1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * Virtio PCI driver - modern (virtio 1.0) device support
5 * This module allows virtio devices to be used over a virtual PCI device.
6 * This can be used with QEMU based VMMs like KVM or Xen.
8 * Copyright IBM Corp. 2007
9 * Copyright Red Hat, Inc. 2014
12 * Anthony Liguori <aliguori@us.ibm.com>
13 * Rusty Russell <rusty@rustcorp.com.au>
14 * Michael S. Tsirkin <mst@redhat.com>
17 #include <linux/delay.h>
18 #define VIRTIO_PCI_NO_LEGACY
19 #include "virtio_pci_common.h"
22 * Type-safe wrappers for io accesses.
23 * Use these to enforce at compile time the following spec requirement:
25 * The driver MUST access each field using the “natural” access
26 * method, i.e. 32-bit accesses for 32-bit fields, 16-bit accesses
27 * for 16-bit fields and 8-bit accesses for 8-bit fields.
29 static inline u8
vp_ioread8(u8 __iomem
*addr
)
33 static inline u16
vp_ioread16 (__le16 __iomem
*addr
)
35 return ioread16(addr
);
38 static inline u32
vp_ioread32(__le32 __iomem
*addr
)
40 return ioread32(addr
);
43 static inline void vp_iowrite8(u8 value
, u8 __iomem
*addr
)
45 iowrite8(value
, addr
);
48 static inline void vp_iowrite16(u16 value
, __le16 __iomem
*addr
)
50 iowrite16(value
, addr
);
53 static inline void vp_iowrite32(u32 value
, __le32 __iomem
*addr
)
55 iowrite32(value
, addr
);
58 static void vp_iowrite64_twopart(u64 val
,
59 __le32 __iomem
*lo
, __le32 __iomem
*hi
)
61 vp_iowrite32((u32
)val
, lo
);
62 vp_iowrite32(val
>> 32, hi
);
65 static void __iomem
*map_capability(struct pci_dev
*dev
, int off
,
75 pci_read_config_byte(dev
, off
+ offsetof(struct virtio_pci_cap
,
78 pci_read_config_dword(dev
, off
+ offsetof(struct virtio_pci_cap
, offset
),
80 pci_read_config_dword(dev
, off
+ offsetof(struct virtio_pci_cap
, length
),
83 if (length
<= start
) {
85 "virtio_pci: bad capability len %u (>%u expected)\n",
90 if (length
- start
< minlen
) {
92 "virtio_pci: bad capability len %u (>=%zu expected)\n",
99 if (start
+ offset
< offset
) {
101 "virtio_pci: map wrap-around %u+%u\n",
108 if (offset
& (align
- 1)) {
110 "virtio_pci: offset %u not aligned to %u\n",
121 if (minlen
+ offset
< minlen
||
122 minlen
+ offset
> pci_resource_len(dev
, bar
)) {
124 "virtio_pci: map virtio %zu@%u "
125 "out of range on bar %i length %lu\n",
127 bar
, (unsigned long)pci_resource_len(dev
, bar
));
131 p
= pci_iomap_range(dev
, bar
, offset
, length
);
134 "virtio_pci: unable to map virtio %u@%u on bar %i\n",
135 length
, offset
, bar
);
139 /* virtio config->get_features() implementation */
140 static u64
vp_get_features(struct virtio_device
*vdev
)
142 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
145 vp_iowrite32(0, &vp_dev
->common
->device_feature_select
);
146 features
= vp_ioread32(&vp_dev
->common
->device_feature
);
147 vp_iowrite32(1, &vp_dev
->common
->device_feature_select
);
148 features
|= ((u64
)vp_ioread32(&vp_dev
->common
->device_feature
) << 32);
153 static void vp_transport_features(struct virtio_device
*vdev
, u64 features
)
155 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
156 struct pci_dev
*pci_dev
= vp_dev
->pci_dev
;
158 if ((features
& BIT_ULL(VIRTIO_F_SR_IOV
)) &&
159 pci_find_ext_capability(pci_dev
, PCI_EXT_CAP_ID_SRIOV
))
160 __virtio_set_bit(vdev
, VIRTIO_F_SR_IOV
);
163 /* virtio config->finalize_features() implementation */
