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1 /*
2 * vhost-vdpa.c
3 *
4 * Copyright(c) 2017-2018 Intel Corporation.
5 * Copyright(c) 2020 Red Hat, Inc.
6 *
7 * This work is licensed under the terms of the GNU GPL, version 2 or later.
8 * See the COPYING file in the top-level directory.
9 *
10 */
11
12 #include "qemu/osdep.h"
13 #include "clients.h"
14 #include "hw/virtio/virtio-net.h"
15 #include "net/vhost_net.h"
16 #include "net/vhost-vdpa.h"
17 #include "hw/virtio/vhost-vdpa.h"
18 #include "qemu/config-file.h"
19 #include "qemu/error-report.h"
20 #include "qemu/log.h"
21 #include "qemu/memalign.h"
22 #include "qemu/option.h"
23 #include "qapi/error.h"
24 #include <linux/vhost.h>
25 #include <sys/ioctl.h>
26 #include <err.h>
27 #include "standard-headers/linux/virtio_net.h"
28 #include "monitor/monitor.h"
29 #include "migration/migration.h"
30 #include "migration/misc.h"
31 #include "hw/virtio/vhost.h"
32
33 /* Todo:need to add the multiqueue support here */
34 typedef struct VhostVDPAState {
35 NetClientState nc;
36 struct vhost_vdpa vhost_vdpa;
37 Notifier migration_state;
38 VHostNetState *vhost_net;
39
40 /* Control commands shadow buffers */
41 void *cvq_cmd_out_buffer;
42 virtio_net_ctrl_ack *status;
43
44 /* The device always have SVQ enabled */
45 bool always_svq;
46
47 /* The device can isolate CVQ in its own ASID */
48 bool cvq_isolated;
49
50 bool started;
51 } VhostVDPAState;
52
53 /*
54 * The array is sorted alphabetically in ascending order,
55 * with the exception of VHOST_INVALID_FEATURE_BIT,
56 * which should always be the last entry.
57 */
58 const int vdpa_feature_bits[] = {
59 VIRTIO_F_ANY_LAYOUT,
60 VIRTIO_F_IOMMU_PLATFORM,
61 VIRTIO_F_NOTIFY_ON_EMPTY,
62 VIRTIO_F_RING_PACKED,
63 VIRTIO_F_RING_RESET,
64 VIRTIO_F_VERSION_1,
65 VIRTIO_NET_F_CSUM,
66 VIRTIO_NET_F_CTRL_GUEST_OFFLOADS,
67 VIRTIO_NET_F_CTRL_MAC_ADDR,
68 VIRTIO_NET_F_CTRL_RX,
69 VIRTIO_NET_F_CTRL_RX_EXTRA,
70 VIRTIO_NET_F_CTRL_VLAN,
71 VIRTIO_NET_F_CTRL_VQ,
72 VIRTIO_NET_F_GSO,
73 VIRTIO_NET_F_GUEST_CSUM,
74 VIRTIO_NET_F_GUEST_ECN,
75 VIRTIO_NET_F_GUEST_TSO4,
76 VIRTIO_NET_F_GUEST_TSO6,
77 VIRTIO_NET_F_GUEST_UFO,
78 VIRTIO_NET_F_HASH_REPORT,
79 VIRTIO_NET_F_HOST_ECN,
80 VIRTIO_NET_F_HOST_TSO4,
81 VIRTIO_NET_F_HOST_TSO6,
82 VIRTIO_NET_F_HOST_UFO,
83 VIRTIO_NET_F_MQ,
84 VIRTIO_NET_F_MRG_RXBUF,
85 VIRTIO_NET_F_MTU,
86 VIRTIO_NET_F_RSS,
87 VIRTIO_NET_F_STATUS,
88 VIRTIO_RING_F_EVENT_IDX,
89 VIRTIO_RING_F_INDIRECT_DESC,
90
91 /* VHOST_INVALID_FEATURE_BIT should always be the last entry */
92 VHOST_INVALID_FEATURE_BIT
93 };
94
95 /** Supported device specific feature bits with SVQ */
96 static const uint64_t vdpa_svq_device_features =
97 BIT_ULL(VIRTIO_NET_F_CSUM) |
98 BIT_ULL(VIRTIO_NET_F_GUEST_CSUM) |
99 BIT_ULL(VIRTIO_NET_F_CTRL_GUEST_OFFLOADS) |
100 BIT_ULL(VIRTIO_NET_F_MTU) |
101 BIT_ULL(VIRTIO_NET_F_MAC) |
102 BIT_ULL(VIRTIO_NET_F_GUEST_TSO4) |
103 BIT_ULL(VIRTIO_NET_F_GUEST_TSO6) |
104 BIT_ULL(VIRTIO_NET_F_GUEST_ECN) |
105 BIT_ULL(VIRTIO_NET_F_GUEST_UFO) |
106 BIT_ULL(VIRTIO_NET_F_HOST_TSO4) |
107 BIT_ULL(VIRTIO_NET_F_HOST_TSO6) |
108 BIT_ULL(VIRTIO_NET_F_HOST_ECN) |
109 BIT_ULL(VIRTIO_NET_F_HOST_UFO) |
110 BIT_ULL(VIRTIO_NET_F_MRG_RXBUF) |
111 BIT_ULL(VIRTIO_NET_F_STATUS) |
112 BIT_ULL(VIRTIO_NET_F_CTRL_VQ) |
113 BIT_ULL(VIRTIO_NET_F_MQ) |
114 BIT_ULL(VIRTIO_F_ANY_LAYOUT) |
115 BIT_ULL(VIRTIO_NET_F_CTRL_MAC_ADDR) |
116 /* VHOST_F_LOG_ALL is exposed by SVQ */
117 BIT_ULL(VHOST_F_LOG_ALL) |
118 BIT_ULL(VIRTIO_NET_F_RSC_EXT) |
119 BIT_ULL(VIRTIO_NET_F_STANDBY) |
120 BIT_ULL(VIRTIO_NET_F_SPEED_DUPLEX);
121
122 #define VHOST_VDPA_NET_CVQ_ASID 1
123
124 VHostNetState *vhost_vdpa_get_vhost_net(NetClientState *nc)
125 {
126 VhostVDPAState *s = DO_UPCAST(VhostVDPAState, nc, nc);
127 assert(nc->info->type == NET_CLIENT_DRIVER_VHOST_VDPA);
128 return s->vhost_net;
129 }
130
131 static size_t vhost_vdpa_net_cvq_cmd_len(void)
132 {
133 /*
134 * MAC_TABLE_SET is the ctrl command that produces the longer out buffer.
