4 * Copyright Red Hat, Inc. 2010
7 * Michael S. Tsirkin <mst@redhat.com>
9 * This work is licensed under the terms of the GNU GPL, version 2. See
10 * the COPYING file in the top-level directory.
12 * Contributions after 2012-01-13 are licensed under the terms of the
13 * GNU GPL, version 2 or (at your option) any later version.
16 #include "qemu/osdep.h"
17 #include "qapi/error.h"
18 #include "hw/virtio/vhost.h"
19 #include "qemu/atomic.h"
20 #include "qemu/range.h"
21 #include "qemu/error-report.h"
22 #include "qemu/memfd.h"
23 #include "standard-headers/linux/vhost_types.h"
24 #include "hw/virtio/virtio-bus.h"
25 #include "hw/virtio/virtio-access.h"
26 #include "migration/blocker.h"
27 #include "migration/qemu-file-types.h"
28 #include "sysemu/dma.h"
29 #include "sysemu/tcg.h"
32 /* enabled until disconnected backend stabilizes */
33 #define _VHOST_DEBUG 1
36 #define VHOST_OPS_DEBUG(retval, fmt, ...) \
38 error_report(fmt ": %s (%d)", ## __VA_ARGS__, \
39 strerror(-retval), -retval); \
42 #define VHOST_OPS_DEBUG(retval, fmt, ...) \
46 static struct vhost_log
*vhost_log
;
47 static struct vhost_log
*vhost_log_shm
;
49 static unsigned int used_memslots
;
50 static QLIST_HEAD(, vhost_dev
) vhost_devices
=
51 QLIST_HEAD_INITIALIZER(vhost_devices
);
53 bool vhost_has_free_slot(void)
55 unsigned int slots_limit
= ~0U;
56 struct vhost_dev
*hdev
;
58 QLIST_FOREACH(hdev
, &vhost_devices
, entry
) {
59 unsigned int r
= hdev
->vhost_ops
->vhost_backend_memslots_limit(hdev
);
60 slots_limit
= MIN(slots_limit
, r
);
62 return slots_limit
> used_memslots
;
65 static void vhost_dev_sync_region(struct vhost_dev
*dev
,
66 MemoryRegionSection
*section
,
67 uint64_t mfirst
, uint64_t mlast
,
68 uint64_t rfirst
, uint64_t rlast
)
70 vhost_log_chunk_t
*log
= dev
->log
->log
;
72 uint64_t start
= MAX(mfirst
, rfirst
);
73 uint64_t end
= MIN(mlast
, rlast
);
74 vhost_log_chunk_t
*from
= log
+ start
/ VHOST_LOG_CHUNK
;
75 vhost_log_chunk_t
*to
= log
+ end
/ VHOST_LOG_CHUNK
+ 1;
76 uint64_t addr
= QEMU_ALIGN_DOWN(start
, VHOST_LOG_CHUNK
);
81 assert(end
/ VHOST_LOG_CHUNK
< dev
->log_size
);
82 assert(start
/ VHOST_LOG_CHUNK
< dev
->log_size
);
84 for (;from
< to
; ++from
) {
85 vhost_log_chunk_t log
;
86 /* We first check with non-atomic: much cheaper,
87 * and we expect non-dirty to be the common case. */
89 addr
+= VHOST_LOG_CHUNK
;
92 /* Data must be read atomically. We don't really need barrier semantics
93 * but it's easier to use atomic_* than roll our own. */
94 log
= qatomic_xchg(from
, 0);
98 hwaddr section_offset
;
100 page_addr
= addr
+ bit
* VHOST_LOG_PAGE
;
101 section_offset
= page_addr
- section
->offset_within_address_space
;
102 mr_offset
= section_offset
+ section
->offset_within_region
;
103 memory_region_set_dirty(section
->mr
, mr_offset
, VHOST_LOG_PAGE
);
104 log
&= ~(0x1ull
<< bit
);
106 addr
+= VHOST_LOG_CHUNK
;
110 static int vhost_sync_dirty_bitmap(struct vhost_dev
*dev
,
111 MemoryRegionSection
*section
,
119 if (!dev
->log_enabled
|| !dev
->started
) {
122 start_addr
= section
->offset_within_address_space
;
123 end_addr
= range_get_last(start_addr
, int128_get64(section
->size
));
124 start_addr
= MAX(first
, start_addr
);
125 end_addr
= MIN(last
, end_addr
);
127 for (i
= 0; i
< dev
->mem
->nregions
; ++i
) {
128 struct vhost_memory_region
*reg
= dev
->mem
->regions
+ i
;
129 vhost_dev_sync_region(dev
, section
, start_addr
, end_addr
,
130 reg
->guest_phys_addr
,
131 range_get_last(reg
->guest_phys_addr
,
134 for (i
= 0; i
< dev
->nvqs
; ++i
) {
135 struct vhost_virtqueue
*vq
= dev
->vqs
+ i
;
137 if (!vq
->used_phys
&& !vq
->used_size
) {
141 vhost_dev_sync_region(dev
, section
, start_addr
, end_addr
, vq
->used_phys
,
142 range_get_last(vq
->used_phys
, vq
->used_size
));
147 static void vhost_log_sync(MemoryListener
*listener
,
148 MemoryRegionSection
*section
)
150 struct vhost_dev
*dev
= container_of(listener
, struct vhost_dev
,
152 vhost_sync_dirty_bitmap(dev
, section
, 0x0, ~0x0ULL
);
155 static void vhost_log_sync_range(struct vhost_dev
*dev
,
156 hwaddr first
, hwaddr last
)
159 /* FIXME: this is N^2 in number of sections */
160 for (i
= 0; i
< dev
->n_mem_sections
; ++i
) {
161 MemoryRegionSection
*section
= &dev
->mem_sections
[i
];
162 vhost_sync_dirty_bitmap(dev
, section
, first
, last
);
166 static uint64_t vhost_get_log_size(struct vhost_dev
*dev
)
168 uint64_t log_size
= 0;
170 for (i
= 0; i
< dev
->mem
->nregions
; ++i
) {
171 struct vhost_memory_region
*reg
= dev
->mem
->regions
+ i
;
172 uint64_t last
= range_get_last(reg
->guest_phys_addr
,
174 log_size
= MAX(log_size
, last
/ VHOST_LOG_CHUNK
+ 1);
179 static int vhost_set_backend_type(struct vhost_dev
*dev
,
180 VhostBackendType backend_type
)
184 switch (backend_type
) {
185 #ifdef CONFIG_VHOST_KERNEL
186 case VHOST_BACKEND_TYPE_KERNEL
:
187 dev
->vhost_ops
= &kernel_ops
;
190 #ifdef CONFIG_VHOST_USER
191 case VHOST_BACKEND_TYPE_USER
:
192 dev
->vhost_ops
= &user_ops
;
195 #ifdef CONFIG_VHOST_VDPA
196 case VHOST_BACKEND_TYPE_VDPA
:
197 dev
->vhost_ops
= &vdpa_ops
;
201 error_report("Unknown vhost backend type");
208 static struct vhost_log
*vhost_log_alloc(uint64_t size
, bool share
)
211 struct vhost_log
*log
;
212 uint64_t logsize
= size
* sizeof(*(log
->log
));
215 log
= g_new0(struct vhost_log
, 1);
217 log
->log
= qemu_memfd_alloc("vhost-log", logsize
,
218 F_SEAL_GROW
| F_SEAL_SHRINK
| F_SEAL_SEAL
,
221 error_report_err(err
);
225 memset(log
->log
, 0, logsize
);
227 log
->log
= g_malloc0(logsize
);
237 static struct vhost_log