164 static int vp_finalize_features(struct virtio_device
*vdev
)
166 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
167 u64 features
= vdev
->features
;
169 /* Give virtio_ring a chance to accept features. */
170 vring_transport_features(vdev
);
172 /* Give virtio_pci a chance to accept features. */
173 vp_transport_features(vdev
, features
);
175 if (!__virtio_test_bit(vdev
, VIRTIO_F_VERSION_1
)) {
176 dev_err(&vdev
->dev
, "virtio: device uses modern interface "
177 "but does not have VIRTIO_F_VERSION_1\n");
181 vp_iowrite32(0, &vp_dev
->common
->guest_feature_select
);
182 vp_iowrite32((u32
)vdev
->features
, &vp_dev
->common
->guest_feature
);
183 vp_iowrite32(1, &vp_dev
->common
->guest_feature_select
);
184 vp_iowrite32(vdev
->features
>> 32, &vp_dev
->common
->guest_feature
);
189 /* virtio config->get() implementation */
190 static void vp_get(struct virtio_device
*vdev
, unsigned offset
,
191 void *buf
, unsigned len
)
193 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
198 BUG_ON(offset
+ len
> vp_dev
->device_len
);
202 b
= ioread8(vp_dev
->device
+ offset
);
203 memcpy(buf
, &b
, sizeof b
);
206 w
= cpu_to_le16(ioread16(vp_dev
->device
+ offset
));
207 memcpy(buf
, &w
, sizeof w
);
210 l
= cpu_to_le32(ioread32(vp_dev
->device
+ offset
));
211 memcpy(buf
, &l
, sizeof l
);
214 l
= cpu_to_le32(ioread32(vp_dev
->device
+ offset
));
215 memcpy(buf
, &l
, sizeof l
);
216 l
= cpu_to_le32(ioread32(vp_dev
->device
+ offset
+ sizeof l
));
217 memcpy(buf
+ sizeof l
, &l
, sizeof l
);
224 /* the config->set() implementation. it's symmetric to the config->get()
226 static void vp_set(struct virtio_device
*vdev
, unsigned offset
,
227 const void *buf
, unsigned len
)
229 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
234 BUG_ON(offset
+ len
> vp_dev
->device_len
);
238 memcpy(&b
, buf
, sizeof b
);
239 iowrite8(b
, vp_dev
->device
+ offset
);
242 memcpy(&w
, buf
, sizeof w
);
243 iowrite16(le16_to_cpu(w
), vp_dev
->device
+ offset
);
246 memcpy(&l
, buf
, sizeof l
);
247 iowrite32(le32_to_cpu(l
), vp_dev
->device
+ offset
);
250 memcpy(&l
, buf
, sizeof l
);
251 iowrite32(le32_to_cpu(l
), vp_dev
->device
+ offset
);
252 memcpy(&l
, buf
+ sizeof l
, sizeof l
);
253 iowrite32(le32_to_cpu(l
), vp_dev
->device
+ offset
+ sizeof l
);
260 static u32
vp_generation(struct virtio_device
*vdev
)
262 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
263 return vp_ioread8(&vp_dev
->common
->config_generation
);
266 /* config->{get,set}_status() implementations */
267 static u8
vp_get_status(struct virtio_device
*vdev
)
269 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
270 return vp_ioread8(&vp_dev
->common
->device_status
);
273 static void vp_set_status(struct virtio_device
*vdev
, u8 status
)
275 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
276 /* We should never be setting status to 0. */
278 vp_iowrite8(status
, &vp_dev
->common
->device_status
);
281 static void vp_reset(struct virtio_device
*vdev
)
283 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
284 /* 0 status means a reset. */
285 vp_iowrite8(0, &vp_dev
->common
->device_status
);
286 /* After writing 0 to device_status, the driver MUST wait for a read of
287 * device_status to return 0 before reinitializing the device.
288 * This will flush out the status write, and flush in device writes,
289 * including MSI-X interrupts, if any.
