROP, tmp->addr, vmem->addr);
1335 return -EINVAL;
1336 }
1337 /*
9b4b4e51 1338 * Note: Preparation for resizable memory regions. The maximum size
383ee445
DH
1339 * of the memory region must not change during migration.
1340 */
1341 if (tmp->region_size != new_region_size) {
1342 error_report("Property '%s' size changed from 0x%" PRIx64 " to 0x%"
1343 PRIx64, VIRTIO_MEM_MEMDEV_PROP, tmp->region_size,
1344 new_region_size);
1345 return -EINVAL;
1346 }
1347 if (tmp->block_size != vmem->block_size) {
1348 error_report("Property '%s' changed from 0x%" PRIx64 " to 0x%" PRIx64,
1349 VIRTIO_MEM_BLOCK_SIZE_PROP, tmp->block_size,
1350 vmem->block_size);
1351 return -EINVAL;
1352 }
1353 if (tmp->node != vmem->node) {
1354 error_report("Property '%s' changed from %" PRIu32 " to %" PRIu32,
1355 VIRTIO_MEM_NODE_PROP, tmp->node, vmem->node);
1356 return -EINVAL;
1357 }
1358 return 0;
1359}
1360
1361static const VMStateDescription vmstate_virtio_mem_sanity_checks = {
1362 .name = "virtio-mem-device/sanity-checks",
1363 .pre_save = virtio_mem_mig_sanity_checks_pre_save,
1364 .post_load = virtio_mem_mig_sanity_checks_post_load,
1365 .fields = (VMStateField[]) {
1366 VMSTATE_UINT64(addr, VirtIOMEMMigSanityChecks),
1367 VMSTATE_UINT64(region_size, VirtIOMEMMigSanityChecks),
1368 VMSTATE_UINT64(block_size, VirtIOMEMMigSanityChecks),
1369 VMSTATE_UINT32(node, VirtIOMEMMigSanityChecks),
1370 VMSTATE_END_OF_LIST(),
1371 },
1372};
1373
3b95a71b
DH
1374static bool virtio_mem_vmstate_field_exists(void *opaque, int version_id)
1375{
1376 const VirtIOMEM *vmem = VIRTIO_MEM(opaque);
1377
1378 /* With early migration, these fields were already migrated. */
1379 return !vmem->early_migration;
1380}
1381
910b2576
DH
1382static const VMStateDescription vmstate_virtio_mem_device = {
1383 .name = "virtio-mem-device",
1384 .minimum_version_id = 1,
1385 .version_id = 1,
0fd7616e 1386 .priority = MIG_PRI_VIRTIO_MEM,
910b2576 1387 .post_load = virtio_mem_post_load,
3b95a71b
DH
1388 .fields = (VMStateField[]) {
1389 VMSTATE_WITH_TMP_TEST(VirtIOMEM, virtio_mem_vmstate_field_exists,
1390 VirtIOMEMMigSanityChecks,
1391 vmstate_virtio_mem_sanity_checks),
1392 VMSTATE_UINT64(usable_region_size, VirtIOMEM),
1393 VMSTATE_UINT64_TEST(size, VirtIOMEM, virtio_mem_vmstate_field_exists),
1394 VMSTATE_UINT64(requested_size, VirtIOMEM),
1395 VMSTATE_BITMAP_TEST(bitmap, VirtIOMEM, virtio_mem_vmstate_field_exists,
1396 0, bitmap_size),
1397 VMSTATE_END_OF_LIST()
1398 },
1399};
1400
1401/*
1402 * Transfer properties that are immutable while migration is active early,
1403 * such that we have have this information around before migrating any RAM
1404 * content.
1405 *
1406 * Note that virtio_mem_is_busy() makes sure these properties can no longer
1407 * change on the migration source until migration completed.
1408 *
1409 * With QEMU compat machines, we transmit these properties later, via
1410 * vmstate_virtio_mem_device instead -- see virtio_mem_vmstate_field_exists().