*vhost_log_get(uint64_t size
, bool share
)
239 struct vhost_log
*log
= share
? vhost_log_shm
: vhost_log
;
241 if (!log
|| log
->size
!= size
) {
242 log
= vhost_log_alloc(size
, share
);
255 static void vhost_log_put(struct vhost_dev
*dev
, bool sync
)
257 struct vhost_log
*log
= dev
->log
;
264 if (log
->refcnt
== 0) {
265 /* Sync only the range covered by the old log */
266 if (dev
->log_size
&& sync
) {
267 vhost_log_sync_range(dev
, 0, dev
->log_size
* VHOST_LOG_CHUNK
- 1);
270 if (vhost_log
== log
) {
273 } else if (vhost_log_shm
== log
) {
274 qemu_memfd_free(log
->log
, log
->size
* sizeof(*(log
->log
)),
276 vhost_log_shm
= NULL
;
286 static bool vhost_dev_log_is_shared(struct vhost_dev
*dev
)
288 return dev
->vhost_ops
->vhost_requires_shm_log
&&
289 dev
->vhost_ops
->vhost_requires_shm_log(dev
);
292 static inline void vhost_dev_log_resize(struct vhost_dev
*dev
, uint64_t size
)
294 struct vhost_log
*log
= vhost_log_get(size
, vhost_dev_log_is_shared(dev
));
295 uint64_t log_base
= (uintptr_t)log
->log
;
298 /* inform backend of log switching, this must be done before
299 releasing the current log, to ensure no logging is lost */
300 r
= dev
->vhost_ops
->vhost_set_log_base(dev
, log_base
, log
);
302 VHOST_OPS_DEBUG(r
, "vhost_set_log_base failed");
305 vhost_log_put(dev
, true);
307 dev
->log_size
= size
;
310 static int vhost_dev_has_iommu(struct vhost_dev
*dev
)
312 VirtIODevice
*vdev
= dev
->vdev
;
315 * For vhost, VIRTIO_F_IOMMU_PLATFORM means the backend support
316 * incremental memory mapping API via IOTLB API. For platform that
317 * does not have IOMMU, there's no need to enable this feature
318 * which may cause unnecessary IOTLB miss/update transactions.
320 return virtio_bus_device_iommu_enabled(vdev
) &&
321 virtio_host_has_feature(vdev
, VIRTIO_F_IOMMU_PLATFORM
);
324 static void *vhost_memory_map(struct vhost_dev
*dev
, hwaddr addr
,
325 hwaddr
*plen
, bool is_write
)
327 if (!vhost_dev_has_iommu(dev
)) {
328 return cpu_physical_memory_map(addr
, plen
, is_write
);
330 return (void *)(uintptr_t)addr
;
334 static void vhost_memory_unmap(struct vhost_dev
*dev
, void *buffer
,
335 hwaddr len
, int is_write
,
338 if (!vhost_dev_has_iommu(dev
)) {
339 cpu_physical_memory_unmap(buffer
, len
, is_write
, access_len
);
343 static int vhost_verify_ring_part_mapping(void *ring_hva
,
350 uint64_t hva_ring_offset
;
351 uint64_t ring_last
= range_get_last(ring_gpa
, ring_size
);
352 uint64_t reg_last
= range_get_last(reg_gpa
, reg_size
);
354 if (ring_last
< reg_gpa
|| ring_gpa
> reg_last
) {
357 /* check that whole ring's is mapped */
358 if (ring_last
> reg_last
) {
361 /* check that ring's MemoryRegion wasn't replaced */
362 hva_ring_offset
= ring_gpa
- reg_gpa
;
363 if (ring_hva
!= reg_hva
+ hva_ring_offset
) {
370 static int vhost_verify_ring_mappings(struct vhost_dev
*dev
,
377 const char *part_name
[] = {
383 if (vhost_dev_has_iommu(dev
)) {
387 for (i
= 0; i
< dev
->nvqs
; ++i
) {
388 struct vhost_virtqueue
*vq
= dev
->vqs
+ i
;
390 if (vq
->desc_phys
== 0) {
395 r
= vhost_verify_ring_part_mapping(
396 vq
->desc
, vq
->desc_phys
, vq
->desc_size
,
397 reg_hva
, reg_gpa
, reg_size
);
403 r
= vhost_verify_ring_part_mapping(
404 vq
->avail
, vq
->avail_phys
, vq
->avail_size
,
405 reg_hva
, reg_gpa
, reg_size
);
411 r
= vhost_verify_ring_part_mapping(
412 vq
->used
, vq
->used_phys
, vq
->used_size
,
413 reg_hva
, reg_gpa
, reg_size
);
420 error_report("Unable to map %s for ring %d", part_name
[j
], i
);
421 } else if (r
== -EBUSY
) {
422 error_report("%s relocated for ring %d", part_name
[j
], i
);
428 * vhost_section: identify sections needed for vhost access
430 * We only care about RAM sections here (where virtqueue and guest
431 * internals accessed by virtio might live). If we find one we still
432 * allow the backend to potentially filter it out of our list.
434 static bool vhost_section(struct vhost_dev
*dev
, MemoryRegionSection
*section
)
436 MemoryRegion
*mr
= section
->mr
;
438 if (memory_region_is_ram(mr
) && !memory_region_is_rom(mr
)) {
439 uint8_t dirty_mask
= memory_region_get_dirty_log_mask(mr
);
440 uint8_t handled_dirty
;
443 * Kernel based vhost doesn't handle any block which is doing
444 * dirty-tracking other than migration for which it has
445 * specific logging support. However for TCG the kernel never
446 * gets involved anyway so we can also ignore it's
447 * self-modiying code detection flags. However a vhost-user
448 * client could still confuse a TCG guest if it re-writes
449 * executable memory that has already been translated.
451 handled_dirty
= (1 << DIRTY_MEMORY_MIGRATION
) |
452 (1 << DIRTY_MEMORY_CODE
);
454 if (dirty_mask
& ~handled_dirty
) {
455 trace_vhost_reject_section(mr
->name
, 1);
459 if (dev
->vhost_ops
->vhost_backend_mem_section_filter
&&
460 !dev
->vhost_ops
->vhost_backend_mem_section_filter(dev
, section
)) {
461 trace_vhost_reject_section(mr
->name
, 2);
465 trace_vhost_section(mr
->name
);
468 trace_vhost_reject_section(mr
->name
, 3);
473 static void vhost_begin(MemoryListener
*listener
)
475 struct vhost_dev
*dev
= container_of(listener
, struct vhost_dev
,
477 dev
->tmp_sections
= NULL
;
478 dev
->n_tmp_sections
= 0;
481 static void vhost_commit(MemoryListener
*listener
)
483 struct vhost_dev
*dev
= container_of(listener
, struct vhost_dev
,
485 MemoryRegionSection
*old_sections
;
491 bool changed
= false;
493 /* Note we can be called before the device is started, but then
494 * starting the device calls set_mem_table, so we need to have
495 * built the data structures.