135 * In buffer is always 1 byte, so it should fit here
136 */
137 return sizeof(struct virtio_net_ctrl_hdr) +
138 2 * sizeof(struct virtio_net_ctrl_mac) +
139 MAC_TABLE_ENTRIES * ETH_ALEN;
140 }
141
142 static size_t vhost_vdpa_net_cvq_cmd_page_len(void)
143 {
144 return ROUND_UP(vhost_vdpa_net_cvq_cmd_len(), qemu_real_host_page_size());
145 }
146
147 static bool vhost_vdpa_net_valid_svq_features(uint64_t features, Error **errp)
148 {
149 uint64_t invalid_dev_features =
150 features & ~vdpa_svq_device_features &
151 /* Transport are all accepted at this point */
152 ~MAKE_64BIT_MASK(VIRTIO_TRANSPORT_F_START,
153 VIRTIO_TRANSPORT_F_END - VIRTIO_TRANSPORT_F_START);
154
155 if (invalid_dev_features) {
156 error_setg(errp, "vdpa svq does not work with features 0x%" PRIx64,
157 invalid_dev_features);
158 return false;
159 }
160
161 return vhost_svq_valid_features(features, errp);
162 }
163
164 static int vhost_vdpa_net_check_device_id(struct vhost_net *net)
165 {
166 uint32_t device_id;
167 int ret;
168 struct vhost_dev *hdev;
169
170 hdev = (struct vhost_dev *)&net->dev;
171 ret = hdev->vhost_ops->vhost_get_device_id(hdev, &device_id);
172 if (device_id != VIRTIO_ID_NET) {
173 return -ENOTSUP;
174 }
175 return ret;
176 }
177
178 static int vhost_vdpa_add(NetClientState *ncs, void *be,
179 int queue_pair_index, int nvqs)
180 {
181 VhostNetOptions options;
182 struct vhost_net *net = NULL;
183 VhostVDPAState *s;
184 int ret;
185
186 options.backend_type = VHOST_BACKEND_TYPE_VDPA;
187 assert(ncs->info->type == NET_CLIENT_DRIVER_VHOST_VDPA);
188 s = DO_UPCAST(VhostVDPAState, nc, ncs);
189 options.net_backend = ncs;
190 options.opaque = be;
191 options.busyloop_timeout = 0;
192 options.nvqs = nvqs;
193
194 net = vhost_net_init(&options);
195 if (!net) {
196 error_report("failed to init vhost_net for queue");
197 goto err_init;
198 }
199 s->vhost_net = net;
200 ret = vhost_vdpa_net_check_device_id(net);
201 if (ret) {
202 goto err_check;
203 }
204 return 0;
205 err_check:
206 vhost_net_cleanup(net);
207 g_free(net);
208 err_init:
209 return -1;
210 }
211
212 static void vhost_vdpa_cleanup(NetClientState *nc)
213 {
214 VhostVDPAState *s = DO_UPCAST(VhostVDPAState, nc, nc);
215
216 /*
217 * If a peer NIC is attached, do not cleanup anything.
218 * Cleanup will happen as a part of qemu_cleanup() -> net_cleanup()
219 * when the guest is shutting down.
