vhost: catch overflow causing mmap of size 0
[dpdk.git] / lib / librte_vhost / vhost_user.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2010-2018 Intel Corporation
3  */
4
5 /* Security model
6  * --------------
7  * The vhost-user protocol connection is an external interface, so it must be
8  * robust against invalid inputs.
9  *
10  * This is important because the vhost-user master is only one step removed
11  * from the guest.  Malicious guests that have escaped will then launch further
12  * attacks from the vhost-user master.
13  *
14  * Even in deployments where guests are trusted, a bug in the vhost-user master
15  * can still cause invalid messages to be sent.  Such messages must not
16  * compromise the stability of the DPDK application by causing crashes, memory
17  * corruption, or other problematic behavior.
18  *
19  * Do not assume received VhostUserMsg fields contain sensible values!
20  */
21
22 #include <stdint.h>
23 #include <stdio.h>
24 #include <stdlib.h>
25 #include <string.h>
26 #include <unistd.h>
27 #include <fcntl.h>
28 #include <sys/ioctl.h>
29 #include <sys/mman.h>
30 #include <sys/types.h>
31 #include <sys/stat.h>
32 #include <sys/syscall.h>
33 #include <assert.h>
34 #ifdef RTE_LIBRTE_VHOST_NUMA
35 #include <numaif.h>
36 #endif
37 #ifdef RTE_LIBRTE_VHOST_POSTCOPY
38 #include <linux/userfaultfd.h>
39 #endif
40 #ifdef F_ADD_SEALS /* if file sealing is supported, so is memfd */
41 #include <linux/memfd.h>
42 #define MEMFD_SUPPORTED
43 #endif
44
45 #include <rte_common.h>
46 #include <rte_malloc.h>
47 #include <rte_log.h>
48
49 #include "iotlb.h"
50 #include "vhost.h"
51 #include "vhost_user.h"
52
53 #define VIRTIO_MIN_MTU 68
54 #define VIRTIO_MAX_MTU 65535
55
56 #define INFLIGHT_ALIGNMENT      64
57 #define INFLIGHT_VERSION        0x1
58
59 static const char *vhost_message_str[VHOST_USER_MAX] = {
60         [VHOST_USER_NONE] = "VHOST_USER_NONE",
61         [VHOST_USER_GET_FEATURES] = "VHOST_USER_GET_FEATURES",
62         [VHOST_USER_SET_FEATURES] = "VHOST_USER_SET_FEATURES",
63         [VHOST_USER_SET_OWNER] = "VHOST_USER_SET_OWNER",
64         [VHOST_USER_RESET_OWNER] = "VHOST_USER_RESET_OWNER",
65         [VHOST_USER_SET_MEM_TABLE] = "VHOST_USER_SET_MEM_TABLE",
66         [VHOST_USER_SET_LOG_BASE] = "VHOST_USER_SET_LOG_BASE",
67         [VHOST_USER_SET_LOG_FD] = "VHOST_USER_SET_LOG_FD",
68         [VHOST_USER_SET_VRING_NUM] = "VHOST_USER_SET_VRING_NUM",
69         [VHOST_USER_SET_VRING_ADDR] = "VHOST_USER_SET_VRING_ADDR",
70         [VHOST_USER_SET_VRING_BASE] = "VHOST_USER_SET_VRING_BASE",
71         [VHOST_USER_GET_VRING_BASE] = "VHOST_USER_GET_VRING_BASE",
72         [VHOST_USER_SET_VRING_KICK] = "VHOST_USER_SET_VRING_KICK",
73         [VHOST_USER_SET_VRING_CALL] = "VHOST_USER_SET_VRING_CALL",
74         [VHOST_USER_SET_VRING_ERR]  = "VHOST_USER_SET_VRING_ERR",
75         [VHOST_USER_GET_PROTOCOL_FEATURES]  = "VHOST_USER_GET_PROTOCOL_FEATURES",
76         [VHOST_USER_SET_PROTOCOL_FEATURES]  = "VHOST_USER_SET_PROTOCOL_FEATURES",
77         [VHOST_USER_GET_QUEUE_NUM]  = "VHOST_USER_GET_QUEUE_NUM",
78         [VHOST_USER_SET_VRING_ENABLE]  = "VHOST_USER_SET_VRING_ENABLE",
79         [VHOST_USER_SEND_RARP]  = "VHOST_USER_SEND_RARP",
80         [VHOST_USER_NET_SET_MTU]  = "VHOST_USER_NET_SET_MTU",
81         [VHOST_USER_SET_SLAVE_REQ_FD]  = "VHOST_USER_SET_SLAVE_REQ_FD",
82         [VHOST_USER_IOTLB_MSG]  = "VHOST_USER_IOTLB_MSG",
83         [VHOST_USER_CRYPTO_CREATE_SESS] = "VHOST_USER_CRYPTO_CREATE_SESS",
84         [VHOST_USER_CRYPTO_CLOSE_SESS] = "VHOST_USER_CRYPTO_CLOSE_SESS",
85         [VHOST_USER_POSTCOPY_ADVISE]  = "VHOST_USER_POSTCOPY_ADVISE",
86         [VHOST_USER_POSTCOPY_LISTEN]  = "VHOST_USER_POSTCOPY_LISTEN",
87         [VHOST_USER_POSTCOPY_END]  = "VHOST_USER_POSTCOPY_END",
88         [VHOST_USER_GET_INFLIGHT_FD] = "VHOST_USER_GET_INFLIGHT_FD",
89         [VHOST_USER_SET_INFLIGHT_FD] = "VHOST_USER_SET_INFLIGHT_FD",
90 };
91
92 static int send_vhost_reply(int sockfd, struct VhostUserMsg *msg);
93 static int read_vhost_message(int sockfd, struct VhostUserMsg *msg);
94
95 static void
96 close_msg_fds(struct VhostUserMsg *msg)
97 {
98         int i;
99
100         for (i = 0; i < msg->fd_num; i++)
101                 close(msg->fds[i]);
102 }
103
104 /*
105  * Ensure the expected number of FDs is received,
106  * close all FDs and return an error if this is not the case.
107  */
108 static int
109 validate_msg_fds(struct VhostUserMsg *msg, int expected_fds)
110 {
111         if (msg->fd_num == expected_fds)
112                 return 0;
113
114         VHOST_LOG_CONFIG(ERR,
115                 " Expect %d FDs for request %s, received %d\n",
116                 expected_fds,
117                 vhost_message_str[msg->request.master],
118                 msg->fd_num);
119
120         close_msg_fds(msg);
121
122         return -1;
123 }
124
125 static uint64_t
126 get_blk_size(int fd)
127 {
128         struct stat stat;
129         int ret;
130
131         ret = fstat(fd, &stat);
132         return ret == -1 ? (uint64_t)-1 : (uint64_t)stat.st_blksize;
133 }
134
135 /*
136  * Reclaim all the outstanding zmbufs for a virtqueue.
137  */
138 static void
139 drain_zmbuf_list(struct vhost_virtqueue *vq)
140 {
141         struct zcopy_mbuf *zmbuf, *next;
142
143         for (zmbuf = TAILQ_FIRST(&vq->zmbuf_list);
144              zmbuf != NULL; zmbuf = next) {
145                 next = TAILQ_NEXT(zmbuf, next);
146
147                 while (!mbuf_is_consumed(zmbuf->mbuf))
148                         usleep(1000);
149
150                 TAILQ_REMOVE(&vq->zmbuf_list, zmbuf, next);
151                 restore_mbuf(zmbuf->mbuf);
152                 rte_pktmbuf_free(zmbuf->mbuf);
153                 put_zmbuf(zmbuf);
154                 vq->nr_zmbuf -= 1;
155         }
156 }
157
158 static void
159 free_mem_region(struct virtio_net *dev)
160 {
161         uint32_t i;
162         struct rte_vhost_mem_region *reg;
163         struct vhost_virtqueue *vq;
164
165         if (!dev || !dev->mem)
166                 return;
167
168         if (dev->dequeue_zero_copy) {
169                 for (i = 0; i < dev->nr_vring; i++) {
170                         vq = dev->virtqueue[i];
171                         if (vq)
172                                 drain_zmbuf_list(vq);
173                 }
174         }
175
176         for (i = 0; i < dev->mem->nregions; i++) {
177                 reg = &dev->mem->regions[i];
178                 if (reg->host_user_addr) {
179                         munmap(reg->mmap_addr, reg->mmap_size);
180                         close(reg->fd);
181                 }
182         }
183 }
184
185 void
186 vhost_backend_cleanup(struct virtio_net *dev)
187 {
188         if (dev->mem) {
189                 free_mem_region(dev);
190                 rte_free(dev->mem);
191                 dev->mem = NULL;
192         }
193
194         free(dev->guest_pages);
195         dev->guest_pages = NULL;
196
197         if (dev->log_addr) {
198                 munmap((void *)(uintptr_t)dev->log_addr, dev->log_size);
199                 dev->log_addr = 0;
200         }
201
202         if (dev->inflight_info) {
203                 if (dev->inflight_info->addr) {
204                         munmap(dev->inflight_info->addr,
205                                dev->inflight_info->size);
206                         dev->inflight_info->addr = NULL;
207                 }
208
209                 if (dev->inflight_info->fd > 0) {
210                         close(dev->inflight_info->fd);
211                         dev->inflight_info->fd = -1;
212                 }
213
214                 free(dev->inflight_info);
215                 dev->inflight_info = NULL;
216         }
217
218         if (dev->slave_req_fd >= 0) {
219                 close(dev->slave_req_fd);
220                 dev->slave_req_fd = -1;
221         }
222
223         if (dev->postcopy_ufd >= 0) {
224                 close(dev->postcopy_ufd);
225                 dev->postcopy_ufd = -1;
226         }
227
228         dev->postcopy_listening = 0;
229 }
230
231 /*
232  * This function just returns success at the moment unless
233  * the device hasn't been initialised.
234  */
235 static int
236 vhost_user_set_owner(struct virtio_net **pdev __rte_unused,
237                         struct VhostUserMsg *msg,
238                         int main_fd __rte_unused)
239 {
240         if (validate_msg_fds(msg, 0) != 0)
241                 return RTE_VHOST_MSG_RESULT_ERR;
242
243         return RTE_VHOST_MSG_RESULT_OK;
244 }
245
246 static int
247 vhost_user_reset_owner(struct virtio_net **pdev,
248                         struct VhostUserMsg *msg,
249                         int main_fd __rte_unused)
250 {
251         struct virtio_net *dev = *pdev;
252
253         if (validate_msg_fds(msg, 0) != 0)
254                 return RTE_VHOST_MSG_RESULT_ERR;
255
256         vhost_destroy_device_notify(dev);
257
258         cleanup_device(dev, 0);
259         reset_device(dev);
260         return RTE_VHOST_MSG_RESULT_OK;
261 }
262
263 /*
264  * The features that we support are requested.
265  */
266 static int
267 vhost_user_get_features(struct virtio_net **pdev, struct VhostUserMsg *msg,
268                         int main_fd __rte_unused)
269 {
270         struct virtio_net *dev = *pdev;
271         uint64_t features = 0;
272
273         if (validate_msg_fds(msg, 0) != 0)
274                 return RTE_VHOST_MSG_RESULT_ERR;
275
276         rte_vhost_driver_get_features(dev->ifname, &features);
277
278         msg->payload.u64 = features;
279         msg->size = sizeof(msg->payload.u64);
280         msg->fd_num = 0;
281
282         return RTE_VHOST_MSG_RESULT_REPLY;
283 }
284
285 /*
286  * The queue number that we support are requested.
287  */
288 static int
289 vhost_user_get_queue_num(struct virtio_net **pdev, struct VhostUserMsg *msg,
290                         int main_fd __rte_unused)
291 {
292         struct virtio_net *dev = *pdev;
293         uint32_t queue_num = 0;
294
295         if (validate_msg_fds(msg, 0) != 0)
296                 return RTE_VHOST_MSG_RESULT_ERR;
297
298         rte_vhost_driver_get_queue_num(dev->ifname, &queue_num);
299
300         msg->payload.u64 = (uint64_t)queue_num;
301         msg->size = sizeof(msg->payload.u64);
302         msg->fd_num = 0;
303
304         return RTE_VHOST_MSG_RESULT_REPLY;
305 }
306
307 /*
308  * We receive the negotiated features supported by us and the virtio device.
