4 * Copyright IBM, Corp. 2007
7 * Anthony Liguori <aliguori@us.ibm.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.
14 #include "qemu/osdep.h"
15 #include "qapi/error.h"
16 #include "qemu-common.h"
19 #include "exec/address-spaces.h"
20 #include "qemu/error-report.h"
21 #include "hw/virtio/virtio.h"
22 #include "qemu/atomic.h"
23 #include "hw/virtio/virtio-bus.h"
24 #include "hw/virtio/virtio-access.h"
25 #include "sysemu/dma.h"
28 * The alignment to use between consumer and producer parts of vring.
29 * x86 pagesize again. This is the default, used by transports like PCI
30 * which don't provide a means for the guest to tell the host the alignment.
32 #define VIRTIO_PCI_VRING_ALIGN 4096
34 typedef struct VRingDesc
42 typedef struct VRingAvail
49 typedef struct VRingUsedElem
55 typedef struct VRingUsed
59 VRingUsedElem ring
[0];
62 typedef struct VRingMemoryRegionCaches
{
64 MemoryRegionCache desc
;
65 MemoryRegionCache avail
;
66 MemoryRegionCache used
;
67 } VRingMemoryRegionCaches
;
72 unsigned int num_default
;
77 VRingMemoryRegionCaches
*caches
;
84 /* Next head to pop */
85 uint16_t last_avail_idx
;
87 /* Last avail_idx read from VQ. */
88 uint16_t shadow_avail_idx
;
92 /* Last used index value we have signalled on */
93 uint16_t signalled_used
;
95 /* Last used index value we have signalled on */
96 bool signalled_used_valid
;
98 /* Notification enabled? */
101 uint16_t queue_index
;
106 VirtIOHandleOutput handle_output
;
107 VirtIOHandleAIOOutput handle_aio_output
;
109 EventNotifier guest_notifier
;
110 EventNotifier host_notifier
;
111 QLIST_ENTRY(VirtQueue
) node
;
114 static void virtio_free_region_cache(VRingMemoryRegionCaches
*caches
)
120 address_space_cache_destroy(&caches
->desc
);
121 address_space_cache_destroy(&caches
->avail
);
122 address_space_cache_destroy(&caches
->used
);
126 static void virtio_virtqueue_reset_region_cache(struct VirtQueue
*vq
)
128 VRingMemoryRegionCaches
*caches
;
130 caches
= atomic_read(&vq
->vring
.caches
);
131 atomic_rcu_set(&vq
->vring
.caches
, NULL
);
133 call_rcu(caches
, virtio_free_region_cache
, rcu
);
137 static void virtio_init_region_cache(VirtIODevice
*vdev
, int n
)
139 VirtQueue
*vq
= &vdev
->vq
[n
];
140 VRingMemoryRegionCaches
*old
= vq
->vring
.caches
;
141 VRingMemoryRegionCaches
*new = NULL
;
146 event_size
= virtio_vdev_has_feature(vq
->vdev
, VIRTIO_RING_F_EVENT_IDX
) ? 2 : 0;
148 addr
= vq
->vring
.desc
;
152 new = g_new0(VRingMemoryRegionCaches
, 1);
153 size
= virtio_queue_get_desc_size(vdev
, n
);
154 len
= address_space_cache_init(&new->desc
, vdev
->dma_as
,
157 virtio_error(vdev
, "Cannot map desc");
161 size
= virtio_queue_get_used_size(vdev
, n
) + event_size
;
162 len
= address_space_cache_init(&new->used
, vdev
->dma_as
,
163 vq
->vring
.used
, size
, true);
165 virtio_error(vdev
, "Cannot map used");
169 size
= virtio_queue_get_avail_size(vdev
, n
) + event_size
;
170 len
= address_space_cache_init(&new->avail
, vdev
->dma_as
,
171 vq
->vring
.avail
, size
, false);
173 virtio_error(vdev
, "Cannot map avail");
177 atomic_rcu_set(&vq
->vring
.caches
, new);
179 call_rcu(old
, virtio_free_region_cache
, rcu
);
184 address_space_cache_destroy(&new->avail
);
186 address_space_cache_destroy(&new->used
);
188 address_space_cache_destroy(&new->desc
);
191 virtio_virtqueue_reset_region_cache(vq
);
194 /* virt queue functions */
195 void virtio_queue_update_rings(VirtIODevice
*vdev
, int n
)
197 VRing
*vring
= &vdev
->vq
[n
].vring
;
199 if (!vring
->num
|| !vring
->desc
|| !vring
->align
) {
200 /* not yet setup -> nothing to do */
203 vring
->avail
= vring
->desc
+ vring
->num
* sizeof(VRingDesc
);
204 vring
->used
= vring_align(vring
->avail
+
205 offsetof(VRingAvail
, ring
[vring
->num
]),
207 virtio_init_region_cache(vdev
, n
);
210 /* Called within rcu_read_lock(). */
211 static void vring_desc_read(VirtIODevice
*vdev
, VRingDesc
*desc
,
212 MemoryRegionCache
*cache
, int i
)
214 address_space_read_cached(cache
, i
* sizeof(VRingDesc
),
215 desc
, sizeof(VRingDesc
));
216 virtio_tswap64s(vdev
, &desc
->addr
);
217 virtio_tswap32s(vdev
, &desc
->len
);
218 virtio_tswap16s(vdev
, &desc
->flags
);
219 virtio_tswap16s(vdev
, &desc
->next
);
222 static VRingMemoryRegionCaches
*vring_get_region_caches(struct VirtQueue
*vq
)
224 VRingMemoryRegionCaches
*caches
= atomic_rcu_read(&vq
->vring
.caches
);
225 assert(caches
!= NULL
);
228 /* Called within rcu_read_lock(). */
229 static inline uint16_t vring_avail_flags(VirtQueue
*vq
)
231 VRingMemoryRegionCaches
*caches
= vring_get_region_caches(vq
);
232 hwaddr pa
= offsetof(VRingAvail
, flags
);
233 return virtio_lduw_phys_cached(vq
->vdev
, &caches
->avail
, pa
);
236 /* Called within rcu_read_lock(). */
237 static inline uint16_t vring_avail_idx(VirtQueue
*vq
)
239 VRingMemoryRegionCaches
*caches
= vring_get_region_caches(vq
);
240 hwaddr pa
= offsetof(VRingAvail
, idx
);
241 vq
->shadow_avail_idx
= virtio_lduw_phys_cached(vq
->vdev
, &caches
->avail
, pa
);
242 return vq
->shadow_avail_idx
;
245 /* Called within rcu_read_lock(). */
246 static inline uint16_t vring_avail_ring(VirtQueue
*vq
, int i
)
248 VRingMemoryRegionCaches
*caches
= vring_get_region_caches(vq
);
249 hwaddr pa
= offsetof(VRingAvail
, ring
[i
]);
250 return virtio_lduw_phys_cached(vq
->vdev
, &caches
->avail
, pa
);
253 /* Called within rcu_read_lock(). */
254 static inline uint16_t vring_get_used_event(VirtQueue
*vq
)
256 return vring_avail_ring(vq
, vq
->vring
.num
);
259 /* Called within rcu_read_lock(). */
260 static inline void vring_used_write(VirtQueue
*vq
, VRingUsedElem
*uelem
,
263 VRingMemoryRegionCaches
*caches
= vring_get_region_caches(vq
);
264 hwaddr pa
= offsetof(VRingUsed
, ring
[i
]);
265 virtio_tswap32s(vq
->vdev
, &uelem
->id
);
266 virtio_tswap32s(vq
->vdev
, &uelem
->len
);
267 address_space_write_cached(&caches
->used
, pa
, uelem
, sizeof(VRingUsedElem
));
268 address_space_cache_invalidate(&caches
->used
, pa
, sizeof(VRingUsedElem
));
271 /* Called within rcu_read_lock(). */
272 static uint16_t vring_used_idx(VirtQueue
*vq
)
274 VRingMemoryRegionCaches
*caches
= vring_get_region_caches(vq
);
275 hwaddr pa
= offsetof(VRingUsed
, idx
);
276 return virtio_lduw_phys_cached(vq
->vdev
, &caches
->used
, pa
);
279 /* Called within rcu_read_lock(). */
280 static inline void vring_used_idx_set(VirtQueue
*vq
, uint16_t val
)
282 VRingMemoryRegionCaches
*caches
= vring_get_region_caches(vq
);
283 hwaddr pa
= offsetof(VRingUsed
, idx
);
284 virtio_stw_phys_cached(vq
->vdev
, &caches
->used
, pa
, val
);
285 address_space_cache_invalidate(&caches
->used
, pa
, sizeof(val
));
289 /* Called within rcu_read_lock(). */
290 static inline void vring_used_flags_set_bit(VirtQueue
*vq
, int mask
)
292 VRingMemoryRegionCaches
*caches
= vring_get_region_caches(vq
);
293 VirtIODevice
*vdev
= vq
->vdev
;
294 hwaddr pa
= offsetof(VRingUsed
, flags
);
295 uint16_t flags
= virtio_lduw_phys_cached(vq
->vdev
, &caches
->used
, pa
);
297 virtio_stw_phys_cached(vdev
, &caches
->used
, pa
, flags
| mask
);
298 address_space_cache_invalidate(&caches
->used
, pa
, sizeof(flags
));
301 /* Called within rcu_read_lock(). */
302 static inline void vring_used_flags_unset_bit(VirtQueue
*vq
, int mask
)
304 VRingMemoryRegionCaches
*caches
= vring_get_region_caches(vq
);
305 VirtIODevice
*vdev
= vq
->vdev
;
306 hwaddr pa
= offsetof(VRingUsed
, flags
);
307 uint16_t flags
= virtio_lduw_phys_cached(vq
->vdev
, &caches
->used
, pa
);
309 virtio_stw_phys_cached(vdev
, &caches
->used
, pa
, flags
& ~mask
);
310 address_space_cache_invalidate(&caches
->used
, pa
, sizeof(flags
));
313 /* Called within rcu_read_lock(). */
314 static inline void vring_set_avail_event(VirtQueue
*vq
, uint16_t val
)
316 VRingMemoryRegionCaches
*caches
;
318 if (!vq
->notification
) {
322 caches
= vring_get_region_caches(vq
);
323 pa
= offsetof(VRingUsed
, ring
[vq
->vring
.num
]);
324 virtio_stw_phys_cached(vq
->vdev
, &caches
->used
, pa
, val
);
325 address_space_cache_invalidate(&caches
->used
, pa
, sizeof(val
));
328 void virtio_queue_set_notification(VirtQueue
*vq
, int enable
)
330 vq
->notification
= enable
;
332 if (!vq
->vring
.desc
) {
337 if (virtio_vdev_has_feature(vq
->vdev
, VIRTIO_RING_F_EVENT_IDX
)) {
338 vring_set_avail_event(vq
, vring_avail_idx(vq
));
340 vring_used_flags_unset_bit(vq
, VRING_USED_F_NO_NOTIFY
);
342 vring_used_flags_set_bit(vq
, VRING_USED_F_NO_NOTIFY
);
345 /* Expose avail event/used flags before caller checks the avail idx. */
351 int virtio_queue_ready(VirtQueue
*vq
)
353 return vq
->vring
.avail
!= 0;
356 /* Fetch avail_idx from VQ memory only when we really need to know if
357 * guest has added some buffers.