220 */
221 if (nc->peer && nc->peer->info->type == NET_CLIENT_DRIVER_NIC) {
222 return;
223 }
224 munmap(s->cvq_cmd_out_buffer, vhost_vdpa_net_cvq_cmd_page_len());
225 munmap(s->status, vhost_vdpa_net_cvq_cmd_page_len());
226 if (s->vhost_net) {
227 vhost_net_cleanup(s->vhost_net);
228 g_free(s->vhost_net);
229 s->vhost_net = NULL;
230 }
231 if (s->vhost_vdpa.device_fd >= 0) {
232 qemu_close(s->vhost_vdpa.device_fd);
233 s->vhost_vdpa.device_fd = -1;
234 }
235 }
236
237 static bool vhost_vdpa_has_vnet_hdr(NetClientState *nc)
238 {
239 assert(nc->info->type == NET_CLIENT_DRIVER_VHOST_VDPA);
240
241 return true;
242 }
243
244 static bool vhost_vdpa_has_ufo(NetClientState *nc)
245 {
246 assert(nc->info->type == NET_CLIENT_DRIVER_VHOST_VDPA);
247 VhostVDPAState *s = DO_UPCAST(VhostVDPAState, nc, nc);
248 uint64_t features = 0;
249 features |= (1ULL << VIRTIO_NET_F_HOST_UFO);
250 features = vhost_net_get_features(s->vhost_net, features);
251 return !!(features & (1ULL << VIRTIO_NET_F_HOST_UFO));
252
253 }
254
255 static bool vhost_vdpa_check_peer_type(NetClientState *nc, ObjectClass *oc,
256 Error **errp)
257 {
258 const char *driver = object_class_get_name(oc);
259
260 if (!g_str_has_prefix(driver, "virtio-net-")) {
261 error_setg(errp, "vhost-vdpa requires frontend driver virtio-net-*");
262 return false;
263 }
264
265 return true;
266 }
267
268 /** Dummy receive in case qemu falls back to userland tap networking */
269 static ssize_t vhost_vdpa_receive(NetClientState *nc, const uint8_t *buf,
270 size_t size)
271 {
272 return size;
273 }
274
275 /** From any vdpa net client, get the netclient of the first queue pair */
276 static VhostVDPAState *vhost_vdpa_net_first_nc_vdpa(VhostVDPAState *s)
277 {
278 NICState *nic = qemu_get_nic(s->nc.peer);
279 NetClientState *nc0 = qemu_get_peer(nic->ncs, 0);
280
281 return DO_UPCAST(VhostVDPAState, nc, nc0);
282 }
283
284 static void vhost_vdpa_net_log_global_enable(VhostVDPAState *s, bool enable)
285 {
286 struct vhost_vdpa *v = &s->vhost_vdpa;
287 VirtIONet *n;
288 VirtIODevice *vdev;
289 int data_queue_pairs, cvq, r;
290
291 /* We are only called on the first data vqs and only if x-svq is not set */
292 if (s->vhost_vdpa.shadow_vqs_enabled == enable) {
293 return;
294 }
295
296 vdev = v->dev->vdev;
297 n = VIRTIO_NET(vdev);
298 if (!n->vhost_started) {
299 return;
300 }
301
302 data_queue_pairs = n->multiqueue ? n->max_queue_pairs : 1;
303 cvq = virtio_vdev_has_feature(vdev, VIRTIO_NET_F_CTRL_VQ) ?
304 n->max_ncs - n->max_queue_pairs : 0;
305 /*
306 * TODO: vhost_net_stop does suspend, get_base and reset. We can be smarter
307 * in the future and resume the device if read-only operations between
308 * suspend and reset goes wrong.
309 */
310 vhost_net_stop(vdev, n->nic->ncs, data_queue_pairs, cvq);
311
312 /* Start will check migration setup_or_active to configure or not SVQ */
313 r = vhost_net_start(vdev, n->nic->ncs, data_queue_pairs, cvq);
314 if (unlikely(r < 0)) {
315 error_report("unable to start vhost net: %s(%d)", g_strerror(-r), -r);
316 }
317 }
318
319 static void vdpa_net_migration_state_notifier(Notifier *notifier, void *data)
320 {
321 MigrationState *migration = data;
322 VhostVDPAState *s = container_of(notifier, VhostVDPAState,
323 migration_state);
324
325 if (migration_in_setup(migration)) {
326 vhost_vdpa_net_log_global_enable(s, true);
327 } else if (migration_has_failed(migration)) {
328 vhost_vdpa_net_log_global_enable(s, false);
329 }
330 }
331
332 static void vhost_vdpa_net_data_start_first(VhostVDPAState *s)
333 {
334 struct vhost_vdpa *v = &s->vhost_vdpa;
335
336 add_migration_state_change_notifier(&s->migration_state);
337 if (v->shadow_vqs_enabled) {
338 v->iova_tree = vhost_iova_tree_new(v->iova_range.first,
339 v->iova_range.last);
340 }
341 }
342
343 static int vhost_vdpa_net_data_start(NetClientState *nc)
344 {
345 VhostVDPAState *s = DO_UPCAST(VhostVDPAState, nc, nc);
346 struct vhost_vdpa *v = &s->vhost_vdpa;
347
348 assert(nc->info->type == NET_CLIENT_DRIVER_VHOST_VDPA);
349
350 if (s->always_svq ||
351 migration_is_setup_or_active(migrate_get_current()->state)) {
352 v->shadow_vqs_enabled = true;
353 v->shadow_data = true;
354 } else {
355 v->shadow_vqs_enabled = false;
356 v->shadow_data = false;
357 }
358
359 if (v->index == 0) {
360 vhost_vdpa_net_data_start_first(s);
361 return 0;
362 }
363
364 if (v->shadow_vqs_enabled) {
365 VhostVDPAState *s0 = vhost_vdpa_net_first_nc_vdpa(s);
366 v->iova_tree = s0->vhost_vdpa.iova_tree;
367 }
368
369 return 0;
370 }
371
372 static void vhost_vdpa_net_client_stop(NetClientState *nc)
373 {
374 VhostVDPAState *s = DO_UPCAST(VhostVDPAState, nc, nc);
375 struct vhost_dev *dev;
376
377 assert(nc->info->type == NET_CLIENT_DRIVER_VHOST_VDPA);
378
379 if (s->vhost_vdpa.index == 0) {