309  */
310 static int
311 vhost_user_set_features(struct virtio_net **pdev, struct VhostUserMsg *msg,
312                         int main_fd __rte_unused)
313 {
314         struct virtio_net *dev = *pdev;
315         uint64_t features = msg->payload.u64;
316         uint64_t vhost_features = 0;
317         struct rte_vdpa_device *vdpa_dev;
318         int did = -1;
319
320         if (validate_msg_fds(msg, 0) != 0)
321                 return RTE_VHOST_MSG_RESULT_ERR;
322
323         rte_vhost_driver_get_features(dev->ifname, &vhost_features);
324         if (features & ~vhost_features) {
325                 VHOST_LOG_CONFIG(ERR,
326                         "(%d) received invalid negotiated features.\n",
327                         dev->vid);
328                 return RTE_VHOST_MSG_RESULT_ERR;
329         }
330
331         if (dev->flags & VIRTIO_DEV_RUNNING) {
332                 if (dev->features == features)
333                         return RTE_VHOST_MSG_RESULT_OK;
334
335                 /*
336                  * Error out if master tries to change features while device is
337                  * in running state. The exception being VHOST_F_LOG_ALL, which
338                  * is enabled when the live-migration starts.
339                  */
340                 if ((dev->features ^ features) & ~(1ULL << VHOST_F_LOG_ALL)) {
341                         VHOST_LOG_CONFIG(ERR,
342                                 "(%d) features changed while device is running.\n",
343                                 dev->vid);
344                         return RTE_VHOST_MSG_RESULT_ERR;
345                 }
346
347                 if (dev->notify_ops->features_changed)
348                         dev->notify_ops->features_changed(dev->vid, features);
349         }
350
351         dev->features = features;
352         if (dev->features &
353                 ((1 << VIRTIO_NET_F_MRG_RXBUF) | (1ULL << VIRTIO_F_VERSION_1))) {
354                 dev->vhost_hlen = sizeof(struct virtio_net_hdr_mrg_rxbuf);
355         } else {
356                 dev->vhost_hlen = sizeof(struct virtio_net_hdr);
357         }
358         VHOST_LOG_CONFIG(INFO,
359                 "negotiated Virtio features: 0x%" PRIx64 "\n", dev->features);
360         VHOST_LOG_CONFIG(DEBUG,
361                 "(%d) mergeable RX buffers %s, virtio 1 %s\n",
362                 dev->vid,
363                 (dev->features & (1 << VIRTIO_NET_F_MRG_RXBUF)) ? "on" : "off",
364                 (dev->features & (1ULL << VIRTIO_F_VERSION_1)) ? "on" : "off");
365
366         if ((dev->flags & VIRTIO_DEV_BUILTIN_VIRTIO_NET) &&
367             !(dev->features & (1ULL << VIRTIO_NET_F_MQ))) {
368                 /*
369                  * Remove all but first queue pair if MQ hasn't been
370                  * negotiated. This is safe because the device is not
371                  * running at this stage.
372                  */
373                 while (dev->nr_vring > 2) {
374                         struct vhost_virtqueue *vq;
375
376                         vq = dev->virtqueue[--dev->nr_vring];
377                         if (!vq)
378                                 continue;
379
380                         dev->virtqueue[dev->nr_vring] = NULL;
381                         cleanup_vq(vq, 1);
382                         cleanup_vq_inflight(dev, vq);
383                         free_vq(dev, vq);
384                 }
385         }
386
387         did = dev->vdpa_dev_id;
388         vdpa_dev = rte_vdpa_get_device(did);
389         if (vdpa_dev && vdpa_dev->ops->set_features)
390                 vdpa_dev->ops->set_features(dev->vid);
391
392         return RTE_VHOST_MSG_RESULT_OK;
393 }
394
395 /*
396  * The virtio device sends us the size of the descriptor ring.
397  */
398 static int
399 vhost_user_set_vring_num(struct virtio_net **pdev,
400                         struct VhostUserMsg *msg,
401                         int main_fd __rte_unused)
402 {
403         struct virtio_net *dev = *pdev;
404         struct vhost_virtqueue *vq = dev->virtqueue[msg->payload.state.index];
405
406         if (validate_msg_fds(msg, 0) != 0)
407                 return RTE_VHOST_MSG_RESULT_ERR;
408
409         vq->size = msg->payload.state.num;
410
411         /* VIRTIO 1.0, 2.4 Virtqueues says:
412          *
413          *   Queue Size value is always a power of 2. The maximum Queue Size
414          *   value is 32768.
415          *
416          * VIRTIO 1.1 2.7 Virtqueues says:
417          *
418          *   Packed virtqueues support up to 2^15 entries each.
419          */
420         if (!vq_is_packed(dev)) {
421                 if (vq->size & (vq->size - 1)) {
422                         VHOST_LOG_CONFIG(ERR,
423                                 "invalid virtqueue size %u\n", vq->size);
424                         return RTE_VHOST_MSG_RESULT_ERR;
425                 }
426         }
427
428         if (vq->size > 32768) {
429                 VHOST_LOG_CONFIG(ERR,
430                         "invalid virtqueue size %u\n", vq->size);
431                 return RTE_VHOST_MSG_RESULT_ERR;
432         }
433
434         if (dev->dequeue_zero_copy) {
435                 vq->nr_zmbuf = 0;
436                 vq->last_zmbuf_idx = 0;
437                 vq->zmbuf_size = vq->size;
438                 if (vq->zmbufs)
439                         rte_free(vq->zmbufs);
440                 vq->zmbufs = rte_zmalloc(NULL, vq->zmbuf_size *
441                                          sizeof(struct zcopy_mbuf), 0);
442                 if (vq->zmbufs == NULL) {
443                         VHOST_LOG_CONFIG(WARNING,
444                                 "failed to allocate mem for zero copy; "
445                                 "zero copy is force disabled\n");
446                         dev->dequeue_zero_copy = 0;
447                 }
448                 TAILQ_INIT(&vq->zmbuf_list);
449         }
450
451         if (vq_is_packed(dev)) {
452                 if (vq->shadow_used_packed)
453                         rte_free(vq->shadow_used_packed);
454                 vq->shadow_used_packed = rte_malloc(NULL,
455                                 vq->size *
456                                 sizeof(struct vring_used_elem_packed),
457                                 RTE_CACHE_LINE_SIZE);
458                 if (!vq->shadow_used_packed) {
459                         VHOST_LOG_CONFIG(ERR,
460                                         "failed to allocate memory for shadow used ring.\n");
461                         return RTE_VHOST_MSG_RESULT_ERR;
462                 }
463
464         } else {
465                 if (vq->shadow_used_split)
466                         rte_free(vq->shadow_used_split);
467                 vq->shadow_used_split = rte_malloc(NULL,
468                                 vq->size * sizeof(struct vring_used_elem),
469                                 RTE_CACHE_LINE_SIZE);
470                 if (!vq->shadow_used_split) {
471                         VHOST_LOG_CONFIG(ERR,
472                                         "failed to allocate memory for shadow used ring.\n");
473                         return RTE_VHOST_MSG_RESULT_ERR;
474                 }
475         }
476
477         if (vq->batch_copy_elems)
478                 rte_free(vq->batch_copy_elems);
479         vq->batch_copy_elems = rte_malloc(NULL,
480                                 vq->size * sizeof(struct batch_copy_elem),
481                                 RTE_CACHE_LINE_SIZE);
482         if (!vq->batch_copy_elems) {
483                 VHOST_LOG_CONFIG(ERR,
484                         "failed to allocate memory for batching copy.\n");
485                 return RTE_VHOST_MSG_RESULT_ERR;
486         }
487
488         return RTE_VHOST_MSG_RESULT_OK;
489 }
490
491 /*
492  * Reallocate virtio_dev and vhost_virtqueue data structure to make them on the
493  * same numa node as the memory of vring descriptor.
494  */
495 #ifdef RTE_LIBRTE_VHOST_NUMA
496 static struct virtio_net*
497 numa_realloc(struct virtio_net *dev, int index)
498 {
499         int oldnode, newnode;
500         struct virtio_net *old_dev;
501         struct vhost_virtqueue *old_vq, *vq;
502         struct zcopy_mbuf *new_zmbuf;
503         struct vring_used_elem *new_shadow_used_split;
504         struct vring_used_elem_packed *new_shadow_used_packed;
505         struct batch_copy_elem *new_batch_copy_elems;
506         int ret;
507
508         if (dev->flags & VIRTIO_DEV_RUNNING)
509                 return dev;
510
511         old_dev = dev;
512         vq = old_vq = dev->virtqueue[index];
513
514         ret = get_mempolicy(&newnode, NULL, 0, old_vq->desc,
515                             MPOL_F_NODE | MPOL_F_ADDR);
516
517         /* check if we need to reallocate vq */
518         ret |= get_mempolicy(&oldnode, NULL, 0, old_vq,
519                              MPOL_F_NODE | MPOL_F_ADDR);
520         if (ret) {
521                 VHOST_LOG_CONFIG(ERR,
522                         "Unable to get vq numa information.\n");
523                 return dev;
524         }
525         if (oldnode != newnode) {
526                 VHOST_LOG_CONFIG(INFO,
527                         "reallocate vq from %d to %d node\n", oldnode, newnode);
528                 vq = rte_malloc_socket(NULL, sizeof(*vq), 0, newnode);
529                 if (!vq)
530                         return dev;
531
532                 memcpy(vq, old_vq, sizeof(*vq));
533                 TAILQ_INIT(&vq->zmbuf_list);
534
535                 if (dev->dequeue_zero_copy) {
536                         new_zmbuf = rte_malloc_socket(NULL, vq->zmbuf_size *
537                                         sizeof(struct zcopy_mbuf), 0, newnode);
538                         if (new_zmbuf) {
539                                 rte_free(vq->zmbufs);
540                                 vq->zmbufs = new_zmbuf;
541                         }
542                 }
543
544                 if (vq_is_packed(dev)) {
545                         new_shadow_used_packed = rte_malloc_socket(NULL,
546                                         vq->size *
547                                         sizeof(struct vring_used_elem_packed),
548                                         RTE_CACHE_LINE_SIZE,
549                                         newnode);
550                         if (new_shadow_used_packed) {
551                                 rte_free(vq->shadow_used_packed);
552                                 vq->shadow_used_packed = new_shadow_used_packed;
553                         }
554                 } else {
555                         new_shadow_used_split = rte_malloc_socket(NULL,
556                                         vq->size *
557                                         sizeof(struct vring_used_elem),
558                                         RTE_CACHE_LINE_SIZE,
559                                         newnode);
560                         if (new_shadow_used_split) {
561                                 rte_free(vq->shadow_used_split);
562                                 vq->shadow_used_split = new_shadow_used_split;
563                         }
564                 }
565
566                 new_batch_copy_elems = rte_malloc_socket(NULL,
567                         vq->size * sizeof(struct batch_copy_elem),
568                         RTE_CACHE_LINE_SIZE,
569                         newnode);
570                 if (new_batch_copy_elems) {
571                         rte_free(vq->batch_copy_elems);
572                         vq->batch_copy_elems = new_batch_copy_elems;
573                 }
574
575                 rte_free(old_vq);
576         }
577
578         /* check if we need to reallocate dev */
579         ret = get_mempolicy(&oldnode, NULL, 0, old_dev,
580                             MPOL_F_NODE | MPOL_F_ADDR);
581         if (ret) {
582                 VHOST_LOG_CONFIG(ERR,
583                         "Unable to get dev numa information.\n");
584                 goto out;
585         }
586         if (oldnode != newnode) {
587                 VHOST_LOG_CONFIG(INFO,
588                         "reallocate dev from %d to %d node\n",
589                         oldnode, newnode);
590                 dev = rte_malloc_socket(NULL, sizeof(*dev), 0, newnode);
591                 if (!dev) {
592                         dev = old_dev;
593                         goto out;
594                 }
595
596                 memcpy(dev, old_dev, sizeof(*dev));
597                 rte_free(old_dev);
598         }
599
600 out:
601         dev->virtqueue[index] = vq;
602         vhost_devices[dev->vid] = dev;
603
604         if (old_vq != vq)
605                 vhost_user_iotlb_init(dev, index);
606
607         return dev;
608 }
609 #else
610 static struct virtio_net*
611 numa_realloc(struct virtio_net *dev, int index __rte_unused)
612 {
613         return dev;
614 }
615 #endif
616
617 /* Converts QEMU virtual address to Vhost virtual address. */
618 static uint64_t
619 qva_to_vva(struct virtio_net *dev, uint64_t qva, uint64_t *len)
620 {
621         struct rte_vhost_mem_region *r;
622         uint32_t i;
623
624         if (unlikely(!dev || !dev->mem))
625                 goto out_error;
626
627         /* Find the region where the address lives. */
628         for (i = 0; i < dev->mem->nregions; i++) {
629                 r = &dev->mem->regions[i];
630
631                 if (qva >= r->guest_user_addr &&
632                     qva <  r->guest_user_addr + r->size) {
633
634                         if (unlikely(*len > r->guest_user_addr + r->size - qva))
635                                 *len = r->guest_user_addr + r->size - qva;
636
637                         return qva - r->guest_user_addr +
638                                r->host_user_addr;
639                 }
640         }
641 out_error:
642         *len = 0;
643
644         return 0;
645 }
646
647
648 /*
649  * Converts ring address to Vhost virtual address.