358 * Called within rcu_read_lock(). */
359 static int virtio_queue_empty_rcu(VirtQueue
*vq
)
361 if (unlikely(!vq
->vring
.avail
)) {
365 if (vq
->shadow_avail_idx
!= vq
->last_avail_idx
) {
369 return vring_avail_idx(vq
) == vq
->last_avail_idx
;
372 int virtio_queue_empty(VirtQueue
*vq
)
376 if (unlikely(!vq
->vring
.avail
)) {
380 if (vq
->shadow_avail_idx
!= vq
->last_avail_idx
) {
385 empty
= vring_avail_idx(vq
) == vq
->last_avail_idx
;
390 static void virtqueue_unmap_sg(VirtQueue
*vq
, const VirtQueueElement
*elem
,
393 AddressSpace
*dma_as
= vq
->vdev
->dma_as
;
398 for (i
= 0; i
< elem
->in_num
; i
++) {
399 size_t size
= MIN(len
- offset
, elem
->in_sg
[i
].iov_len
);
401 dma_memory_unmap(dma_as
, elem
->in_sg
[i
].iov_base
,
402 elem
->in_sg
[i
].iov_len
,
403 DMA_DIRECTION_FROM_DEVICE
, size
);
408 for (i
= 0; i
< elem
->out_num
; i
++)
409 dma_memory_unmap(dma_as
, elem
->out_sg
[i
].iov_base
,
410 elem
->out_sg
[i
].iov_len
,
411 DMA_DIRECTION_TO_DEVICE
,
412 elem
->out_sg
[i
].iov_len
);
415 /* virtqueue_detach_element:
416 * @vq: The #VirtQueue
417 * @elem: The #VirtQueueElement
418 * @len: number of bytes written
420 * Detach the element from the virtqueue. This function is suitable for device
421 * reset or other situations where a #VirtQueueElement is simply freed and will
422 * not be pushed or discarded.
424 void virtqueue_detach_element(VirtQueue
*vq
, const VirtQueueElement
*elem
,
428 virtqueue_unmap_sg(vq
, elem
, len
);
432 * @vq: The #VirtQueue
433 * @elem: The #VirtQueueElement
434 * @len: number of bytes written
436 * Pretend the most recent element wasn't popped from the virtqueue. The next
437 * call to virtqueue_pop() will refetch the element.
439 void virtqueue_unpop(VirtQueue
*vq
, const VirtQueueElement
*elem
,
442 vq
->last_avail_idx
--;
443 virtqueue_detach_element(vq
, elem
, len
);
447 * @vq: The #VirtQueue
448 * @num: Number of elements to push back
450 * Pretend that elements weren't popped from the virtqueue. The next
451 * virtqueue_pop() will refetch the oldest element.
453 * Use virtqueue_unpop() instead if you have a VirtQueueElement.
455 * Returns: true on success, false if @num is greater than the number of in use
458 bool virtqueue_rewind(VirtQueue
*vq
, unsigned int num
)
460 if (num
> vq
->inuse
) {
463 vq
->last_avail_idx
-= num
;
468 /* Called within rcu_read_lock(). */
469 void virtqueue_fill(VirtQueue
*vq
, const VirtQueueElement
*elem
,
470 unsigned int len
, unsigned int idx
)
474 trace_virtqueue_fill(vq
, elem
, len
, idx
);
476 virtqueue_unmap_sg(vq
, elem
, len
);
478 if (unlikely(vq
->vdev
->broken
)) {
482 if (unlikely(!vq
->vring
.used
)) {
486 idx
= (idx
+ vq
->used_idx
) % vq
->vring
.num
;
488 uelem
.id
= elem
->index
;
490 vring_used_write(vq
, &uelem
, idx
);
493 /* Called within rcu_read_lock(). */
494 void virtqueue_flush(VirtQueue
*vq
, unsigned int count
)
498 if (unlikely(vq
->vdev
->broken
)) {
503 if (unlikely(!vq
->vring
.used
)) {
507 /* Make sure buffer is written before we update index. */
509 trace_virtqueue_flush(vq
, count
);
512 vring_used_idx_set(vq
, new);
514 if (unlikely((int16_t)(new - vq
->signalled_used
) < (uint16_t)(new - old
)))
515 vq
->signalled_used_valid
= false;
518 void virtqueue_push(VirtQueue
*vq
, const VirtQueueElement
*elem
,
522 virtqueue_fill(vq
, elem
, len
, 0);
523 virtqueue_flush(vq
, 1);
527 /* Called within rcu_read_lock(). */
528 static int virtqueue_num_heads(VirtQueue
*vq
, unsigned int idx
)
530 uint16_t num_heads
= vring_avail_idx(vq
) - idx
;
532 /* Check it isn't doing very strange things with descriptor numbers. */
533 if (num_heads
> vq
->vring
.num
) {
534 virtio_error(vq
->vdev
, "Guest moved used index from %u to %u",
535 idx
, vq
->shadow_avail_idx
);
538 /* On success, callers read a descriptor at vq->last_avail_idx.
539 * Make sure descriptor read does not bypass avail index read. */
547 /* Called within rcu_read_lock(). */
548 static bool virtqueue_get_head(VirtQueue
*vq
, unsigned int idx
,
551 /* Grab the next descriptor number they're advertising, and increment
552 * the index we've seen. */
553 *head
= vring_avail_ring(vq
, idx
% vq
->vring
.num
);
555 /* If their number is silly, that's a fatal mistake. */
556 if (*head
>= vq
->vring
.num
) {
557 virtio_error(vq
->vdev
, "Guest says index %u is available", *head
);
565 VIRTQUEUE_READ_DESC_ERROR
= -1,
566 VIRTQUEUE_READ_DESC_DONE
= 0, /* end of chain */
567 VIRTQUEUE_READ_DESC_MORE
= 1, /* more buffers in chain */
570 static int virtqueue_read_next_desc(VirtIODevice
*vdev
, VRingDesc
*desc
,
571 MemoryRegionCache
*desc_cache
, unsigned int max
,
574 /* If this descriptor says it doesn't chain, we're done. */
575 if (!(desc
->flags
& VRING_DESC_F_NEXT
)) {
576 return VIRTQUEUE_READ_DESC_DONE
;
579 /* Check they're not leading us off end of descriptors. */
581 /* Make sure compiler knows to grab that: we don't want it changing! */
585 virtio_error(vdev
, "Desc next is %u", *next
);
586 return VIRTQUEUE_READ_DESC_ERROR
;
589 vring_desc_read(vdev
, desc
, desc_cache
, *next
);
590 return VIRTQUEUE_READ_DESC_MORE
;
593 void virtqueue_get_avail_bytes(VirtQueue
*vq
, unsigned int *in_bytes
,
594 unsigned int *out_bytes
,
595 unsigned max_in_bytes
, unsigned max_out_bytes
)
597 VirtIODevice
*vdev
= vq
->vdev
;
598 unsigned int max
, idx
;
599 unsigned int total_bufs
, in_total
, out_total
;
600 VRingMemoryRegionCaches
*caches
;
601 MemoryRegionCache indirect_desc_cache
= MEMORY_REGION_CACHE_INVALID
;
605 if (unlikely(!vq
->vring
.desc
)) {
616 idx
= vq
->last_avail_idx
;
617 total_bufs
= in_total
= out_total
= 0;
620 caches
= vring_get_region_caches(vq
);
621 if (caches
->desc
.len
< max
* sizeof(VRingDesc
)) {
622 virtio_error(vdev
, "Cannot map descriptor ring");
626 while ((rc
= virtqueue_num_heads(vq
, idx
)) > 0) {
627 MemoryRegionCache
*desc_cache
= &caches
->desc
;
628 unsigned int num_bufs
;
632 num_bufs
= total_bufs
;
634 if (!virtqueue_get_head(vq
, idx
++, &i
)) {
638 vring_desc_read(vdev
, &desc
, desc_cache
, i
);
640 if (desc
.flags
& VRING_DESC_F_INDIRECT
) {
641 if (desc
.len
% sizeof(VRingDesc
)) {
642 virtio_error(vdev
, "Invalid size for indirect buffer table");
646 /* If we've got too many, that implies a descriptor loop. */
647 if (num_bufs
>= max
) {
648 virtio_error(vdev
, "Looped descriptor");
652 /* loop over the indirect descriptor table */
653 len
= address_space_cache_init(&indirect_desc_cache
,
655 desc
.addr
, desc
.len
, false);
656 desc_cache
= &indirect_desc_cache
;
657 if (len
< desc
.len
) {
658 virtio_error(vdev
, "Cannot map indirect buffer");
662 max
= desc
.len
/ sizeof(VRingDesc
);
664 vring_desc_read(vdev
, &desc
, desc_cache
, i
);
668 /* If we've got too many, that implies a descriptor loop. */
669 if (++num_bufs
> max
) {
670 virtio_error(vdev
, "Looped descriptor");
674 if (desc
.flags
& VRING_DESC_F_WRITE
) {
675 in_total
+= desc
.len
;
677 out_total
+= desc
.len
;
679 if (in_total
>= max_in_bytes
&& out_total
>= max_out_bytes
) {
683 rc
= virtqueue_read_next_desc(vdev
, &desc
, desc_cache
, max
, &i
);
684 } while (rc
== VIRTQUEUE_READ_DESC_MORE
);
686 if (rc
== VIRTQUEUE_READ_DESC_ERROR
) {
690 if (desc_cache
== &indirect_desc_cache
) {
691 address_space_cache_destroy(&indirect_desc_cache
);
694 total_bufs
= num_bufs
;
703 address_space_cache_destroy(&indirect_desc_cache
);
705 *in_bytes
= in_total
;
708 *out_bytes
= out_total
;
714 in_total
= out_total
= 0;
718 int virtqueue_avail_bytes(VirtQueue
*vq
, unsigned int in_bytes
,
719 unsigned int out_bytes
)
721 unsigned int in_total
, out_total
;
723 virtqueue_get_avail_bytes(vq
, &in_total
, &out_total
, in_bytes
, out_bytes
);
724 return in_bytes
<= in_total
&& out_bytes
<= out_total
;
727 static bool virtqueue_map_desc(VirtIODevice
*vdev
, unsigned int *p_num_sg
,
728 hwaddr
*addr
, struct iovec
*iov
,
729 unsigned int max_num_sg
, bool is_write
,
730 hwaddr pa
, size_t sz
)
733 unsigned num_sg
= *p_num_sg
;
734 assert(num_sg
<= max_num_sg
);
737 virtio_error(vdev
, "virtio: zero sized buffers are not allowed");
744 if (num_sg
== max_num_sg
) {
745 virtio_error(vdev
, "virtio: too many write descriptors in "
750 iov
[num_sg
].iov_base
= dma_memory_map(vdev
->dma_as
, pa
, &len
,
752 DMA_DIRECTION_FROM_DEVICE
:
753 DMA_DIRECTION_TO_DEVICE
);
754 if (!iov
[num_sg
].iov_base
) {
755 virtio_error(vdev
, "virtio: bogus descriptor or out of resources");
759 iov
[num_sg
].iov_len
= len
;
773 /* Only used by error code paths before we have a VirtQueueElement (therefore
774 * virtqueue_unmap_sg() can't be used). Assumes buffers weren't written to
777 static void virtqueue_undo_map_desc(unsigned int out_num
, unsigned int in_num
,
782 for (i
= 0; i
< out_num
+ in_num
; i
++) {
783 int is_write
= i
>= out_num
;
785 cpu_physical_memory_unmap(iov
->iov_base
, iov
->iov_len
, is_write
, 0);
790 static void virtqueue_map_iovec(VirtIODevice
*vdev
, struct iovec
*sg
,
791 hwaddr
*addr
, unsigned int *num_sg
,
797 for (i
= 0; i
< *num_sg
; i
++) {
799 sg
[i
].iov_base
= dma_memory_map(vdev
->dma_as
,
800 addr
[i
], &len
, is_write
?