1411 */
1412static const VMStateDescription vmstate_virtio_mem_device_early = {
1413 .name = "virtio-mem-device-early",
1414 .minimum_version_id = 1,
1415 .version_id = 1,
1416 .early_setup = true,
d71920d4 1417 .post_load = virtio_mem_post_load_early,
910b2576 1418 .fields = (VMStateField[]) {
383ee445
DH
1419 VMSTATE_WITH_TMP(VirtIOMEM, VirtIOMEMMigSanityChecks,
1420 vmstate_virtio_mem_sanity_checks),
910b2576 1421 VMSTATE_UINT64(size, VirtIOMEM),
910b2576
DH
1422 VMSTATE_BITMAP(bitmap, VirtIOMEM, 0, bitmap_size),
1423 VMSTATE_END_OF_LIST()
1424 },
1425};
1426
1427static const VMStateDescription vmstate_virtio_mem = {
1428 .name = "virtio-mem",
1429 .minimum_version_id = 1,
1430 .version_id = 1,
1431 .fields = (VMStateField[]) {
1432 VMSTATE_VIRTIO_DEVICE,
1433 VMSTATE_END_OF_LIST()
1434 },
1435};
1436
1437static void virtio_mem_fill_device_info(const VirtIOMEM *vmem,
1438 VirtioMEMDeviceInfo *vi)
1439{
1440 vi->memaddr = vmem->addr;
1441 vi->node = vmem->node;
1442 vi->requested_size = vmem->requested_size;
1443 vi->size = vmem->size;
1444 vi->max_size = memory_region_size(&vmem->memdev->mr);
1445 vi->block_size = vmem->block_size;
1446 vi->memdev = object_get_canonical_path(OBJECT(vmem->memdev));
1447}
1448
1449static MemoryRegion *virtio_mem_get_memory_region(VirtIOMEM *vmem, Error **errp)
1450{
1451 if (!vmem->memdev) {
1452 error_setg(errp, "'%s' property must be set", VIRTIO_MEM_MEMDEV_PROP);
1453 return NULL;
177f9b1e
DH
1454 } else if (vmem->dynamic_memslots) {
1455 if (!vmem->mr) {
1456 virtio_mem_prepare_mr(vmem);
1457 }
1458 return vmem->mr;
910b2576
DH
1459 }
1460
1461 return &vmem->memdev->mr;
1462}
1463
177f9b1e
DH
1464static void virtio_mem_decide_memslots(VirtIOMEM *vmem, unsigned int limit)
1465{
1466 uint64_t region_size, memslot_size, min_memslot_size;
1467 unsigned int memslots;
1468 RAMBlock *rb;
1469
1470 if (!vmem->dynamic_memslots) {
1471 return;
1472 }
1473
1474 /* We're called exactly once, before realizing the device. */
1475 assert(!vmem->nb_memslots);
1476
1477 /* If realizing the device will fail, just assume a single memslot. */
1478 if (limit <= 1 || !vmem->memdev || !vmem->memdev->mr.ram_block) {
1479 vmem->nb_memslots = 1;
1480 return;
1481 }
1482
1483 rb = vmem->memdev->mr.ram_block;
1484 region_size = memory_region_size(&vmem->memdev->mr);
1485
1486 /*
1487 * Determine the default block size now, to determine the minimum memslot
1488 * size. We want the minimum slot size to be at least the device block size.
1489 */
1490 if (!vmem->block_size) {
1491 vmem->block_size = virtio_mem_default_block_size(rb);
1492 }
1493 /* If realizing the device will fail, just assume a single memslot. */
1494 if (vmem->block_size < qemu_ram_pagesize(rb) ||
1495 !QEMU_IS_ALIGNED(region_size, vmem->block_size)) {
1496 vmem->nb_memslots = 1;
1497 return;
1498 }
1499
1500 /*
1501 * All memslots except the last one have a reasonable minimum size, and
1502 * and all memslot sizes are aligned to the device block size.