650  * If IOMMU is enabled, the ring address is a guest IO virtual address,
651  * else it is a QEMU virtual address.
652  */
653 static uint64_t
654 ring_addr_to_vva(struct virtio_net *dev, struct vhost_virtqueue *vq,
655                 uint64_t ra, uint64_t *size)
656 {
657         if (dev->features & (1ULL << VIRTIO_F_IOMMU_PLATFORM)) {
658                 uint64_t vva;
659                 uint64_t req_size = *size;
660
661                 vva = vhost_user_iotlb_cache_find(vq, ra,
662                                         size, VHOST_ACCESS_RW);
663                 if (req_size != *size)
664                         vhost_user_iotlb_miss(dev, (ra + *size),
665                                               VHOST_ACCESS_RW);
666
667                 return vva;
668         }
669
670         return qva_to_vva(dev, ra, size);
671 }
672
673 /*
674  * Converts vring log address to GPA
675  * If IOMMU is enabled, the log address is IOVA
676  * If IOMMU not enabled, the log address is already GPA
677  */
678 static uint64_t
679 translate_log_addr(struct virtio_net *dev, struct vhost_virtqueue *vq,
680                 uint64_t log_addr)
681 {
682         if (dev->features & (1ULL << VIRTIO_F_IOMMU_PLATFORM)) {
683                 const uint64_t exp_size = sizeof(struct vring_used) +
684                         sizeof(struct vring_used_elem) * vq->size;
685                 uint64_t hva, gpa;
686                 uint64_t size = exp_size;
687
688                 hva = vhost_iova_to_vva(dev, vq, log_addr,
689                                         &size, VHOST_ACCESS_RW);
690                 if (size != exp_size)
691                         return 0;
692
693                 gpa = hva_to_gpa(dev, hva, exp_size);
694                 if (!gpa) {
695                         VHOST_LOG_CONFIG(ERR,
696                                 "VQ: Failed to find GPA for log_addr: 0x%" PRIx64 " hva: 0x%" PRIx64 "\n",
697                                 log_addr, hva);
698                         return 0;
699                 }
700                 return gpa;
701
702         } else
703                 return log_addr;
704 }
705
706 static struct virtio_net *
707 translate_ring_addresses(struct virtio_net *dev, int vq_index)
708 {
709         struct vhost_virtqueue *vq = dev->virtqueue[vq_index];
710         struct vhost_vring_addr *addr = &vq->ring_addrs;
711         uint64_t len, expected_len;
712
713         if (addr->flags & (1 << VHOST_VRING_F_LOG)) {
714                 vq->log_guest_addr =
715                         translate_log_addr(dev, vq, addr->log_guest_addr);
716                 if (vq->log_guest_addr == 0) {
717                         VHOST_LOG_CONFIG(DEBUG,
718                                 "(%d) failed to map log_guest_addr.\n",
719                                 dev->vid);
720                         return dev;
721                 }
722         }
723
724         if (vq_is_packed(dev)) {
725                 len = sizeof(struct vring_packed_desc) * vq->size;
726                 vq->desc_packed = (struct vring_packed_desc *)(uintptr_t)
727                         ring_addr_to_vva(dev, vq, addr->desc_user_addr, &len);
728                 if (vq->desc_packed == NULL ||
729                                 len != sizeof(struct vring_packed_desc) *
730                                 vq->size) {
731                         VHOST_LOG_CONFIG(DEBUG,
732                                 "(%d) failed to map desc_packed ring.\n",
733                                 dev->vid);
734                         return dev;
735                 }
736
737                 dev = numa_realloc(dev, vq_index);
738                 vq = dev->virtqueue[vq_index];
739                 addr = &vq->ring_addrs;
740
741                 len = sizeof(struct vring_packed_desc_event);
742                 vq->driver_event = (struct vring_packed_desc_event *)
743                                         (uintptr_t)ring_addr_to_vva(dev,
744                                         vq, addr->avail_user_addr, &len);
745                 if (vq->driver_event == NULL ||
746                                 len != sizeof(struct vring_packed_desc_event)) {
747                         VHOST_LOG_CONFIG(DEBUG,
748                                 "(%d) failed to find driver area address.\n",
749                                 dev->vid);
750                         return dev;
751                 }
752
753                 len = sizeof(struct vring_packed_desc_event);
754                 vq->device_event = (struct vring_packed_desc_event *)
755                                         (uintptr_t)ring_addr_to_vva(dev,
756                                         vq, addr->used_user_addr, &len);
757                 if (vq->device_event == NULL ||
758                                 len != sizeof(struct vring_packed_desc_event)) {
759                         VHOST_LOG_CONFIG(DEBUG,
760                                 "(%d) failed to find device area address.\n",
761                                 dev->vid);
762                         return dev;
763                 }
764
765                 vq->access_ok = 1;
766                 return dev;
767         }
768
769         /* The addresses are converted from QEMU virtual to Vhost virtual. */
770         if (vq->desc && vq->avail && vq->used)
771                 return dev;
772
773         len = sizeof(struct vring_desc) * vq->size;
774         vq->desc = (struct vring_desc *)(uintptr_t)ring_addr_to_vva(dev,
775                         vq, addr->desc_user_addr, &len);
776         if (vq->desc == 0 || len != sizeof(struct vring_desc) * vq->size) {
777                 VHOST_LOG_CONFIG(DEBUG,
778                         "(%d) failed to map desc ring.\n",
779                         dev->vid);
780                 return dev;
781         }
782
783         dev = numa_realloc(dev, vq_index);
784         vq = dev->virtqueue[vq_index];
785         addr = &vq->ring_addrs;
786
787         len = sizeof(struct vring_avail) + sizeof(uint16_t) * vq->size;
788         if (dev->features & (1ULL << VIRTIO_RING_F_EVENT_IDX))
789                 len += sizeof(uint16_t);
790         expected_len = len;
791         vq->avail = (struct vring_avail *)(uintptr_t)ring_addr_to_vva(dev,
792                         vq, addr->avail_user_addr, &len);
793         if (vq->avail == 0 || len != expected_len) {
794                 VHOST_LOG_CONFIG(DEBUG,
795                         "(%d) failed to map avail ring.\n",
796                         dev->vid);
797                 return dev;
798         }
799
800         len = sizeof(struct vring_used) +
801                 sizeof(struct vring_used_elem) * vq->size;
802         if (dev->features & (1ULL << VIRTIO_RING_F_EVENT_IDX))
803                 len += sizeof(uint16_t);
804         expected_len = len;
805         vq->used = (struct vring_used *)(uintptr_t)ring_addr_to_vva(dev,
806                         vq, addr->used_user_addr, &len);
807         if (vq->used == 0 || len != expected_len) {
808                 VHOST_LOG_CONFIG(DEBUG,
809                         "(%d) failed to map used ring.\n",
810                         dev->vid);
811                 return dev;
812         }
813
814         if (vq->last_used_idx != vq->used->idx) {
815                 VHOST_LOG_CONFIG(WARNING,
816                         "last_used_idx (%u) and vq->used->idx (%u) mismatches; "
817                         "some packets maybe resent for Tx and dropped for Rx\n",
818                         vq->last_used_idx, vq->used->idx);
819                 vq->last_used_idx  = vq->used->idx;
820                 vq->last_avail_idx = vq->used->idx;
821         }
822
823         vq->access_ok = 1;
824
825         VHOST_LOG_CONFIG(DEBUG, "(%d) mapped address desc: %p\n",
826                         dev->vid, vq->desc);
827         VHOST_LOG_CONFIG(DEBUG, "(%d) mapped address avail: %p\n",
828                         dev->vid, vq->avail);
829         VHOST_LOG_CONFIG(DEBUG, "(%d) mapped address used: %p\n",
830                         dev->vid, vq->used);
831         VHOST_LOG_CONFIG(DEBUG, "(%d) log_guest_addr: %" PRIx64 "\n",
832                         dev->vid, vq->log_guest_addr);
833
834         return dev;
835 }
836
837 /*
838  * The virtio device sends us the desc, used and avail ring addresses.
839  * This function then converts these to our address space.
840  */
841 static int
842 vhost_user_set_vring_addr(struct virtio_net **pdev, struct VhostUserMsg *msg,
843                         int main_fd __rte_unused)
844 {
845         struct virtio_net *dev = *pdev;
846         struct vhost_virtqueue *vq;
847         struct vhost_vring_addr *addr = &msg->payload.addr;
848         bool access_ok;
849
850         if (validate_msg_fds(msg, 0) != 0)
851                 return RTE_VHOST_MSG_RESULT_ERR;
852
853         if (dev->mem == NULL)
854                 return RTE_VHOST_MSG_RESULT_ERR;
855
856         /* addr->index refers to the queue index. The txq 1, rxq is 0. */
857         vq = dev->virtqueue[msg->payload.addr.index];
858
859         access_ok = vq->access_ok;
860
861         /*
862          * Rings addresses should not be interpreted as long as the ring is not
863          * started and enabled
864          */
865         memcpy(&vq->ring_addrs, addr, sizeof(*addr));
866
867         vring_invalidate(dev, vq);
868
869         if ((vq->enabled && (dev->features &
870                                 (1ULL << VHOST_USER_F_PROTOCOL_FEATURES))) ||
871                         access_ok) {
872                 dev = translate_ring_addresses(dev, msg->payload.addr.index);
873                 if (!dev)
874                         return RTE_VHOST_MSG_RESULT_ERR;
875
876                 *pdev = dev;
877         }
878
879         return RTE_VHOST_MSG_RESULT_OK;
880 }
881
882 /*
883  * The virtio device sends us the available ring last used index.
884  */
885 static int
886 vhost_user_set_vring_base(struct virtio_net **pdev,
887                         struct VhostUserMsg *msg,
888                         int main_fd __rte_unused)
889 {
890         struct virtio_net *dev = *pdev;
891         struct vhost_virtqueue *vq = dev->virtqueue[msg->payload.state.index];
892         uint64_t val = msg->payload.state.num;
893
894         if (validate_msg_fds(msg, 0) != 0)
895                 return RTE_VHOST_MSG_RESULT_ERR;
896
897         if (vq_is_packed(dev)) {
898                 /*
899                  * Bit[0:14]: avail index
900                  * Bit[15]: avail wrap counter
901                  */
902                 vq->last_avail_idx = val & 0x7fff;
903                 vq->avail_wrap_counter = !!(val & (0x1 << 15));
904                 /*
905                  * Set used index to same value as available one, as
906                  * their values should be the same since ring processing
907                  * was stopped at get time.