380 remove_migration_state_change_notifier(&s->migration_state);
381 }
382
383 dev = s->vhost_vdpa.dev;
384 if (dev->vq_index + dev->nvqs == dev->vq_index_end) {
385 g_clear_pointer(&s->vhost_vdpa.iova_tree, vhost_iova_tree_delete);
386 }
387 }
388
389 static NetClientInfo net_vhost_vdpa_info = {
390 .type = NET_CLIENT_DRIVER_VHOST_VDPA,
391 .size = sizeof(VhostVDPAState),
392 .receive = vhost_vdpa_receive,
393 .start = vhost_vdpa_net_data_start,
394 .stop = vhost_vdpa_net_client_stop,
395 .cleanup = vhost_vdpa_cleanup,
396 .has_vnet_hdr = vhost_vdpa_has_vnet_hdr,
397 .has_ufo = vhost_vdpa_has_ufo,
398 .check_peer_type = vhost_vdpa_check_peer_type,
399 };
400
401 static int64_t vhost_vdpa_get_vring_group(int device_fd, unsigned vq_index,
402 Error **errp)
403 {
404 struct vhost_vring_state state = {
405 .index = vq_index,
406 };
407 int r = ioctl(device_fd, VHOST_VDPA_GET_VRING_GROUP, &state);
408
409 if (unlikely(r < 0)) {
410 r = -errno;
411 error_setg_errno(errp, errno, "Cannot get VQ %u group", vq_index);
412 return r;
413 }
414
415 return state.num;
416 }
417
418 static int vhost_vdpa_set_address_space_id(struct vhost_vdpa *v,
419 unsigned vq_group,
420 unsigned asid_num)
421 {
422 struct vhost_vring_state asid = {
423 .index = vq_group,
424 .num = asid_num,
425 };
426 int r;
427
428 r = ioctl(v->device_fd, VHOST_VDPA_SET_GROUP_ASID, &asid);
429 if (unlikely(r < 0)) {
430 error_report("Can't set vq group %u asid %u, errno=%d (%s)",
431 asid.index, asid.num, errno, g_strerror(errno));
432 }
433 return r;
434 }
435
436 static void vhost_vdpa_cvq_unmap_buf(struct vhost_vdpa *v, void *addr)
437 {
438 VhostIOVATree *tree = v->iova_tree;
439 DMAMap needle = {
440 /*
441 * No need to specify size or to look for more translations since
442 * this contiguous chunk was allocated by us.
443 */
444 .translated_addr = (hwaddr)(uintptr_t)addr,
445 };
446 const DMAMap *map = vhost_iova_tree_find_iova(tree, &needle);
447 int r;
448
449 if (unlikely(!map)) {
450 error_report("Cannot locate expected map");
451 return;
452 }
453
454 r = vhost_vdpa_dma_unmap(v, v->address_space_id, map->iova, map->size + 1);
455 if (unlikely(r != 0)) {
456 error_report("Device cannot unmap: %s(%d)", g_strerror(r), r);
457 }
458
459 vhost_iova_tree_remove(tree, *map);
460 }
461
462 /** Map CVQ buffer. */
463 static int vhost_vdpa_cvq_map_buf(struct vhost_vdpa *v, void *buf, size_t size,
464 bool write)
465 {
466 DMAMap map = {};
467 int r;
468
469 map.translated_addr = (hwaddr)(uintptr_t)buf;
470 map.size = size - 1;
471 map.perm = write ? IOMMU_RW : IOMMU_RO,
472 r = vhost_iova_tree_map_alloc(v->iova_tree, &map);
473 if (unlikely(r != IOVA_OK)) {
474 error_report("Cannot map injected element");
475 return r;
476 }
477
478 r = vhost_vdpa_dma_map(v, v->address_space_id, map.iova,
479 vhost_vdpa_net_cvq_cmd_page_len(), buf, !write);
480 if (unlikely(r < 0)) {
481 goto dma_map_err;
482 }
483
484 return 0;
485
486 dma_map_err:
487 vhost_iova_tree_remove(v->iova_tree, map);
488 return r;
489 }
490
491 static int vhost_vdpa_net_cvq_start(NetClientState *nc)
492 {
493 VhostVDPAState *s, *s0;
494 struct vhost_vdpa *v;
495 int64_t cvq_group;
496 int r;
497 Error *err = NULL;
498
499 assert(nc->info->type == NET_CLIENT_DRIVER_VHOST_VDPA);
500
501 s = DO_UPCAST(VhostVDPAState, nc, nc);
502 v = &s->vhost_vdpa;
503
504 s0 = vhost_vdpa_net_first_nc_vdpa(s);
505 v->shadow_data = s0->vhost_vdpa.shadow_vqs_enabled;
506 v->shadow_vqs_enabled = s->always_svq;
507 s->vhost_vdpa.address_space_id = VHOST_VDPA_GUEST_PA_ASID;
508
509 if (s->vhost_vdpa.shadow_data) {
510 /* SVQ is already configured for all virtqueues */
511 goto out;
512 }
513
514 /*
515 * If we early return in these cases SVQ will not be enabled. The migration
516 * will be blocked as long as vhost-vdpa backends will not offer _F_LOG.
517 */
518 if (!vhost_vdpa_net_valid_svq_features(v->dev->features, NULL)) {
519 return 0;
520 }
521
522 if (!s->cvq_isolated) {
523 return 0;
524 }
525
526 cvq_group = vhost_vdpa_get_vring_group(v->device_fd,
527 v->dev->vq_index_end - 1,
528 &err);
529 if (unlikely(cvq_group < 0)) {
530 error_report_err(err);
531 return cvq_group;
532 }
533
534 r = vhost_vdpa_set_address_space_id(v, cvq_group, VHOST_VDPA_NET_CVQ_ASID);
535 if (unlikely(r < 0)) {
536 return r;
537 }
538
539 v->shadow_vqs_enabled = true;
540 s->vhost_vdpa.address_space_id = VHOST_VDPA_NET_CVQ_ASID;
541
542 out:
543 if (!s->vhost_vdpa.shadow_vqs_enabled) {
544 return 0;
545 }
546
547 if (s0->vhost_vdpa.iova_tree) {
548 /*
549 * SVQ is already configured for all virtqueues. Reuse IOVA tree for
550 * simplicity, whether CVQ shares ASID with guest or not, because:
551 * - Memory listener need access to guest's memory addresses allocated
552 * in the IOVA tree.