801 DMA_DIRECTION_FROM_DEVICE
:
802 DMA_DIRECTION_TO_DEVICE
);
803 if (!sg
[i
].iov_base
) {
804 error_report("virtio: error trying to map MMIO memory");
807 if (len
!= sg
[i
].iov_len
) {
808 error_report("virtio: unexpected memory split");
814 void virtqueue_map(VirtIODevice
*vdev
, VirtQueueElement
*elem
)
816 virtqueue_map_iovec(vdev
, elem
->in_sg
, elem
->in_addr
, &elem
->in_num
, 1);
817 virtqueue_map_iovec(vdev
, elem
->out_sg
, elem
->out_addr
, &elem
->out_num
, 0);
820 static void *virtqueue_alloc_element(size_t sz
, unsigned out_num
, unsigned in_num
)
822 VirtQueueElement
*elem
;
823 size_t in_addr_ofs
= QEMU_ALIGN_UP(sz
, __alignof__(elem
->in_addr
[0]));
824 size_t out_addr_ofs
= in_addr_ofs
+ in_num
* sizeof(elem
->in_addr
[0]);
825 size_t out_addr_end
= out_addr_ofs
+ out_num
* sizeof(elem
->out_addr
[0]);
826 size_t in_sg_ofs
= QEMU_ALIGN_UP(out_addr_end
, __alignof__(elem
->in_sg
[0]));
827 size_t out_sg_ofs
= in_sg_ofs
+ in_num
* sizeof(elem
->in_sg
[0]);
828 size_t out_sg_end
= out_sg_ofs
+ out_num
* sizeof(elem
->out_sg
[0]);
830 assert(sz
>= sizeof(VirtQueueElement
));
831 elem
= g_malloc(out_sg_end
);
832 trace_virtqueue_alloc_element(elem
, sz
, in_num
, out_num
);
833 elem
->out_num
= out_num
;
834 elem
->in_num
= in_num
;
835 elem
->in_addr
= (void *)elem
+ in_addr_ofs
;
836 elem
->out_addr
= (void *)elem
+ out_addr_ofs
;
837 elem
->in_sg
= (void *)elem
+ in_sg_ofs
;
838 elem
->out_sg
= (void *)elem
+ out_sg_ofs
;
842 void *virtqueue_pop(VirtQueue
*vq
, size_t sz
)
844 unsigned int i
, head
, max
;
845 VRingMemoryRegionCaches
*caches
;
846 MemoryRegionCache indirect_desc_cache
= MEMORY_REGION_CACHE_INVALID
;
847 MemoryRegionCache
*desc_cache
;
849 VirtIODevice
*vdev
= vq
->vdev
;
850 VirtQueueElement
*elem
= NULL
;
851 unsigned out_num
, in_num
, elem_entries
;
852 hwaddr addr
[VIRTQUEUE_MAX_SIZE
];
853 struct iovec iov
[VIRTQUEUE_MAX_SIZE
];
857 if (unlikely(vdev
->broken
)) {
861 if (virtio_queue_empty_rcu(vq
)) {
864 /* Needed after virtio_queue_empty(), see comment in
865 * virtqueue_num_heads(). */
868 /* When we start there are none of either input nor output. */
869 out_num
= in_num
= elem_entries
= 0;
873 if (vq
->inuse
>= vq
->vring
.num
) {
874 virtio_error(vdev
, "Virtqueue size exceeded");
878 if (!virtqueue_get_head(vq
, vq
->last_avail_idx
++, &head
)) {
882 if (virtio_vdev_has_feature(vdev
, VIRTIO_RING_F_EVENT_IDX
)) {
883 vring_set_avail_event(vq
, vq
->last_avail_idx
);
888 caches
= vring_get_region_caches(vq
);
889 if (caches
->desc
.len
< max
* sizeof(VRingDesc
)) {
890 virtio_error(vdev
, "Cannot map descriptor ring");
894 desc_cache
= &caches
->desc
;
895 vring_desc_read(vdev
, &desc
, desc_cache
, i
);
896 if (desc
.flags
& VRING_DESC_F_INDIRECT
) {
897 if (desc
.len
% sizeof(VRingDesc
)) {
898 virtio_error(vdev
, "Invalid size for indirect buffer table");
902 /* loop over the indirect descriptor table */
903 len
= address_space_cache_init(&indirect_desc_cache
, vdev
->dma_as
,
904 desc
.addr
, desc
.len
, false);
905 desc_cache
= &indirect_desc_cache
;
906 if (len
< desc
.len
) {
907 virtio_error(vdev
, "Cannot map indirect buffer");
911 max
= desc
.len
/ sizeof(VRingDesc
);
913 vring_desc_read(vdev
, &desc
, desc_cache
, i
);
916 /* Collect all the descriptors */
920 if (desc
.flags
& VRING_DESC_F_WRITE
) {
921 map_ok
= virtqueue_map_desc(vdev
, &in_num
, addr
+ out_num
,
923 VIRTQUEUE_MAX_SIZE
- out_num
, true,
924 desc
.addr
, desc
.len
);
927 virtio_error(vdev
, "Incorrect order for descriptors");
930 map_ok
= virtqueue_map_desc(vdev
, &out_num
, addr
, iov
,
931 VIRTQUEUE_MAX_SIZE
, false,
932 desc
.addr
, desc
.len
);
938 /* If we've got too many, that implies a descriptor loop. */
939 if (++elem_entries
> max
) {
940 virtio_error(vdev
, "Looped descriptor");
944 rc
= virtqueue_read_next_desc(vdev
, &desc
, desc_cache
, max
, &i
);
945 } while (rc
== VIRTQUEUE_READ_DESC_MORE
);
947 if (rc
== VIRTQUEUE_READ_DESC_ERROR
) {
951 /* Now copy what we have collected and mapped */
952 elem
= virtqueue_alloc_element(sz
, out_num
, in_num
);
954 for (i
= 0; i
< out_num
; i
++) {
955 elem
->out_addr
[i
] = addr
[i
];
956 elem
->out_sg
[i
] = iov
[i
];
958 for (i
= 0; i
< in_num
; i
++) {
959 elem
->in_addr
[i
] = addr
[out_num
+ i
];
960 elem
->in_sg
[i
] = iov
[out_num
+ i
];
965 trace_virtqueue_pop(vq
, elem
, elem
->in_num
, elem
->out_num
);
967 address_space_cache_destroy(&indirect_desc_cache
);
973 virtqueue_undo_map_desc(out_num
, in_num
, iov
);
977 /* virtqueue_drop_all:
978 * @vq: The #VirtQueue
979 * Drops all queued buffers and indicates them to the guest
980 * as if they are done. Useful when buffers can not be
981 * processed but must be returned to the guest.
983 unsigned int virtqueue_drop_all(VirtQueue
*vq
)
985 unsigned int dropped
= 0;
986 VirtQueueElement elem
= {};
987 VirtIODevice
*vdev
= vq
->vdev
;
988 bool fEventIdx
= virtio_vdev_has_feature(vdev
, VIRTIO_RING_F_EVENT_IDX
);
990 if (unlikely(vdev
->broken
)) {
994 while (!virtio_queue_empty(vq
) && vq
->inuse
< vq
->vring
.num
) {
995 /* works similar to virtqueue_pop but does not map buffers
996 * and does not allocate any memory */
998 if (!virtqueue_get_head(vq
, vq
->last_avail_idx
, &elem
.index
)) {
1002 vq
->last_avail_idx
++;
1004 vring_set_avail_event(vq
, vq
->last_avail_idx
);
1006 /* immediately push the element, nothing to unmap
1007 * as both in_num and out_num are set to 0 */
1008 virtqueue_push(vq
, &elem
, 0);
1015 /* Reading and writing a structure directly to QEMUFile is *awful*, but
1016 * it is what QEMU has always done by mistake. We can change it sooner
1017 * or later by bumping the version number of the affected vm states.
1018 * In the meanwhile, since the in-memory layout of VirtQueueElement
1019 * has changed, we need to marshal to and from the layout that was
1020 * used before the change.
1022 typedef struct VirtQueueElementOld
{
1024 unsigned int out_num
;
1025 unsigned int in_num
;
1026 hwaddr in_addr
[VIRTQUEUE_MAX_SIZE
];
1027 hwaddr out_addr
[VIRTQUEUE_MAX_SIZE
];
1028 struct iovec in_sg
[VIRTQUEUE_MAX_SIZE
];
1029 struct iovec out_sg
[VIRTQUEUE_MAX_SIZE
];
1030 } VirtQueueElementOld
;
1032 void *qemu_get_virtqueue_element(VirtIODevice
*vdev
, QEMUFile
*f
, size_t sz
)
1034 VirtQueueElement
*elem
;
1035 VirtQueueElementOld data
;
1038 qemu_get_buffer(f
, (uint8_t *)&data
, sizeof(VirtQueueElementOld
));
1040 /* TODO: teach all callers that this can fail, and return failure instead
1041 * of asserting here.
1042 * This is just one thing (there are probably more) that must be
1043 * fixed before we can allow NDEBUG compilation.