908                  */
909                 vq->last_used_idx = vq->last_avail_idx;
910                 vq->used_wrap_counter = vq->avail_wrap_counter;
911         } else {
912                 vq->last_used_idx = msg->payload.state.num;
913                 vq->last_avail_idx = msg->payload.state.num;
914         }
915
916         return RTE_VHOST_MSG_RESULT_OK;
917 }
918
919 static int
920 add_one_guest_page(struct virtio_net *dev, uint64_t guest_phys_addr,
921                    uint64_t host_phys_addr, uint64_t size)
922 {
923         struct guest_page *page, *last_page;
924         struct guest_page *old_pages;
925
926         if (dev->nr_guest_pages == dev->max_guest_pages) {
927                 dev->max_guest_pages *= 2;
928                 old_pages = dev->guest_pages;
929                 dev->guest_pages = realloc(dev->guest_pages,
930                                         dev->max_guest_pages * sizeof(*page));
931                 if (!dev->guest_pages) {
932                         VHOST_LOG_CONFIG(ERR, "cannot realloc guest_pages\n");
933                         free(old_pages);
934                         return -1;
935                 }
936         }
937
938         if (dev->nr_guest_pages > 0) {
939                 last_page = &dev->guest_pages[dev->nr_guest_pages - 1];
940                 /* merge if the two pages are continuous */
941                 if (host_phys_addr == last_page->host_phys_addr +
942                                       last_page->size) {
943                         last_page->size += size;
944                         return 0;
945                 }
946         }
947
948         page = &dev->guest_pages[dev->nr_guest_pages++];
949         page->guest_phys_addr = guest_phys_addr;
950         page->host_phys_addr  = host_phys_addr;
951         page->size = size;
952
953         return 0;
954 }
955
956 static int
957 add_guest_pages(struct virtio_net *dev, struct rte_vhost_mem_region *reg,
958                 uint64_t page_size)
959 {
960         uint64_t reg_size = reg->size;
961         uint64_t host_user_addr  = reg->host_user_addr;
962         uint64_t guest_phys_addr = reg->guest_phys_addr;
963         uint64_t host_phys_addr;
964         uint64_t size;
965
966         host_phys_addr = rte_mem_virt2iova((void *)(uintptr_t)host_user_addr);
967         size = page_size - (guest_phys_addr & (page_size - 1));
968         size = RTE_MIN(size, reg_size);
969
970         if (add_one_guest_page(dev, guest_phys_addr, host_phys_addr, size) < 0)
971                 return -1;
972
973         host_user_addr  += size;
974         guest_phys_addr += size;
975         reg_size -= size;
976
977         while (reg_size > 0) {
978                 size = RTE_MIN(reg_size, page_size);
979                 host_phys_addr = rte_mem_virt2iova((void *)(uintptr_t)
980                                                   host_user_addr);
981                 if (add_one_guest_page(dev, guest_phys_addr, host_phys_addr,
982                                 size) < 0)
983                         return -1;
984
985                 host_user_addr  += size;
986                 guest_phys_addr += size;
987                 reg_size -= size;
988         }
989
990         return 0;
991 }
992
993 #ifdef RTE_LIBRTE_VHOST_DEBUG
994 /* TODO: enable it only in debug mode? */
995 static void
996 dump_guest_pages(struct virtio_net *dev)
997 {
998         uint32_t i;
999         struct guest_page *page;
1000
1001         for (i = 0; i < dev->nr_guest_pages; i++) {
1002                 page = &dev->guest_pages[i];
1003
1004                 VHOST_LOG_CONFIG(INFO,
1005                         "guest physical page region %u\n"
1006                         "\t guest_phys_addr: %" PRIx64 "\n"
1007                         "\t host_phys_addr : %" PRIx64 "\n"
1008                         "\t size           : %" PRIx64 "\n",
1009                         i,
1010                         page->guest_phys_addr,
1011                         page->host_phys_addr,
1012                         page->size);
1013         }
1014 }
1015 #else
1016 #define dump_guest_pages(dev)
1017 #endif
1018
1019 static bool
1020 vhost_memory_changed(struct VhostUserMemory *new,
1021                      struct rte_vhost_memory *old)
1022 {
1023         uint32_t i;
1024
1025         if (new->nregions != old->nregions)
1026                 return true;
1027
1028         for (i = 0; i < new->nregions; ++i) {
1029                 VhostUserMemoryRegion *new_r = &new->regions[i];
1030                 struct rte_vhost_mem_region *old_r = &old->regions[i];
1031
1032                 if (new_r->guest_phys_addr != old_r->guest_phys_addr)
1033                         return true;
1034                 if (new_r->memory_size != old_r->size)
1035                         return true;
1036                 if (new_r->userspace_addr != old_r->guest_user_addr)
1037                         return true;
1038         }
1039
1040         return false;
1041 }
1042
1043 static int
1044 vhost_user_set_mem_table(struct virtio_net **pdev, struct VhostUserMsg *msg,
1045                         int main_fd)
1046 {
1047         struct virtio_net *dev = *pdev;
1048         struct VhostUserMemory *memory = &msg->payload.memory;
1049         struct rte_vhost_mem_region *reg;
1050         void *mmap_addr;
1051         uint64_t mmap_size;
1052         uint64_t mmap_offset;
1053         uint64_t alignment;
1054         uint32_t i;
1055         int populate;
1056         int fd;
1057
1058         if (validate_msg_fds(msg, memory->nregions) != 0)
1059                 return RTE_VHOST_MSG_RESULT_ERR;
1060
1061         if (memory->nregions > VHOST_MEMORY_MAX_NREGIONS) {
1062                 VHOST_LOG_CONFIG(ERR,
1063                         "too many memory regions (%u)\n", memory->nregions);
1064                 return RTE_VHOST_MSG_RESULT_ERR;
1065         }
1066
1067         if (dev->mem && !vhost_memory_changed(memory, dev->mem)) {
1068                 VHOST_LOG_CONFIG(INFO,
1069                         "(%d) memory regions not changed\n", dev->vid);
1070
1071                 close_msg_fds(msg);
1072
1073                 return RTE_VHOST_MSG_RESULT_OK;
1074         }
1075
1076         if (dev->mem) {
1077                 free_mem_region(dev);
1078                 rte_free(dev->mem);
1079                 dev->mem = NULL;
1080         }
1081
1082         /* Flush IOTLB cache as previous HVAs are now invalid */
1083         if (dev->features & (1ULL << VIRTIO_F_IOMMU_PLATFORM))
1084                 for (i = 0; i < dev->nr_vring; i++)
1085                         vhost_user_iotlb_flush_all(dev->virtqueue[i]);
1086
1087         dev->nr_guest_pages = 0;
1088         if (!dev->guest_pages) {
1089                 dev->max_guest_pages = 8;
1090                 dev->guest_pages = malloc(dev->max_guest_pages *
1091                                                 sizeof(struct guest_page));
1092                 if (dev->guest_pages == NULL) {
1093                         VHOST_LOG_CONFIG(ERR,
1094                                 "(%d) failed to allocate memory "
1095                                 "for dev->guest_pages\n",
1096                                 dev->vid);
1097                         return RTE_VHOST_MSG_RESULT_ERR;
1098                 }
1099         }
1100
1101         dev->mem = rte_zmalloc("vhost-mem-table", sizeof(struct rte_vhost_memory) +
1102                 sizeof(struct rte_vhost_mem_region) * memory->nregions, 0);
1103         if (dev->mem == NULL) {
1104                 VHOST_LOG_CONFIG(ERR,
1105                         "(%d) failed to allocate memory for dev->mem\n",
1106                         dev->vid);
1107                 return RTE_VHOST_MSG_RESULT_ERR;
1108         }
1109         dev->mem->nregions = memory->nregions;
1110
1111         for (i = 0; i < memory->nregions; i++) {
1112                 fd  = msg->fds[i];
1113                 reg = &dev->mem->regions[i];
1114
1115                 reg->guest_phys_addr = memory->regions[i].guest_phys_addr;
1116                 reg->guest_user_addr = memory->regions[i].userspace_addr;
1117                 reg->size            = memory->regions[i].memory_size;
1118                 reg->fd              = fd;
1119
1120                 mmap_offset = memory->regions[i].mmap_offset;
1121
1122                 /* Check for memory_size + mmap_offset overflow */
1123                 if (mmap_offset >= -reg->size) {
1124                         VHOST_LOG_CONFIG(ERR,
1125                                 "mmap_offset (%#"PRIx64") and memory_size "
1126                                 "(%#"PRIx64") overflow\n",
1127                                 mmap_offset, reg->size);
1128                         goto err_mmap;
1129                 }
1130
1131                 mmap_size = reg->size + mmap_offset;
1132
1133                 /* mmap() without flag of MAP_ANONYMOUS, should be called
1134                  * with length argument aligned with hugepagesz at older
1135                  * longterm version Linux, like 2.6.32 and 3.2.72, or
1136                  * mmap() will fail with EINVAL.
1137                  *
1138                  * to avoid failure, make sure in caller to keep length
1139                  * aligned.
1140                  */
1141                 alignment = get_blk_size(fd);
1142                 if (alignment == (uint64_t)-1) {
1143                         VHOST_LOG_CONFIG(ERR,
1144                                 "couldn't get hugepage size through fstat\n");
1145                         goto err_mmap;
1146                 }
1147                 mmap_size = RTE_ALIGN_CEIL(mmap_size, alignment);
1148                 if (mmap_size == 0) {
1149                         /*
1150                          * It could happen if initial mmap_size + alignment
1151                          * overflows the sizeof uint64, which could happen if
1152                          * either mmap_size or alignment value is wrong.
1153                          *
1154                          * mmap() kernel implementation would return an error,
1155                          * but better catch it before and provide useful info
1156                          * in the logs.
1157                          */
1158                         VHOST_LOG_CONFIG(ERR, "mmap size (0x%" PRIx64 ") "
1159                                         "or alignment (0x%" PRIx64 ") is invalid\n",
1160                                         reg->size + mmap_offset, alignment);
1161                         goto err_mmap;
1162                 }
1163
1164                 populate = (dev->dequeue_zero_copy) ? MAP_POPULATE : 0;
1165                 mmap_addr = mmap(NULL, mmap_size, PROT_READ | PROT_WRITE,
1166                                  MAP_SHARED | populate, fd, 0);
1167
1168                 if (mmap_addr == MAP_FAILED) {
1169                         VHOST_LOG_CONFIG(ERR,
1170                                 "mmap region %u failed.\n", i);
1171                         goto err_mmap;
1172                 }
1173
1174                 reg->mmap_addr = mmap_addr;
1175                 reg->mmap_size = mmap_size;
1176                 reg->host_user_addr = (uint64_t)(uintptr_t)mmap_addr +
1177                                       mmap_offset;
1178
1179                 if (dev->dequeue_zero_copy)
1180                         if (add_guest_pages(dev, reg, alignment) < 0) {
1181                                 VHOST_LOG_CONFIG(ERR,
1182                                         "adding guest pages to region %u failed.\n",
1183                                         i);
1184                                 goto err_mmap;
1185                         }
1186
1187                 VHOST_LOG_CONFIG(INFO,
1188                         "guest memory region %u, size: 0x%" PRIx64 "\n"
1189                         "\t guest physical addr: 0x%" PRIx64 "\n"
1190                         "\t guest virtual  addr: 0x%" PRIx64 "\n"
1191                         "\t host  virtual  addr: 0x%" PRIx64 "\n"
1192                         "\t mmap addr : 0x%" PRIx64 "\n"
1193                         "\t mmap size : 0x%" PRIx64 "\n"
1194                         "\t mmap align: 0x%" PRIx64 "\n"
1195                         "\t mmap off  : 0x%" PRIx64 "\n",
1196                         i, reg->size,
1197                         reg->guest_phys_addr,
1198                         reg->guest_user_addr,
1199                         reg->host_user_addr,
1200                         (uint64_t)(uintptr_t)mmap_addr,
1201                         mmap_size,
1202                         alignment,
1203                         mmap_offset);
1204
1205                 if (dev->postcopy_listening) {
1206                         /*
1207                          * We haven't a better way right now than sharing
1208                          * DPDK's virtual address with Qemu, so that Qemu can
1209                          * retrieve the region offset when handling userfaults.
1210                          */
1211                         memory->regions[i].userspace_addr =
1212                                 reg->host_user_addr;
1213                 }
1214         }
1215         if (dev->postcopy_listening) {
1216                 /* Send the addresses back to qemu */
1217                 msg->fd_num = 0;
1218                 send_vhost_reply(main_fd, msg);
1219
1220                 /* Wait for qemu to acknolwedge it's got the addresses
1221                  * we've got to wait before we're allowed to generate faults.
1222                  */
1223                 VhostUserMsg ack_msg;
1224                 if (read_vhost_message(main_fd, &ack_msg) <= 0) {
1225                         VHOST_LOG_CONFIG(ERR,
1226                                 "Failed to read qemu ack on postcopy set-mem-table\n");
1227                         goto err_mmap;
1228                 }
1229
1230                 if (validate_msg_fds(&ack_msg, 0) != 0)
1231                         goto err_mmap;
1232
1233                 if (ack_msg.request.master != VHOST_USER_SET_MEM_TABLE) {
1234                         VHOST_LOG_CONFIG(ERR,
1235                                 "Bad qemu ack on postcopy set-mem-table (%d)\n",
1236                                 ack_msg.request.master);
1237                         goto err_mmap;
1238                 }
1239
1240                 /* Now userfault register and we can use the memory */
1241                 for (i = 0; i < memory->nregions; i++) {
1242 #ifdef RTE_LIBRTE_VHOST_POSTCOPY
1243                         reg = &dev->mem->regions[i];
1244                         struct uffdio_register reg_struct;
1245
1246                         /*
1247                          * Let's register all the mmap'ed area to ensure
1248                          * alignment on page boundary.
1249                          */
1250                         reg_struct.range.start =
1251                                 (uint64_t)(uintptr_t)reg->mmap_addr;
1252                         reg_struct.range.len = reg->mmap_size;
1253                         reg_struct.mode = UFFDIO_REGISTER_MODE_MISSING;
1254
1255                         if (ioctl(dev->postcopy_ufd, UFFDIO_REGISTER,
1256                                                 &reg_struct)) {
1257                                 VHOST_LOG_CONFIG(ERR,
1258                                         "Failed to register ufd for region %d: (ufd = %d) %s\n",
1259                                         i, dev->postcopy_ufd,
1260                                         strerror(errno));
1261                                 goto err_mmap;
1262                         }
1263                         VHOST_LOG_CONFIG(INFO,
1264                                 "\t userfaultfd registered for range : "
1265                                 "%" PRIx64 " - %" PRIx64 "\n",
1266                                 (uint64_t)reg_struct.range.start,
1267                                 (uint64_t)reg_struct.range.start +
1268                                 (uint64_t)reg_struct.range.len - 1);
1269 #else
1270                         goto err_mmap;
1271 #endif
1272                 }
1273         }
1274
1275         for (i = 0; i < dev->nr_vring; i++) {
1276                 struct vhost_virtqueue *vq = dev->virtqueue[i];
1277
1278                 if (vq->desc || vq->avail || vq->used) {
1279                         /*
1280                          * If the memory table got updated, the ring addresses
1281                          * need to be translated again as virtual addresses have
1282                          * changed.