1503 */
1504 memslot_size = QEMU_ALIGN_UP(region_size / limit, vmem->block_size);
1505 min_memslot_size = MAX(vmem->block_size, VIRTIO_MEM_MIN_MEMSLOT_SIZE);
1506 memslot_size = MAX(memslot_size, min_memslot_size);
1507
1508 memslots = QEMU_ALIGN_UP(region_size, memslot_size) / memslot_size;
1509 if (memslots != 1) {
1510 vmem->memslot_size = memslot_size;
1511 }
1512 vmem->nb_memslots = memslots;
1513}
1514
1515static unsigned int virtio_mem_get_memslots(VirtIOMEM *vmem)
1516{
1517 if (!vmem->dynamic_memslots) {
1518 /* Exactly one static RAM memory region. */
1519 return 1;
1520 }
1521
1522 /* We're called after instructed to make a decision. */
1523 g_assert(vmem->nb_memslots);
1524 return vmem->nb_memslots;
1525}
1526
c95b4437
DH
1527static void virtio_mem_add_size_change_notifier(VirtIOMEM *vmem,
1528 Notifier *notifier)
1529{
1530 notifier_list_add(&vmem->size_change_notifiers, notifier);
1531}
1532
1533static void virtio_mem_remove_size_change_notifier(VirtIOMEM *vmem,
1534 Notifier *notifier)
1535{
1536 notifier_remove(notifier);
1537}
1538
910b2576
DH
1539static void virtio_mem_get_size(Object *obj, Visitor *v, const char *name,
1540 void *opaque, Error **errp)
1541{
1542 const VirtIOMEM *vmem = VIRTIO_MEM(obj);
1543 uint64_t value = vmem->size;
1544
1545 visit_type_size(v, name, &value, errp);
1546}
1547
1548static void virtio_mem_get_requested_size(Object *obj, Visitor *v,
1549 const char *name, void *opaque,
1550 Error **errp)
1551{
1552 const VirtIOMEM *vmem = VIRTIO_MEM(obj);
1553 uint64_t value = vmem->requested_size;
1554
1555 visit_type_size(v, name, &value, errp);
1556}
1557
1558static void virtio_mem_set_requested_size(Object *obj, Visitor *v,
1559 const char *name, void *opaque,
1560 Error **errp)
1561{
1562 VirtIOMEM *vmem = VIRTIO_MEM(obj);
910b2576
DH
1563 uint64_t value;
1564
d1c81c34 1565 if (!visit_type_size(v, name, &value, errp)) {
910b2576
DH
1566 return;
1567 }
1568
1569 /*
1570 * The block size and memory backend are not fixed until the device was
1571 * realized. realize() will verify these properties then.
1572 */
1573 if (DEVICE(obj)->realized) {
1574 if (!QEMU_IS_ALIGNED(value, vmem->block_size)) {
1575 error_setg(errp, "'%s' has to be multiples of '%s' (0x%" PRIx64
1576 ")", name, VIRTIO_MEM_BLOCK_SIZE_PROP,
1577 vmem->block_size);
1578 return;
1579 } else if (value > memory_region_size(&vmem->memdev->mr)) {
1580 error_setg(errp, "'%s' cannot exceed the memory backend size"
1581 "(0x%" PRIx64 ")", name,
1582 memory_region_size(&vmem->memdev->mr));
1583 return;
1584 }
1585
1586 if (value != vmem->requested_size) {
1587 virtio_mem_resize_usable_region(vmem, value, false);
1588 vmem->requested_size = value;
1589 }
1590 /*
1591 * Trigger a config update so the guest gets notified. We trigger
1592 * even if the size didn't change (especially helpful for debugging).
1593 */
1594 virtio_notify_config(VIRTIO_DEVICE(vmem));
1595 } else {
1596 vmem->requested_size = value;
1597 }
1598}
1599
1600static void virtio_mem_get_block_size(Object *obj, Visitor *v, const char *name,
1601 void *opaque, Error **errp)
1602{
1603 const VirtIOMEM *vmem = VIRTIO_MEM(obj);
1604 uint64_t value = vmem->block_size;
1605
228957fe
DH
1606 /*
1607 * If not configured by the user (and we're not realized yet), use the
1608 * default block size we would use with the current memory backend.