1045 assert(ARRAY_SIZE(data
.in_addr
) >= data
.in_num
);
1046 assert(ARRAY_SIZE(data
.out_addr
) >= data
.out_num
);
1048 elem
= virtqueue_alloc_element(sz
, data
.out_num
, data
.in_num
);
1049 elem
->index
= data
.index
;
1051 for (i
= 0; i
< elem
->in_num
; i
++) {
1052 elem
->in_addr
[i
] = data
.in_addr
[i
];
1055 for (i
= 0; i
< elem
->out_num
; i
++) {
1056 elem
->out_addr
[i
] = data
.out_addr
[i
];
1059 for (i
= 0; i
< elem
->in_num
; i
++) {
1060 /* Base is overwritten by virtqueue_map. */
1061 elem
->in_sg
[i
].iov_base
= 0;
1062 elem
->in_sg
[i
].iov_len
= data
.in_sg
[i
].iov_len
;
1065 for (i
= 0; i
< elem
->out_num
; i
++) {
1066 /* Base is overwritten by virtqueue_map. */
1067 elem
->out_sg
[i
].iov_base
= 0;
1068 elem
->out_sg
[i
].iov_len
= data
.out_sg
[i
].iov_len
;
1071 virtqueue_map(vdev
, elem
);
1075 void qemu_put_virtqueue_element(QEMUFile
*f
, VirtQueueElement
*elem
)
1077 VirtQueueElementOld data
;
1080 memset(&data
, 0, sizeof(data
));
1081 data
.index
= elem
->index
;
1082 data
.in_num
= elem
->in_num
;
1083 data
.out_num
= elem
->out_num
;
1085 for (i
= 0; i
< elem
->in_num
; i
++) {
1086 data
.in_addr
[i
] = elem
->in_addr
[i
];
1089 for (i
= 0; i
< elem
->out_num
; i
++) {
1090 data
.out_addr
[i
] = elem
->out_addr
[i
];
1093 for (i
= 0; i
< elem
->in_num
; i
++) {
1094 /* Base is overwritten by virtqueue_map when loading. Do not
1095 * save it, as it would leak the QEMU address space layout. */
1096 data
.in_sg
[i
].iov_len
= elem
->in_sg
[i
].iov_len
;
1099 for (i
= 0; i
< elem
->out_num
; i
++) {
1100 /* Do not save iov_base as above. */
1101 data
.out_sg
[i
].iov_len
= elem
->out_sg
[i
].iov_len
;
1103 qemu_put_buffer(f
, (uint8_t *)&data
, sizeof(VirtQueueElementOld
));
1107 static void virtio_notify_vector(VirtIODevice
*vdev
, uint16_t vector
)
1109 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
1110 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
1112 if (unlikely(vdev
->broken
)) {
1117 k
->notify(qbus
->parent
, vector
);
1121 void virtio_update_irq(VirtIODevice
*vdev
)
1123 virtio_notify_vector(vdev
, VIRTIO_NO_VECTOR
);
1126 static int virtio_validate_features(VirtIODevice
*vdev
)
1128 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1130 if (virtio_host_has_feature(vdev
, VIRTIO_F_IOMMU_PLATFORM
) &&
1131 !virtio_vdev_has_feature(vdev
, VIRTIO_F_IOMMU_PLATFORM
)) {
1135 if (k
->validate_features
) {
1136 return k
->validate_features(vdev
);
1142 int virtio_set_status(VirtIODevice
*vdev
, uint8_t val
)
1144 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1145 trace_virtio_set_status(vdev
, val
);
1147 if (virtio_vdev_has_feature(vdev
, VIRTIO_F_VERSION_1
)) {
1148 if (!(vdev
->status
& VIRTIO_CONFIG_S_FEATURES_OK
) &&
1149 val
& VIRTIO_CONFIG_S_FEATURES_OK
) {
1150 int ret
= virtio_validate_features(vdev
);
1157 if (k
->set_status
) {
1158 k
->set_status(vdev
, val
);
1164 bool target_words_bigendian(void);
1165 static enum virtio_device_endian
virtio_default_endian(void)
1167 if (target_words_bigendian()) {
1168 return VIRTIO_DEVICE_ENDIAN_BIG
;
1170 return VIRTIO_DEVICE_ENDIAN_LITTLE
;
1174 static enum virtio_device_endian
virtio_current_cpu_endian(void)
1176 CPUClass
*cc
= CPU_GET_CLASS(current_cpu
);
1178 if (cc
->virtio_is_big_endian(current_cpu
)) {
1179 return VIRTIO_DEVICE_ENDIAN_BIG
;
1181 return VIRTIO_DEVICE_ENDIAN_LITTLE
;
1185 void virtio_reset(void *opaque
)
1187 VirtIODevice
*vdev
= opaque
;
1188 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1191 virtio_set_status(vdev
, 0);
1193 /* Guest initiated reset */
1194 vdev
->device_endian
= virtio_current_cpu_endian();
1197 vdev
->device_endian
= virtio_default_endian();
1204 vdev
->broken
= false;
1205 vdev
->guest_features
= 0;
1206 vdev
->queue_sel
= 0;
1208 atomic_set(&vdev
->isr
, 0);
1209 vdev
->config_vector
= VIRTIO_NO_VECTOR
;
1210 virtio_notify_vector(vdev
, vdev
->config_vector
);
1212 for(i
= 0; i
< VIRTIO_QUEUE_MAX
; i
++) {
1213 vdev
->vq
[i
].vring
.desc
= 0;
1214 vdev
->vq
[i
].vring
.avail
= 0;
1215 vdev
->vq
[i
].vring
.used
= 0;
1216 vdev
->vq
[i
].last_avail_idx
= 0;
1217 vdev
->vq
[i
].shadow_avail_idx
= 0;
1218 vdev
->vq
[i
].used_idx
= 0;
1219 virtio_queue_set_vector(vdev
, i
, VIRTIO_NO_VECTOR
);
1220 vdev
->vq
[i
].signalled_used
= 0;
1221 vdev
->vq
[i
].signalled_used_valid
= false;
1222 vdev
->vq
[i
].notification
= true;
1223 vdev
->vq
[i
].vring
.num
= vdev
->vq
[i
].vring
.num_default
;
1224 vdev
->vq
[i
].inuse
= 0;
1225 virtio_virtqueue_reset_region_cache(&vdev
->vq
[i
]);
1229 uint32_t virtio_config_readb(VirtIODevice
*vdev
, uint32_t addr
)
1231 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1234 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1235 return (uint32_t)-1;
1238 k
->get_config(vdev
, vdev
->config
);
1240 val
= ldub_p(vdev
->config
+ addr
);
1244 uint32_t virtio_config_readw(VirtIODevice
*vdev
, uint32_t addr
)
1246 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1249 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1250 return (uint32_t)-1;
1253 k
->get_config(vdev
, vdev
->config
);
1255 val
= lduw_p(vdev
->config
+ addr
);
1259 uint32_t virtio_config_readl(VirtIODevice
*vdev
, uint32_t addr
)
1261 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1264 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1265 return (uint32_t)-1;
1268 k
->get_config(vdev
, vdev
->config
);
1270 val
= ldl_p(vdev
->config
+ addr
);
1274 void virtio_config_writeb(VirtIODevice
*vdev
, uint32_t addr
, uint32_t data
)
1276 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1279 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1283 stb_p(vdev
->config
+ addr
, val
);
1285 if (k
->set_config
) {
1286 k
->set_config(vdev
, vdev
->config
);
1290 void virtio_config_writew(VirtIODevice
*vdev
, uint32_t addr
, uint32_t data
)
1292 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1293 uint16_t val
= data
;
1295 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1299 stw_p(vdev
->config
+ addr
, val
);
1301 if (k
->set_config
) {
1302 k
->set_config(vdev
, vdev
->config
);
1306 void virtio_config_writel(VirtIODevice
*vdev
, uint32_t addr
, uint32_t data
)
1308 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1309 uint32_t val
= data
;
1311 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1315 stl_p(vdev
->config
+ addr
, val
);
1317 if (k
->set_config
) {
1318 k
->set_config(vdev
, vdev
->config
);
1322 uint32_t virtio_config_modern_readb(VirtIODevice
*vdev
, uint32_t addr
)
1324 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1327 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1328 return (uint32_t)-1;
1331 k
->get_config(vdev
, vdev
->config
);
1333 val
= ldub_p(vdev
->config
+ addr
);
1337 uint32_t virtio_config_modern_readw(VirtIODevice
*vdev
, uint32_t addr
)
1339 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1342 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1343 return (uint32_t)-1;
1346 k
->get_config(vdev
, vdev
->config
);
1348 val
= lduw_le_p(vdev
->config
+ addr
);
1352 uint32_t virtio_config_modern_readl(VirtIODevice
*vdev
, uint32_t addr
)
1354 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1357 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1358 return (uint32_t)-1;
1361 k
->get_config(vdev
, vdev
->config
);
1363 val
= ldl_le_p(vdev
->config
+ addr
);
1367 void virtio_config_modern_writeb(VirtIODevice
*vdev
,
1368 uint32_t addr
, uint32_t data
)
1370 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1373 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1377 stb_p(vdev
->config
+ addr
, val
);
1379 if (k
->set_config
) {
1380 k
->set_config(vdev
, vdev
->config
);
1384 void virtio_config_modern_writew(VirtIODevice
*vdev
,
1385 uint32_t addr
, uint32_t data
)
1387 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1388 uint16_t val
= data
;
1390 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1394 stw_le_p(vdev
->config
+ addr
, val
);
1396 if (k
->set_config
) {
1397 k
->set_config(vdev
, vdev
->config
);
1401 void virtio_config_modern_writel(VirtIODevice
*vdev
,
1402 uint32_t addr
, uint32_t data
)
1404 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1405 uint32_t val
= data
;
1407 if (addr
+ sizeof(val
) > vdev
->config_len
) {
1411 stl_le_p(vdev
->config
+ addr
, val
);
1413 if (k
->set_config
) {
1414 k
->set_config(vdev
, vdev
->config
);
1418 void virtio_queue_set_addr(VirtIODevice
*vdev
, int n
, hwaddr addr
)
1420 if (!vdev
->vq
[n
].vring
.num
) {
1423 vdev
->vq
[n
].vring
.desc
= addr
;
1424 virtio_queue_update_rings(vdev
, n
);
1427 hwaddr
virtio_queue_get_addr(VirtIODevice
*vdev
, int n
)
1429 return vdev
->vq
[n
].vring
.desc
;
1432 void virtio_queue_set_rings(VirtIODevice
*vdev
, int n
, hwaddr desc
,
1433 hwaddr avail
, hwaddr used
)
1435 if (!vdev
->vq
[n
].vring
.num
) {
1438 vdev
->vq
[n
].vring
.desc
= desc
;
1439 vdev
->vq
[n
].vring
.avail
= avail
;
1440 vdev
->vq
[n
].vring
.used
= used
;
1441 virtio_init_region_cache(vdev
, n
);
1444 void virtio_queue_set_num(VirtIODevice
*vdev
, int n
, int num
)
1446 /* Don't allow guest to flip queue between existent and
1447 * nonexistent states, or to set it to an invalid size.
