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.
17 #include "qemu-error.h"
19 #include "qemu-barrier.h"
21 /* The alignment to use between consumer and producer parts of vring.
22 * x86 pagesize again. */
23 #define VIRTIO_PCI_VRING_ALIGN 4096
25 typedef struct VRingDesc
33 typedef struct VRingAvail
40 typedef struct VRingUsedElem
46 typedef struct VRingUsed
50 VRingUsedElem ring
[0];
65 uint16_t last_avail_idx
;
66 /* Last used index value we have signalled on */
67 uint16_t signalled_used
;
69 /* Last used index value we have signalled on */
70 bool signalled_used_valid
;
72 /* Notification enabled? */
78 void (*handle_output
)(VirtIODevice
*vdev
, VirtQueue
*vq
);
80 EventNotifier guest_notifier
;
81 EventNotifier host_notifier
;
84 /* virt queue functions */
85 static void virtqueue_init(VirtQueue
*vq
)
90 vq
->vring
.avail
= pa
+ vq
->vring
.num
* sizeof(VRingDesc
);
91 vq
->vring
.used
= vring_align(vq
->vring
.avail
+
92 offsetof(VRingAvail
, ring
[vq
->vring
.num
]),
93 VIRTIO_PCI_VRING_ALIGN
);
96 static inline uint64_t vring_desc_addr(hwaddr desc_pa
, int i
)
99 pa
= desc_pa
+ sizeof(VRingDesc
) * i
+ offsetof(VRingDesc
, addr
);
103 static inline uint32_t vring_desc_len(hwaddr desc_pa
, int i
)
106 pa
= desc_pa
+ sizeof(VRingDesc
) * i
+ offsetof(VRingDesc
, len
);
110 static inline uint16_t vring_desc_flags(hwaddr desc_pa
, int i
)
113 pa
= desc_pa
+ sizeof(VRingDesc
) * i
+ offsetof(VRingDesc
, flags
);
114 return lduw_phys(pa
);
117 static inline uint16_t vring_desc_next(hwaddr desc_pa
, int i
)
120 pa
= desc_pa
+ sizeof(VRingDesc
) * i
+ offsetof(VRingDesc
, next
);
121 return lduw_phys(pa
);
124 static inline uint16_t vring_avail_flags(VirtQueue
*vq
)
127 pa
= vq
->vring
.avail
+ offsetof(VRingAvail
, flags
);
128 return lduw_phys(pa
);
131 static inline uint16_t vring_avail_idx(VirtQueue
*vq
)
134 pa
= vq
->vring
.avail
+ offsetof(VRingAvail
, idx
);
135 return lduw_phys(pa
);
138 static inline uint16_t vring_avail_ring(VirtQueue
*vq
, int i
)
141 pa
= vq
->vring
.avail
+ offsetof(VRingAvail
, ring
[i
]);
142 return lduw_phys(pa
);
145 static inline uint16_t vring_used_event(VirtQueue
*vq
)
147 return vring_avail_ring(vq
, vq
->vring
.num
);
150 static inline void vring_used_ring_id(VirtQueue
*vq
, int i
, uint32_t val
)
153 pa
= vq
->vring
.used
+ offsetof(VRingUsed
, ring
[i
].id
);
157 static inline void vring_used_ring_len(VirtQueue
*vq
, int i
, uint32_t val
)
160 pa
= vq
->vring
.used
+ offsetof(VRingUsed
, ring
[i
].len
);
164 static uint16_t vring_used_idx(VirtQueue
*vq
)
167 pa
= vq
->vring
.used
+ offsetof(VRingUsed
, idx
);
168 return lduw_phys(pa
);
171 static inline void vring_used_idx_set(VirtQueue
*vq
, uint16_t val
)
174 pa
= vq
->vring
.used
+ offsetof(VRingUsed
, idx
);