497 old_sections
= dev
->mem_sections
;
498 n_old_sections
= dev
->n_mem_sections
;
499 dev
->mem_sections
= dev
->tmp_sections
;
500 dev
->n_mem_sections
= dev
->n_tmp_sections
;
502 if (dev
->n_mem_sections
!= n_old_sections
) {
505 /* Same size, lets check the contents */
506 for (int i
= 0; i
< n_old_sections
; i
++) {
507 if (!MemoryRegionSection_eq(&old_sections
[i
],
508 &dev
->mem_sections
[i
])) {
515 trace_vhost_commit(dev
->started
, changed
);
520 /* Rebuild the regions list from the new sections list */
521 regions_size
= offsetof(struct vhost_memory
, regions
) +
522 dev
->n_mem_sections
* sizeof dev
->mem
->regions
[0];
523 dev
->mem
= g_realloc(dev
->mem
, regions_size
);
524 dev
->mem
->nregions
= dev
->n_mem_sections
;
525 used_memslots
= dev
->mem
->nregions
;
526 for (i
= 0; i
< dev
->n_mem_sections
; i
++) {
527 struct vhost_memory_region
*cur_vmr
= dev
->mem
->regions
+ i
;
528 struct MemoryRegionSection
*mrs
= dev
->mem_sections
+ i
;
530 cur_vmr
->guest_phys_addr
= mrs
->offset_within_address_space
;
531 cur_vmr
->memory_size
= int128_get64(mrs
->size
);
532 cur_vmr
->userspace_addr
=
533 (uintptr_t)memory_region_get_ram_ptr(mrs
->mr
) +
534 mrs
->offset_within_region
;
535 cur_vmr
->flags_padding
= 0;
542 for (i
= 0; i
< dev
->mem
->nregions
; i
++) {
543 if (vhost_verify_ring_mappings(dev
,
544 (void *)(uintptr_t)dev
->mem
->regions
[i
].userspace_addr
,
545 dev
->mem
->regions
[i
].guest_phys_addr
,
546 dev
->mem
->regions
[i
].memory_size
)) {
547 error_report("Verify ring failure on region %d", i
);
552 if (!dev
->log_enabled
) {
553 r
= dev
->vhost_ops
->vhost_set_mem_table(dev
, dev
->mem
);
555 VHOST_OPS_DEBUG(r
, "vhost_set_mem_table failed");
559 log_size
= vhost_get_log_size(dev
);
560 /* We allocate an extra 4K bytes to log,
561 * to reduce the * number of reallocations. */
562 #define VHOST_LOG_BUFFER (0x1000 / sizeof *dev->log)
563 /* To log more, must increase log size before table update. */
564 if (dev
->log_size
< log_size
) {
565 vhost_dev_log_resize(dev
, log_size
+ VHOST_LOG_BUFFER
);
567 r
= dev
->vhost_ops
->vhost_set_mem_table(dev
, dev
->mem
);
569 VHOST_OPS_DEBUG(r
, "vhost_set_mem_table failed");
571 /* To log less, can only decrease log size after table update. */
572 if (dev
->log_size
> log_size
+ VHOST_LOG_BUFFER
) {
573 vhost_dev_log_resize(dev
, log_size
);
577 /* Deref the old list of sections, this must happen _after_ the
578 * vhost_set_mem_table to ensure the client isn't still using the
579 * section we're about to unref.
581 while (n_old_sections
--) {
582 memory_region_unref(old_sections
[n_old_sections
].mr
);
584 g_free(old_sections
);
588 /* Adds the section data to the tmp_section structure.
589 * It relies on the listener calling us in memory address order
590 * and for each region (via the _add and _nop methods) to
593 static void vhost_region_add_section(struct vhost_dev
*dev
,
594 MemoryRegionSection
*section
)
596 bool need_add
= true;
597 uint64_t mrs_size
= int128_get64(section
->size
);
598 uint64_t mrs_gpa
= section
->offset_within_address_space
;
599 uintptr_t mrs_host
= (uintptr_t)memory_region_get_ram_ptr(section
->mr
) +
600 section
->offset_within_region
;
601 RAMBlock
*mrs_rb
= section
->mr
->ram_block
;
603 trace_vhost_region_add_section(section
->mr
->name
, mrs_gpa
, mrs_size
,
606 if (dev
->vhost_ops
->backend_type
== VHOST_BACKEND_TYPE_USER
) {
607 /* Round the section to it's page size */
608 /* First align the start down to a page boundary */
609 size_t mrs_page
= qemu_ram_pagesize(mrs_rb
);
610 uint64_t alignage
= mrs_host
& (mrs_page
- 1);
612 mrs_host
-= alignage
;
613 mrs_size
+= alignage
;
616 /* Now align the size up to a page boundary */
617 alignage
= mrs_size
& (mrs_page
- 1);
619 mrs_size
+= mrs_page
- alignage
;
621 trace_vhost_region_add_section_aligned(section
->mr
->name
, mrs_gpa
,
625 if (dev
->n_tmp_sections
) {
626 /* Since we already have at least one section, lets see if
627 * this extends it; since we're scanning in order, we only
628 * have to look at the last one, and the FlatView that calls
629 * us shouldn't have overlaps.
631 MemoryRegionSection
*prev_sec
= dev
->tmp_sections
+
632 (dev
->n_tmp_sections
- 1);
633 uint64_t prev_gpa_start
= prev_sec
->offset_within_address_space
;
634 uint64_t prev_size
= int128_get64(prev_sec
->size
);
635 uint64_t prev_gpa_end
= range_get_last(prev_gpa_start
, prev_size
);
636 uint64_t prev_host_start
=
637 (uintptr_t)memory_region_get_ram_ptr(prev_sec
->mr
) +
638 prev_sec
->offset_within_region
;
639 uint64_t prev_host_end
= range_get_last(prev_host_start
, prev_size
);
641 if (mrs_gpa
<= (prev_gpa_end
+ 1)) {
642 /* OK, looks like overlapping/intersecting - it's possible that
643 * the rounding to page sizes has made them overlap, but they should
644 * match up in the same RAMBlock if they do.
646 if (mrs_gpa
< prev_gpa_start
) {
647 error_report("%s:Section '%s' rounded to %"PRIx64
648 " prior to previous '%s' %"PRIx64
,
649 __func__
, section
->mr
->name
, mrs_gpa
,
650 prev_sec
->mr
->name
, prev_gpa_start
);
651 /* A way to cleanly fail here would be better */
654 /* Offset from the start of the previous GPA to this GPA */
655 size_t offset
= mrs_gpa
- prev_gpa_start
;
657 if (prev_host_start
+ offset
== mrs_host
&&
658 section
->mr
== prev_sec
->mr
&&
659 (!dev
->vhost_ops
->vhost_backend_can_merge
||
660 dev
->vhost_ops
->vhost_backend_can_merge(dev
,
662 prev_host_start
, prev_size
))) {
663 uint64_t max_end
= MAX(prev_host_end
, mrs_host
+ mrs_size
);
665 prev_sec
->offset_within_address_space
=
666 MIN(prev_gpa_start
, mrs_gpa
);
667 prev_sec
->offset_within_region
=
668 MIN(prev_host_start
, mrs_host
) -
669 (uintptr_t)memory_region_get_ram_ptr(prev_sec
->mr
);
670 prev_sec
->size
= int128_make64(max_end
- MIN(prev_host_start
,
672 trace_vhost_region_add_section_merge(section
->mr
->name
,
673 int128_get64(prev_sec
->size
),
674 prev_sec
->offset_within_address_space
,
675 prev_sec
->offset_within_region
);
677 /* adjoining regions are fine, but overlapping ones with
678 * different blocks/offsets shouldn't happen
680 if (mrs_gpa
!= prev_gpa_end
+ 1) {
681 error_report("%s: Overlapping but not coherent sections "
691 ++dev
->n_tmp_sections
;
692 dev
->tmp_sections
= g_renew(MemoryRegionSection
, dev
->tmp_sections
,
693 dev
->n_tmp_sections
);
694 dev
->tmp_sections
[dev
->n_tmp_sections
- 1] = *section
;
695 /* The flatview isn't stable and we don't use it, making it NULL
696 * means we can memcmp the list.