1283                          */
1284                         vring_invalidate(dev, vq);
1285
1286                         dev = translate_ring_addresses(dev, i);
1287                         if (!dev) {
1288                                 dev = *pdev;
1289                                 goto err_mmap;
1290                         }
1291
1292                         *pdev = dev;
1293                 }
1294         }
1295
1296         dump_guest_pages(dev);
1297
1298         return RTE_VHOST_MSG_RESULT_OK;
1299
1300 err_mmap:
1301         free_mem_region(dev);
1302         rte_free(dev->mem);
1303         dev->mem = NULL;
1304         return RTE_VHOST_MSG_RESULT_ERR;
1305 }
1306
1307 static bool
1308 vq_is_ready(struct virtio_net *dev, struct vhost_virtqueue *vq)
1309 {
1310         bool rings_ok;
1311
1312         if (!vq)
1313                 return false;
1314
1315         if (vq_is_packed(dev))
1316                 rings_ok = vq->desc_packed && vq->driver_event &&
1317                         vq->device_event;
1318         else
1319                 rings_ok = vq->desc && vq->avail && vq->used;
1320
1321         return rings_ok &&
1322                vq->kickfd != VIRTIO_UNINITIALIZED_EVENTFD &&
1323                vq->callfd != VIRTIO_UNINITIALIZED_EVENTFD;
1324 }
1325
1326 static int
1327 virtio_is_ready(struct virtio_net *dev)
1328 {
1329         struct vhost_virtqueue *vq;
1330         uint32_t i;
1331
1332         if (dev->nr_vring == 0)
1333                 return 0;
1334
1335         for (i = 0; i < dev->nr_vring; i++) {
1336                 vq = dev->virtqueue[i];
1337
1338                 if (!vq_is_ready(dev, vq))
1339                         return 0;
1340         }
1341
1342         VHOST_LOG_CONFIG(INFO,
1343                 "virtio is now ready for processing.\n");
1344         return 1;
1345 }
1346
1347 static void *
1348 inflight_mem_alloc(const char *name, size_t size, int *fd)
1349 {
1350         void *ptr;
1351         int mfd = -1;
1352         char fname[20] = "/tmp/memfd-XXXXXX";
1353
1354         *fd = -1;
1355 #ifdef MEMFD_SUPPORTED
1356         mfd = memfd_create(name, MFD_CLOEXEC);
1357 #else
1358         RTE_SET_USED(name);
1359 #endif
1360         if (mfd == -1) {
1361                 mfd = mkstemp(fname);
1362                 if (mfd == -1) {
1363                         VHOST_LOG_CONFIG(ERR,
1364                                 "failed to get inflight buffer fd\n");
1365                         return NULL;
1366                 }
1367
1368                 unlink(fname);
1369         }
1370
1371         if (ftruncate(mfd, size) == -1) {
1372                 VHOST_LOG_CONFIG(ERR,
1373                         "failed to alloc inflight buffer\n");
1374                 close(mfd);
1375                 return NULL;
1376         }
1377
1378         ptr = mmap(0, size, PROT_READ | PROT_WRITE, MAP_SHARED, mfd, 0);
1379         if (ptr == MAP_FAILED) {
1380                 VHOST_LOG_CONFIG(ERR,
1381                         "failed to mmap inflight buffer\n");
1382                 close(mfd);
1383                 return NULL;
1384         }
1385
1386         *fd = mfd;
1387         return ptr;
1388 }
1389
1390 static uint32_t
1391 get_pervq_shm_size_split(uint16_t queue_size)
1392 {
1393         return RTE_ALIGN_MUL_CEIL(sizeof(struct rte_vhost_inflight_desc_split) *
1394                                   queue_size + sizeof(uint64_t) +
1395                                   sizeof(uint16_t) * 4, INFLIGHT_ALIGNMENT);
1396 }
1397
1398 static uint32_t
1399 get_pervq_shm_size_packed(uint16_t queue_size)
1400 {
1401         return RTE_ALIGN_MUL_CEIL(sizeof(struct rte_vhost_inflight_desc_packed)
1402                                   * queue_size + sizeof(uint64_t) +
1403                                   sizeof(uint16_t) * 6 + sizeof(uint8_t) * 9,
1404                                   INFLIGHT_ALIGNMENT);
1405 }
1406
1407 static int
1408 vhost_user_get_inflight_fd(struct virtio_net **pdev,
1409                            VhostUserMsg *msg,
1410                            int main_fd __rte_unused)
1411 {
1412         struct rte_vhost_inflight_info_packed *inflight_packed;
1413         uint64_t pervq_inflight_size, mmap_size;
1414         uint16_t num_queues, queue_size;
1415         struct virtio_net *dev = *pdev;
1416         int fd, i, j;
1417         void *addr;
1418
1419         if (msg->size != sizeof(msg->payload.inflight)) {
1420                 VHOST_LOG_CONFIG(ERR,
1421                         "invalid get_inflight_fd message size is %d\n",
1422                         msg->size);
1423                 return RTE_VHOST_MSG_RESULT_ERR;
1424         }
1425
1426         if (dev->inflight_info == NULL) {
1427                 dev->inflight_info = calloc(1,
1428                                             sizeof(struct inflight_mem_info));
1429                 if (!dev->inflight_info) {
1430                         VHOST_LOG_CONFIG(ERR,
1431                                 "failed to alloc dev inflight area\n");
1432                         return RTE_VHOST_MSG_RESULT_ERR;
1433                 }
1434         }
1435
1436         num_queues = msg->payload.inflight.num_queues;
1437         queue_size = msg->payload.inflight.queue_size;
1438
1439         VHOST_LOG_CONFIG(INFO, "get_inflight_fd num_queues: %u\n",
1440                 msg->payload.inflight.num_queues);
1441         VHOST_LOG_CONFIG(INFO, "get_inflight_fd queue_size: %u\n",
1442                 msg->payload.inflight.queue_size);
1443
1444         if (vq_is_packed(dev))
1445                 pervq_inflight_size = get_pervq_shm_size_packed(queue_size);
1446         else
1447                 pervq_inflight_size = get_pervq_shm_size_split(queue_size);
1448
1449         mmap_size = num_queues * pervq_inflight_size;
1450         addr = inflight_mem_alloc("vhost-inflight", mmap_size, &fd);
1451         if (!addr) {
1452                 VHOST_LOG_CONFIG(ERR,
1453                         "failed to alloc vhost inflight area\n");
1454                         msg->payload.inflight.mmap_size = 0;
1455                 return RTE_VHOST_MSG_RESULT_ERR;
1456         }
1457         memset(addr, 0, mmap_size);
1458
1459         dev->inflight_info->addr = addr;
1460         dev->inflight_info->size = msg->payload.inflight.mmap_size = mmap_size;
1461         dev->inflight_info->fd = msg->fds[0] = fd;
1462         msg->payload.inflight.mmap_offset = 0;
1463         msg->fd_num = 1;
1464
1465         if (vq_is_packed(dev)) {
1466                 for (i = 0; i < num_queues; i++) {
1467                         inflight_packed =
1468                                 (struct rte_vhost_inflight_info_packed *)addr;
1469                         inflight_packed->used_wrap_counter = 1;
1470                         inflight_packed->old_used_wrap_counter = 1;
1471                         for (j = 0; j < queue_size; j++)
1472                                 inflight_packed->desc[j].next = j + 1;
1473                         addr = (void *)((char *)addr + pervq_inflight_size);
1474                 }
1475         }
1476
1477         VHOST_LOG_CONFIG(INFO,
1478                 "send inflight mmap_size: %"PRIu64"\n",
1479                 msg->payload.inflight.mmap_size);
1480         VHOST_LOG_CONFIG(INFO,
1481                 "send inflight mmap_offset: %"PRIu64"\n",
1482                 msg->payload.inflight.mmap_offset);
1483         VHOST_LOG_CONFIG(INFO,
1484                 "send inflight fd: %d\n", msg->fds[0]);
1485
1486         return RTE_VHOST_MSG_RESULT_REPLY;
1487 }
1488
1489 static int
1490 vhost_user_set_inflight_fd(struct virtio_net **pdev, VhostUserMsg *msg,
1491                            int main_fd __rte_unused)
1492 {
1493         uint64_t mmap_size, mmap_offset;
1494         uint16_t num_queues, queue_size;
1495         struct virtio_net *dev = *pdev;
1496         uint32_t pervq_inflight_size;
1497         struct vhost_virtqueue *vq;
1498         void *addr;
1499         int fd, i;
1500
1501         fd = msg->fds[0];
1502         if (msg->size != sizeof(msg->payload.inflight) || fd < 0) {
1503                 VHOST_LOG_CONFIG(ERR,
1504                         "invalid set_inflight_fd message size is %d,fd is %d\n",
1505                         msg->size, fd);
1506                 return RTE_VHOST_MSG_RESULT_ERR;
1507         }
1508
1509         mmap_size = msg->payload.inflight.mmap_size;
1510         mmap_offset = msg->payload.inflight.mmap_offset;
1511         num_queues = msg->payload.inflight.num_queues;
1512         queue_size = msg->payload.inflight.queue_size;
1513
1514         if (vq_is_packed(dev))
1515                 pervq_inflight_size = get_pervq_shm_size_packed(queue_size);
1516         else
1517                 pervq_inflight_size = get_pervq_shm_size_split(queue_size);
1518
1519         VHOST_LOG_CONFIG(INFO,
1520                 "set_inflight_fd mmap_size: %"PRIu64"\n", mmap_size);
1521         VHOST_LOG_CONFIG(INFO,
1522                 "set_inflight_fd mmap_offset: %"PRIu64"\n", mmap_offset);
1523         VHOST_LOG_CONFIG(INFO,
1524                 "set_inflight_fd num_queues: %u\n", num_queues);
1525         VHOST_LOG_CONFIG(INFO,
1526                 "set_inflight_fd queue_size: %u\n", queue_size);
1527         VHOST_LOG_CONFIG(INFO,
1528                 "set_inflight_fd fd: %d\n", fd);
1529         VHOST_LOG_CONFIG(INFO,
1530                 "set_inflight_fd pervq_inflight_size: %d\n",
1531                 pervq_inflight_size);
1532
1533         if (!dev->inflight_info) {
1534                 dev->inflight_info = calloc(1,
1535                                             sizeof(struct inflight_mem_info));
1536                 if (dev->inflight_info == NULL) {
1537                         VHOST_LOG_CONFIG(ERR,
1538                                 "failed to alloc dev inflight area\n");
1539                         return RTE_VHOST_MSG_RESULT_ERR;
1540                 }
1541         }
1542
1543         if (dev->inflight_info->addr)
1544                 munmap(dev->inflight_info->addr, dev->inflight_info->size);
1545
1546         addr = mmap(0, mmap_size, PROT_READ | PROT_WRITE, MAP_SHARED,
1547                     fd, mmap_offset);
1548         if (addr == MAP_FAILED) {
1549                 VHOST_LOG_CONFIG(ERR, "failed to mmap share memory.\n");
1550                 return RTE_VHOST_MSG_RESULT_ERR;
1551         }
1552
1553         if (dev->inflight_info->fd)
1554                 close(dev->inflight_info->fd);
1555
1556         dev->inflight_info->fd = fd;
1557         dev->inflight_info->addr = addr;
1558         dev->inflight_info->size = mmap_size;
1559
1560         for (i = 0; i < num_queues; i++) {
1561                 vq = dev->virtqueue[i];
1562                 if (vq_is_packed(dev)) {
1563                         vq->inflight_packed = addr;
1564                         vq->inflight_packed->desc_num = queue_size;
1565                 } else {
1566                         vq->inflight_split = addr;
1567                         vq->inflight_split->desc_num = queue_size;
1568                 }
1569                 addr = (void *)((char *)addr + pervq_inflight_size);
1570         }
1571
1572         return RTE_VHOST_MSG_RESULT_OK;
1573 }
1574
1575 static int
1576 vhost_user_set_vring_call(struct virtio_net **pdev, struct VhostUserMsg *msg,
1577                         int main_fd __rte_unused)
1578 {
1579         struct virtio_net *dev = *pdev;
1580         struct vhost_vring_file file;
1581         struct vhost_virtqueue *vq;
1582         int expected_fds;
1583
1584         expected_fds = (msg->payload.u64 & VHOST_USER_VRING_NOFD_MASK) ? 0 : 1;
1585         if (validate_msg_fds(msg, expected_fds) != 0)
1586                 return RTE_VHOST_MSG_RESULT_ERR;
1587
1588         file.index = msg->payload.u64 & VHOST_USER_VRING_IDX_MASK;
1589         if (msg->payload.u64 & VHOST_USER_VRING_NOFD_MASK)
1590                 file.fd = VIRTIO_INVALID_EVENTFD;