1449 if (!!num
!= !!vdev
->vq
[n
].vring
.num
||
1450 num
> VIRTQUEUE_MAX_SIZE
||
1454 vdev
->vq
[n
].vring
.num
= num
;
1457 VirtQueue
*virtio_vector_first_queue(VirtIODevice
*vdev
, uint16_t vector
)
1459 return QLIST_FIRST(&vdev
->vector_queues
[vector
]);
1462 VirtQueue
*virtio_vector_next_queue(VirtQueue
*vq
)
1464 return QLIST_NEXT(vq
, node
);
1467 int virtio_queue_get_num(VirtIODevice
*vdev
, int n
)
1469 return vdev
->vq
[n
].vring
.num
;
1472 int virtio_queue_get_max_num(VirtIODevice
*vdev
, int n
)
1474 return vdev
->vq
[n
].vring
.num_default
;
1477 int virtio_get_num_queues(VirtIODevice
*vdev
)
1481 for (i
= 0; i
< VIRTIO_QUEUE_MAX
; i
++) {
1482 if (!virtio_queue_get_num(vdev
, i
)) {
1490 void virtio_queue_set_align(VirtIODevice
*vdev
, int n
, int align
)
1492 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
1493 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
1495 /* virtio-1 compliant devices cannot change the alignment */
1496 if (virtio_vdev_has_feature(vdev
, VIRTIO_F_VERSION_1
)) {
1497 error_report("tried to modify queue alignment for virtio-1 device");
1500 /* Check that the transport told us it was going to do this
1501 * (so a buggy transport will immediately assert rather than
1502 * silently failing to migrate this state)
1504 assert(k
->has_variable_vring_alignment
);
1507 vdev
->vq
[n
].vring
.align
= align
;
1508 virtio_queue_update_rings(vdev
, n
);
1512 static bool virtio_queue_notify_aio_vq(VirtQueue
*vq
)
1514 if (vq
->vring
.desc
&& vq
->handle_aio_output
) {
1515 VirtIODevice
*vdev
= vq
->vdev
;
1517 trace_virtio_queue_notify(vdev
, vq
- vdev
->vq
, vq
);
1518 return vq
->handle_aio_output(vdev
, vq
);
1524 static void virtio_queue_notify_vq(VirtQueue
*vq
)
1526 if (vq
->vring
.desc
&& vq
->handle_output
) {
1527 VirtIODevice
*vdev
= vq
->vdev
;
1529 if (unlikely(vdev
->broken
)) {
1533 trace_virtio_queue_notify(vdev
, vq
- vdev
->vq
, vq
);
1534 vq
->handle_output(vdev
, vq
);
1538 void virtio_queue_notify(VirtIODevice
*vdev
, int n
)
1540 VirtQueue
*vq
= &vdev
->vq
[n
];
1542 if (unlikely(!vq
->vring
.desc
|| vdev
->broken
)) {
1546 trace_virtio_queue_notify(vdev
, vq
- vdev
->vq
, vq
);
1547 if (vq
->handle_aio_output
) {
1548 event_notifier_set(&vq
->host_notifier
);
1549 } else if (vq
->handle_output
) {
1550 vq
->handle_output(vdev
, vq
);
1554 uint16_t virtio_queue_vector(VirtIODevice
*vdev
, int n
)
1556 return n
< VIRTIO_QUEUE_MAX
? vdev
->vq
[n
].vector
:
1560 void virtio_queue_set_vector(VirtIODevice
*vdev
, int n
, uint16_t vector
)
1562 VirtQueue
*vq
= &vdev
->vq
[n
];
1564 if (n
< VIRTIO_QUEUE_MAX
) {
1565 if (vdev
->vector_queues
&&
1566 vdev
->vq
[n
].vector
!= VIRTIO_NO_VECTOR
) {
1567 QLIST_REMOVE(vq
, node
);
1569 vdev
->vq
[n
].vector
= vector
;
1570 if (vdev
->vector_queues
&&
1571 vector
!= VIRTIO_NO_VECTOR
) {
1572 QLIST_INSERT_HEAD(&vdev
->vector_queues
[vector
], vq
, node
);
1577 VirtQueue
*virtio_add_queue(VirtIODevice
*vdev
, int queue_size
,
1578 VirtIOHandleOutput handle_output
)
1582 for (i
= 0; i
< VIRTIO_QUEUE_MAX
; i
++) {
1583 if (vdev
->vq
[i
].vring
.num
== 0)
1587 if (i
== VIRTIO_QUEUE_MAX
|| queue_size
> VIRTQUEUE_MAX_SIZE
)
1590 vdev
->vq
[i
].vring
.num
= queue_size
;
1591 vdev
->vq
[i
].vring
.num_default
= queue_size
;
1592 vdev
->vq
[i
].vring
.align
= VIRTIO_PCI_VRING_ALIGN
;
1593 vdev
->vq
[i
].handle_output
= handle_output
;
1594 vdev
->vq
[i
].handle_aio_output
= NULL
;
1596 return &vdev
->vq
[i
];
1599 void virtio_del_queue(VirtIODevice
*vdev
, int n
)
1601 if (n
< 0 || n
>= VIRTIO_QUEUE_MAX
) {
1605 vdev
->vq
[n
].vring
.num
= 0;
1606 vdev
->vq
[n
].vring
.num_default
= 0;
1609 static void virtio_set_isr(VirtIODevice
*vdev
, int value
)
1611 uint8_t old
= atomic_read(&vdev
->isr
);
1613 /* Do not write ISR if it does not change, so that its cacheline remains
1614 * shared in the common case where the guest does not read it.
1616 if ((old
& value
) != value
) {
1617 atomic_or(&vdev
->isr
, value
);
1621 /* Called within rcu_read_lock(). */
1622 static bool virtio_should_notify(VirtIODevice
*vdev
, VirtQueue
*vq
)
1626 /* We need to expose used array entries before checking used event. */
1628 /* Always notify when queue is empty (when feature acknowledge) */
1629 if (virtio_vdev_has_feature(vdev
, VIRTIO_F_NOTIFY_ON_EMPTY
) &&
1630 !vq
->inuse
&& virtio_queue_empty(vq
)) {
1634 if (!virtio_vdev_has_feature(vdev
, VIRTIO_RING_F_EVENT_IDX
)) {
1635 return !(vring_avail_flags(vq
) & VRING_AVAIL_F_NO_INTERRUPT
);
1638 v
= vq
->signalled_used_valid
;
1639 vq
->signalled_used_valid
= true;
1640 old
= vq
->signalled_used
;
1641 new = vq
->signalled_used
= vq
->used_idx
;
1642 return !v
|| vring_need_event(vring_get_used_event(vq
), new, old
);
1645 void virtio_notify_irqfd(VirtIODevice
*vdev
, VirtQueue
*vq
)
1649 should_notify
= virtio_should_notify(vdev
, vq
);
1652 if (!should_notify
) {
1656 trace_virtio_notify_irqfd(vdev
, vq
);
1659 * virtio spec 1.0 says ISR bit 0 should be ignored with MSI, but
1660 * windows drivers included in virtio-win 1.8.0 (circa 2015) are
1661 * incorrectly polling this bit during crashdump and hibernation
1662 * in MSI mode, causing a hang if this bit is never updated.
1663 * Recent releases of Windows do not really shut down, but rather
1664 * log out and hibernate to make the next startup faster. Hence,
1665 * this manifested as a more serious hang during shutdown with
1667 * Next driver release from 2016 fixed this problem, so working around it
1668 * is not a must, but it's easy to do so let's do it here.
1670 * Note: it's safe to update ISR from any thread as it was switched
1671 * to an atomic operation.
1673 virtio_set_isr(vq
->vdev
, 0x1);
1674 event_notifier_set(&vq
->guest_notifier
);
1677 static void virtio_irq(VirtQueue
*vq
)
1679 virtio_set_isr(vq
->vdev
, 0x1);
1680 virtio_notify_vector(vq
->vdev
, vq
->vector
);
1683 void virtio_notify(VirtIODevice
*vdev
, VirtQueue
*vq
)
1687 should_notify
= virtio_should_notify(vdev
, vq
);
1690 if (!should_notify
) {
1694 trace_virtio_notify(vdev
, vq
);
1698 void virtio_notify_config(VirtIODevice
*vdev
)
1700 if (!(vdev
->status
& VIRTIO_CONFIG_S_DRIVER_OK
))
1703 virtio_set_isr(vdev
, 0x3);
1705 virtio_notify_vector(vdev
, vdev
->config_vector
);
1708 static bool virtio_device_endian_needed(void *opaque
)
1710 VirtIODevice
*vdev
= opaque
;
1712 assert(vdev
->device_endian
!= VIRTIO_DEVICE_ENDIAN_UNKNOWN
);
1713 if (!virtio_vdev_has_feature(vdev
, VIRTIO_F_VERSION_1
)) {
1714 return vdev
->device_endian
!= virtio_default_endian();
1716 /* Devices conforming to VIRTIO 1.0 or later are always LE. */
1717 return vdev
->device_endian
!= VIRTIO_DEVICE_ENDIAN_LITTLE
;
1720 static bool virtio_64bit_features_needed(void *opaque
)
1722 VirtIODevice
*vdev
= opaque
;
1724 return (vdev
->host_features
>> 32) != 0;
1727 static bool virtio_virtqueue_needed(void *opaque
)
1729 VirtIODevice
*vdev
= opaque
;
1731 return virtio_host_has_feature(vdev
, VIRTIO_F_VERSION_1
);
1734 static bool virtio_ringsize_needed(void *opaque
)
1736 VirtIODevice
*vdev
= opaque
;
1739 for (i
= 0; i
< VIRTIO_QUEUE_MAX
; i
++) {
1740 if (vdev
->vq
[i
].vring
.num
!= vdev
->vq
[i
].vring
.num_default
) {
1747 static bool virtio_extra_state_needed(void *opaque
)
1749 VirtIODevice
*vdev
= opaque
;
1750 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
1751 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
1753 return k
->has_extra_state
&&
1754 k
->has_extra_state(qbus
->parent
);
1757 static bool virtio_broken_needed(void *opaque
)
1759 VirtIODevice
*vdev
= opaque
;
1761 return vdev
->broken
;
1764 static const VMStateDescription vmstate_virtqueue
= {
1765 .name
= "virtqueue_state",