698 dev
->tmp_sections
[dev
->n_tmp_sections
- 1].fv
= NULL
;
699 memory_region_ref(section
->mr
);
703 /* Used for both add and nop callbacks */
704 static void vhost_region_addnop(MemoryListener
*listener
,
705 MemoryRegionSection
*section
)
707 struct vhost_dev
*dev
= container_of(listener
, struct vhost_dev
,
710 if (!vhost_section(dev
, section
)) {
713 vhost_region_add_section(dev
, section
);
716 static void vhost_iommu_unmap_notify(IOMMUNotifier
*n
, IOMMUTLBEntry
*iotlb
)
718 struct vhost_iommu
*iommu
= container_of(n
, struct vhost_iommu
, n
);
719 struct vhost_dev
*hdev
= iommu
->hdev
;
720 hwaddr iova
= iotlb
->iova
+ iommu
->iommu_offset
;
722 if (vhost_backend_invalidate_device_iotlb(hdev
, iova
,
723 iotlb
->addr_mask
+ 1)) {
724 error_report("Fail to invalidate device iotlb");
728 static void vhost_iommu_region_add(MemoryListener
*listener
,
729 MemoryRegionSection
*section
)
731 struct vhost_dev
*dev
= container_of(listener
, struct vhost_dev
,
733 struct vhost_iommu
*iommu
;
736 IOMMUMemoryRegion
*iommu_mr
;
739 if (!memory_region_is_iommu(section
->mr
)) {
743 iommu_mr
= IOMMU_MEMORY_REGION(section
->mr
);
745 iommu
= g_malloc0(sizeof(*iommu
));
746 end
= int128_add(int128_make64(section
->offset_within_region
),
748 end
= int128_sub(end
, int128_one());
749 iommu_idx
= memory_region_iommu_attrs_to_index(iommu_mr
,
750 MEMTXATTRS_UNSPECIFIED
);
751 iommu_notifier_init(&iommu
->n
, vhost_iommu_unmap_notify
,
752 IOMMU_NOTIFIER_DEVIOTLB_UNMAP
,
753 section
->offset_within_region
,
756 iommu
->mr
= section
->mr
;
757 iommu
->iommu_offset
= section
->offset_within_address_space
-
758 section
->offset_within_region
;
760 ret
= memory_region_register_iommu_notifier(section
->mr
, &iommu
->n
, NULL
);
763 * Some vIOMMUs do not support dev-iotlb yet. If so, try to use the
764 * UNMAP legacy message
766 iommu
->n
.notifier_flags
= IOMMU_NOTIFIER_UNMAP
;
767 memory_region_register_iommu_notifier(section
->mr
, &iommu
->n
,
770 QLIST_INSERT_HEAD(&dev
->iommu_list
, iommu
, iommu_next
);
771 /* TODO: can replay help performance here? */
774 static void vhost_iommu_region_del(MemoryListener
*listener
,
775 MemoryRegionSection
*section
)
777 struct vhost_dev
*dev
= container_of(listener
, struct vhost_dev
,
779 struct vhost_iommu
*iommu
;
781 if (!memory_region_is_iommu(section
->mr
)) {
785 QLIST_FOREACH(iommu
, &dev
->iommu_list
, iommu_next
) {
786 if (iommu
->mr
== section
->mr
&&
787 iommu
->n
.start
== section
->offset_within_region
) {
788 memory_region_unregister_iommu_notifier(iommu
->mr
,
790 QLIST_REMOVE(iommu
, iommu_next
);
797 static int vhost_virtqueue_set_addr(struct vhost_dev
*dev
,
798 struct vhost_virtqueue
*vq
,
799 unsigned idx
, bool enable_log
)
801 struct vhost_vring_addr addr
;
803 memset(&addr
, 0, sizeof(struct vhost_vring_addr
));
805 if (dev
->vhost_ops
->vhost_vq_get_addr
) {
806 r
= dev
->vhost_ops
->vhost_vq_get_addr(dev
, &addr
, vq
);
808 VHOST_OPS_DEBUG(r
, "vhost_vq_get_addr failed");
812 addr
.desc_user_addr
= (uint64_t)(unsigned long)vq
->desc
;
813 addr
.avail_user_addr
= (uint64_t)(unsigned long)vq
->avail
;
814 addr
.used_user_addr
= (uint64_t)(unsigned long)vq
->used
;
817 addr
.log_guest_addr
= vq
->used_phys
;
818 addr
.flags
= enable_log
? (1 << VHOST_VRING_F_LOG
) : 0;
819 r
= dev
->vhost_ops
->vhost_set_vring_addr(dev
, &addr
);
821 VHOST_OPS_DEBUG(r
, "vhost_set_vring_addr failed");
826 static int vhost_dev_set_features(struct vhost_dev
*dev
,
829 uint64_t features
= dev
->acked_features
;
832 features
|= 0x1ULL
<< VHOST_F_LOG_ALL
;
834 if (!vhost_dev_has_iommu(dev
)) {
835 features
&= ~(0x1ULL
<< VIRTIO_F_IOMMU_PLATFORM
);
837 if (dev
->vhost_ops
->vhost_force_iommu
) {
838 if (dev
->vhost_ops
->vhost_force_iommu(dev
) == true) {
839 features
|= 0x1ULL
<< VIRTIO_F_IOMMU_PLATFORM
;
842 r
= dev
->vhost_ops
->vhost_set_features(dev
, features
);
844 VHOST_OPS_DEBUG(r
, "vhost_set_features failed");
847 if (dev
->vhost_ops
->vhost_set_backend_cap
) {
848 r
= dev
->vhost_ops
->vhost_set_backend_cap(dev
);
850 VHOST_OPS_DEBUG(r
, "vhost_set_backend_cap failed");
859 static int vhost_dev_set_log(struct vhost_dev
*dev
, bool enable_log
)
864 r
= vhost_dev_set_features(dev
, enable_log
);
868 for (i
= 0; i
< dev
->nvqs
; ++i
) {
869 idx
= dev
->vhost_ops
->vhost_get_vq_index(dev
, dev
->vq_index
+ i
);
870 addr
= virtio_queue_get_desc_addr(dev
->vdev
, idx
);
873 * The queue might not be ready for start. If this
874 * is the case there is no reason to continue the process.