178 static inline void vring_used_flags_set_bit(VirtQueue
*vq
, int mask
)
181 pa
= vq
->vring
.used
+ offsetof(VRingUsed
, flags
);
182 stw_phys(pa
, lduw_phys(pa
) | mask
);
185 static inline void vring_used_flags_unset_bit(VirtQueue
*vq
, int mask
)
188 pa
= vq
->vring
.used
+ offsetof(VRingUsed
, flags
);
189 stw_phys(pa
, lduw_phys(pa
) & ~mask
);
192 static inline void vring_avail_event(VirtQueue
*vq
, uint16_t val
)
195 if (!vq
->notification
) {
198 pa
= vq
->vring
.used
+ offsetof(VRingUsed
, ring
[vq
->vring
.num
]);
202 void virtio_queue_set_notification(VirtQueue
*vq
, int enable
)
204 vq
->notification
= enable
;
205 if (vq
->vdev
->guest_features
& (1 << VIRTIO_RING_F_EVENT_IDX
)) {
206 vring_avail_event(vq
, vring_avail_idx(vq
));
208 vring_used_flags_unset_bit(vq
, VRING_USED_F_NO_NOTIFY
);
210 vring_used_flags_set_bit(vq
, VRING_USED_F_NO_NOTIFY
);
213 /* Expose avail event/used flags before caller checks the avail idx. */
218 int virtio_queue_ready(VirtQueue
*vq
)
220 return vq
->vring
.avail
!= 0;
223 int virtio_queue_empty(VirtQueue
*vq
)
225 return vring_avail_idx(vq
) == vq
->last_avail_idx
;
228 void virtqueue_fill(VirtQueue
*vq
, const VirtQueueElement
*elem
,
229 unsigned int len
, unsigned int idx
)
234 trace_virtqueue_fill(vq
, elem
, len
, idx
);
237 for (i
= 0; i
< elem
->in_num
; i
++) {
238 size_t size
= MIN(len
- offset
, elem
->in_sg
[i
].iov_len
);
240 cpu_physical_memory_unmap(elem
->in_sg
[i
].iov_base
,
241 elem
->in_sg
[i
].iov_len
,
247 for (i
= 0; i
< elem
->out_num
; i
++)
248 cpu_physical_memory_unmap(elem
->out_sg
[i
].iov_base
,
249 elem
->out_sg
[i
].iov_len
,
250 0, elem
->out_sg
[i
].iov_len
);
252 idx
= (idx
+ vring_used_idx(vq
)) % vq
->vring
.num
;
254 /* Get a pointer to the next entry in the used ring. */
255 vring_used_ring_id(vq
, idx
, elem
->index
);
256 vring_used_ring_len(vq
, idx
, len
);
259 void virtqueue_flush(VirtQueue
*vq
, unsigned int count
)
262 /* Make sure buffer is written before we update index. */
264 trace_virtqueue_flush(vq
, count
);
265 old
= vring_used_idx(vq
);
267 vring_used_idx_set(vq
, new);
269 if (unlikely((int16_t)(new - vq
->signalled_used
) < (uint16_t)(new - old
)))
270 vq
->signalled_used_valid
= false;
273 void virtqueue_push(VirtQueue
*vq
, const VirtQueueElement
*elem
,
276 virtqueue_fill(vq
, elem
, len
, 0);
277 virtqueue_flush(vq
, 1);
280 static int virtqueue_num_heads(VirtQueue
*vq
, unsigned int idx
)
282 uint16_t num_heads
= vring_avail_idx(vq
) - idx
;
284 /* Check it isn't doing very strange things with descriptor numbers. */
285 if (num_heads
> vq
->vring
.num
) {
286 error_report("Guest moved used index from %u to %u",
287 idx
, vring_avail_idx(vq
));
290 /* On success, callers read a descriptor at vq->last_avail_idx.