1591         else
1592                 file.fd = msg->fds[0];
1593         VHOST_LOG_CONFIG(INFO,
1594                 "vring call idx:%d file:%d\n", file.index, file.fd);
1595
1596         vq = dev->virtqueue[file.index];
1597         if (vq->callfd >= 0)
1598                 close(vq->callfd);
1599
1600         vq->callfd = file.fd;
1601
1602         return RTE_VHOST_MSG_RESULT_OK;
1603 }
1604
1605 static int vhost_user_set_vring_err(struct virtio_net **pdev __rte_unused,
1606                         struct VhostUserMsg *msg,
1607                         int main_fd __rte_unused)
1608 {
1609         int expected_fds;
1610
1611         expected_fds = (msg->payload.u64 & VHOST_USER_VRING_NOFD_MASK) ? 0 : 1;
1612         if (validate_msg_fds(msg, expected_fds) != 0)
1613                 return RTE_VHOST_MSG_RESULT_ERR;
1614
1615         if (!(msg->payload.u64 & VHOST_USER_VRING_NOFD_MASK))
1616                 close(msg->fds[0]);
1617         VHOST_LOG_CONFIG(INFO, "not implemented\n");
1618
1619         return RTE_VHOST_MSG_RESULT_OK;
1620 }
1621
1622 static int
1623 resubmit_desc_compare(const void *a, const void *b)
1624 {
1625         const struct rte_vhost_resubmit_desc *desc0 = a;
1626         const struct rte_vhost_resubmit_desc *desc1 = b;
1627
1628         if (desc1->counter > desc0->counter)
1629                 return 1;
1630
1631         return -1;
1632 }
1633
1634 static int
1635 vhost_check_queue_inflights_split(struct virtio_net *dev,
1636                                   struct vhost_virtqueue *vq)
1637 {
1638         uint16_t i;
1639         uint16_t resubmit_num = 0, last_io, num;
1640         struct vring_used *used = vq->used;
1641         struct rte_vhost_resubmit_info *resubmit;
1642         struct rte_vhost_inflight_info_split *inflight_split;
1643
1644         if (!(dev->protocol_features &
1645             (1ULL << VHOST_USER_PROTOCOL_F_INFLIGHT_SHMFD)))
1646                 return RTE_VHOST_MSG_RESULT_OK;
1647
1648         if ((!vq->inflight_split))
1649                 return RTE_VHOST_MSG_RESULT_ERR;
1650
1651         if (!vq->inflight_split->version) {
1652                 vq->inflight_split->version = INFLIGHT_VERSION;
1653                 return RTE_VHOST_MSG_RESULT_OK;
1654         }
1655
1656         if (vq->resubmit_inflight)
1657                 return RTE_VHOST_MSG_RESULT_OK;
1658
1659         inflight_split = vq->inflight_split;
1660         vq->global_counter = 0;
1661         last_io = inflight_split->last_inflight_io;
1662
1663         if (inflight_split->used_idx != used->idx) {
1664                 inflight_split->desc[last_io].inflight = 0;
1665                 rte_smp_mb();
1666                 inflight_split->used_idx = used->idx;
1667         }
1668
1669         for (i = 0; i < inflight_split->desc_num; i++) {
1670                 if (inflight_split->desc[i].inflight == 1)
1671                         resubmit_num++;
1672         }
1673
1674         vq->last_avail_idx += resubmit_num;
1675
1676         if (resubmit_num) {
1677                 resubmit  = calloc(1, sizeof(struct rte_vhost_resubmit_info));
1678                 if (!resubmit) {
1679                         VHOST_LOG_CONFIG(ERR,
1680                                 "failed to allocate memory for resubmit info.\n");
1681                         return RTE_VHOST_MSG_RESULT_ERR;
1682                 }
1683
1684                 resubmit->resubmit_list = calloc(resubmit_num,
1685                         sizeof(struct rte_vhost_resubmit_desc));
1686                 if (!resubmit->resubmit_list) {
1687                         VHOST_LOG_CONFIG(ERR,
1688                                 "failed to allocate memory for inflight desc.\n");
1689                         free(resubmit);
1690                         return RTE_VHOST_MSG_RESULT_ERR;
1691                 }
1692
1693                 num = 0;
1694                 for (i = 0; i < vq->inflight_split->desc_num; i++) {
1695                         if (vq->inflight_split->desc[i].inflight == 1) {
1696                                 resubmit->resubmit_list[num].index = i;
1697                                 resubmit->resubmit_list[num].counter =
1698                                         inflight_split->desc[i].counter;
1699                                 num++;
1700                         }
1701                 }
1702                 resubmit->resubmit_num = num;
1703
1704                 if (resubmit->resubmit_num > 1)
1705                         qsort(resubmit->resubmit_list, resubmit->resubmit_num,
1706                               sizeof(struct rte_vhost_resubmit_desc),
1707                               resubmit_desc_compare);
1708
1709                 vq->global_counter = resubmit->resubmit_list[0].counter + 1;
1710                 vq->resubmit_inflight = resubmit;
1711         }
1712
1713         return RTE_VHOST_MSG_RESULT_OK;
1714 }
1715
1716 static int
1717 vhost_check_queue_inflights_packed(struct virtio_net *dev,
1718                                    struct vhost_virtqueue *vq)
1719 {
1720         uint16_t i;
1721         uint16_t resubmit_num = 0, old_used_idx, num;
1722         struct rte_vhost_resubmit_info *resubmit;
1723         struct rte_vhost_inflight_info_packed *inflight_packed;
1724
1725         if (!(dev->protocol_features &
1726             (1ULL << VHOST_USER_PROTOCOL_F_INFLIGHT_SHMFD)))
1727                 return RTE_VHOST_MSG_RESULT_OK;
1728
1729         if ((!vq->inflight_packed))
1730                 return RTE_VHOST_MSG_RESULT_ERR;
1731
1732         if (!vq->inflight_packed->version) {
1733                 vq->inflight_packed->version = INFLIGHT_VERSION;
1734                 return RTE_VHOST_MSG_RESULT_OK;
1735         }
1736
1737         if (vq->resubmit_inflight)
1738                 return RTE_VHOST_MSG_RESULT_OK;
1739
1740         inflight_packed = vq->inflight_packed;
1741         vq->global_counter = 0;
1742         old_used_idx = inflight_packed->old_used_idx;
1743
1744         if (inflight_packed->used_idx != old_used_idx) {
1745                 if (inflight_packed->desc[old_used_idx].inflight == 0) {
1746                         inflight_packed->old_used_idx =
1747                                 inflight_packed->used_idx;
1748                         inflight_packed->old_used_wrap_counter =
1749                                 inflight_packed->used_wrap_counter;
1750                         inflight_packed->old_free_head =
1751                                 inflight_packed->free_head;
1752                 } else {
1753                         inflight_packed->used_idx =
1754                                 inflight_packed->old_used_idx;
1755                         inflight_packed->used_wrap_counter =
1756                                 inflight_packed->old_used_wrap_counter;
1757                         inflight_packed->free_head =
1758                                 inflight_packed->old_free_head;
1759                 }
1760         }
1761
1762         for (i = 0; i < inflight_packed->desc_num; i++) {
1763                 if (inflight_packed->desc[i].inflight == 1)
1764                         resubmit_num++;
1765         }
1766
1767         if (resubmit_num) {
1768                 resubmit = calloc(1, sizeof(struct rte_vhost_resubmit_info));
1769                 if (resubmit == NULL) {
1770                         VHOST_LOG_CONFIG(ERR,
1771                                 "failed to allocate memory for resubmit info.\n");
1772                         return RTE_VHOST_MSG_RESULT_ERR;
1773                 }
1774
1775                 resubmit->resubmit_list = calloc(resubmit_num,
1776                         sizeof(struct rte_vhost_resubmit_desc));
1777                 if (resubmit->resubmit_list == NULL) {
1778                         VHOST_LOG_CONFIG(ERR,
1779                                 "failed to allocate memory for resubmit desc.\n");
1780                         free(resubmit);
1781                         return RTE_VHOST_MSG_RESULT_ERR;
1782                 }
1783
1784                 num = 0;
1785                 for (i = 0; i < inflight_packed->desc_num; i++) {
1786                         if (vq->inflight_packed->desc[i].inflight == 1) {
1787                                 resubmit->resubmit_list[num].index = i;
1788                                 resubmit->resubmit_list[num].counter =
1789                                         inflight_packed->desc[i].counter;
1790                                 num++;
1791                         }
1792                 }
1793                 resubmit->resubmit_num = num;
1794
1795                 if (resubmit->resubmit_num > 1)
1796                         qsort(resubmit->resubmit_list, resubmit->resubmit_num,
1797                               sizeof(struct rte_vhost_resubmit_desc),
1798                               resubmit_desc_compare);
1799
1800                 vq->global_counter = resubmit->resubmit_list[0].counter + 1;
1801                 vq->resubmit_inflight = resubmit;
1802         }
1803
1804         return RTE_VHOST_MSG_RESULT_OK;
1805 }
1806
1807 static int
1808 vhost_user_set_vring_kick(struct virtio_net **pdev, struct VhostUserMsg *msg,
1809                         int main_fd __rte_unused)
1810 {
1811         struct virtio_net *dev = *pdev;
1812         struct vhost_vring_file file;
1813         struct vhost_virtqueue *vq;
1814         int expected_fds;
1815
1816         expected_fds = (msg->payload.u64 & VHOST_USER_VRING_NOFD_MASK) ? 0 : 1;
1817         if (validate_msg_fds(msg, expected_fds) != 0)
1818                 return RTE_VHOST_MSG_RESULT_ERR;
1819
1820         file.index = msg->payload.u64 & VHOST_USER_VRING_IDX_MASK;
1821         if (msg->payload.u64 & VHOST_USER_VRING_NOFD_MASK)
1822                 file.fd = VIRTIO_INVALID_EVENTFD;
1823         else
1824                 file.fd = msg->fds[0];
1825         VHOST_LOG_CONFIG(INFO,
1826                 "vring kick idx:%d file:%d\n", file.index, file.fd);
1827
1828         /* Interpret ring addresses only when ring is started. */
1829         dev = translate_ring_addresses(dev, file.index);
1830         if (!dev)
1831                 return RTE_VHOST_MSG_RESULT_ERR;
1832
1833         *pdev = dev;
1834
1835         vq = dev->virtqueue[file.index];
1836
1837         /*
1838          * When VHOST_USER_F_PROTOCOL_FEATURES is not negotiated,
1839          * the ring starts already enabled. Otherwise, it is enabled via
1840          * the SET_VRING_ENABLE message.
1841          */
1842         if (!(dev->features & (1ULL << VHOST_USER_F_PROTOCOL_FEATURES))) {
1843                 vq->enabled = 1;
1844                 if (dev->notify_ops->vring_state_changed)
1845                         dev->notify_ops->vring_state_changed(
1846                                 dev->vid, file.index, 1);
1847         }
1848
1849         if (vq->kickfd >= 0)
1850                 close(vq->kickfd);
1851         vq->kickfd = file.fd;
1852
1853         if (vq_is_packed(dev)) {
1854                 if (vhost_check_queue_inflights_packed(dev, vq)) {
1855                         VHOST_LOG_CONFIG(ERR,
1856                                 "failed to inflights for vq: %d\n", file.index);
1857                         return RTE_VHOST_MSG_RESULT_ERR;
1858                 }
1859         } else {
1860                 if (vhost_check_queue_inflights_split(dev, vq)) {
1861                         VHOST_LOG_CONFIG(ERR,
1862                                 "failed to inflights for vq: %d\n", file.index);
1863                         return RTE_VHOST_MSG_RESULT_ERR;
1864                 }
1865         }
1866
1867         return RTE_VHOST_MSG_RESULT_OK;
1868 }
1869
1870 static void
1871 free_zmbufs(struct vhost_virtqueue *vq)
1872 {
1873         drain_zmbuf_list(vq);
1874
1875         rte_free(vq->zmbufs);
1876 }
1877
1878 /*
1879  * when virtio is stopped, qemu will send us the GET_VRING_BASE message.