875 * The similar logic is used by the vhost_virtqueue_start()
880 r
= vhost_virtqueue_set_addr(dev
, dev
->vqs
+ i
, idx
,
888 for (; i
>= 0; --i
) {
889 idx
= dev
->vhost_ops
->vhost_get_vq_index(dev
, dev
->vq_index
+ i
);
890 vhost_virtqueue_set_addr(dev
, dev
->vqs
+ i
, idx
,
893 vhost_dev_set_features(dev
, dev
->log_enabled
);
898 static int vhost_migration_log(MemoryListener
*listener
, bool enable
)
900 struct vhost_dev
*dev
= container_of(listener
, struct vhost_dev
,
903 if (enable
== dev
->log_enabled
) {
907 dev
->log_enabled
= enable
;
913 r
= vhost_dev_set_log(dev
, false);
915 goto check_dev_state
;
917 vhost_log_put(dev
, false);
919 vhost_dev_log_resize(dev
, vhost_get_log_size(dev
));
920 r
= vhost_dev_set_log(dev
, true);
922 goto check_dev_state
;
927 dev
->log_enabled
= enable
;
929 * vhost-user-* devices could change their state during log
930 * initialization due to disconnect. So check dev state after
931 * vhost communication.
935 * Since device is in the stopped state, it is okay for
936 * migration. Return success.
941 /* An error occurred. */
942 dev
->log_enabled
= false;
948 static void vhost_log_global_start(MemoryListener
*listener
)
952 r
= vhost_migration_log(listener
, true);
958 static void vhost_log_global_stop(MemoryListener
*listener
)
962 r
= vhost_migration_log(listener
, false);
968 static void vhost_log_start(MemoryListener
*listener
,
969 MemoryRegionSection
*section
,
972 /* FIXME: implement */
975 static void vhost_log_stop(MemoryListener
*listener
,
976 MemoryRegionSection
*section
,
979 /* FIXME: implement */
982 /* The vhost driver natively knows how to handle the vrings of non
983 * cross-endian legacy devices and modern devices. Only legacy devices
984 * exposed to a bi-endian guest may require the vhost driver to use a
985 * specific endianness.
987 static inline bool vhost_needs_vring_endian(VirtIODevice
*vdev
)
989 if (virtio_vdev_has_feature(vdev
, VIRTIO_F_VERSION_1
)) {
992 #ifdef HOST_WORDS_BIGENDIAN
993 return vdev
->device_endian
== VIRTIO_DEVICE_ENDIAN_LITTLE
;
995 return vdev
->device_endian
== VIRTIO_DEVICE_ENDIAN_BIG
;
999 static int vhost_virtqueue_set_vring_endian_legacy(struct vhost_dev
*dev
,
1004 struct vhost_vring_state s
= {
1005 .index
= vhost_vq_index
,
1006 .num
= is_big_endian
1009 r
= dev
->vhost_ops
->vhost_set_vring_endian(dev
, &s
);
1011 VHOST_OPS_DEBUG(r
, "vhost_set_vring_endian failed");
1016 static int vhost_memory_region_lookup(struct vhost_dev
*hdev
,
1017 uint64_t gpa
, uint64_t *uaddr
,
1022 for (i
= 0; i
< hdev
->mem
->nregions
; i
++) {
1023 struct vhost_memory_region
*reg
= hdev
->mem
->regions
+ i
;
1025 if (gpa
>= reg
->guest_phys_addr
&&
1026 reg
->guest_phys_addr
+ reg
->memory_size
> gpa
) {
1027 *uaddr
= reg
->userspace_addr
+ gpa
- reg
->guest_phys_addr
;
1028 *len
= reg
->guest_phys_addr
+ reg
->memory_size
- gpa
;
1036 int vhost_device_iotlb_miss(struct vhost_dev
*dev
, uint64_t iova
, int write
)
1038 IOMMUTLBEntry iotlb
;
1039 uint64_t uaddr
, len
;
1042 RCU_READ_LOCK_GUARD();
1044 trace_vhost_iotlb_miss(dev
, 1);
1046 iotlb
= address_space_get_iotlb_entry(dev
->vdev
->dma_as
,
1048 MEMTXATTRS_UNSPECIFIED
);
1049 if (iotlb
.target_as
!= NULL
) {
1050 ret
= vhost_memory_region_lookup(dev
, iotlb
.translated_addr
,
1053 trace_vhost_iotlb_miss(dev
, 3);
1054 error_report("Fail to lookup the translated address "
1055 "%"PRIx64
, iotlb
.translated_addr
);
1059 len
= MIN(iotlb
.addr_mask
+ 1, len
);
1060 iova
= iova
& ~iotlb
.addr_mask
;
1062 ret
= vhost_backend_update_device_iotlb(dev
, iova
, uaddr
,
1065 trace_vhost_iotlb_miss(dev
, 4);
1066 error_report("Fail to update device iotlb");
1071 trace_vhost_iotlb_miss(dev
, 2);
1077 static int vhost_virtqueue_start(struct vhost_dev
*dev
,
1078 struct VirtIODevice
*vdev
,
1079 struct vhost_virtqueue
*vq
,
1082 BusState
*qbus
= BUS(qdev_get_parent_bus(DEVICE(vdev
)));
1083 VirtioBusState
*vbus
= VIRTIO_BUS(qbus
);
1084 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(vbus
);
1087 int vhost_vq_index
= dev
->vhost_ops
->vhost_get_vq_index(dev
, idx
);
1088 struct vhost_vring_file file
= {
1089 .index
= vhost_vq_index
1091 struct vhost_vring_state state
= {
1092 .index
= vhost_vq_index
1094 struct VirtQueue
*vvq
= virtio_get_queue(vdev
, idx
);
1096 a
= virtio_queue_get_desc_addr(vdev
, idx
);
1098 /* Queue might not be ready for start */
1102 vq
->num
= state
.num
= virtio_queue_get_num(vdev
, idx
);
1103 r
= dev
->vhost_ops
->vhost_set_vring_num(dev
, &state
);
1105 VHOST_OPS_DEBUG(r
, "vhost_set_vring_num failed");
1109 state
.num
= virtio_queue_get_last_avail_idx(vdev
, idx
);
1110 r
= dev
->vhost_ops
->vhost_set_vring_base(dev
, &state
);
1112 VHOST_OPS_DEBUG(r
, "vhost_set_vring_base failed");
1116 if (vhost_needs_vring_endian(vdev
)) {
1117 r
= vhost_virtqueue_set_vring_endian_legacy(dev
,
1118 virtio_is_big_endian(vdev
),
1125 vq
->desc_size
= s
= l
= virtio_queue_get_desc_size(vdev
, idx
);
1127 vq
->desc
= vhost_memory_map(dev
, a
, &l
, false);
1128 if (!vq
->desc
|| l
!= s
) {
1130 goto fail_alloc_desc
;
1132 vq
->avail_size
= s
= l
= virtio_queue_get_avail_size(vdev
, idx
);
1133 vq
->avail_phys
= a
= virtio_queue_get_avail_addr(vdev
, idx
);
1134 vq
->avail
= vhost_memory_map(dev
, a
, &l
, false);
1135 if (!vq
->avail
|| l
!= s
) {
1137 goto fail_alloc_avail
;
1139 vq
->used_size
= s
= l
= virtio_queue_get_used_size(vdev
, idx
);
1140 vq
->used_phys
= a
= virtio_queue_get_used_addr(vdev
, idx
);
1141 vq
->used
= vhost_memory_map(dev
, a
, &l
, true);
1142 if (!vq
->used
|| l
!= s
) {
1144 goto fail_alloc_used
;
1147 r
= vhost_virtqueue_set_addr(dev
, vq
, vhost_vq_index
, dev
->log_enabled
);
1152 file
.fd
= event_notifier_get_fd(virtio_queue_get_host_notifier(vvq
));
1153 r
= dev
->vhost_ops
->vhost_set_vring_kick(dev
, &file
);
1155 VHOST_OPS_DEBUG(r
, "vhost_set_vring_kick failed");
1159 /* Clear and discard previous events if any. */
1160 event_notifier_test_and_clear(&vq
->masked_notifier
);
1162 /* Init vring in unmasked state, unless guest_notifier_mask
1165 if (!vdev
->use_guest_notifier_mask
) {
1166 /* TODO: check and handle errors. */
1167 vhost_virtqueue_mask(dev
, vdev
, idx
, false);
1170 if (k
->query_guest_notifiers
&&
1171 k
->query_guest_notifiers(qbus
->parent
) &&
1172 virtio_queue_vector(vdev
, idx
) == VIRTIO_NO_VECTOR
) {
1174 r
= dev
->vhost_ops
->vhost_set_vring_call(dev
, &file
);
1185 vhost_memory_unmap(dev
, vq
->used
, virtio_queue_get_used_size(vdev
, idx
),
1188 vhost_memory_unmap(dev
, vq
->avail
, virtio_queue_get_avail_size(vdev
, idx
),
1191 vhost_memory_unmap(dev
, vq
->desc
, virtio_queue_get_desc_size(vdev
, idx
),
1197 static void vhost_virtqueue_stop(struct vhost_dev
*dev
,
1198 struct VirtIODevice
*vdev
,
1199 struct vhost_virtqueue
*vq
,
1202 int vhost_vq_index
= dev
->vhost_ops
->vhost_get_vq_index(dev
, idx
);
1203 struct vhost_vring_state state
= {
1204 .index
= vhost_vq_index
,
1208 if (virtio_queue_get_desc_addr(vdev
, idx
) == 0) {
1209 /* Don't stop the virtqueue which might have not been started */
1213 r
= dev
->vhost_ops
->vhost_get_vring_base(dev
, &state
);
1215 VHOST_OPS_DEBUG(r
, "vhost VQ %u ring restore failed: %d", idx
, r
);
1216 /* Connection to the backend is broken, so let's sync internal
1217 * last avail idx to the device used idx.