1767 .minimum_version_id
= 1,
1768 .fields
= (VMStateField
[]) {
1769 VMSTATE_UINT64(vring
.avail
, struct VirtQueue
),
1770 VMSTATE_UINT64(vring
.used
, struct VirtQueue
),
1771 VMSTATE_END_OF_LIST()
1775 static const VMStateDescription vmstate_virtio_virtqueues
= {
1776 .name
= "virtio/virtqueues",
1778 .minimum_version_id
= 1,
1779 .needed
= &virtio_virtqueue_needed
,
1780 .fields
= (VMStateField
[]) {
1781 VMSTATE_STRUCT_VARRAY_POINTER_KNOWN(vq
, struct VirtIODevice
,
1782 VIRTIO_QUEUE_MAX
, 0, vmstate_virtqueue
, VirtQueue
),
1783 VMSTATE_END_OF_LIST()
1787 static const VMStateDescription vmstate_ringsize
= {
1788 .name
= "ringsize_state",
1790 .minimum_version_id
= 1,
1791 .fields
= (VMStateField
[]) {
1792 VMSTATE_UINT32(vring
.num_default
, struct VirtQueue
),
1793 VMSTATE_END_OF_LIST()
1797 static const VMStateDescription vmstate_virtio_ringsize
= {
1798 .name
= "virtio/ringsize",
1800 .minimum_version_id
= 1,
1801 .needed
= &virtio_ringsize_needed
,
1802 .fields
= (VMStateField
[]) {
1803 VMSTATE_STRUCT_VARRAY_POINTER_KNOWN(vq
, struct VirtIODevice
,
1804 VIRTIO_QUEUE_MAX
, 0, vmstate_ringsize
, VirtQueue
),
1805 VMSTATE_END_OF_LIST()
1809 static int get_extra_state(QEMUFile
*f
, void *pv
, size_t size
,
1810 VMStateField
*field
)
1812 VirtIODevice
*vdev
= pv
;
1813 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
1814 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
1816 if (!k
->load_extra_state
) {
1819 return k
->load_extra_state(qbus
->parent
, f
);
1823 static int put_extra_state(QEMUFile
*f
, void *pv
, size_t size
,
1824 VMStateField
*field
, QJSON
*vmdesc
)
1826 VirtIODevice
*vdev
= pv
;
1827 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
1828 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
1830 k
->save_extra_state(qbus
->parent
, f
);
1834 static const VMStateInfo vmstate_info_extra_state
= {
1835 .name
= "virtqueue_extra_state",
1836 .get
= get_extra_state
,
1837 .put
= put_extra_state
,
1840 static const VMStateDescription vmstate_virtio_extra_state
= {
1841 .name
= "virtio/extra_state",
1843 .minimum_version_id
= 1,
1844 .needed
= &virtio_extra_state_needed
,
1845 .fields
= (VMStateField
[]) {
1847 .name
= "extra_state",
1849 .field_exists
= NULL
,
1851 .info
= &vmstate_info_extra_state
,
1852 .flags
= VMS_SINGLE
,
1855 VMSTATE_END_OF_LIST()
1859 static const VMStateDescription vmstate_virtio_device_endian
= {
1860 .name
= "virtio/device_endian",
1862 .minimum_version_id
= 1,
1863 .needed
= &virtio_device_endian_needed
,
1864 .fields
= (VMStateField
[]) {
1865 VMSTATE_UINT8(device_endian
, VirtIODevice
),
1866 VMSTATE_END_OF_LIST()
1870 static const VMStateDescription vmstate_virtio_64bit_features
= {
1871 .name
= "virtio/64bit_features",
1873 .minimum_version_id
= 1,
1874 .needed
= &virtio_64bit_features_needed
,
1875 .fields
= (VMStateField
[]) {
1876 VMSTATE_UINT64(guest_features
, VirtIODevice
),
1877 VMSTATE_END_OF_LIST()
1881 static const VMStateDescription vmstate_virtio_broken
= {
1882 .name
= "virtio/broken",
1884 .minimum_version_id
= 1,
1885 .needed
= &virtio_broken_needed
,
1886 .fields
= (VMStateField
[]) {
1887 VMSTATE_BOOL(broken
, VirtIODevice
),
1888 VMSTATE_END_OF_LIST()
1892 static const VMStateDescription vmstate_virtio
= {
1895 .minimum_version_id
= 1,
1896 .minimum_version_id_old
= 1,
1897 .fields
= (VMStateField
[]) {
1898 VMSTATE_END_OF_LIST()
1900 .subsections
= (const VMStateDescription
*[]) {
1901 &vmstate_virtio_device_endian
,
1902 &vmstate_virtio_64bit_features
,
1903 &vmstate_virtio_virtqueues
,
1904 &vmstate_virtio_ringsize
,
1905 &vmstate_virtio_broken
,
1906 &vmstate_virtio_extra_state
,
1911 int virtio_save(VirtIODevice
*vdev
, QEMUFile
*f
)
1913 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
1914 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
1915 VirtioDeviceClass
*vdc
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1916 uint32_t guest_features_lo
= (vdev
->guest_features
& 0xffffffff);
1919 if (k
->save_config
) {
1920 k
->save_config(qbus
->parent
, f
);
1923 qemu_put_8s(f
, &vdev
->status
);
1924 qemu_put_8s(f
, &vdev
->isr
);
1925 qemu_put_be16s(f
, &vdev
->queue_sel
);
1926 qemu_put_be32s(f
, &guest_features_lo
);
1927 qemu_put_be32(f
, vdev
->config_len
);
1928 qemu_put_buffer(f
, vdev
->config
, vdev
->config_len
);
1930 for (i
= 0; i
< VIRTIO_QUEUE_MAX
; i
++) {
1931 if (vdev
->vq
[i
].vring
.num
== 0)
1935 qemu_put_be32(f
, i
);
1937 for (i
= 0; i
< VIRTIO_QUEUE_MAX
; i
++) {
1938 if (vdev
->vq
[i
].vring
.num
== 0)
1941 qemu_put_be32(f
, vdev
->vq
[i
].vring
.num
);
1942 if (k
->has_variable_vring_alignment
) {
1943 qemu_put_be32(f
, vdev
->vq
[i
].vring
.align
);
1946 * Save desc now, the rest of the ring addresses are saved in
1947 * subsections for VIRTIO-1 devices.
1949 qemu_put_be64(f
, vdev
->vq
[i
].vring
.desc
);
1950 qemu_put_be16s(f
, &vdev
->vq
[i
].last_avail_idx
);
1951 if (k
->save_queue
) {
1952 k
->save_queue(qbus
->parent
, i
, f
);
1956 if (vdc
->save
!= NULL
) {
1961 int ret
= vmstate_save_state(f
, vdc
->vmsd
, vdev
, NULL
);
1968 return vmstate_save_state(f
, &vmstate_virtio
, vdev
, NULL
);
1971 /* A wrapper for use as a VMState .put function */
1972 static int virtio_device_put(QEMUFile
*f
, void *opaque
, size_t size
,
1973 VMStateField
*field
, QJSON
*vmdesc
)
1975 return virtio_save(VIRTIO_DEVICE(opaque
), f
);
1978 /* A wrapper for use as a VMState .get function */
1979 static int virtio_device_get(QEMUFile
*f
, void *opaque
, size_t size
,
1980 VMStateField
*field
)
1982 VirtIODevice
*vdev
= VIRTIO_DEVICE(opaque
);
1983 DeviceClass
*dc
= DEVICE_CLASS(VIRTIO_DEVICE_GET_CLASS(vdev
));
1985 return virtio_load(vdev
, f
, dc
->vmsd
->version_id
);
1988 const VMStateInfo virtio_vmstate_info
= {
1990 .get
= virtio_device_get
,
1991 .put
= virtio_device_put
,
1994 static int virtio_set_features_nocheck(VirtIODevice
*vdev
, uint64_t val
)
1996 VirtioDeviceClass
*k
= VIRTIO_DEVICE_GET_CLASS(vdev
);
1997 bool bad
= (val
& ~(vdev
->host_features
)) != 0;
1999 val
&= vdev
->host_features
;
2000 if (k
->set_features
) {
2001 k
->set_features(vdev
, val
);
2003 vdev
->guest_features
= val
;
2004 return bad
? -1 : 0;
2007 int virtio_set_features(VirtIODevice
*vdev
, uint64_t val
)
2010 * The driver must not attempt to set features after feature negotiation
2013 if (vdev
->status
& VIRTIO_CONFIG_S_FEATURES_OK
) {
2016 return virtio_set_features_nocheck(vdev
, val
);
2019 int virtio_load(VirtIODevice
*vdev
, QEMUFile
*f
, int version_id
)
2025 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
2026 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
2027 VirtioDeviceClass
*vdc
= VIRTIO_DEVICE_GET_CLASS(vdev
);
2030 * We poison the endianness to ensure it does not get used before
2031 * subsections have been loaded.
2033 vdev
->device_endian
= VIRTIO_DEVICE_ENDIAN_UNKNOWN
;
2035 if (k
->load_config
) {
2036 ret
= k
->load_config(qbus
->parent
, f
);
2041 qemu_get_8s(f
, &vdev
->status
);
2042 qemu_get_8s(f
, &vdev
->isr
);
2043 qemu_get_be16s(f
, &vdev
->queue_sel
);
2044 if (vdev
->queue_sel
>= VIRTIO_QUEUE_MAX
) {
2047 qemu_get_be32s(f
, &features
);
2050 * Temporarily set guest_features low bits - needed by
2051 * virtio net load code testing for VIRTIO_NET_F_CTRL_GUEST_OFFLOADS
2052 * VIRTIO_NET_F_GUEST_ANNOUNCE and VIRTIO_NET_F_CTRL_VQ.
2054 * Note: devices should always test host features in future - don't create
2055 * new dependencies like this.
2057 vdev
->guest_features
= features
;
2059 config_len
= qemu_get_be32(f
);
2062 * There are cases where the incoming config can be bigger or smaller
2063 * than what we have; so load what we have space for, and skip
2064 * any excess that's in the stream.