291 * Make sure descriptor read does not bypass avail index read. */
299 static unsigned int virtqueue_get_head(VirtQueue
*vq
, unsigned int idx
)
303 /* Grab the next descriptor number they're advertising, and increment
304 * the index we've seen. */
305 head
= vring_avail_ring(vq
, idx
% vq
->vring
.num
);
307 /* If their number is silly, that's a fatal mistake. */
308 if (head
>= vq
->vring
.num
) {
309 error_report("Guest says index %u is available", head
);
316 static unsigned virtqueue_next_desc(hwaddr desc_pa
,
317 unsigned int i
, unsigned int max
)
321 /* If this descriptor says it doesn't chain, we're done. */
322 if (!(vring_desc_flags(desc_pa
, i
) & VRING_DESC_F_NEXT
))
325 /* Check they're not leading us off end of descriptors. */
326 next
= vring_desc_next(desc_pa
, i
);
327 /* Make sure compiler knows to grab that: we don't want it changing! */
331 error_report("Desc next is %u", next
);
338 void virtqueue_get_avail_bytes(VirtQueue
*vq
, unsigned int *in_bytes
,
339 unsigned int *out_bytes
,
340 unsigned max_in_bytes
, unsigned max_out_bytes
)
343 unsigned int total_bufs
, in_total
, out_total
;
345 idx
= vq
->last_avail_idx
;
347 total_bufs
= in_total
= out_total
= 0;
348 while (virtqueue_num_heads(vq
, idx
)) {
349 unsigned int max
, num_bufs
, indirect
= 0;
354 num_bufs
= total_bufs
;
355 i
= virtqueue_get_head(vq
, idx
++);
356 desc_pa
= vq
->vring
.desc
;
358 if (vring_desc_flags(desc_pa
, i
) & VRING_DESC_F_INDIRECT
) {
359 if (vring_desc_len(desc_pa
, i
) % sizeof(VRingDesc
)) {
360 error_report("Invalid size for indirect buffer table");
364 /* If we've got too many, that implies a descriptor loop. */
365 if (num_bufs
>= max
) {
366 error_report("Looped descriptor");
370 /* loop over the indirect descriptor table */
372 max
= vring_desc_len(desc_pa
, i
) / sizeof(VRingDesc
);
374 desc_pa
= vring_desc_addr(desc_pa
, i
);
378 /* If we've got too many, that implies a descriptor loop. */
379 if (++num_bufs
> max
) {
380 error_report("Looped descriptor");
384 if (vring_desc_flags(desc_pa
, i
) & VRING_DESC_F_WRITE
) {
385 in_total
+= vring_desc_len(desc_pa
, i
);
387 out_total
+= vring_desc_len(desc_pa
, i
);
389 if (in_total
>= max_in_bytes
&& out_total
>= max_out_bytes
) {
392 } while ((i
= virtqueue_next_desc(desc_pa
, i
, max
)) != max
);
395 total_bufs
= num_bufs
;
401 *in_bytes
= in_total
;
404 *out_bytes
= out_total
;
408 int virtqueue_avail_bytes(VirtQueue
*vq
, unsigned int in_bytes
,
409 unsigned int out_bytes
)
411 unsigned int in_total
, out_total
;
413 virtqueue_get_avail_bytes(vq
, &in_total
, &out_total
, in_bytes
, out_bytes
);
414 return in_bytes
<= in_total
&& out_bytes
<= out_total
;
417 void virtqueue_map_sg(struct iovec
*sg
, hwaddr
*addr
,
418 size_t num_sg
, int is_write
)
423 for (i
= 0; i
< num_sg
; i
++) {
425 sg
[i
].iov_base
= cpu_physical_memory_map(addr
[i
], &len
, is_write
);
426 if (sg
[i
].iov_base
== NULL
|| len
!= sg
[i
].iov_len
) {
427 error_report("virtio: trying to map MMIO memory");
433 int virtqueue_pop(VirtQueue
*vq
, VirtQueueElement
*elem
)
435 unsigned int i
, head
, max
;
436 hwaddr desc_pa
= vq
->vring
.desc
;
438 if (!virtqueue_num_heads(vq