1219 virtio_queue_restore_last_avail_idx(vdev
, idx
);
1221 virtio_queue_set_last_avail_idx(vdev
, idx
, state
.num
);
1223 virtio_queue_invalidate_signalled_used(vdev
, idx
);
1224 virtio_queue_update_used_idx(vdev
, idx
);
1226 /* In the cross-endian case, we need to reset the vring endianness to
1227 * native as legacy devices expect so by default.
1229 if (vhost_needs_vring_endian(vdev
)) {
1230 vhost_virtqueue_set_vring_endian_legacy(dev
,
1231 !virtio_is_big_endian(vdev
),
1235 vhost_memory_unmap(dev
, vq
->used
, virtio_queue_get_used_size(vdev
, idx
),
1236 1, virtio_queue_get_used_size(vdev
, idx
));
1237 vhost_memory_unmap(dev
, vq
->avail
, virtio_queue_get_avail_size(vdev
, idx
),
1238 0, virtio_queue_get_avail_size(vdev
, idx
));
1239 vhost_memory_unmap(dev
, vq
->desc
, virtio_queue_get_desc_size(vdev
, idx
),
1240 0, virtio_queue_get_desc_size(vdev
, idx
));
1243 static void vhost_eventfd_add(MemoryListener
*listener
,
1244 MemoryRegionSection
*section
,
1245 bool match_data
, uint64_t data
, EventNotifier
*e
)
1249 static void vhost_eventfd_del(MemoryListener
*listener
,
1250 MemoryRegionSection
*section
,
1251 bool match_data
, uint64_t data
, EventNotifier
*e
)
1255 static int vhost_virtqueue_set_busyloop_timeout(struct vhost_dev
*dev
,
1256 int n
, uint32_t timeout
)
1258 int vhost_vq_index
= dev
->vhost_ops
->vhost_get_vq_index(dev
, n
);
1259 struct vhost_vring_state state
= {
1260 .index
= vhost_vq_index
,
1265 if (!dev
->vhost_ops
->vhost_set_vring_busyloop_timeout
) {
1269 r
= dev
->vhost_ops
->vhost_set_vring_busyloop_timeout(dev
, &state
);
1271 VHOST_OPS_DEBUG(r
, "vhost_set_vring_busyloop_timeout failed");
1278 static int vhost_virtqueue_init(struct vhost_dev
*dev
,
1279 struct vhost_virtqueue
*vq
, int n
)
1281 int vhost_vq_index
= dev
->vhost_ops
->vhost_get_vq_index(dev
, n
);
1282 struct vhost_vring_file file
= {
1283 .index
= vhost_vq_index
,
1285 int r
= event_notifier_init(&vq
->masked_notifier
, 0);
1290 file
.fd
= event_notifier_get_wfd(&vq
->masked_notifier
);
1291 r
= dev
->vhost_ops
->vhost_set_vring_call(dev
, &file
);
1293 VHOST_OPS_DEBUG(r
, "vhost_set_vring_call failed");
1301 event_notifier_cleanup(&vq
->masked_notifier
);
1305 static void vhost_virtqueue_cleanup(struct vhost_virtqueue
*vq
)
1307 event_notifier_cleanup(&vq
->masked_notifier
);
1310 int vhost_dev_init(struct vhost_dev
*hdev
, void *opaque
,
1311 VhostBackendType backend_type
, uint32_t busyloop_timeout
,
1315 int i
, r
, n_initialized_vqs
= 0;
1318 hdev
->migration_blocker
= NULL
;
1320 r
= vhost_set_backend_type(hdev
, backend_type
);
1323 r
= hdev
->vhost_ops
->vhost_backend_init(hdev
, opaque
, errp
);
1328 r
= hdev
->vhost_ops
->vhost_set_owner(hdev
);
1330 error_setg_errno(errp
, -r
, "vhost_set_owner failed");
1334 r
= hdev
->vhost_ops
->vhost_get_features(hdev
, &features
);
1336 error_setg_errno(errp
, -r
, "vhost_get_features failed");
1340 for (i
= 0; i
< hdev
->nvqs
; ++i
, ++n_initialized_vqs
) {
1341 r
= vhost_virtqueue_init(hdev
, hdev
->vqs
+ i
, hdev
->vq_index
+ i
);
1343 error_setg_errno(errp
, -r
, "Failed to initialize virtqueue %d", i
);
1348 if (busyloop_timeout
) {
1349 for (i
= 0; i
< hdev
->nvqs
; ++i
) {
1350 r
= vhost_virtqueue_set_busyloop_timeout(hdev
, hdev
->vq_index
+ i
,
1353 error_setg_errno(errp
, -r
, "Failed to set busyloop timeout");
1359 hdev
->features
= features
;
1361 hdev
->memory_listener
= (MemoryListener
) {
1363 .begin
= vhost_begin
,
1364 .commit
= vhost_commit
,
1365 .region_add
= vhost_region_addnop
,
1366 .region_nop
= vhost_region_addnop
,
1367 .log_start
= vhost_log_start
,
1368 .log_stop
= vhost_log_stop
,
1369 .log_sync
= vhost_log_sync
,
1370 .log_global_start
= vhost_log_global_start
,
1371 .log_global_stop
= vhost_log_global_stop
,
1372 .eventfd_add
= vhost_eventfd_add
,
1373 .eventfd_del
= vhost_eventfd_del
,
1377 hdev
->iommu_listener
= (MemoryListener
) {
1378 .name
= "vhost-iommu",
1379 .region_add
= vhost_iommu_region_add
,
1380 .region_del
= vhost_iommu_region_del
,
1383 if (hdev
->migration_blocker
== NULL
) {
1384 if (!(hdev
->features
& (0x1ULL
<< VHOST_F_LOG_ALL
))) {
1385 error_setg(&hdev
->migration_blocker
,
1386 "Migration disabled: vhost lacks VHOST_F_LOG_ALL feature.");
1387 } else if (vhost_dev_log_is_shared(hdev
) && !qemu_memfd_alloc_check()) {
1388 error_setg(&hdev
->migration_blocker
,
1389 "Migration disabled: failed to allocate shared memory");
1393 if (hdev
->migration_blocker
!= NULL
) {
1394 r
= migrate_add_blocker(hdev
->migration_blocker
, errp
);
1396 error_free(hdev
->migration_blocker
);
1401 hdev
->mem
= g_malloc0(offsetof(struct vhost_memory
, regions
));
1402 hdev
->n_mem_sections
= 0;
1403 hdev
->mem_sections
= NULL
;
1406 hdev
->log_enabled
= false;
1407 hdev
->started
= false;
1408 memory_listener_register(&hdev
->memory_listener
, &address_space_memory
);
1409 QLIST_INSERT_HEAD(&vhost_devices