2066 qemu_get_buffer(f
, vdev
->config
, MIN(config_len
, vdev
->config_len
));
2068 while (config_len
> vdev
->config_len
) {
2073 num
= qemu_get_be32(f
);
2075 if (num
> VIRTIO_QUEUE_MAX
) {
2076 error_report("Invalid number of virtqueues: 0x%x", num
);
2080 for (i
= 0; i
< num
; i
++) {
2081 vdev
->vq
[i
].vring
.num
= qemu_get_be32(f
);
2082 if (k
->has_variable_vring_alignment
) {
2083 vdev
->vq
[i
].vring
.align
= qemu_get_be32(f
);
2085 vdev
->vq
[i
].vring
.desc
= qemu_get_be64(f
);
2086 qemu_get_be16s(f
, &vdev
->vq
[i
].last_avail_idx
);
2087 vdev
->vq
[i
].signalled_used_valid
= false;
2088 vdev
->vq
[i
].notification
= true;
2090 if (!vdev
->vq
[i
].vring
.desc
&& vdev
->vq
[i
].last_avail_idx
) {
2091 error_report("VQ %d address 0x0 "
2092 "inconsistent with Host index 0x%x",
2093 i
, vdev
->vq
[i
].last_avail_idx
);
2096 if (k
->load_queue
) {
2097 ret
= k
->load_queue(qbus
->parent
, i
, f
);
2103 virtio_notify_vector(vdev
, VIRTIO_NO_VECTOR
);
2105 if (vdc
->load
!= NULL
) {
2106 ret
= vdc
->load(vdev
, f
, version_id
);
2113 ret
= vmstate_load_state(f
, vdc
->vmsd
, vdev
, version_id
);
2120 ret
= vmstate_load_state(f
, &vmstate_virtio
, vdev
, 1);
2125 if (vdev
->device_endian
== VIRTIO_DEVICE_ENDIAN_UNKNOWN
) {
2126 vdev
->device_endian
= virtio_default_endian();
2129 if (virtio_64bit_features_needed(vdev
)) {
2131 * Subsection load filled vdev->guest_features. Run them
2132 * through virtio_set_features to sanity-check them against
2135 uint64_t features64
= vdev
->guest_features
;
2136 if (virtio_set_features_nocheck(vdev
, features64
) < 0) {
2137 error_report("Features 0x%" PRIx64
" unsupported. "
2138 "Allowed features: 0x%" PRIx64
,
2139 features64
, vdev
->host_features
);
2143 if (virtio_set_features_nocheck(vdev
, features
) < 0) {
2144 error_report("Features 0x%x unsupported. "
2145 "Allowed features: 0x%" PRIx64
,
2146 features
, vdev
->host_features
);
2152 for (i
= 0; i
< num
; i
++) {
2153 if (vdev
->vq
[i
].vring
.desc
) {
2157 * VIRTIO-1 devices migrate desc, used, and avail ring addresses so
2158 * only the region cache needs to be set up. Legacy devices need
2159 * to calculate used and avail ring addresses based on the desc
2162 if (virtio_vdev_has_feature(vdev
, VIRTIO_F_VERSION_1
)) {
2163 virtio_init_region_cache(vdev
, i
);
2165 virtio_queue_update_rings(vdev
, i
);
2168 nheads
= vring_avail_idx(&vdev
->vq
[i
]) - vdev
->vq
[i
].last_avail_idx
;
2169 /* Check it isn't doing strange things with descriptor numbers. */
2170 if (nheads
> vdev
->vq
[i
].vring
.num
) {
2171 error_report("VQ %d size 0x%x Guest index 0x%x "
2172 "inconsistent with Host index 0x%x: delta 0x%x",
2173 i
, vdev
->vq
[i
].vring
.num
,
2174 vring_avail_idx(&vdev
->vq
[i
]),
2175 vdev
->vq
[i
].last_avail_idx
, nheads
);
2178 vdev
->vq
[i
].used_idx
= vring_used_idx(&vdev
->vq
[i
]);
2179 vdev
->vq
[i
].shadow_avail_idx
= vring_avail_idx(&vdev
->vq
[i
]);
2182 * Some devices migrate VirtQueueElements that have been popped
2183 * from the avail ring but not yet returned to the used ring.
2184 * Since max ring size < UINT16_MAX it's safe to use modulo
2185 * UINT16_MAX + 1 subtraction.
2187 vdev
->vq
[i
].inuse
= (uint16_t)(vdev
->vq
[i
].last_avail_idx
-
2188 vdev
->vq
[i
].used_idx
);
2189 if (vdev
->vq
[i
].inuse
> vdev
->vq
[i
].vring
.num
) {
2190 error_report("VQ %d size 0x%x < last_avail_idx 0x%x - "
2192 i
, vdev
->vq
[i
].vring
.num
,
2193 vdev
->vq
[i
].last_avail_idx
,
2194 vdev
->vq
[i
].used_idx
);
2204 void virtio_cleanup(VirtIODevice
*vdev
)
2206 qemu_del_vm_change_state_handler(vdev
->vmstate
);
2209 static void virtio_vmstate_change(void *opaque
, int running
, RunState state
)
2211 VirtIODevice
*vdev
= opaque
;
2212 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
2213 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
2214 bool backend_run
= running
&& (vdev
->status
& VIRTIO_CONFIG_S_DRIVER_OK
);
2215 vdev
->vm_running
= running
;
2218 virtio_set_status(vdev
, vdev
->status
);
2221 if (k
->vmstate_change
) {
2222 k
->vmstate_change(qbus
->parent
, backend_run
);
2226 virtio_set_status(vdev
, vdev
->status
);
2230 void virtio_instance_init_common(Object
*proxy_obj
, void *data
,
2231 size_t vdev_size
, const char *vdev_name
)
2233 DeviceState
*vdev
= data
;
2235 object_initialize(vdev
, vdev_size
, vdev_name
);
2236 object_property_add_child(proxy_obj
, "virtio-backend", OBJECT(vdev
), NULL
);
2237 object_unref(OBJECT(vdev
));
2238 qdev_alias_all_properties(vdev
, proxy_obj
);
2241 void virtio_init(VirtIODevice
*vdev
, const char *name
,
2242 uint16_t device_id
, size_t config_size
)
2244 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
2245 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
2247 int nvectors
= k
->query_nvectors
? k
->query_nvectors(qbus
->parent
) : 0;
2250 vdev
->vector_queues
=
2251 g_malloc0(sizeof(*vdev
->vector_queues
) * nvectors
);
2254 vdev
->device_id
= device_id
;
2256 atomic_set(&vdev
->isr
, 0);
2257 vdev
->queue_sel
= 0;
2258 vdev
->config_vector
= VIRTIO_NO_VECTOR
;
2259 vdev
->vq
= g_malloc0(sizeof(VirtQueue
) * VIRTIO_QUEUE_MAX
);
2260 vdev
->vm_running
= runstate_is_running();
2261 vdev
->broken
= false;
2262 for (i
= 0; i
< VIRTIO_QUEUE_MAX
; i
++) {
2263 vdev
->vq
[i
].vector
= VIRTIO_NO_VECTOR
;
2264 vdev
->vq
[i
].vdev
= vdev
;
2265 vdev
->vq
[i
].queue_index
= i
;
2269 vdev
->config_len
= config_size
;
2270 if (vdev
->config_len
) {
2271 vdev
->config
= g_malloc0(config_size
);
2273 vdev
->config
= NULL
;
2275 vdev
->vmstate
= qemu_add_vm_change_state_handler(virtio_vmstate_change
,
2277 vdev
->device_endian
= virtio_default_endian();
2278 vdev
->use_guest_notifier_mask
= true;
2281 hwaddr
virtio_queue_get_desc_addr(VirtIODevice
*vdev
, int n
)
2283 return vdev
->vq
[n
].vring
.desc
;
2286 hwaddr
virtio_queue_get_avail_addr(VirtIODevice
*vdev
, int n
)
2288 return vdev
->vq
[n
].vring
.avail
;
2291 hwaddr
virtio_queue_get_used_addr(VirtIODevice
*vdev
, int n
)
2293 return vdev
->vq
[n
].vring
.used
;
2296 hwaddr
virtio_queue_get_desc_size(VirtIODevice
*vdev
, int n
)
2298 return sizeof(VRingDesc
) * vdev
->vq
[n
].vring
.num
;
2301 hwaddr
virtio_queue_get_avail_size(VirtIODevice
*vdev
, int n
)
2303 return offsetof(VRingAvail
, ring
) +
2304 sizeof(uint16_t) * vdev
->vq
[n
].vring
.num
;
2307 hwaddr
virtio_queue_get_used_size(VirtIODevice
*vdev
, int n
)
2309 return offsetof(VRingUsed
, ring
) +
2310 sizeof(VRingUsedElem
) * vdev
->vq
[n
].vring
.num
;
2313 uint16_t virtio_queue_get_last_avail_idx(VirtIODevice
*vdev
, int n
)
2315 return vdev
->vq
[n
].last_avail_idx
;
2318 void virtio_queue_set_last_avail_idx(VirtIODevice
*vdev
, int n
, uint16_t idx
)
2320 vdev
->vq
[n
].last_avail_idx
= idx
;
2321 vdev
->vq
[n
].shadow_avail_idx
= idx
;
2324 void virtio_queue_restore_last_avail_idx(VirtIODevice
*vdev
, int n
)
2327 if (vdev
->vq
[n
].vring
.desc
) {
2328 vdev
->vq
[n
].last_avail_idx
= vring_used_idx(&vdev
->vq
[n
]);
2329 vdev
->vq
[n
].shadow_avail_idx
= vdev
->vq
[n
].last_avail_idx
;
2334 void virtio_queue_update_used_idx(VirtIODevice
*vdev
, int n
)
2337 if (vdev
->vq
[n
].vring
.desc
) {
2338 vdev
->vq
[n
].used_idx
= vring_used_idx(&vdev
->vq
[n
]);
2343 void virtio_queue_invalidate_signalled_used(VirtIODevice
*vdev
, int n
)
2345 vdev
->vq
[n
].signalled_used_valid
= false;
2348 VirtQueue
*virtio_get_queue(VirtIODevice
*vdev
, int n
)
2350 return vdev
->vq
+ n
;
2353 uint16_t virtio_get_queue_index(VirtQueue
*vq
)
2355 return vq
->queue_index
;
2358 static void virtio_queue_guest_notifier_read(EventNotifier
*n
)
2360 VirtQueue
*vq
= container_of(n
, VirtQueue
, guest_notifier
);
2361 if (event_notifier_test_and_clear(n
)) {
2366 void virtio_queue_set_guest_notifier_fd_handler(VirtQueue
*vq
, bool assign
,
2369 if (assign
&& !with_irqfd
) {
2370 event_notifier_set_handler(&vq
->guest_notifier
,
2371 virtio_queue_guest_notifier_read
);
2373 event_notifier_set_handler(&vq
->guest_notifier
, NULL
);
2376 /* Test and clear notifier before closing it,
2377 * in case poll callback didn't have time to run. */
2378 virtio_queue_guest_notifier_read(&vq
->guest_notifier
);
2382 EventNotifier
*virtio_queue_get_guest_notifier(VirtQueue
*vq
)
2384 return &vq
->guest_notifier
;
2387 static void virtio_queue_host_notifier_aio_read(EventNotifier
*n
)
2389 VirtQueue
*vq
= container_of(n
, VirtQueue
, host_notifier
);
2390 if (event_notifier_test_and_clear(n
)) {
2391 virtio_queue_notify_aio_vq(vq
);
2395 static void virtio_queue_host_notifier_aio_poll_begin(EventNotifier
*n
)
2397 VirtQueue
*vq
= container_of(n
, VirtQueue
, host_notifier
);
2399 virtio_queue_set_notification(vq
, 0);
2402 static bool virtio_queue_host_notifier_aio_poll(void *opaque
)
2404 EventNotifier
*n
= opaque
;
2405 VirtQueue
*vq
= container_of(n
, VirtQueue
, host_notifier
);
2408 if (!vq
->vring
.desc
|| virtio_queue_empty(vq
)) {
2412 progress
= virtio_queue_notify_aio_vq(vq
);
2414 /* In case the handler function re-enabled notifications */
2415 virtio_queue_set_notification(vq
, 0);
2419 static void virtio_queue_host_notifier_aio_poll_end(EventNotifier
*n
)
2421 VirtQueue
*vq
= container_of(n
, VirtQueue
, host_notifier
);
2423 /* Caller polls once more after this to catch requests that race with us */
2424 virtio_queue_set_notification(vq
, 1);
2427 void virtio_queue_aio_set_host_notifier_handler(VirtQueue
*vq
, AioContext
*ctx
,
2428 VirtIOHandleAIOOutput handle_output
)
2430 if (handle_output
) {
2431 vq
->handle_aio_output
= handle_output
;
2432 aio_set_event_notifier(ctx
, &vq
->host_notifier
, true,
2433 virtio_queue_host_notifier_aio_read
,
2434 virtio_queue_host_notifier_aio_poll
);
2435 aio_set_event_notifier_poll(ctx
, &vq
->host_notifier
,
2436 virtio_queue_host_notifier_aio_poll_begin
,
2437 virtio_queue_host_notifier_aio_poll_end
);
2439 aio_set_event_notifier(ctx
, &vq
->host_notifier
, true, NULL
, NULL
);
2440 /* Test and clear notifier before after disabling event,
2441 * in case poll callback didn't have time to run. */
2442 virtio_queue_host_notifier_aio_read(&vq
->host_notifier
);
2443 vq
->handle_aio_output
= NULL
;
2447 void virtio_queue_host_notifier_read(EventNotifier
*n
)
2449 VirtQueue
*vq
= container_of(n
, VirtQueue
, host_notifier
);
2450 if (event_notifier_test_and_clear(n
)) {
2451 virtio_queue_notify_vq(vq
);
2455 EventNotifier
*virtio_queue_get_host_notifier(VirtQueue
*vq
)
2457 return &vq
->host_notifier
;
2460 int virtio_queue_set_host_notifier_mr(VirtIODevice
*vdev
, int n
,
2461 MemoryRegion
*mr
, bool assign
)
2463 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
2464 VirtioBusClass
*k
= VIRTIO_BUS_GET_CLASS(qbus
);
2466 if (k
->set_host_notifier_mr
) {
2467 return k
->set_host_notifier_mr(qbus
->parent
, n
, mr
, assign
);
2473 void virtio_device_set_child_bus_name(VirtIODevice
*vdev
, char *bus_name
)
2475 g_free(vdev
->bus_name
);
2476 vdev
->bus_name
= g_strdup(bus_name
);
2479 void GCC_FMT_ATTR(2, 3) virtio_error(VirtIODevice
*vdev
, const char *fmt
, ...)