1880  */
1881 static int
1882 vhost_user_get_vring_base(struct virtio_net **pdev,
1883                         struct VhostUserMsg *msg,
1884                         int main_fd __rte_unused)
1885 {
1886         struct virtio_net *dev = *pdev;
1887         struct vhost_virtqueue *vq = dev->virtqueue[msg->payload.state.index];
1888         uint64_t val;
1889
1890         if (validate_msg_fds(msg, 0) != 0)
1891                 return RTE_VHOST_MSG_RESULT_ERR;
1892
1893         /* We have to stop the queue (virtio) if it is running. */
1894         vhost_destroy_device_notify(dev);
1895
1896         dev->flags &= ~VIRTIO_DEV_READY;
1897         dev->flags &= ~VIRTIO_DEV_VDPA_CONFIGURED;
1898
1899         /* Here we are safe to get the indexes */
1900         if (vq_is_packed(dev)) {
1901                 /*
1902                  * Bit[0:14]: avail index
1903                  * Bit[15]: avail wrap counter
1904                  */
1905                 val = vq->last_avail_idx & 0x7fff;
1906                 val |= vq->avail_wrap_counter << 15;
1907                 msg->payload.state.num = val;
1908         } else {
1909                 msg->payload.state.num = vq->last_avail_idx;
1910         }
1911
1912         VHOST_LOG_CONFIG(INFO,
1913                 "vring base idx:%d file:%d\n", msg->payload.state.index,
1914                 msg->payload.state.num);
1915         /*
1916          * Based on current qemu vhost-user implementation, this message is
1917          * sent and only sent in vhost_vring_stop.
1918          * TODO: cleanup the vring, it isn't usable since here.
1919          */
1920         if (vq->kickfd >= 0)
1921                 close(vq->kickfd);
1922
1923         vq->kickfd = VIRTIO_UNINITIALIZED_EVENTFD;
1924
1925         if (vq->callfd >= 0)
1926                 close(vq->callfd);
1927
1928         vq->callfd = VIRTIO_UNINITIALIZED_EVENTFD;
1929
1930         vq->signalled_used_valid = false;
1931
1932         if (dev->dequeue_zero_copy)
1933                 free_zmbufs(vq);
1934         if (vq_is_packed(dev)) {
1935                 rte_free(vq->shadow_used_packed);
1936                 vq->shadow_used_packed = NULL;
1937         } else {
1938                 rte_free(vq->shadow_used_split);
1939                 vq->shadow_used_split = NULL;
1940         }
1941
1942         rte_free(vq->batch_copy_elems);
1943         vq->batch_copy_elems = NULL;
1944
1945         msg->size = sizeof(msg->payload.state);
1946         msg->fd_num = 0;
1947
1948         vring_invalidate(dev, vq);
1949
1950         return RTE_VHOST_MSG_RESULT_REPLY;
1951 }
1952
1953 /*
1954  * when virtio queues are ready to work, qemu will send us to
1955  * enable the virtio queue pair.
1956  */
1957 static int
1958 vhost_user_set_vring_enable(struct virtio_net **pdev,
1959                         struct VhostUserMsg *msg,
1960                         int main_fd __rte_unused)
1961 {
1962         struct virtio_net *dev = *pdev;
1963         int enable = (int)msg->payload.state.num;
1964         int index = (int)msg->payload.state.index;
1965         struct rte_vdpa_device *vdpa_dev;
1966         int did = -1;
1967
1968         if (validate_msg_fds(msg, 0) != 0)
1969                 return RTE_VHOST_MSG_RESULT_ERR;
1970
1971         VHOST_LOG_CONFIG(INFO,
1972                 "set queue enable: %d to qp idx: %d\n",
1973                 enable, index);
1974
1975         did = dev->vdpa_dev_id;
1976         vdpa_dev = rte_vdpa_get_device(did);
1977         if (vdpa_dev && vdpa_dev->ops->set_vring_state)
1978                 vdpa_dev->ops->set_vring_state(dev->vid, index, enable);
1979
1980         if (dev->notify_ops->vring_state_changed)
1981                 dev->notify_ops->vring_state_changed(dev->vid,
1982                                 index, enable);
1983
1984         /* On disable, rings have to be stopped being processed. */
1985         if (!enable && dev->dequeue_zero_copy)
1986                 drain_zmbuf_list(dev->virtqueue[index]);
1987
1988         dev->virtqueue[index]->enabled = enable;
1989
1990         return RTE_VHOST_MSG_RESULT_OK;
1991 }
1992
1993 static int
1994 vhost_user_get_protocol_features(struct virtio_net **pdev,
1995                         struct VhostUserMsg *msg,
1996                         int main_fd __rte_unused)
1997 {
1998         struct virtio_net *dev = *pdev;
1999         uint64_t features, protocol_features;
2000
2001         if (validate_msg_fds(msg, 0) != 0)
2002                 return RTE_VHOST_MSG_RESULT_ERR;
2003
2004         rte_vhost_driver_get_features(dev->ifname, &features);
2005         rte_vhost_driver_get_protocol_features(dev->ifname, &protocol_features);
2006
2007         /*
2008          * REPLY_ACK protocol feature is only mandatory for now
2009          * for IOMMU feature. If IOMMU is explicitly disabled by the
2010          * application, disable also REPLY_ACK feature for older buggy
2011          * Qemu versions (from v2.7.0 to v2.9.0).
2012          */
2013         if (!(features & (1ULL << VIRTIO_F_IOMMU_PLATFORM)))
2014                 protocol_features &= ~(1ULL << VHOST_USER_PROTOCOL_F_REPLY_ACK);
2015
2016         msg->payload.u64 = protocol_features;
2017         msg->size = sizeof(msg->payload.u64);
2018         msg->fd_num = 0;
2019
2020         return RTE_VHOST_MSG_RESULT_REPLY;
2021 }
2022
2023 static int
2024 vhost_user_set_protocol_features(struct virtio_net **pdev,
2025                         struct VhostUserMsg *msg,
2026                         int main_fd __rte_unused)
2027 {
2028         struct virtio_net *dev = *pdev;
2029         uint64_t protocol_features = msg->payload.u64;
2030         uint64_t slave_protocol_features = 0;
2031
2032         if (validate_msg_fds(msg, 0) != 0)
2033                 return RTE_VHOST_MSG_RESULT_ERR;
2034
2035         rte_vhost_driver_get_protocol_features(dev->ifname,
2036                         &slave_protocol_features);
2037         if (protocol_features & ~slave_protocol_features) {
2038                 VHOST_LOG_CONFIG(ERR,
2039                         "(%d) received invalid protocol features.\n",
2040                         dev->vid);
2041                 return RTE_VHOST_MSG_RESULT_ERR;
2042         }
2043
2044         dev->protocol_features = protocol_features;
2045         VHOST_LOG_CONFIG(INFO,
2046                 "negotiated Vhost-user protocol features: 0x%" PRIx64 "\n",
2047                 dev->protocol_features);
2048
2049         return RTE_VHOST_MSG_RESULT_OK;
2050 }
2051
2052 static int
2053 vhost_user_set_log_base(struct virtio_net **pdev, struct VhostUserMsg *msg,
2054                         int main_fd __rte_unused)
2055 {
2056         struct virtio_net *dev = *pdev;
2057         int fd = msg->fds[0];
2058         uint64_t size, off;
2059         void *addr;
2060
2061         if (validate_msg_fds(msg, 1) != 0)
2062                 return RTE_VHOST_MSG_RESULT_ERR;
2063
2064         if (fd < 0) {
2065                 VHOST_LOG_CONFIG(ERR, "invalid log fd: %d\n", fd);
2066                 return RTE_VHOST_MSG_RESULT_ERR;
2067         }
2068
2069         if (msg->size != sizeof(VhostUserLog)) {
2070                 VHOST_LOG_CONFIG(ERR,
2071                         "invalid log base msg size: %"PRId32" != %d\n",
2072                         msg->size, (int)sizeof(VhostUserLog));
2073                 return RTE_VHOST_MSG_RESULT_ERR;
2074         }
2075
2076         size = msg->payload.log.mmap_size;
2077         off  = msg->payload.log.mmap_offset;
2078
2079         /* Don't allow mmap_offset to point outside the mmap region */
2080         if (off > size) {
2081                 VHOST_LOG_CONFIG(ERR,
2082                         "log offset %#"PRIx64" exceeds log size %#"PRIx64"\n",
2083                         off, size);
2084                 return RTE_VHOST_MSG_RESULT_ERR;
2085         }
2086
2087         VHOST_LOG_CONFIG(INFO,
2088                 "log mmap size: %"PRId64", offset: %"PRId64"\n",
2089                 size, off);
2090
2091         /*
2092          * mmap from 0 to workaround a hugepage mmap bug: mmap will
2093          * fail when offset is not page size aligned.
2094          */
2095         addr = mmap(0, size + off, PROT_READ | PROT_WRITE, MAP_SHARED, fd, 0);
2096         close(fd);
2097         if (addr == MAP_FAILED) {
2098                 VHOST_LOG_CONFIG(ERR, "mmap log base failed!\n");
2099                 return RTE_VHOST_MSG_RESULT_ERR;
2100         }
2101
2102         /*
2103          * Free previously mapped log memory on occasionally
2104          * multiple VHOST_USER_SET_LOG_BASE.
2105          */
2106         if (dev->log_addr) {
2107                 munmap((void *)(uintptr_t)dev->log_addr, dev->log_size);
2108         }
2109         dev->log_addr = (uint64_t)(uintptr_t)addr;
2110         dev->log_base = dev->log_addr + off;
2111         dev->log_size = size;
2112
2113         /*
2114          * The spec is not clear about it (yet), but QEMU doesn't expect
2115          * any payload in the reply.
2116          */
2117         msg->size = 0;
2118         msg->fd_num = 0;
2119
2120         return RTE_VHOST_MSG_RESULT_REPLY;
2121 }
2122
2123 static int vhost_user_set_log_fd(struct virtio_net **pdev __rte_unused,
2124                         struct VhostUserMsg *msg,
2125                         int main_fd __rte_unused)
2126 {
2127         if (validate_msg_fds(msg, 1) != 0)
2128                 return RTE_VHOST_MSG_RESULT_ERR;
2129
2130         close(msg->fds[0]);
2131         VHOST_LOG_CONFIG(INFO, "not implemented.\n");
2132
2133         return RTE_VHOST_MSG_RESULT_OK;
2134 }
2135
2136 /*
2137  * An rarp packet is constructed and broadcasted to notify switches about
2138  * the new location of the migrated VM, so that packets from outside will
2139  * not be lost after migration.
2140  *
2141  * However, we don't actually "send" a rarp packet here, instead, we set
2142  * a flag 'broadcast_rarp' to let rte_vhost_dequeue_burst() inject it.
2143  */
2144 static int
2145 vhost_user_send_rarp(struct virtio_net **pdev, struct VhostUserMsg *msg,
2146                         int main_fd __rte_unused)
2147 {
2148         struct virtio_net *dev = *pdev;
2149         uint8_t *mac = (uint8_t *)&msg->payload.u64;
2150         struct rte_vdpa_device *vdpa_dev;
2151         int did = -1;
2152
2153         if (validate_msg_fds(msg, 0) != 0)
2154                 return RTE_VHOST_MSG_RESULT_ERR;
2155
2156         VHOST_LOG_CONFIG(DEBUG,
2157                 ":: mac: %02x:%02x:%02x:%02x:%02x:%02x\n",
2158                 mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]);
2159         memcpy(dev->mac.addr_bytes, mac, 6);
2160
2161         /*
2162          * Set the flag to inject a RARP broadcast packet at
2163          * rte_vhost_dequeue_burst().
2164          *
2165          * rte_smp_wmb() is for making sure the mac is copied
2166          * before the flag is set.