553 * - There should be plenty of IOVA address space for both ASID not to
554 * worry about collisions between them. Guest's translations are
555 * still validated with virtio virtqueue_pop so there is no risk for
556 * the guest to access memory that it shouldn't.
557 *
558 * To allocate a iova tree per ASID is doable but it complicates the
559 * code and it is not worth it for the moment.
560 */
561 v->iova_tree = s0->vhost_vdpa.iova_tree;
562 } else {
563 v->iova_tree = vhost_iova_tree_new(v->iova_range.first,
564 v->iova_range.last);
565 }
566
567 r = vhost_vdpa_cvq_map_buf(&s->vhost_vdpa, s->cvq_cmd_out_buffer,
568 vhost_vdpa_net_cvq_cmd_page_len(), false);
569 if (unlikely(r < 0)) {
570 return r;
571 }
572
573 r = vhost_vdpa_cvq_map_buf(&s->vhost_vdpa, s->status,
574 vhost_vdpa_net_cvq_cmd_page_len(), true);
575 if (unlikely(r < 0)) {
576 vhost_vdpa_cvq_unmap_buf(&s->vhost_vdpa, s->cvq_cmd_out_buffer);
577 }
578
579 return r;
580 }
581
582 static void vhost_vdpa_net_cvq_stop(NetClientState *nc)
583 {
584 VhostVDPAState *s = DO_UPCAST(VhostVDPAState, nc, nc);
585
586 assert(nc->info->type == NET_CLIENT_DRIVER_VHOST_VDPA);
587
588 if (s->vhost_vdpa.shadow_vqs_enabled) {
589 vhost_vdpa_cvq_unmap_buf(&s->vhost_vdpa, s->cvq_cmd_out_buffer);
590 vhost_vdpa_cvq_unmap_buf(&s->vhost_vdpa, s->status);
591 }
592
593 vhost_vdpa_net_client_stop(nc);
594 }
595
596 static ssize_t vhost_vdpa_net_cvq_add(VhostVDPAState *s, size_t out_len,
597 size_t in_len)
598 {
599 /* Buffers for the device */
600 const struct iovec out = {
601 .iov_base = s->cvq_cmd_out_buffer,
602 .iov_len = out_len,
603 };
604 const struct iovec in = {
605 .iov_base = s->status,
606 .iov_len = sizeof(virtio_net_ctrl_ack),
607 };
608 VhostShadowVirtqueue *svq = g_ptr_array_index(s->vhost_vdpa.shadow_vqs, 0);
609 int r;
610
611 r = vhost_svq_add(svq, &out, 1, &in, 1, NULL);
612 if (unlikely(r != 0)) {
613 if (unlikely(r == -ENOSPC)) {
614 qemu_log_mask(LOG_GUEST_ERROR, "%s: No space on device queue\n",
615 __func__);
616 }
617 return r;
618 }
619
620 /*
621 * We can poll here since we've had BQL from the time we sent the
622 * descriptor. Also, we need to take the answer before SVQ pulls by itself,
623 * when BQL is released
624 */
625 return vhost_svq_poll(svq);
626 }
627
628 static ssize_t vhost_vdpa_net_load_cmd(VhostVDPAState *s, uint8_t class,
629 uint8_t cmd, const void *data,
630 size_t data_size)
631 {
632 const struct virtio_net_ctrl_hdr ctrl = {
633 .class = class,
634 .cmd = cmd,
635 };
636
637 assert(data_size < vhost_vdpa_net_cvq_cmd_page_len() - sizeof(ctrl));
638
639 memcpy(s->cvq_cmd_out_buffer, &ctrl, sizeof(ctrl));
640 memcpy(s->cvq_cmd_out_buffer + sizeof(ctrl), data, data_size);
641
642 return vhost_vdpa_net_cvq_add(s, sizeof(ctrl) + data_size,
643 sizeof(virtio_net_ctrl_ack));
644 }
645
646 static int vhost_vdpa_net_load_mac(VhostVDPAState *s, const VirtIONet *n)
647 {
648 if (virtio_vdev_has_feature(&n->parent_obj, VIRTIO_NET_F_CTRL_MAC_ADDR)) {
649 ssize_t dev_written = vhost_vdpa_net_load_cmd(s, VIRTIO_NET_CTRL_MAC,
650 VIRTIO_NET_CTRL_MAC_ADDR_SET,
651 n->mac, sizeof(n->mac));
652 if (unlikely(dev_written < 0)) {
653 return dev_written;
654 }
655
656 return *s->status != VIRTIO_NET_OK;
657 }
658
659 return 0;
660 }
661
662 static int vhost_vdpa_net_load_mq(VhostVDPAState *s,
663 const VirtIONet *n)
664 {
665 struct virtio_net_ctrl_mq mq;
666 ssize_t dev_written;
667
668 if (!virtio_vdev_has_feature(&n->parent_obj, VIRTIO_NET_F_MQ)) {
669 return 0;
670 }
671
672 mq.virtqueue_pairs = cpu_to_le16(n->curr_queue_pairs);
673 dev_written = vhost_vdpa_net_load_cmd(s, VIRTIO_NET_CTRL_MQ,
674 VIRTIO_NET_CTRL_MQ_VQ_PAIRS_SET, &mq,
675 sizeof(mq));
676 if (unlikely(dev_written < 0)) {
677 return dev_written;
678 }
679
680 return *s->status != VIRTIO_NET_OK;
681 }
682
683 static int vhost_vdpa_net_load_offloads(VhostVDPAState *s,
684 const VirtIONet *n)
685 {
686 uint64_t offloads;
687 ssize_t dev_written;
688
689 if (!virtio_vdev_has_feature(&n->parent_obj,
690 VIRTIO_NET_F_CTRL_GUEST_OFFLOADS)) {
691 return 0;
692 }
693
694 if (n->curr_guest_offloads == virtio_net_supported_guest_offloads(n)) {
695 /*
696 * According to VirtIO standard, "Upon feature negotiation
697 * corresponding offload gets enabled to preserve
698 * backward compatibility.".