, vq
->last_avail_idx
))
441 /* When we start there are none of either input nor output. */
442 elem
->out_num
= elem
->in_num
= 0;
446 i
= head
= virtqueue_get_head(vq
, vq
->last_avail_idx
++);
447 if (vq
->vdev
->guest_features
& (1 << VIRTIO_RING_F_EVENT_IDX
)) {
448 vring_avail_event(vq
, vring_avail_idx(vq
));
451 if (vring_desc_flags(desc_pa
, i
) & VRING_DESC_F_INDIRECT
) {
452 if (vring_desc_len(desc_pa
, i
) % sizeof(VRingDesc
)) {
453 error_report("Invalid size for indirect buffer table");
457 /* loop over the indirect descriptor table */
458 max
= vring_desc_len(desc_pa
, i
) / sizeof(VRingDesc
);
459 desc_pa
= vring_desc_addr(desc_pa
, i
);
463 /* Collect all the descriptors */
467 if (vring_desc_flags(desc_pa
, i
) & VRING_DESC_F_WRITE
) {
468 if (elem
->in_num
>= ARRAY_SIZE(elem
->in_sg
)) {
469 error_report("Too many write descriptors in indirect table");
472 elem
->in_addr
[elem
->in_num
] = vring_desc_addr(desc_pa
, i
);
473 sg
= &elem
->in_sg
[elem
->in_num
++];
475 if (elem
->out_num
>= ARRAY_SIZE(elem
->out_sg
)) {
476 error_report("Too many read descriptors in indirect table");
479 elem
->out_addr
[elem
->out_num
] = vring_desc_addr(desc_pa
, i
);
480 sg
= &elem
->out_sg
[elem
->out_num
++];
483 sg
->iov_len
= vring_desc_len(desc_pa
, i
);
485 /* If we've got too many, that implies a descriptor loop. */
486 if ((elem
->in_num
+ elem
->out_num
) > max
) {
487 error_report("Looped descriptor");
490 } while ((i
= virtqueue_next_desc(desc_pa
, i
, max
)) != max
);
492 /* Now map what we have collected */
493 virtqueue_map_sg(elem
->in_sg
, elem
->in_addr
, elem
->in_num
, 1);
494 virtqueue_map_sg(elem
->out_sg
, elem
->out_addr
, elem
->out_num
, 0);
500 trace_virtqueue_pop(vq
, elem
, elem
->in_num
, elem
->out_num
);
501 return elem
->in_num
+ elem
->out_num
;
505 static void virtio_notify_vector(VirtIODevice
*vdev
, uint16_t vector
)
507 if (vdev
->binding
->notify
) {
508 vdev
->binding
->notify(vdev
->binding_opaque
, vector
);
512 void virtio_update_irq(VirtIODevice
*vdev
)
514 virtio_notify_vector(vdev
, VIRTIO_NO_VECTOR
);
517 void virtio_set_status(VirtIODevice
*vdev
, uint8_t val
)
519 trace_virtio_set_status(vdev
, val
);
521 if (vdev
->set_status
) {
522 vdev
->set_status(vdev
, val
);
527 void virtio_reset(void *opaque
)
529 VirtIODevice
*vdev
= opaque
;
532 virtio_set_status(vdev
, 0);
537 vdev
->guest_features
= 0;
541 vdev
->config_vector
= VIRTIO_NO_VECTOR
;
542 virtio_notify_vector(vdev
, vdev
->config_vector
);
544 for(i
= 0; i
< VIRTIO_PCI_QUEUE_MAX
; i
++) {
545 vdev
->vq
[i
].vring
.desc
= 0;
546 vdev
->vq
[i
].vring
.avail
= 0;
547 vdev
->vq
[i
].vring
.used
= 0;
548 vdev
->vq
[i
].last_avail_idx
= 0;
550 vdev
->vq
[i
].vector
= VIRTIO_NO_VECTOR
;
551 vdev
->vq
[i
].signalled_used
= 0;
552 vdev
->vq
[i
].signalled_used_valid
= false;
553 vdev
->vq
[i
].notification
= true;
557 uint32_t virtio_config_readb(VirtIODevice
*vdev
, uint32_t addr
)
561 vdev
->get_config(vdev
, vdev
->config
);
563 if (addr
> (vdev
->config_len
- sizeof(val
)))
566 val
= ldub_p(vdev
->config
+ addr
);
570 uint32_t virtio_config_readw(VirtIODevice
*vdev
, uint32_t addr
)
574 vdev