1609 */
1610 if (!value) {
1611 if (vmem->memdev && memory_region_is_ram(&vmem->memdev->mr)) {
1612 value = virtio_mem_default_block_size(vmem->memdev->mr.ram_block);
1613 } else {
1614 value = virtio_mem_thp_size();
1615 }
1616 }
1617
910b2576
DH
1618 visit_type_size(v, name, &value, errp);
1619}
1620
1621static void virtio_mem_set_block_size(Object *obj, Visitor *v, const char *name,
1622 void *opaque, Error **errp)
1623{
1624 VirtIOMEM *vmem = VIRTIO_MEM(obj);
910b2576
DH
1625 uint64_t value;
1626
1627 if (DEVICE(obj)->realized) {
1628 error_setg(errp, "'%s' cannot be changed", name);
1629 return;
1630 }
1631
d1c81c34 1632 if (!visit_type_size(v, name, &value, errp)) {
910b2576
DH
1633 return;
1634 }
1635
1636 if (value < VIRTIO_MEM_MIN_BLOCK_SIZE) {
1637 error_setg(errp, "'%s' property has to be at least 0x%" PRIx32, name,
1638 VIRTIO_MEM_MIN_BLOCK_SIZE);
1639 return;
1640 } else if (!is_power_of_2(value)) {
1641 error_setg(errp, "'%s' property has to be a power of two", name);
1642 return;
1643 }
1644 vmem->block_size = value;
1645}
1646
1647static void virtio_mem_instance_init(Object *obj)
1648{
1649 VirtIOMEM *vmem = VIRTIO_MEM(obj);
1650
c95b4437 1651 notifier_list_init(&vmem->size_change_notifiers);
2044969f 1652 QLIST_INIT(&vmem->rdl_list);
910b2576
DH
1653
1654 object_property_add(obj, VIRTIO_MEM_SIZE_PROP, "size", virtio_mem_get_size,
1655 NULL, NULL, NULL);
1656 object_property_add(obj, VIRTIO_MEM_REQUESTED_SIZE_PROP, "size",
1657 virtio_mem_get_requested_size,
1658 virtio_mem_set_requested_size, NULL, NULL);
1659 object_property_add(obj, VIRTIO_MEM_BLOCK_SIZE_PROP, "size",
1660 virtio_mem_get_block_size, virtio_mem_set_block_size,
1661 NULL, NULL);
1662}
1663
177f9b1e
DH
1664static void virtio_mem_instance_finalize(Object *obj)
1665{
1666 VirtIOMEM *vmem = VIRTIO_MEM(obj);
1667
1668 /*
1669 * Note: the core already dropped the references on all memory regions
1670 * (it's passed as the owner to memory_region_init_*()) and finalized
1671 * these objects. We can simply free the memory.
1672 */
1673 g_free(vmem->memslots);
1674 vmem->memslots = NULL;
1675 g_free(vmem->mr);
1676 vmem->mr = NULL;
1677}
1678
910b2576
DH
1679static Property virtio_mem_properties[] = {
1680 DEFINE_PROP_UINT64(VIRTIO_MEM_ADDR_PROP, VirtIOMEM, addr, 0),
1681 DEFINE_PROP_UINT32(VIRTIO_MEM_NODE_PROP, VirtIOMEM, node, 0),
09b3b7e0 1682 DEFINE_PROP_BOOL(VIRTIO_MEM_PREALLOC_PROP, VirtIOMEM, prealloc, false),
910b2576
DH
1683 DEFINE_PROP_LINK(VIRTIO_MEM_MEMDEV_PROP, VirtIOMEM, memdev,
1684 TYPE_MEMORY_BACKEND, HostMemoryBackend *),
23ad8dec
DH
1685#if defined(VIRTIO_MEM_HAS_LEGACY_GUESTS)
1686 DEFINE_PROP_ON_OFF_AUTO(VIRTIO_MEM_UNPLUGGED_INACCESSIBLE_PROP, VirtIOMEM,
d5cef025 1687 unplugged_inaccessible, ON_OFF_AUTO_ON),
23ad8dec 1688#endif
3b95a71b
DH
1689 DEFINE_PROP_BOOL(VIRTIO_MEM_EARLY_MIGRATION_PROP, VirtIOMEM,
1690 early_migration, true),
177f9b1e
DH
1691 DEFINE_PROP_BOOL(VIRTIO_MEM_DYNAMIC_MEMSLOTS_PROP, VirtIOMEM,
1692 dynamic_memslots, false),
910b2576
DH
1693 DEFINE_PROP_END_OF_LIST(),
1694};
1695
2044969f
DH
1696static uint64_t virtio_mem_rdm_get_min_granularity(const RamDiscardManager *rdm,
1697 const MemoryRegion *mr)
1698{
1699 const VirtIOMEM *vmem = VIRTIO_MEM(rdm);
1700
1701 g_assert(mr == &vmem->memdev->mr);
1702 return vmem->block_size;
1703}
1704
1705static bool virtio_mem_rdm_is_populated(const RamDiscardManager *rdm,
1706 const MemoryRegionSection *s)
1707{
1708 const VirtIOMEM *vmem = VIRTIO_MEM(rdm);