291 while (vp_ioread8(&vp_dev
->common
->device_status
))
293 /* Flush pending VQ/configuration callbacks. */
294 vp_synchronize_vectors(vdev
);
297 static u16
vp_config_vector(struct virtio_pci_device
*vp_dev
, u16 vector
)
299 /* Setup the vector used for configuration events */
300 vp_iowrite16(vector
, &vp_dev
->common
->msix_config
);
301 /* Verify we had enough resources to assign the vector */
302 /* Will also flush the write out to device */
303 return vp_ioread16(&vp_dev
->common
->msix_config
);
306 static struct virtqueue
*setup_vq(struct virtio_pci_device
*vp_dev
,
307 struct virtio_pci_vq_info
*info
,
309 void (*callback
)(struct virtqueue
*vq
),
314 struct virtio_pci_common_cfg __iomem
*cfg
= vp_dev
->common
;
315 struct virtqueue
*vq
;
319 if (index
>= vp_ioread16(&cfg
->num_queues
))
320 return ERR_PTR(-ENOENT
);
322 /* Select the queue we're interested in */
323 vp_iowrite16(index
, &cfg
->queue_select
);
325 /* Check if queue is either not available or already active. */
326 num
= vp_ioread16(&cfg
->queue_size
);
327 if (!num
|| vp_ioread16(&cfg
->queue_enable
))
328 return ERR_PTR(-ENOENT
);
330 if (num
& (num
- 1)) {
331 dev_warn(&vp_dev
->pci_dev
->dev
, "bad queue size %u", num
);
332 return ERR_PTR(-EINVAL
);
335 /* get offset of notification word for this vq */
336 off
= vp_ioread16(&cfg
->queue_notify_off
);
338 info
->msix_vector
= msix_vec
;
340 /* create the vring */
341 vq
= vring_create_virtqueue(index
, num
,
342 SMP_CACHE_BYTES
, &vp_dev
->vdev
,
344 vp_notify
, callback
, name
);
346 return ERR_PTR(-ENOMEM
);
348 /* activate the queue */
349 vp_iowrite16(virtqueue_get_vring_size(vq
), &cfg
->queue_size
);
350 vp_iowrite64_twopart(virtqueue_get_desc_addr(vq
),
351 &cfg
->queue_desc_lo
, &cfg
->queue_desc_hi
);
352 vp_iowrite64_twopart(virtqueue_get_avail_addr(vq
),
353 &cfg
->queue_avail_lo
, &cfg
->queue_avail_hi
);
354 vp_iowrite64_twopart(virtqueue_get_used_addr(vq
),
355 &cfg
->queue_used_lo
, &cfg
->queue_used_hi
);
357 if (vp_dev
->notify_base
) {
358 /* offset should not wrap */
359 if ((u64
)off
* vp_dev
->notify_offset_multiplier
+ 2
360 > vp_dev
->notify_len
) {
361 dev_warn(&vp_dev
->pci_dev
->dev
,
362 "bad notification offset %u (x %u) "
363 "for queue %u > %zd",
364 off
, vp_dev
->notify_offset_multiplier
,
365 index
, vp_dev
->notify_len
);
369 vq
->priv
= (void __force
*)vp_dev
->notify_base
+
370 off
* vp_dev
->notify_offset_multiplier
;
372 vq
->priv
= (void __force
*)map_capability(vp_dev
->pci_dev
,
373 vp_dev
->notify_map_cap
, 2, 2,
374 off
* vp_dev
->notify_offset_multiplier
, 2,
383 if (msix_vec
!= VIRTIO_MSI_NO_VECTOR
) {
384 vp_iowrite16(msix_vec
, &cfg
->queue_msix_vector
);
385 msix_vec
= vp_ioread16(&cfg
->queue_msix_vector
);
386 if (msix_vec
== VIRTIO_MSI_NO_VECTOR
) {
388 goto err_assign_vector
;
395 if (!vp_dev
->notify_base
)
396 pci_iounmap(vp_dev
->pci_dev
, (void __iomem __force
*)vq
->priv
);
398 vring_del_virtqueue(vq
);
402 static int vp_modern_find_vqs(struct virtio_device
*vdev
, unsigned nvqs
,
403 struct virtqueue
*vqs
[],
404 vq_callback_t
*callbacks
[],
405 const char * const names
[], const bool *ctx
,
406 struct irq_affinity
*desc
)
408 struct virtio_pci_device
*vp_dev
= to_vp_device(vdev
);
409 struct virtqueue
*vq
;
410 int rc
= vp_find_vqs(vdev
, nvqs
, vqs
, callbacks
, names
, ctx
, desc
);
415 /* Select and activate all queues. Has to be done last: once we do
416 * this, there's no way to go back except reset.