->get_config(vdev
, vdev
->config
);
576 if (addr
> (vdev
->config_len
- sizeof(val
)))
579 val
= lduw_p(vdev
->config
+ addr
);
583 uint32_t virtio_config_readl(VirtIODevice
*vdev
, uint32_t addr
)
587 vdev
->get_config(vdev
, vdev
->config
);
589 if (addr
> (vdev
->config_len
- sizeof(val
)))
592 val
= ldl_p(vdev
->config
+ addr
);
596 void virtio_config_writeb(VirtIODevice
*vdev
, uint32_t addr
, uint32_t data
)
600 if (addr
> (vdev
->config_len
- sizeof(val
)))
603 stb_p(vdev
->config
+ addr
, val
);
605 if (vdev
->set_config
)
606 vdev
->set_config(vdev
, vdev
->config
);
609 void virtio_config_writew(VirtIODevice
*vdev
, uint32_t addr
, uint32_t data
)
613 if (addr
> (vdev
->config_len
- sizeof(val
)))
616 stw_p(vdev
->config
+ addr
, val
);
618 if (vdev
->set_config
)
619 vdev
->set_config(vdev
, vdev
->config
);
622 void virtio_config_writel(VirtIODevice
*vdev
, uint32_t addr
, uint32_t data
)
626 if (addr
> (vdev
->config_len
- sizeof(val
)))
629 stl_p(vdev
->config
+ addr
, val
);
631 if (vdev
->set_config
)
632 vdev
->set_config(vdev
, vdev
->config
);
635 void virtio_queue_set_addr(VirtIODevice
*vdev
, int n
, hwaddr addr
)
637 vdev
->vq
[n
].pa
= addr
;
638 virtqueue_init(&vdev
->vq
[n
]);
641 hwaddr
virtio_queue_get_addr(VirtIODevice
*vdev
, int n
)
643 return vdev
->vq
[n
].pa
;
646 int virtio_queue_get_num(VirtIODevice
*vdev
, int n
)
648 return vdev
->vq
[n
].vring
.num
;
651 int virtio_queue_get_id(VirtQueue
*vq
)
653 VirtIODevice
*vdev
= vq
->vdev
;
654 assert(vq
>= &vdev
->vq
[0] && vq
< &vdev
->vq
[VIRTIO_PCI_QUEUE_MAX
]);
655 return vq
- &vdev
->vq
[0];
658 void virtio_queue_notify_vq(VirtQueue
*vq
)
660 if (vq
->vring
.desc
) {
661 VirtIODevice
*vdev
= vq
->vdev
;
662 trace_virtio_queue_notify(vdev
, vq
- vdev
->vq
, vq
);
663 vq
->handle_output(vdev
, vq
);
667 void virtio_queue_notify(VirtIODevice
*vdev
, int n
)
669 virtio_queue_notify_vq(&vdev
->vq
[n
]);
672 uint16_t virtio_queue_vector(VirtIODevice
*vdev
, int n
)
674 return n
< VIRTIO_PCI_QUEUE_MAX
? vdev
->vq
[n
].vector
:
678 void virtio_queue_set_vector(VirtIODevice
*vdev
, int n
, uint16_t vector
)
680 if (n
< VIRTIO_PCI_QUEUE_MAX
)
681 vdev
->vq
[n
].vector
= vector
;
684 VirtQueue
*virtio_add_queue(VirtIODevice
*vdev
, int queue_size
,
685 void (*handle_output
)(VirtIODevice
*, VirtQueue
*))
689 for (i
= 0; i
< VIRTIO_PCI_QUEUE_MAX
; i
++) {
690 if (vdev
->vq
[i
].vring
.num
== 0)
694 if (i
== VIRTIO_PCI_QUEUE_MAX
|| queue_size
> VIRTQUEUE_MAX_SIZE
)
697 vdev
->vq
[i
].vring
.num
= queue_size
;
698 vdev
->vq
[i
].handle_output
= handle_output
;
703 void virtio_irq(VirtQueue
*vq
)
705 trace_virtio_irq(vq
);
706 vq
->vdev
->isr
|= 0x01;
707 virtio_notify_vector(vq
->vdev
, vq
->vector
);
710 /* Assuming a given event_idx value from the other size, if
711 * we have just incremented index from old to new_idx,
712 * should we trigger an event? */
713 static inline int vring_need_event(uint16_t event
, uint16_t new, uint16_t old
)
715 /* Note: Xen has similar logic for notification hold-off
716 * in include/xen/interface/io/ring.h with req_event and req_prod
717 * corresponding to event_idx + 1 and new respectively.