, hdev
, entry
);
1411 if (used_memslots
> hdev
->vhost_ops
->vhost_backend_memslots_limit(hdev
)) {
1412 error_setg(errp
, "vhost backend memory slots limit is less"
1413 " than current number of present memory slots");
1421 if (busyloop_timeout
) {
1423 vhost_virtqueue_set_busyloop_timeout(hdev
, hdev
->vq_index
+ i
, 0);
1427 hdev
->nvqs
= n_initialized_vqs
;
1428 vhost_dev_cleanup(hdev
);
1432 void vhost_dev_cleanup(struct vhost_dev
*hdev
)
1436 for (i
= 0; i
< hdev
->nvqs
; ++i
) {
1437 vhost_virtqueue_cleanup(hdev
->vqs
+ i
);
1440 /* those are only safe after successful init */
1441 memory_listener_unregister(&hdev
->memory_listener
);
1442 QLIST_REMOVE(hdev
, entry
);
1444 if (hdev
->migration_blocker
) {
1445 migrate_del_blocker(hdev
->migration_blocker
);
1446 error_free(hdev
->migration_blocker
);
1449 g_free(hdev
->mem_sections
);
1450 if (hdev
->vhost_ops
) {
1451 hdev
->vhost_ops
->vhost_backend_cleanup(hdev
);
1455 memset(hdev
, 0, sizeof(struct vhost_dev
));
1458 /* Stop processing guest IO notifications in qemu.
1459 * Start processing them in vhost in kernel.
1461 int vhost_dev_enable_notifiers(struct vhost_dev
*hdev
, VirtIODevice
*vdev
)
1463 BusState
*qbus
= BUS(qdev_get_parent_bus(DEVICE(vdev
)));
1466 /* We will pass the notifiers to the kernel, make sure that QEMU
1467 * doesn't interfere.
1469 r
= virtio_device_grab_ioeventfd(vdev
);
1471 error_report("binding does not support host notifiers");
1475 for (i
= 0; i
< hdev
->nvqs
; ++i
) {
1476 r
= virtio_bus_set_host_notifier(VIRTIO_BUS(qbus
), hdev
->vq_index
+ i
,
1479 error_report("vhost VQ %d notifier binding failed: %d", i
, -r
);
1487 e
= virtio_bus_set_host_notifier(VIRTIO_BUS(qbus
), hdev
->vq_index
+ i
,
1490 error_report("vhost VQ %d notifier cleanup error: %d", i
, -r
);
1493 virtio_bus_cleanup_host_notifier(VIRTIO_BUS(qbus
), hdev
->vq_index
+ i
);
1495 virtio_device_release_ioeventfd(vdev
);
1500 /* Stop processing guest IO notifications in vhost.
1501 * Start processing them in qemu.
1502 * This might actually run the qemu handlers right away,
1503 * so virtio in qemu must be completely setup when this is called.
1505 void vhost_dev_disable_notifiers(struct vhost_dev
*hdev
, VirtIODevice
*vdev
)
1507 BusState
*qbus
= BUS(qdev_get_parent_bus(DEVICE(vdev
)));
1510 for (i
= 0; i
< hdev
->nvqs
; ++i
) {
1511 r
= virtio_bus_set_host_notifier(VIRTIO_BUS(qbus
), hdev
->vq_index
+ i
,
1514 error_report("vhost VQ %d notifier cleanup failed: %d", i
, -r
);
1517 virtio_bus_cleanup_host_notifier(VIRTIO_BUS(qbus
), hdev
->vq_index
+ i
);
1519 virtio_device_release_ioeventfd(vdev
);
1522 /* Test and clear event pending status.
1523 * Should be called after unmask to avoid losing events.
1525 bool vhost_virtqueue_pending(struct vhost_dev
*hdev
, int n
)
1527 struct vhost_virtqueue
*vq
= hdev
->vqs
+ n
- hdev
->vq_index
;
1528 assert(n
>= hdev
->vq_index
&& n
< hdev
->vq_index
+ hdev
->nvqs
);
1529 return event_notifier_test_and_clear(&vq
->masked_notifier
);
1532 /* Mask/unmask events from this vq. */
1533 void vhost_virtqueue_mask(struct vhost_dev
*hdev
, VirtIODevice
*vdev
, int n
,
1536 struct VirtQueue
*vvq
= virtio_get_queue(vdev
, n
);
1537 int r
, index
= n
- hdev
->vq_index
;
1538 struct vhost_vring_file file
;
1540 /* should only be called after backend is connected */
1541 assert(hdev
->vhost_ops
);
1544 assert(vdev
->use_guest_notifier_mask
);
1545 file
.fd
= event_notifier_get_wfd(&hdev
->vqs
[index
].masked_notifier
);
1547 file
.fd
= event_notifier_get_wfd(virtio_queue_get_guest_notifier(vvq
));
1550 file
.index
= hdev
->vhost_ops
->vhost_get_vq_index(hdev
, n
);
1551 r
= hdev
->vhost_ops
->vhost_set_vring_call(hdev
, &file
);
1553 VHOST_OPS_DEBUG(r
, "vhost_set_vring_call failed");
1557 uint64_t vhost_get_features(struct vhost_dev
*hdev
, const int *feature_bits
,
1560 const int *bit
= feature_bits
;
1561 while (*bit
!= VHOST_INVALID_FEATURE_BIT
) {
1562 uint64_t bit_mask
= (1ULL << *bit
);
1563 if (!(hdev
->features
& bit_mask
)) {
1564 features
&= ~bit_mask
;
1571 void vhost_ack_features(struct vhost_dev
*hdev
, const int *feature_bits
,
1574 const int *bit
= feature_bits
;
1575 while (*bit
!= VHOST_INVALID_FEATURE_BIT
) {
1576 uint64_t bit_mask
= (1ULL << *bit
);
1577 if (features
& bit_mask
) {
1578 hdev
->acked_features
|= bit_mask
;
1584 int vhost_dev_get_config(struct vhost_dev
*hdev
, uint8_t *config
,
1585 uint32_t config_len
, Error
**errp
)
1587 assert(hdev
->vhost_ops
);
1589 if (hdev
->vhost_ops
->vhost_get_config
) {
1590 return hdev
->vhost_ops
->vhost_get_config(hdev
, config
, config_len
,
1594 error_setg(errp
, "vhost_get_config not implemented");
1598 int vhost_dev_set_config(struct vhost_dev
*hdev
, const uint8_t *data
,
1599 uint32_t offset
, uint32_t size
, uint32_t flags
)
1601 assert(hdev
->vhost_ops
);
1603 if (hdev
->vhost_ops
->vhost_set_config
) {