418 list_for_each_entry(vq
, &vdev
->vqs
, list
) {
419 vp_iowrite16(vq
->index
, &vp_dev
->common
->queue_select
);
420 vp_iowrite16(1, &vp_dev
->common
->queue_enable
);
426 static void del_vq(struct virtio_pci_vq_info
*info
)
428 struct virtqueue
*vq
= info
->vq
;
429 struct virtio_pci_device
*vp_dev
= to_vp_device(vq
->vdev
);
431 vp_iowrite16(vq
->index
, &vp_dev
->common
->queue_select
);
433 if (vp_dev
->msix_enabled
) {
434 vp_iowrite16(VIRTIO_MSI_NO_VECTOR
,
435 &vp_dev
->common
->queue_msix_vector
);
436 /* Flush the write out to device */
437 vp_ioread16(&vp_dev
->common
->queue_msix_vector
);
440 if (!vp_dev
->notify_base
)
441 pci_iounmap(vp_dev
->pci_dev
, (void __force __iomem
*)vq
->priv
);
443 vring_del_virtqueue(vq
);
446 static const struct virtio_config_ops virtio_pci_config_nodev_ops
= {
449 .generation
= vp_generation
,
450 .get_status
= vp_get_status
,
451 .set_status
= vp_set_status
,
453 .find_vqs
= vp_modern_find_vqs
,
454 .del_vqs
= vp_del_vqs
,
455 .get_features
= vp_get_features
,
456 .finalize_features
= vp_finalize_features
,
457 .bus_name
= vp_bus_name
,
458 .set_vq_affinity
= vp_set_vq_affinity
,
459 .get_vq_affinity
= vp_get_vq_affinity
,
462 static const struct virtio_config_ops virtio_pci_config_ops
= {
465 .generation
= vp_generation
,
466 .get_status
= vp_get_status
,
467 .set_status
= vp_set_status
,
469 .find_vqs
= vp_modern_find_vqs
,
470 .del_vqs
= vp_del_vqs
,
471 .get_features
= vp_get_features
,
472 .finalize_features
= vp_finalize_features
,
473 .bus_name
= vp_bus_name
,
474 .set_vq_affinity
= vp_set_vq_affinity
,
475 .get_vq_affinity
= vp_get_vq_affinity
,
479 * virtio_pci_find_capability - walk capabilities to find device info.
480 * @dev: the pci device
481 * @cfg_type: the VIRTIO_PCI_CAP_* value we seek
482 * @ioresource_types: IORESOURCE_MEM and/or IORESOURCE_IO.
484 * Returns offset of the capability, or 0.
486 static inline int virtio_pci_find_capability(struct pci_dev
*dev
, u8 cfg_type
,
487 u32 ioresource_types
, int *bars
)
491 for (pos
= pci_find_capability(dev
, PCI_CAP_ID_VNDR
);
493 pos
= pci_find_next_capability(dev
, pos
, PCI_CAP_ID_VNDR
)) {
495 pci_read_config_byte(dev
, pos
+ offsetof(struct virtio_pci_cap
,
498 pci_read_config_byte(dev
, pos
+ offsetof(struct virtio_pci_cap
,
502 /* Ignore structures with reserved BAR values */
506 if (type
== cfg_type
) {
507 if (pci_resource_len(dev
, bar
) &&
508 pci_resource_flags(dev
, bar
) & ioresource_types
) {
517 /* This is part of the ABI. Don't screw with it. */
518 static inline void check_offsets(void)
520 /* Note: disk space was harmed in compilation of this function. */
521 BUILD_BUG_ON(VIRTIO_PCI_CAP_VNDR
!=
522 offsetof(struct virtio_pci_cap
, cap_vndr
));
523 BUILD_BUG_ON(VIRTIO_PCI_CAP_NEXT
!=
524 offsetof(struct virtio_pci_cap
, cap_next
));
525 BUILD_BUG_ON(VIRTIO_PCI_CAP_LEN
!=
526 offsetof(struct virtio_pci_cap
, cap_len
));
527 BUILD_BUG_ON(VIRTIO_PCI_CAP_CFG_TYPE
!=
528 offsetof(struct virtio_pci_cap
, cfg_type
));
529 BUILD_BUG_ON(VIRTIO_PCI_CAP_BAR
!=
530 offsetof(struct virtio_pci_cap
, bar
));