718 * Note also that req_event and req_prod in Xen start at 1,
719 * event indexes in virtio start at 0. */
720 return (uint16_t)(new - event
- 1) < (uint16_t)(new - old
);
723 static bool vring_notify(VirtIODevice
*vdev
, VirtQueue
*vq
)
727 /* We need to expose used array entries before checking used event. */
729 /* Always notify when queue is empty (when feature acknowledge) */
730 if (((vdev
->guest_features
& (1 << VIRTIO_F_NOTIFY_ON_EMPTY
)) &&
731 !vq
->inuse
&& vring_avail_idx(vq
) == vq
->last_avail_idx
)) {
735 if (!(vdev
->guest_features
& (1 << VIRTIO_RING_F_EVENT_IDX
))) {
736 return !(vring_avail_flags(vq
) & VRING_AVAIL_F_NO_INTERRUPT
);
739 v
= vq
->signalled_used_valid
;
740 vq
->signalled_used_valid
= true;
741 old
= vq
->signalled_used
;
742 new = vq
->signalled_used
= vring_used_idx(vq
);
743 return !v
|| vring_need_event(vring_used_event(vq
), new, old
);
746 void virtio_notify(VirtIODevice
*vdev
, VirtQueue
*vq
)
748 if (!vring_notify(vdev
, vq
)) {
752 trace_virtio_notify(vdev
, vq
);
754 virtio_notify_vector(vdev
, vq
->vector
);
757 void virtio_notify_config(VirtIODevice
*vdev
)
759 if (!(vdev
->status
& VIRTIO_CONFIG_S_DRIVER_OK
))
763 virtio_notify_vector(vdev
, vdev
->config_vector
);
766 void virtio_save(VirtIODevice
*vdev
, QEMUFile
*f
)
770 if (vdev
->binding
->save_config
)
771 vdev
->binding
->save_config(vdev
->binding_opaque
, f
);
773 qemu_put_8s(f
, &vdev
->status
);
774 qemu_put_8s(f
, &vdev
->isr
);
775 qemu_put_be16s(f
, &vdev
->queue_sel
);
776 qemu_put_be32s(f
, &vdev
->guest_features
);
777 qemu_put_be32(f
, vdev
->config_len
);
778 qemu_put_buffer(f
, vdev
->config
, vdev
->config_len
);
780 for (i
= 0; i
< VIRTIO_PCI_QUEUE_MAX
; i
++) {
781 if (vdev
->vq
[i
].vring
.num
== 0)
787 for (i
= 0; i
< VIRTIO_PCI_QUEUE_MAX
; i
++) {
788 if (vdev
->vq
[i
].vring
.num
== 0)
791 qemu_put_be32(f
, vdev
->vq
[i
].vring
.num
);
792 qemu_put_be64(f
, vdev
->vq
[i
].pa
);
793 qemu_put_be16s(f
, &vdev
->vq
[i
].last_avail_idx
);
794 if (vdev
->binding
->save_queue
)
795 vdev
->binding
->save_queue(vdev
->binding_opaque
, i
, f
);
799 int virtio_set_features(VirtIODevice
*vdev
, uint32_t val
)
801 uint32_t supported_features
=
802 vdev
->binding
->get_features(vdev
->binding_opaque
);
803 bool bad
= (val
& ~supported_features
) != 0;
805 val
&= supported_features
;
806 if (vdev
->set_features
) {
807 vdev
->set_features(vdev
, val
);
809 vdev
->guest_features
= val
;
813 int virtio_load(VirtIODevice
*vdev
, QEMUFile
*f
)
817 uint32_t supported_features
;
819 if (vdev
->binding
->load_config
) {
820 ret
= vdev
->binding
->load_config(vdev
->binding_opaque
, f
);
825 qemu_get_8s(f
, &vdev
->status
);
826 qemu_get_8s(f
, &vdev
->isr
);
827 qemu_get_be16s(f
, &vdev
->queue_sel
);
828 qemu_get_be32s(f
, &features
);
830 if (virtio_set_features(vdev
, features
) < 0) {