699 *
700 * Therefore, there is no need to send this CVQ command if the
701 * driver also enables all supported offloads, which aligns with
702 * the device's defaults.
703 *
704 * Note that the device's defaults can mismatch the driver's
705 * configuration only at live migration.
706 */
707 return 0;
708 }
709
710 offloads = cpu_to_le64(n->curr_guest_offloads);
711 dev_written = vhost_vdpa_net_load_cmd(s, VIRTIO_NET_CTRL_GUEST_OFFLOADS,
712 VIRTIO_NET_CTRL_GUEST_OFFLOADS_SET,
713 &offloads, sizeof(offloads));
714 if (unlikely(dev_written < 0)) {
715 return dev_written;
716 }
717
718 return *s->status != VIRTIO_NET_OK;
719 }
720
721 static int vhost_vdpa_net_load(NetClientState *nc)
722 {
723 VhostVDPAState *s = DO_UPCAST(VhostVDPAState, nc, nc);
724 struct vhost_vdpa *v = &s->vhost_vdpa;
725 const VirtIONet *n;
726 int r;
727
728 assert(nc->info->type == NET_CLIENT_DRIVER_VHOST_VDPA);
729
730 if (!v->shadow_vqs_enabled) {
731 return 0;
732 }
733
734 n = VIRTIO_NET(v->dev->vdev);
735 r = vhost_vdpa_net_load_mac(s, n);
736 if (unlikely(r < 0)) {
737 return r;
738 }
739 r = vhost_vdpa_net_load_mq(s, n);
740 if (unlikely(r)) {
741 return r;
742 }
743 r = vhost_vdpa_net_load_offloads(s, n);
744 if (unlikely(r)) {
745 return r;
746 }
747
748 return 0;
749 }
750
751 static NetClientInfo net_vhost_vdpa_cvq_info = {
752 .type = NET_CLIENT_DRIVER_VHOST_VDPA,
753 .size = sizeof(VhostVDPAState),
754 .receive = vhost_vdpa_receive,
755 .start = vhost_vdpa_net_cvq_start,
756 .load = vhost_vdpa_net_load,
757 .stop = vhost_vdpa_net_cvq_stop,
758 .cleanup = vhost_vdpa_cleanup,
759 .has_vnet_hdr = vhost_vdpa_has_vnet_hdr,
760 .has_ufo = vhost_vdpa_has_ufo,
761 .check_peer_type = vhost_vdpa_check_peer_type,
762 };
763
764 /**
765 * Validate and copy control virtqueue commands.
766 *
767 * Following QEMU guidelines, we offer a copy of the buffers to the device to
768 * prevent TOCTOU bugs.
769 */
770 static int vhost_vdpa_net_handle_ctrl_avail(VhostShadowVirtqueue *svq,
771 VirtQueueElement *elem,
772 void *opaque)
773 {
774 VhostVDPAState *s = opaque;
775 size_t in_len;
776 virtio_net_ctrl_ack status = VIRTIO_NET_ERR;
777 /* Out buffer sent to both the vdpa device and the device model */
778 struct iovec out = {
779 .iov_base = s->cvq_cmd_out_buffer,
780 };
781 /* in buffer used for device model */
782 const struct iovec in = {
783 .iov_base = &status,
784 .iov_len = sizeof(status),
785 };
786 ssize_t dev_written = -EINVAL;
787
788 out.iov_len = iov_to_buf(elem->out_sg, elem->out_num, 0,
789 s->cvq_cmd_out_buffer,
790 vhost_vdpa_net_cvq_cmd_len());
791 if (*(uint8_t *)s->cvq_cmd_out_buffer == VIRTIO_NET_CTRL_ANNOUNCE) {
792 /*
793 * Guest announce capability is emulated by qemu, so don't forward to
794 * the device.
795 */
796 dev_written = sizeof(status);
797 *s->status = VIRTIO_NET_OK;
798 } else {
799 dev_written = vhost_vdpa_net_cvq_add(s, out.iov_len, sizeof(status));
800 if (unlikely(dev_written < 0)) {
801 goto out;
802 }
803 }
804
805 if (unlikely(dev_written < sizeof(status))) {
806 error_report("Insufficient written data (%zu)", dev_written);
807 goto out;
808 }
809
810 if (*s->status != VIRTIO_NET_OK) {
811 goto out;
812 }
813
814 status = VIRTIO_NET_ERR;
815 virtio_net_handle_ctrl_iov(svq->vdev, &in, 1, &out, 1);
816 if (status != VIRTIO_NET_OK) {
817 error_report("Bad CVQ processing in model");
818 }
819
820 out:
821 in_len = iov_from_buf(elem->in_sg, elem->in_num, 0, &status,
822 sizeof(status));
823 if (unlikely(in_len < sizeof(status))) {
824 error_report("Bad device CVQ written length");
825 }
826 vhost_svq_push_elem(svq, elem, MIN(in_len, sizeof(status)));
827 g_free(elem);
828 return dev_written < 0 ? dev_written : 0;
829 }
830
831 static const VhostShadowVirtqueueOps vhost_vdpa_net_svq_ops = {
832 .avail_handler = vhost_vdpa_net_handle_ctrl_avail,
833 };
834
835 /**
836 * Probe if CVQ is isolated
837 *
838 * @device_fd The vdpa device fd
839 * @features Features offered by the device.