1709 uint64_t start_gpa = vmem->addr + s->offset_within_region;
1710 uint64_t end_gpa = start_gpa + int128_get64(s->size);
1711
1712 g_assert(s->mr == &vmem->memdev->mr);
1713
1714 start_gpa = QEMU_ALIGN_DOWN(start_gpa, vmem->block_size);
1715 end_gpa = QEMU_ALIGN_UP(end_gpa, vmem->block_size);
1716
1717 if (!virtio_mem_valid_range(vmem, start_gpa, end_gpa - start_gpa)) {
1718 return false;
1719 }
1720
25c89303 1721 return virtio_mem_is_range_plugged(vmem, start_gpa, end_gpa - start_gpa);
2044969f
DH
1722}
1723
1724struct VirtIOMEMReplayData {
1725 void *fn;
1726 void *opaque;
1727};
1728
1729static int virtio_mem_rdm_replay_populated_cb(MemoryRegionSection *s, void *arg)
1730{
1731 struct VirtIOMEMReplayData *data = arg;
1732
1733 return ((ReplayRamPopulate)data->fn)(s, data->opaque);
1734}
1735
1736static int virtio_mem_rdm_replay_populated(const RamDiscardManager *rdm,
1737 MemoryRegionSection *s,
1738 ReplayRamPopulate replay_fn,
1739 void *opaque)
1740{
1741 const VirtIOMEM *vmem = VIRTIO_MEM(rdm);
1742 struct VirtIOMEMReplayData data = {
1743 .fn = replay_fn,
1744 .opaque = opaque,
1745 };
1746
1747 g_assert(s->mr == &vmem->memdev->mr);
1748 return virtio_mem_for_each_plugged_section(vmem, s, &data,
1749 virtio_mem_rdm_replay_populated_cb);
1750}
1751
372aa6fd
DH
1752static int virtio_mem_rdm_replay_discarded_cb(MemoryRegionSection *s,
1753 void *arg)
1754{
1755 struct VirtIOMEMReplayData *data = arg;
1756
1757 ((ReplayRamDiscard)data->fn)(s, data->opaque);
1758 return 0;
1759}
1760
1761static void virtio_mem_rdm_replay_discarded(const RamDiscardManager *rdm,
1762 MemoryRegionSection *s,
1763 ReplayRamDiscard replay_fn,
1764 void *opaque)
1765{
1766 const VirtIOMEM *vmem = VIRTIO_MEM(rdm);
1767 struct VirtIOMEMReplayData data = {
1768 .fn = replay_fn,
1769 .opaque = opaque,
1770 };
1771
1772 g_assert(s->mr == &vmem->memdev->mr);
1773 virtio_mem_for_each_unplugged_section(vmem, s, &data,
1774 virtio_mem_rdm_replay_discarded_cb);
1775}
1776
2044969f
DH
1777static void virtio_mem_rdm_register_listener(RamDiscardManager *rdm,
1778 RamDiscardListener *rdl,
1779 MemoryRegionSection *s)
1780{
1781 VirtIOMEM *vmem = VIRTIO_MEM(rdm);
1782 int ret;
1783
1784 g_assert(s->mr == &vmem->memdev->mr);
1785 rdl->section = memory_region_section_new_copy(s);
1786
1787 QLIST_INSERT_HEAD(&vmem->rdl_list, rdl, next);
1788 ret = virtio_mem_for_each_plugged_section(vmem, rdl->section, rdl,
1789 virtio_mem_notify_populate_cb);
1790 if (ret) {
1791 error_report("%s: Replaying plugged ranges failed: %s", __func__,
1792 strerror(-ret));
1793 }
1794}
1795
1796static void virtio_mem_rdm_unregister_listener(RamDiscardManager *rdm,
1797 RamDiscardListener *rdl)
1798{
1799 VirtIOMEM *vmem = VIRTIO_MEM(rdm);
1800
1801 g_assert(rdl->section->mr == &vmem->memdev->mr);
1802 if (vmem->size) {
1803 if (rdl->double_discard_supported) {
1804 rdl->notify_discard(rdl, rdl->section);
1805 } else {
1806 virtio_mem_for_each_plugged_section(vmem, rdl->section, rdl,
1807 virtio_mem_notify_discard_cb);
1808 }
1809 }
1810
1811 memory_region_section_free_copy(rdl->section);
1812 rdl->section = NULL;
1813 QLIST_REMOVE(rdl, next);
1814}
1815
92a8ee1b
DH
1816static void virtio_mem_unplug_request_check(VirtIOMEM *vmem, Error **errp)
1817{
1818 if (vmem->unplugged_inaccessible == ON_OFF_AUTO_OFF) {
1819 /*
1820 * We could allow it with a usable region size of 0, but let's just
1821 * not care about that legacy setting.