831 supported_features
= vdev
->binding
->get_features(vdev
->binding_opaque
);
832 error_report("Features 0x%x unsupported. Allowed features: 0x%x",
833 features
, supported_features
);
836 vdev
->config_len
= qemu_get_be32(f
);
837 qemu_get_buffer(f
, vdev
->config
, vdev
->config_len
);
839 num
= qemu_get_be32(f
);
841 for (i
= 0; i
< num
; i
++) {
842 vdev
->vq
[i
].vring
.num
= qemu_get_be32(f
);
843 vdev
->vq
[i
].pa
= qemu_get_be64(f
);
844 qemu_get_be16s(f
, &vdev
->vq
[i
].last_avail_idx
);
845 vdev
->vq
[i
].signalled_used_valid
= false;
846 vdev
->vq
[i
].notification
= true;
848 if (vdev
->vq
[i
].pa
) {
850 virtqueue_init(&vdev
->vq
[i
]);
851 nheads
= vring_avail_idx(&vdev
->vq
[i
]) - vdev
->vq
[i
].last_avail_idx
;
852 /* Check it isn't doing very strange things with descriptor numbers. */
853 if (nheads
> vdev
->vq
[i
].vring
.num
) {
854 error_report("VQ %d size 0x%x Guest index 0x%x "
855 "inconsistent with Host index 0x%x: delta 0x%x",
856 i
, vdev
->vq
[i
].vring
.num
,
857 vring_avail_idx(&vdev
->vq
[i
]),
858 vdev
->vq
[i
].last_avail_idx
, nheads
);
861 } else if (vdev
->vq
[i
].last_avail_idx
) {
862 error_report("VQ %d address 0x0 "
863 "inconsistent with Host index 0x%x",
864 i
, vdev
->vq
[i
].last_avail_idx
);
867 if (vdev
->binding
->load_queue
) {
868 ret
= vdev
->binding
->load_queue(vdev
->binding_opaque
, i
, f
);
874 virtio_notify_vector(vdev
, VIRTIO_NO_VECTOR
);
878 void virtio_cleanup(VirtIODevice
*vdev
)
880 qemu_del_vm_change_state_handler(vdev
->vmstate
);
881 g_free(vdev
->config
);
886 static void virtio_vmstate_change(void *opaque
, int running
, RunState state
)
888 VirtIODevice
*vdev
= opaque
;
889 bool backend_run
= running
&& (vdev
->status
& VIRTIO_CONFIG_S_DRIVER_OK
);
890 vdev
->vm_running
= running
;
893 virtio_set_status(vdev
, vdev
->status
);
896 if (vdev
->binding
->vmstate_change
) {
897 vdev
->binding
->vmstate_change(vdev
->binding_opaque
, backend_run
);
901 virtio_set_status(vdev
, vdev
->status
);
905 VirtIODevice
*virtio_common_init(const char *name
, uint16_t device_id
,
906 size_t config_size
, size_t struct_size
)
911 vdev
= g_malloc0(struct_size
);
913 vdev
->device_id
= device_id
;
917 vdev
->config_vector
= VIRTIO_NO_VECTOR
;
918 vdev
->vq
= g_malloc0(sizeof(VirtQueue
) * VIRTIO_PCI_QUEUE_MAX
);
919 vdev
->vm_running
= runstate_is_running();
920 for(i
= 0; i
< VIRTIO_PCI_QUEUE_MAX
; i
++) {
921 vdev
->vq
[i
].vector
= VIRTIO_NO_VECTOR
;
922 vdev
->vq
[i
].vdev
= vdev
;
926 vdev
->config_len
= config_size
;
927 if (vdev
->config_len
)
928 vdev
->config
= g_malloc0(config_size
);
932 vdev
->vmstate
= qemu_add_vm_change_state_handler(virtio_vmstate_change
, vdev
);
937 void virtio_bind_device(VirtIODevice
*vdev
, const VirtIOBindings
*binding
,
940 vdev
->binding
= binding
;
941 vdev
->binding_opaque
= opaque
;
944 hwaddr