840 * @cvq_index The control vq pair index
841 *
842 * Returns <0 in case of failure, 0 if false and 1 if true.
843 */
844 static int vhost_vdpa_probe_cvq_isolation(int device_fd, uint64_t features,
845 int cvq_index, Error **errp)
846 {
847 uint64_t backend_features;
848 int64_t cvq_group;
849 uint8_t status = VIRTIO_CONFIG_S_ACKNOWLEDGE |
850 VIRTIO_CONFIG_S_DRIVER |
851 VIRTIO_CONFIG_S_FEATURES_OK;
852 int r;
853
854 ERRP_GUARD();
855
856 r = ioctl(device_fd, VHOST_GET_BACKEND_FEATURES, &backend_features);
857 if (unlikely(r < 0)) {
858 error_setg_errno(errp, errno, "Cannot get vdpa backend_features");
859 return r;
860 }
861
862 if (!(backend_features & BIT_ULL(VHOST_BACKEND_F_IOTLB_ASID))) {
863 return 0;
864 }
865
866 r = ioctl(device_fd, VHOST_SET_FEATURES, &features);
867 if (unlikely(r)) {
868 error_setg_errno(errp, errno, "Cannot set features");
869 }
870
871 r = ioctl(device_fd, VHOST_VDPA_SET_STATUS, &status);
872 if (unlikely(r)) {
873 error_setg_errno(errp, -r, "Cannot set device features");
874 goto out;
875 }
876
877 cvq_group = vhost_vdpa_get_vring_group(device_fd, cvq_index, errp);
878 if (unlikely(cvq_group < 0)) {
879 if (cvq_group != -ENOTSUP) {
880 r = cvq_group;
881 goto out;
882 }
883
884 /*
885 * The kernel report VHOST_BACKEND_F_IOTLB_ASID if the vdpa frontend
886 * support ASID even if the parent driver does not. The CVQ cannot be
887 * isolated in this case.
888 */
889 error_free(*errp);
890 *errp = NULL;
891 r = 0;
892 goto out;
893 }
894
895 for (int i = 0; i < cvq_index; ++i) {
896 int64_t group = vhost_vdpa_get_vring_group(device_fd, i, errp);
897 if (unlikely(group < 0)) {
898 r = group;
899 goto out;
900 }
901
902 if (group == (int64_t)cvq_group) {
903 r = 0;
904 goto out;
905 }
906 }
907
908 r = 1;
909
910 out:
911 status = 0;
912 ioctl(device_fd, VHOST_VDPA_SET_STATUS, &status);
913 return r;
914 }
915
916 static NetClientState *net_vhost_vdpa_init(NetClientState *peer,
917 const char *device,
918 const char *name,
919 int vdpa_device_fd,
920 int queue_pair_index,
921 int nvqs,
922 bool is_datapath,
923 bool svq,
924 struct vhost_vdpa_iova_range iova_range,
925 uint64_t features,
926 Error **errp)
927 {
928 NetClientState *nc = NULL;
929 VhostVDPAState *s;
930 int ret = 0;
931 assert(name);
932 int cvq_isolated;
933
934 if (is_datapath) {
935 nc = qemu_new_net_client(&net_vhost_vdpa_info, peer, device,
936 name);
937 } else {
938 cvq_isolated = vhost_vdpa_probe_cvq_isolation(vdpa_device_fd, features,
939 queue_pair_index * 2,
940 errp);
941 if (unlikely(cvq_isolated < 0)) {
942 return NULL;
943 }
944
945 nc = qemu_new_net_control_client(&net_vhost_vdpa_cvq_info, peer,
946 device, name);
947 }
948 qemu_set_info_str(nc, TYPE_VHOST_VDPA);
949 s = DO_UPCAST(VhostVDPAState, nc, nc);
950
951 s->vhost_vdpa.device_fd = vdpa_device_fd;
952 s->vhost_vdpa.index = queue_pair_index;
953 s->always_svq = svq;
954 s->migration_state.notify = vdpa_net_migration_state_notifier;
955 s->vhost_vdpa.shadow_vqs_enabled = svq;
956 s->vhost_vdpa.iova_range = iova_range;
957 s->vhost_vdpa.shadow_data = svq;
958 if (queue_pair_index == 0) {
959 vhost_vdpa_net_valid_svq_features(features,
960 &s->vhost_vdpa.migration_blocker);
961 } else if (!is_datapath) {
962 s->cvq_cmd_out_buffer = mmap(NULL, vhost_vdpa_net_cvq_cmd_page_len(),
963 PROT_READ | PROT_WRITE,
964 MAP_SHARED | MAP_ANONYMOUS, -1, 0);
965 s->status = mmap(NULL, vhost_vdpa_net_cvq_cmd_page_len(),
966 PROT_READ | PROT_WRITE, MAP_SHARED | MAP_ANONYMOUS,
967 -1, 0);
968
969 s->vhost_vdpa.shadow_vq_ops = &vhost_vdpa_net_svq_ops;
970 s->vhost_vdpa.shadow_vq_ops_opaque = s;
971 s->cvq_isolated = cvq_isolated;
972
973 /*
974 * TODO: We cannot migrate devices with CVQ and no x-svq enabled as
975 * there is no way to set the device state (MAC, MQ, etc) before
976 * starting the datapath.
977 *
978 * Migration blocker ownership now belongs to s->vhost_vdpa.