531 BUILD_BUG_ON(VIRTIO_PCI_CAP_OFFSET
!=
532 offsetof(struct virtio_pci_cap
, offset
));
533 BUILD_BUG_ON(VIRTIO_PCI_CAP_LENGTH
!=
534 offsetof(struct virtio_pci_cap
, length
));
535 BUILD_BUG_ON(VIRTIO_PCI_NOTIFY_CAP_MULT
!=
536 offsetof(struct virtio_pci_notify_cap
,
537 notify_off_multiplier
));
538 BUILD_BUG_ON(VIRTIO_PCI_COMMON_DFSELECT
!=
539 offsetof(struct virtio_pci_common_cfg
,
540 device_feature_select
));
541 BUILD_BUG_ON(VIRTIO_PCI_COMMON_DF
!=
542 offsetof(struct virtio_pci_common_cfg
, device_feature
));
543 BUILD_BUG_ON(VIRTIO_PCI_COMMON_GFSELECT
!=
544 offsetof(struct virtio_pci_common_cfg
,
545 guest_feature_select
));
546 BUILD_BUG_ON(VIRTIO_PCI_COMMON_GF
!=
547 offsetof(struct virtio_pci_common_cfg
, guest_feature
));
548 BUILD_BUG_ON(VIRTIO_PCI_COMMON_MSIX
!=
549 offsetof(struct virtio_pci_common_cfg
, msix_config
));
550 BUILD_BUG_ON(VIRTIO_PCI_COMMON_NUMQ
!=
551 offsetof(struct virtio_pci_common_cfg
, num_queues
));
552 BUILD_BUG_ON(VIRTIO_PCI_COMMON_STATUS
!=
553 offsetof(struct virtio_pci_common_cfg
, device_status
));
554 BUILD_BUG_ON(VIRTIO_PCI_COMMON_CFGGENERATION
!=
555 offsetof(struct virtio_pci_common_cfg
, config_generation
));
556 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_SELECT
!=
557 offsetof(struct virtio_pci_common_cfg
, queue_select
));
558 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_SIZE
!=
559 offsetof(struct virtio_pci_common_cfg
, queue_size
));
560 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_MSIX
!=
561 offsetof(struct virtio_pci_common_cfg
, queue_msix_vector
));
562 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_ENABLE
!=
563 offsetof(struct virtio_pci_common_cfg
, queue_enable
));
564 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_NOFF
!=
565 offsetof(struct virtio_pci_common_cfg
, queue_notify_off
));
566 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_DESCLO
!=
567 offsetof(struct virtio_pci_common_cfg
, queue_desc_lo
));
568 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_DESCHI
!=
569 offsetof(struct virtio_pci_common_cfg
, queue_desc_hi
));
570 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_AVAILLO
!=
571 offsetof(struct virtio_pci_common_cfg
, queue_avail_lo
));
572 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_AVAILHI
!=
573 offsetof(struct virtio_pci_common_cfg
, queue_avail_hi
));
574 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_USEDLO
!=
575 offsetof(struct virtio_pci_common_cfg
, queue_used_lo
));
576 BUILD_BUG_ON(VIRTIO_PCI_COMMON_Q_USEDHI
!=
577 offsetof(struct virtio_pci_common_cfg
, queue_used_hi
));
580 /* the PCI probing function */
581 int virtio_pci_modern_probe(struct virtio_pci_device
*vp_dev
)
583 struct pci_dev
*pci_dev
= vp_dev
->pci_dev
;
584 int err
, common
, isr
, notify
, device
;
590 /* We only own devices >= 0x1000 and <= 0x107f: leave the rest. */
591 if (pci_dev
->device
< 0x1000 || pci_dev
->device
> 0x107f)
594 if (pci_dev
->device
< 0x1040) {
595 /* Transitional devices: use the PCI subsystem device id as
596 * virtio device id, same as legacy driver always did.