virtio_queue_get_desc_addr(VirtIODevice
*vdev
, int n
)
946 return vdev
->vq
[n
].vring
.desc
;
949 hwaddr
virtio_queue_get_avail_addr(VirtIODevice
*vdev
, int n
)
951 return vdev
->vq
[n
].vring
.avail
;
954 hwaddr
virtio_queue_get_used_addr(VirtIODevice
*vdev
, int n
)
956 return vdev
->vq
[n
].vring
.used
;
959 hwaddr
virtio_queue_get_ring_addr(VirtIODevice
*vdev
, int n
)
961 return vdev
->vq
[n
].vring
.desc
;
964 hwaddr
virtio_queue_get_desc_size(VirtIODevice
*vdev
, int n
)
966 return sizeof(VRingDesc
) * vdev
->vq
[n
].vring
.num
;
969 hwaddr
virtio_queue_get_avail_size(VirtIODevice
*vdev
, int n
)
971 return offsetof(VRingAvail
, ring
) +
972 sizeof(uint64_t) * vdev
->vq
[n
].vring
.num
;
975 hwaddr
virtio_queue_get_used_size(VirtIODevice
*vdev
, int n
)
977 return offsetof(VRingUsed
, ring
) +
978 sizeof(VRingUsedElem
) * vdev
->vq
[n
].vring
.num
;
981 hwaddr
virtio_queue_get_ring_size(VirtIODevice
*vdev
, int n
)
983 return vdev
->vq
[n
].vring
.used
- vdev
->vq
[n
].vring
.desc
+
984 virtio_queue_get_used_size(vdev
, n
);
987 uint16_t virtio_queue_get_last_avail_idx(VirtIODevice
*vdev
, int n
)
989 return vdev
->vq
[n
].last_avail_idx
;
992 void virtio_queue_set_last_avail_idx(VirtIODevice
*vdev
, int n
, uint16_t idx
)
994 vdev
->vq
[n
].last_avail_idx
= idx
;
997 VirtQueue
*virtio_get_queue(VirtIODevice
*vdev
, int n
)
1002 static void virtio_queue_guest_notifier_read(EventNotifier
*n
)
1004 VirtQueue
*vq
= container_of(n
, VirtQueue
, guest_notifier
);
1005 if (event_notifier_test_and_clear(n
)) {
1010 void virtio_queue_set_guest_notifier_fd_handler(VirtQueue
*vq
, bool assign
,
1013 if (assign
&& !with_irqfd
) {
1014 event_notifier_set_handler(&vq
->guest_notifier
,
1015 virtio_queue_guest_notifier_read
);
1017 event_notifier_set_handler(&vq
->guest_notifier
, NULL
);
1020 /* Test and clear notifier before closing it,
1021 * in case poll callback didn't have time to run. */
1022 virtio_queue_guest_notifier_read(&vq
->guest_notifier
);
1026 EventNotifier
*virtio_queue_get_guest_notifier(VirtQueue
*vq
)
1028 return &vq
->guest_notifier
;
1031 static void virtio_queue_host_notifier_read(EventNotifier
*n
)
1033 VirtQueue
*vq
= container_of(n
, VirtQueue
, host_notifier
);
1034 if (event_notifier_test_and_clear(n
)) {
1035 virtio_queue_notify_vq(vq
);
1039 void virtio_queue_set_host_notifier_fd_handler(VirtQueue
*vq
, bool assign
,
1042 if (assign
&& set_handler
) {
1043 event_notifier_set_handler(&vq
->host_notifier
,
1044 virtio_queue_host_notifier_read
);
1046 event_notifier_set_handler(&vq
->host_notifier
, NULL
);
1049 /* Test and clear notifier before after disabling event,
1050 * in case poll callback didn't have time to run. */
1051 virtio_queue_host_notifier_read(&vq
->host_notifier
);
1055 EventNotifier
*virtio_queue_get_host_notifier(VirtQueue
*vq
)
1057 return &vq
->host_notifier
;