979 */
980 if (!svq) {
981 error_setg(&s->vhost_vdpa.migration_blocker,
982 "net vdpa cannot migrate with CVQ feature");
983 }
984 }
985 ret = vhost_vdpa_add(nc, (void *)&s->vhost_vdpa, queue_pair_index, nvqs);
986 if (ret) {
987 qemu_del_net_client(nc);
988 return NULL;
989 }
990 return nc;
991 }
992
993 static int vhost_vdpa_get_features(int fd, uint64_t *features, Error **errp)
994 {
995 int ret = ioctl(fd, VHOST_GET_FEATURES, features);
996 if (unlikely(ret < 0)) {
997 error_setg_errno(errp, errno,
998 "Fail to query features from vhost-vDPA device");
999 }
1000 return ret;
1001 }
1002
1003 static int vhost_vdpa_get_max_queue_pairs(int fd, uint64_t features,
1004 int *has_cvq, Error **errp)
1005 {
1006 unsigned long config_size = offsetof(struct vhost_vdpa_config, buf);
1007 g_autofree struct vhost_vdpa_config *config = NULL;
1008 __virtio16 *max_queue_pairs;
1009 int ret;
1010
1011 if (features & (1 << VIRTIO_NET_F_CTRL_VQ)) {
1012 *has_cvq = 1;
1013 } else {
1014 *has_cvq = 0;
1015 }
1016
1017 if (features & (1 << VIRTIO_NET_F_MQ)) {
1018 config = g_malloc0(config_size + sizeof(*max_queue_pairs));
1019 config->off = offsetof(struct virtio_net_config, max_virtqueue_pairs);
1020 config->len = sizeof(*max_queue_pairs);
1021
1022 ret = ioctl(fd, VHOST_VDPA_GET_CONFIG, config);
1023 if (ret) {
1024 error_setg(errp, "Fail to get config from vhost-vDPA device");
1025 return -ret;
1026 }
1027
1028 max_queue_pairs = (__virtio16 *)&config->buf;
1029
1030 return lduw_le_p(max_queue_pairs);
1031 }
1032
1033 return 1;
1034 }
1035
1036 int net_init_vhost_vdpa(const Netdev *netdev, const char *name,
1037 NetClientState *peer, Error **errp)
1038 {
1039 const NetdevVhostVDPAOptions *opts;
1040 uint64_t features;
1041 int vdpa_device_fd;
1042 g_autofree NetClientState **ncs = NULL;
1043 struct vhost_vdpa_iova_range iova_range;
1044 NetClientState *nc;
1045 int queue_pairs, r, i = 0, has_cvq = 0;
1046
1047 assert(netdev->type == NET_CLIENT_DRIVER_VHOST_VDPA);
1048 opts = &netdev->u.vhost_vdpa;
1049 if (!opts->vhostdev && !opts->vhostfd) {
1050 error_setg(errp,
1051 "vhost-vdpa: neither vhostdev= nor vhostfd= was specified");
1052 return -1;
1053 }
1054
1055 if (opts->vhostdev && opts->vhostfd) {
1056 error_setg(errp,
1057 "vhost-vdpa: vhostdev= and vhostfd= are mutually exclusive");
1058 return -1;
1059 }
1060
1061 if (opts->vhostdev) {
1062 vdpa_device_fd = qemu_open(opts->vhostdev, O_RDWR, errp);
1063 if (vdpa_device_fd == -1) {
1064 return -errno;
1065 }
1066 } else {
1067 /* has_vhostfd */
1068 vdpa_device_fd = monitor_fd_param(monitor_cur(), opts->vhostfd, errp);
1069 if (vdpa_device_fd == -1) {
1070 error_prepend(errp, "vhost-vdpa: unable to parse vhostfd: ");
1071 return -1;
1072 }
1073 }
1074
1075 r = vhost_vdpa_get_features(vdpa_device_fd, &features, errp);
1076 if (unlikely(r < 0)) {
1077 goto err;
1078 }
1079
1080 queue_pairs = vhost_vdpa_get_max_queue_pairs(vdpa_device_fd, features,
1081 &has_cvq, errp);
1082 if (queue_pairs < 0) {
1083 qemu_close(vdpa_device_fd);
1084 return queue_pairs;
1085 }
1086
1087 r = vhost_vdpa_get_iova_range(vdpa_device_fd, &iova_range);
1088 if (unlikely(r < 0)) {
1089 error_setg(errp, "vhost-vdpa: get iova range failed: %s",
1090 strerror(-r));
1091 goto err;
1092 }
1093
1094 if (opts->x_svq && !vhost_vdpa_net_valid_svq_features(features, errp)) {
1095 goto err;
1096 }
1097
1098 ncs = g_malloc0(sizeof(*ncs) * queue_pairs);
1099
1100 for (i = 0; i < queue_pairs; i++) {
1101 ncs[i] = net_vhost_vdpa_init(peer, TYPE_VHOST_VDPA, name,
1102 vdpa_device_fd, i, 2, true, opts->x_svq,
1103 iova_range, features, errp);
1104 if (!ncs[i])
1105 goto err;
1106 }
1107
1108 if (has_cvq) {
1109 nc = net_vhost_vdpa_init(peer, TYPE_VHOST_VDPA, name,
1110 vdpa_device_fd, i, 1, false,
1111 opts->x_svq, iova_range, features, errp);
1112 if (!nc)
1113 goto err;
1114 }
1115
1116 return 0;
1117
1118 err:
1119 if (i) {
1120 for (i--; i >= 0; i--) {
1121 qemu_del_net_client(ncs[i]);
1122 }
1123 }
1124
1125 qemu_close(vdpa_device_fd);
1126
1127 return -1;
1128 }