598 vp_dev
->vdev
.id
.device
= pci_dev
->subsystem_device
;
600 /* Modern devices: simply use PCI device id, but start from 0x1040. */
601 vp_dev
->vdev
.id
.device
= pci_dev
->device
- 0x1040;
603 vp_dev
->vdev
.id
.vendor
= pci_dev
->subsystem_vendor
;
605 /* check for a common config: if not, use legacy mode (bar 0). */
606 common
= virtio_pci_find_capability(pci_dev
, VIRTIO_PCI_CAP_COMMON_CFG
,
607 IORESOURCE_IO
| IORESOURCE_MEM
,
608 &vp_dev
->modern_bars
);
610 dev_info(&pci_dev
->dev
,
611 "virtio_pci: leaving for legacy driver\n");
615 /* If common is there, these should be too... */
616 isr
= virtio_pci_find_capability(pci_dev
, VIRTIO_PCI_CAP_ISR_CFG
,
617 IORESOURCE_IO
| IORESOURCE_MEM
,
618 &vp_dev
->modern_bars
);
619 notify
= virtio_pci_find_capability(pci_dev
, VIRTIO_PCI_CAP_NOTIFY_CFG
,
620 IORESOURCE_IO
| IORESOURCE_MEM
,
621 &vp_dev
->modern_bars
);
622 if (!isr
|| !notify
) {
623 dev_err(&pci_dev
->dev
,
624 "virtio_pci: missing capabilities %i/%i/%i\n",
625 common
, isr
, notify
);
629 err
= dma_set_mask_and_coherent(&pci_dev
->dev
, DMA_BIT_MASK(64));
631 err
= dma_set_mask_and_coherent(&pci_dev
->dev
,
634 dev_warn(&pci_dev
->dev
, "Failed to enable 64-bit or 32-bit DMA. Trying to continue, but this might not work.\n");
636 /* Device capability is only mandatory for devices that have
637 * device-specific configuration.
639 device
= virtio_pci_find_capability(pci_dev
, VIRTIO_PCI_CAP_DEVICE_CFG
,
640 IORESOURCE_IO
| IORESOURCE_MEM
,
641 &vp_dev
->modern_bars
);
643 err
= pci_request_selected_regions(pci_dev
, vp_dev
->modern_bars
,
644 "virtio-pci-modern");
649 vp_dev
->common
= map_capability(pci_dev
, common
,
650 sizeof(struct virtio_pci_common_cfg
), 4,
651 0, sizeof(struct virtio_pci_common_cfg
),
655 vp_dev
->isr
= map_capability(pci_dev
, isr
, sizeof(u8
), 1,
661 /* Read notify_off_multiplier from config space. */
662 pci_read_config_dword(pci_dev
,
663 notify
+ offsetof(struct virtio_pci_notify_cap
,
664 notify_off_multiplier
),
665 &vp_dev
->notify_offset_multiplier
);
666 /* Read notify length and offset from config space. */
667 pci_read_config_dword(pci_dev
,
668 notify
+ offsetof(struct virtio_pci_notify_cap
,
672 pci_read_config_dword(pci_dev
,
673 notify
+ offsetof(struct virtio_pci_notify_cap
,
677 /* We don't know how many VQs we'll map, ahead of the time.
678 * If notify length is small, map it all now.
679 * Otherwise, map each VQ individually later.
681 if ((u64
)notify_length
+ (notify_offset
% PAGE_SIZE
) <= PAGE_SIZE
) {
682 vp_dev
->notify_base
= map_capability(pci_dev
, notify
, 2, 2,
684 &vp_dev
->notify_len
);
685 if (!vp_dev
->notify_base
)
688 vp_dev
->notify_map_cap
= notify
;
691 /* Again, we don't know how much we should map, but PAGE_SIZE
692 * is more than enough for all existing devices.
695 vp_dev
->device
= map_capability(pci_dev
, device
, 0, 4,
697 &vp_dev
->device_len
);
701 vp_dev
->vdev
.config
= &virtio_pci_config_ops
;
703 vp_dev
->vdev
.config
= &virtio_pci_config_nodev_ops
;
706 vp_dev
->config_vector
= vp_config_vector
;
707 vp_dev
->setup_vq
= setup_vq
;
708 vp_dev
->del_vq
= del_vq
;
713 if (vp_dev
->notify_base
)
714 pci_iounmap(pci_dev
, vp_dev
->notify_base
);
716 pci_iounmap(pci_dev
, vp_dev
->isr
);
718 pci_iounmap(pci_dev
, vp_dev
->common
);
723 void virtio_pci_modern_remove(struct virtio_pci_device
*vp_dev
)
725 struct pci_dev
*pci_dev
= vp_dev
->pci_dev
;
728 pci_iounmap(pci_dev
, vp_dev
->device
);
729 if (vp_dev
->notify_base
)
730 pci_iounmap(pci_dev
, vp_dev
->notify_base
);
731 pci_iounmap(pci_dev
, vp_dev
->isr
);
732 pci_iounmap(pci_dev
, vp_dev
->common
);
733 pci_release_selected_regions(pci_dev
, vp_dev
->modern_bars
);