1822 */
1823 error_setg(errp, "virtio-mem device cannot get unplugged while"
1824 " '" VIRTIO_MEM_UNPLUGGED_INACCESSIBLE_PROP "' != 'on'");
1825 return;
1826 }
1827
1828 if (vmem->size) {
1829 error_setg(errp, "virtio-mem device cannot get unplugged while"
1830 " '" VIRTIO_MEM_SIZE_PROP "' != '0'");
1831 return;
1832 }
1833 if (vmem->requested_size) {
1834 error_setg(errp, "virtio-mem device cannot get unplugged while"
1835 " '" VIRTIO_MEM_REQUESTED_SIZE_PROP "' != '0'");
1836 return;
1837 }
1838}
1839
910b2576
DH
1840static void virtio_mem_class_init(ObjectClass *klass, void *data)
1841{
1842 DeviceClass *dc = DEVICE_CLASS(klass);
1843 VirtioDeviceClass *vdc = VIRTIO_DEVICE_CLASS(klass);
1844 VirtIOMEMClass *vmc = VIRTIO_MEM_CLASS(klass);
2044969f 1845 RamDiscardManagerClass *rdmc = RAM_DISCARD_MANAGER_CLASS(klass);
910b2576
DH
1846
1847 device_class_set_props(dc, virtio_mem_properties);
1848 dc->vmsd = &vmstate_virtio_mem;
1849
1850 set_bit(DEVICE_CATEGORY_MISC, dc->categories);
1851 vdc->realize = virtio_mem_device_realize;
1852 vdc->unrealize = virtio_mem_device_unrealize;
1853 vdc->get_config = virtio_mem_get_config;
1854 vdc->get_features = virtio_mem_get_features;
23ad8dec 1855 vdc->validate_features = virtio_mem_validate_features;
910b2576
DH
1856 vdc->vmsd = &vmstate_virtio_mem_device;
1857
1858 vmc->fill_device_info = virtio_mem_fill_device_info;
1859 vmc->get_memory_region = virtio_mem_get_memory_region;
177f9b1e
DH
1860 vmc->decide_memslots = virtio_mem_decide_memslots;
1861 vmc->get_memslots = virtio_mem_get_memslots;
c95b4437
DH
1862 vmc->add_size_change_notifier = virtio_mem_add_size_change_notifier;
1863 vmc->remove_size_change_notifier = virtio_mem_remove_size_change_notifier;
92a8ee1b 1864 vmc->unplug_request_check = virtio_mem_unplug_request_check;
2044969f
DH
1865
1866 rdmc->get_min_granularity = virtio_mem_rdm_get_min_granularity;
1867 rdmc->is_populated = virtio_mem_rdm_is_populated;
1868 rdmc->replay_populated = virtio_mem_rdm_replay_populated;
372aa6fd 1869 rdmc->replay_discarded = virtio_mem_rdm_replay_discarded;
2044969f
DH
1870 rdmc->register_listener = virtio_mem_rdm_register_listener;
1871 rdmc->unregister_listener = virtio_mem_rdm_unregister_listener;
910b2576
DH
1872}
1873
1874static const TypeInfo virtio_mem_info = {
1875 .name = TYPE_VIRTIO_MEM,
1876 .parent = TYPE_VIRTIO_DEVICE,
1877 .instance_size = sizeof(VirtIOMEM),
1878 .instance_init = virtio_mem_instance_init,
177f9b1e 1879 .instance_finalize = virtio_mem_instance_finalize,
910b2576
DH
1880 .class_init = virtio_mem_class_init,
1881 .class_size = sizeof(VirtIOMEMClass),
2044969f
DH
1882 .interfaces = (InterfaceInfo[]) {
1883 { TYPE_RAM_DISCARD_MANAGER },
1884 { }
1885 },
910b2576
DH
1886};
1887
1888static void virtio_register_types(void)
1889{
1890 type_register_static(&virtio_mem_info);
1891}
1892
1893type_init(virtio_register_types)