1604 return hdev
->vhost_ops
->vhost_set_config(hdev
, data
, offset
,
1611 void vhost_dev_set_config_notifier(struct vhost_dev
*hdev
,
1612 const VhostDevConfigOps
*ops
)
1614 hdev
->config_ops
= ops
;
1617 void vhost_dev_free_inflight(struct vhost_inflight
*inflight
)
1619 if (inflight
&& inflight
->addr
) {
1620 qemu_memfd_free(inflight
->addr
, inflight
->size
, inflight
->fd
);
1621 inflight
->addr
= NULL
;
1626 static int vhost_dev_resize_inflight(struct vhost_inflight
*inflight
,
1631 void *addr
= qemu_memfd_alloc("vhost-inflight", new_size
,
1632 F_SEAL_GROW
| F_SEAL_SHRINK
| F_SEAL_SEAL
,
1636 error_report_err(err
);
1640 vhost_dev_free_inflight(inflight
);
1641 inflight
->offset
= 0;
1642 inflight
->addr
= addr
;
1644 inflight
->size
= new_size
;
1649 void vhost_dev_save_inflight(struct vhost_inflight
*inflight
, QEMUFile
*f
)
1651 if (inflight
->addr
) {
1652 qemu_put_be64(f
, inflight
->size
);
1653 qemu_put_be16(f
, inflight
->queue_size
);
1654 qemu_put_buffer(f
, inflight
->addr
, inflight
->size
);
1656 qemu_put_be64(f
, 0);
1660 int vhost_dev_load_inflight(struct vhost_inflight
*inflight
, QEMUFile
*f
)
1664 size
= qemu_get_be64(f
);
1669 if (inflight
->size
!= size
) {
1670 int ret
= vhost_dev_resize_inflight(inflight
, size
);
1675 inflight
->queue_size
= qemu_get_be16(f
);
1677 qemu_get_buffer(f
, inflight
->addr
, size
);
1682 int vhost_dev_prepare_inflight(struct vhost_dev
*hdev
, VirtIODevice
*vdev
)
1686 if (hdev
->vhost_ops
->vhost_get_inflight_fd
== NULL
||
1687 hdev
->vhost_ops
->vhost_set_inflight_fd
== NULL
) {
1693 r
= vhost_dev_set_features(hdev
, hdev
->log_enabled
);
1695 VHOST_OPS_DEBUG(r
, "vhost_dev_prepare_inflight failed");
1702 int vhost_dev_set_inflight(struct vhost_dev
*dev
,
1703 struct vhost_inflight
*inflight
)
1707 if (dev
->vhost_ops
->vhost_set_inflight_fd
&& inflight
->addr
) {
1708 r
= dev
->vhost_ops
->vhost_set_inflight_fd(dev
, inflight
);
1710 VHOST_OPS_DEBUG(r
, "vhost_set_inflight_fd failed");
1718 int vhost_dev_get_inflight(struct vhost_dev
*dev
, uint16_t queue_size
,
1719 struct vhost_inflight
*inflight
)
1723 if (dev
->vhost_ops
->vhost_get_inflight_fd
) {
1724 r
= dev
->vhost_ops
->vhost_get_inflight_fd(dev
, queue_size
, inflight
);
1726 VHOST_OPS_DEBUG(r
, "vhost_get_inflight_fd failed");
1734 /* Host notifiers must be enabled at this point. */
1735 int vhost_dev_start(struct vhost_dev
*hdev
, VirtIODevice
*vdev
)
1739 /* should only be called after backend is connected */
1740 assert(hdev
->vhost_ops
);
1742 hdev
->started
= true;
1745 r
= vhost_dev_set_features(hdev
, hdev
->log_enabled
);
1750 if (vhost_dev_has_iommu(hdev
)) {
1751 memory_listener_register(&hdev
->iommu_listener
, vdev
->dma_as
);
1754 r
= hdev
->vhost_ops
->vhost_set_mem_table(hdev
, hdev
->mem
);
1756 VHOST_OPS_DEBUG(r
, "vhost_set_mem_table failed");
1759 for (i
= 0; i
< hdev
->nvqs
; ++i
) {
1760 r
= vhost_virtqueue_start(hdev
,
1763 hdev
->vq_index
+ i
);
1769 if (hdev
->log_enabled
) {
1772 hdev
->log_size
= vhost_get_log_size(hdev
);
1773 hdev
->log
= vhost_log_get(hdev
->log_size
,
1774 vhost_dev_log_is_shared(hdev
));
1775 log_base
= (uintptr_t)hdev
->log
->log
;
1776 r
= hdev
->vhost_ops
->vhost_set_log_base(hdev
,
1777 hdev
->log_size
? log_base
: 0,
1780 VHOST_OPS_DEBUG(r
, "vhost_set_log_base failed");
1784 if (hdev
->vhost_ops
->vhost_dev_start
) {
1785 r
= hdev
->vhost_ops
->vhost_dev_start(hdev
, true);
1790 if (vhost_dev_has_iommu(hdev
) &&
1791 hdev
->vhost_ops
->vhost_set_iotlb_callback
) {
1792 hdev
->vhost_ops
->vhost_set_iotlb_callback(hdev
, true);
1794 /* Update used ring information for IOTLB to work correctly,
1795 * vhost-kernel code requires for this.*/
1796 for (i
= 0; i
< hdev
->nvqs
; ++i
) {
1797 struct vhost_virtqueue
*vq
= hdev
->vqs
+ i
;
1798 vhost_device_iotlb_miss(hdev
, vq
->used_phys
, true);
1803 vhost_log_put(hdev
, false);
1806 vhost_virtqueue_stop(hdev
,
1809 hdev
->vq_index
+ i
);
1815 hdev
->started
= false;
1819 /* Host notifiers must be enabled at this point. */
1820 void vhost_dev_stop(struct vhost_dev
*hdev
, VirtIODevice
*vdev
)
1824 /* should only be called after backend is connected */
1825 assert(hdev
->vhost_ops
);
1827 if (hdev
->vhost_ops
->vhost_dev_start
) {
1828 hdev
->vhost_ops
->vhost_dev_start(hdev
, false);
1830 for (i
= 0; i
< hdev
->nvqs
; ++i
) {
1831 vhost_virtqueue_stop(hdev
,
1834 hdev
->vq_index
+ i
);
1837 if (vhost_dev_has_iommu(hdev
)) {
1838 if (hdev
->vhost_ops
->vhost_set_iotlb_callback
) {
1839 hdev
->vhost_ops
->vhost_set_iotlb_callback(hdev
, false);
1841 memory_listener_unregister(&hdev
->iommu_listener
);
1843 vhost_log_put(hdev
, true);
1844 hdev
->started
= false;
1848 int vhost_net_set_backend(struct vhost_dev
*hdev
,
1849 struct vhost_vring_file
*file
)
1851 if (hdev
->vhost_ops
->vhost_net_set_backend
) {
1852 return hdev
->vhost_ops
->vhost_net_set_backend(hdev
, file
);