2484 error_vreport(fmt
, ap
);
2487 if (virtio_vdev_has_feature(vdev
, VIRTIO_F_VERSION_1
)) {
2488 vdev
->status
= vdev
->status
| VIRTIO_CONFIG_S_NEEDS_RESET
;
2489 virtio_notify_config(vdev
);
2492 vdev
->broken
= true;
2495 static void virtio_memory_listener_commit(MemoryListener
*listener
)
2497 VirtIODevice
*vdev
= container_of(listener
, VirtIODevice
, listener
);
2500 for (i
= 0; i
< VIRTIO_QUEUE_MAX
; i
++) {
2501 if (vdev
->vq
[i
].vring
.num
== 0) {
2504 virtio_init_region_cache(vdev
, i
);
2508 static void virtio_device_realize(DeviceState
*dev
, Error
**errp
)
2510 VirtIODevice
*vdev
= VIRTIO_DEVICE(dev
);
2511 VirtioDeviceClass
*vdc
= VIRTIO_DEVICE_GET_CLASS(dev
);
2514 /* Devices should either use vmsd or the load/save methods */
2515 assert(!vdc
->vmsd
|| !vdc
->load
);
2517 if (vdc
->realize
!= NULL
) {
2518 vdc
->realize(dev
, &err
);
2520 error_propagate(errp
, err
);
2525 virtio_bus_device_plugged(vdev
, &err
);
2527 error_propagate(errp
, err
);
2528 vdc
->unrealize(dev
, NULL
);
2532 vdev
->listener
.commit
= virtio_memory_listener_commit
;
2533 memory_listener_register(&vdev
->listener
, vdev
->dma_as
);
2536 static void virtio_device_unrealize(DeviceState
*dev
, Error
**errp
)
2538 VirtIODevice
*vdev
= VIRTIO_DEVICE(dev
);
2539 VirtioDeviceClass
*vdc
= VIRTIO_DEVICE_GET_CLASS(dev
);
2542 virtio_bus_device_unplugged(vdev
);
2544 if (vdc
->unrealize
!= NULL
) {
2545 vdc
->unrealize(dev
, &err
);
2547 error_propagate(errp
, err
);
2552 g_free(vdev
->bus_name
);
2553 vdev
->bus_name
= NULL
;
2556 static void virtio_device_free_virtqueues(VirtIODevice
*vdev
)
2563 for (i
= 0; i
< VIRTIO_QUEUE_MAX
; i
++) {
2564 if (vdev
->vq
[i
].vring
.num
== 0) {
2567 virtio_virtqueue_reset_region_cache(&vdev
->vq
[i
]);
2572 static void virtio_device_instance_finalize(Object
*obj
)
2574 VirtIODevice
*vdev
= VIRTIO_DEVICE(obj
);
2576 memory_listener_unregister(&vdev
->listener
);
2577 virtio_device_free_virtqueues(vdev
);
2579 g_free(vdev
->config
);
2580 g_free(vdev
->vector_queues
);
2583 static Property virtio_properties
[] = {
2584 DEFINE_VIRTIO_COMMON_FEATURES(VirtIODevice
, host_features
),
2585 DEFINE_PROP_END_OF_LIST(),
2588 static int virtio_device_start_ioeventfd_impl(VirtIODevice
*vdev
)
2590 VirtioBusState
*qbus
= VIRTIO_BUS(qdev_get_parent_bus(DEVICE(vdev
)));
2593 memory_region_transaction_begin();
2594 for (n
= 0; n
< VIRTIO_QUEUE_MAX
; n
++) {
2595 VirtQueue
*vq
= &vdev
->vq
[n
];
2596 if (!virtio_queue_get_num(vdev
, n
)) {
2599 r
= virtio_bus_set_host_notifier(qbus
, n
, true);
2604 event_notifier_set_handler(&vq
->host_notifier
,
2605 virtio_queue_host_notifier_read
);
2608 for (n
= 0; n
< VIRTIO_QUEUE_MAX
; n
++) {
2609 /* Kick right away to begin processing requests already in vring */
2610 VirtQueue
*vq
= &vdev
->vq
[n
];
2611 if (!vq
->vring
.num
) {
2614 event_notifier_set(&vq
->host_notifier
);
2616 memory_region_transaction_commit();
2620 i
= n
; /* save n for a second iteration after transaction is committed. */
2622 VirtQueue
*vq
= &vdev
->vq
[n
];
2623 if (!virtio_queue_get_num(vdev
, n
)) {
2627 event_notifier_set_handler(&vq
->host_notifier
, NULL
);
2628 r
= virtio_bus_set_host_notifier(qbus
, n
, false);
2631 memory_region_transaction_commit();
2634 if (!virtio_queue_get_num(vdev
, i
)) {
2637 virtio_bus_cleanup_host_notifier(qbus
, i
);
2642 int virtio_device_start_ioeventfd(VirtIODevice
*vdev
)
2644 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
2645 VirtioBusState
*vbus
= VIRTIO_BUS(qbus
);
2647 return virtio_bus_start_ioeventfd(vbus
);
2650 static void virtio_device_stop_ioeventfd_impl(VirtIODevice
*vdev
)
2652 VirtioBusState
*qbus
= VIRTIO_BUS(qdev_get_parent_bus(DEVICE(vdev
)));
2655 memory_region_transaction_begin();
2656 for (n
= 0; n
< VIRTIO_QUEUE_MAX
; n
++) {
2657 VirtQueue
*vq
= &vdev
->vq
[n
];
2659 if (!virtio_queue_get_num(vdev
, n
)) {
2662 event_notifier_set_handler(&vq
->host_notifier
, NULL
);
2663 r
= virtio_bus_set_host_notifier(qbus
, n
, false);
2666 memory_region_transaction_commit();
2668 for (n
= 0; n
< VIRTIO_QUEUE_MAX
; n
++) {
2669 if (!virtio_queue_get_num(vdev
, n
)) {
2672 virtio_bus_cleanup_host_notifier(qbus
, n
);
2676 void virtio_device_stop_ioeventfd(VirtIODevice
*vdev
)
2678 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
2679 VirtioBusState
*vbus
= VIRTIO_BUS(qbus
);
2681 virtio_bus_stop_ioeventfd(vbus
);
2684 int virtio_device_grab_ioeventfd(VirtIODevice
*vdev
)
2686 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
2687 VirtioBusState
*vbus
= VIRTIO_BUS(qbus
);
2689 return virtio_bus_grab_ioeventfd(vbus
);
2692 void virtio_device_release_ioeventfd(VirtIODevice
*vdev
)
2694 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
2695 VirtioBusState
*vbus
= VIRTIO_BUS(qbus
);
2697 virtio_bus_release_ioeventfd(vbus
);
2700 static void virtio_device_class_init(ObjectClass
*klass
, void *data
)
2702 /* Set the default value here. */
2703 VirtioDeviceClass
*vdc
= VIRTIO_DEVICE_CLASS(klass
);
2704 DeviceClass
*dc
= DEVICE_CLASS(klass
);
2706 dc
->realize
= virtio_device_realize
;
2707 dc
->unrealize
= virtio_device_unrealize
;
2708 dc
->bus_type
= TYPE_VIRTIO_BUS
;
2709 dc
->props
= virtio_properties
;
2710 vdc
->start_ioeventfd
= virtio_device_start_ioeventfd_impl
;
2711 vdc
->stop_ioeventfd
= virtio_device_stop_ioeventfd_impl
;
2713 vdc
->legacy_features
|= VIRTIO_LEGACY_FEATURES
;
2716 bool virtio_device_ioeventfd_enabled(VirtIODevice
*vdev
)
2718 BusState
*qbus
= qdev_get_parent_bus(DEVICE(vdev
));
2719 VirtioBusState
*vbus
= VIRTIO_BUS(qbus
);
2721 return virtio_bus_ioeventfd_enabled(vbus
);
2724 static const TypeInfo virtio_device_info
= {
2725 .name
= TYPE_VIRTIO_DEVICE
,
2726 .parent
= TYPE_DEVICE
,
2727 .instance_size
= sizeof(VirtIODevice
),
2728 .class_init
= virtio_device_class_init
,
2729 .instance_finalize
= virtio_device_instance_finalize
,
2731 .class_size
= sizeof(VirtioDeviceClass
),
2734 static void virtio_register_types(void)
2736 type_register_static(&virtio_device_info
);
2739 type_init(virtio_register_types
)