2167          */
2168         rte_smp_wmb();
2169         rte_atomic16_set(&dev->broadcast_rarp, 1);
2170         did = dev->vdpa_dev_id;
2171         vdpa_dev = rte_vdpa_get_device(did);
2172         if (vdpa_dev && vdpa_dev->ops->migration_done)
2173                 vdpa_dev->ops->migration_done(dev->vid);
2174
2175         return RTE_VHOST_MSG_RESULT_OK;
2176 }
2177
2178 static int
2179 vhost_user_net_set_mtu(struct virtio_net **pdev, struct VhostUserMsg *msg,
2180                         int main_fd __rte_unused)
2181 {
2182         struct virtio_net *dev = *pdev;
2183
2184         if (validate_msg_fds(msg, 0) != 0)
2185                 return RTE_VHOST_MSG_RESULT_ERR;
2186
2187         if (msg->payload.u64 < VIRTIO_MIN_MTU ||
2188                         msg->payload.u64 > VIRTIO_MAX_MTU) {
2189                 VHOST_LOG_CONFIG(ERR, "Invalid MTU size (%"PRIu64")\n",
2190                                 msg->payload.u64);
2191
2192                 return RTE_VHOST_MSG_RESULT_ERR;
2193         }
2194
2195         dev->mtu = msg->payload.u64;
2196
2197         return RTE_VHOST_MSG_RESULT_OK;
2198 }
2199
2200 static int
2201 vhost_user_set_req_fd(struct virtio_net **pdev, struct VhostUserMsg *msg,
2202                         int main_fd __rte_unused)
2203 {
2204         struct virtio_net *dev = *pdev;
2205         int fd = msg->fds[0];
2206
2207         if (validate_msg_fds(msg, 1) != 0)
2208                 return RTE_VHOST_MSG_RESULT_ERR;
2209
2210         if (fd < 0) {
2211                 VHOST_LOG_CONFIG(ERR,
2212                                 "Invalid file descriptor for slave channel (%d)\n",
2213                                 fd);
2214                 return RTE_VHOST_MSG_RESULT_ERR;
2215         }
2216
2217         if (dev->slave_req_fd >= 0)
2218                 close(dev->slave_req_fd);
2219
2220         dev->slave_req_fd = fd;
2221
2222         return RTE_VHOST_MSG_RESULT_OK;
2223 }
2224
2225 static int
2226 is_vring_iotlb_split(struct vhost_virtqueue *vq, struct vhost_iotlb_msg *imsg)
2227 {
2228         struct vhost_vring_addr *ra;
2229         uint64_t start, end, len;
2230
2231         start = imsg->iova;
2232         end = start + imsg->size;
2233
2234         ra = &vq->ring_addrs;
2235         len = sizeof(struct vring_desc) * vq->size;
2236         if (ra->desc_user_addr < end && (ra->desc_user_addr + len) > start)
2237                 return 1;
2238
2239         len = sizeof(struct vring_avail) + sizeof(uint16_t) * vq->size;
2240         if (ra->avail_user_addr < end && (ra->avail_user_addr + len) > start)
2241                 return 1;
2242
2243         len = sizeof(struct vring_used) +
2244                sizeof(struct vring_used_elem) * vq->size;
2245         if (ra->used_user_addr < end && (ra->used_user_addr + len) > start)
2246                 return 1;
2247
2248         return 0;
2249 }
2250
2251 static int
2252 is_vring_iotlb_packed(struct vhost_virtqueue *vq, struct vhost_iotlb_msg *imsg)
2253 {
2254         struct vhost_vring_addr *ra;
2255         uint64_t start, end, len;
2256
2257         start = imsg->iova;
2258         end = start + imsg->size;
2259
2260         ra = &vq->ring_addrs;
2261         len = sizeof(struct vring_packed_desc) * vq->size;
2262         if (ra->desc_user_addr < end && (ra->desc_user_addr + len) > start)
2263                 return 1;
2264
2265         len = sizeof(struct vring_packed_desc_event);
2266         if (ra->avail_user_addr < end && (ra->avail_user_addr + len) > start)
2267                 return 1;
2268
2269         len = sizeof(struct vring_packed_desc_event);
2270         if (ra->used_user_addr < end && (ra->used_user_addr + len) > start)
2271                 return 1;
2272
2273         return 0;
2274 }
2275
2276 static int is_vring_iotlb(struct virtio_net *dev,
2277                           struct vhost_virtqueue *vq,
2278                           struct vhost_iotlb_msg *imsg)
2279 {
2280         if (vq_is_packed(dev))
2281                 return is_vring_iotlb_packed(vq, imsg);
2282         else
2283                 return is_vring_iotlb_split(vq, imsg);
2284 }
2285
2286 static int
2287 vhost_user_iotlb_msg(struct virtio_net **pdev, struct VhostUserMsg *msg,
2288                         int main_fd __rte_unused)
2289 {
2290         struct virtio_net *dev = *pdev;
2291         struct vhost_iotlb_msg *imsg = &msg->payload.iotlb;
2292         uint16_t i;
2293         uint64_t vva, len;
2294
2295         if (validate_msg_fds(msg, 0) != 0)
2296                 return RTE_VHOST_MSG_RESULT_ERR;
2297
2298         switch (imsg->type) {
2299         case VHOST_IOTLB_UPDATE:
2300                 len = imsg->size;
2301                 vva = qva_to_vva(dev, imsg->uaddr, &len);
2302                 if (!vva)
2303                         return RTE_VHOST_MSG_RESULT_ERR;
2304
2305                 for (i = 0; i < dev->nr_vring; i++) {
2306                         struct vhost_virtqueue *vq = dev->virtqueue[i];
2307
2308                         vhost_user_iotlb_cache_insert(vq, imsg->iova, vva,
2309                                         len, imsg->perm);
2310
2311                         if (is_vring_iotlb(dev, vq, imsg))
2312                                 *pdev = dev = translate_ring_addresses(dev, i);
2313                 }
2314                 break;
2315         case VHOST_IOTLB_INVALIDATE:
2316                 for (i = 0; i < dev->nr_vring; i++) {
2317                         struct vhost_virtqueue *vq = dev->virtqueue[i];
2318
2319                         vhost_user_iotlb_cache_remove(vq, imsg->iova,
2320                                         imsg->size);
2321
2322                         if (is_vring_iotlb(dev, vq, imsg))
2323                                 vring_invalidate(dev, vq);
2324                 }
2325                 break;
2326         default:
2327                 VHOST_LOG_CONFIG(ERR, "Invalid IOTLB message type (%d)\n",
2328                                 imsg->type);
2329                 return RTE_VHOST_MSG_RESULT_ERR;
2330         }
2331
2332         return RTE_VHOST_MSG_RESULT_OK;
2333 }
2334
2335 static int
2336 vhost_user_set_postcopy_advise(struct virtio_net **pdev,
2337                         struct VhostUserMsg *msg,
2338                         int main_fd __rte_unused)
2339 {
2340         struct virtio_net *dev = *pdev;
2341 #ifdef RTE_LIBRTE_VHOST_POSTCOPY
2342         struct uffdio_api api_struct;
2343
2344         if (validate_msg_fds(msg, 0) != 0)
2345                 return RTE_VHOST_MSG_RESULT_ERR;
2346
2347         dev->postcopy_ufd = syscall(__NR_userfaultfd, O_CLOEXEC | O_NONBLOCK);
2348
2349         if (dev->postcopy_ufd == -1) {
2350                 VHOST_LOG_CONFIG(ERR, "Userfaultfd not available: %s\n",
2351                         strerror(errno));
2352                 return RTE_VHOST_MSG_RESULT_ERR;
2353         }
2354         api_struct.api = UFFD_API;
2355         api_struct.features = 0;
2356         if (ioctl(dev->postcopy_ufd, UFFDIO_API, &api_struct)) {
2357                 VHOST_LOG_CONFIG(ERR, "UFFDIO_API ioctl failure: %s\n",
2358                         strerror(errno));
2359                 close(dev->postcopy_ufd);
2360                 dev->postcopy_ufd = -1;
2361                 return RTE_VHOST_MSG_RESULT_ERR;
2362         }
2363         msg->fds[0] = dev->postcopy_ufd;
2364         msg->fd_num = 1;
2365
2366         return RTE_VHOST_MSG_RESULT_REPLY;
2367 #else
2368         dev->postcopy_ufd = -1;
2369         msg->fd_num = 0;
2370
2371         return RTE_VHOST_MSG_RESULT_ERR;
2372 #endif
2373 }
2374
2375 static int
2376 vhost_user_set_postcopy_listen(struct virtio_net **pdev,
2377                         struct VhostUserMsg *msg __rte_unused,
2378                         int main_fd __rte_unused)
2379 {
2380         struct virtio_net *dev = *pdev;
2381
2382         if (validate_msg_fds(msg, 0) != 0)
2383                 return RTE_VHOST_MSG_RESULT_ERR;
2384
2385         if (dev->mem && dev->mem->nregions) {
2386                 VHOST_LOG_CONFIG(ERR,
2387                         "Regions already registered at postcopy-listen\n");
2388                 return RTE_VHOST_MSG_RESULT_ERR;
2389         }
2390         dev->postcopy_listening = 1;
2391
2392         return RTE_VHOST_MSG_RESULT_OK;
2393 }
2394
2395 static int
2396 vhost_user_postcopy_end(struct virtio_net **pdev, struct VhostUserMsg *msg,
2397                         int main_fd __rte_unused)
2398 {
2399         struct virtio_net *dev = *pdev;
2400
2401         if (validate_msg_fds(msg, 0) != 0)
2402                 return RTE_VHOST_MSG_RESULT_ERR;
2403
2404         dev->postcopy_listening = 0;
2405         if (dev->postcopy_ufd >= 0) {
2406                 close(dev->postcopy_ufd);
2407                 dev->postcopy_ufd = -1;
2408         }
2409
2410         msg->payload.u64 = 0;
2411         msg->size = sizeof(msg->payload.u64);
2412         msg->fd_num = 0;
2413
2414         return RTE_VHOST_MSG_RESULT_REPLY;
2415 }
2416
2417 typedef int (*vhost_message_handler_t)(struct virtio_net **pdev,
2418                                         struct VhostUserMsg *msg,
2419                                         int main_fd);
2420 static vhost_message_handler_t vhost_message_handlers[VHOST_USER_MAX] = {
2421         [VHOST_USER_NONE] = NULL,
2422         [VHOST_USER_GET_FEATURES] = vhost_user_get_features,
2423         [VHOST_USER_SET_FEATURES] = vhost_user_set_features,
2424         [VHOST_USER_SET_OWNER] = vhost_user_set_owner,
2425         [VHOST_USER_RESET_OWNER] = vhost_user_reset_owner,
2426         [VHOST_USER_SET_MEM_TABLE] = vhost_user_set_mem_table,
2427         [VHOST_USER_SET_LOG_BASE] = vhost_user_set_log_base,
2428         [VHOST_USER_SET_LOG_FD] = vhost_user_set_log_fd,
2429         [VHOST_USER_SET_VRING_NUM] = vhost_user_set_vring_num,
2430         [VHOST_USER_SET_VRING_ADDR] = vhost_user_set_vring_addr,
2431         [VHOST_USER_SET_VRING_BASE] = vhost_user_set_vring_base,
2432         [VHOST_USER_GET_VRING_BASE] = vhost_user_get_vring_base,
2433         [VHOST_USER_SET_VRING_KICK] = vhost_user_set_vring_kick,
2434         [VHOST_USER_SET_VRING_CALL] = vhost_user_set_vring_call,
2435         [VHOST_USER_SET_VRING_ERR] = vhost_user_set_vring_err,
2436         [VHOST_USER_GET_PROTOCOL_FEATURES] = vhost_user_get_protocol_features,
2437         [VHOST_USER_SET_PROTOCOL_FEATURES] = vhost_user_set_protocol_features,
2438         [VHOST_USER_GET_QUEUE_NUM] = vhost_user_get_queue_num,
2439         [VHOST_USER_SET_VRING_ENABLE] = vhost_user_set_vring_enable,
2440         [VHOST_USER_SEND_RARP] = vhost_user_send_rarp,
2441         [VHOST_USER_NET_SET_MTU] = vhost_user_net_set_mtu,
2442         [VHOST_USER_SET_SLAVE_REQ_FD] = vhost_user_set_req_fd,
2443         [VHOST_USER_IOTLB_MSG] = vhost_user_iotlb_msg,
2444         [VHOST_USER_POSTCOPY_ADVISE] = vhost_user_set_postcopy_advise,
2445         [VHOST_USER_POSTCOPY_LISTEN] = vhost_user_set_postcopy_listen,
2446         [VHOST_USER_POSTCOPY_END] = vhost_user_postcopy_end,
2447         [VHOST_USER_GET_INFLIGHT_FD] = vhost_user_get_inflight_fd,
2448         [VHOST_USER_SET_INFLIGHT_FD] = vhost_user_set_inflight_fd,
2449 };
2450
2451 /* return bytes# of read on success or negative val on failure. */
2452 static int
2453 read_vhost_message(int sockfd, struct VhostUserMsg *msg)
2454 {
2455         int ret;
2456
2457         ret = read_fd_message(sockfd, (char *)msg, VHOST_USER_HDR_SIZE,
2458                 msg->fds, VHOST_MEMORY_MAX_NREGIONS, &msg->fd_num);
2459         if (ret <= 0)
2460                 return ret;
2461
2462         if (msg->size) {
2463                 if (msg->size > sizeof(msg->payload)) {
2464                         VHOST_LOG_CONFIG(ERR,
2465                                 "invalid msg size: %d\n", msg->size);
2466                         return -1;
2467                 }
2468                 ret = read(sockfd, &msg->payload, msg->size);
2469                 if (ret <= 0)
2470                         return ret;
2471                 if (ret != (int)msg->size) {
2472                         VHOST_LOG_CONFIG(ERR,
2473                                 "read control message failed\n");
2474                         return -1;
2475                 }
2476         }
2477
2478         return ret;
2479 }
2480
2481 static int
2482 send_vhost_message(int sockfd, struct VhostUserMsg *msg)
2483 {
2484         if (!msg)
2485                 return 0;
2486
2487         return send_fd_message(sockfd, (char *)msg,
2488                 VHOST_USER_HDR_SIZE + msg->size, msg->fds, msg->fd_num);
2489 }
2490
2491 static int
2492 send_vhost_reply(int sockfd, struct VhostUserMsg *msg)
2493 {
2494         if (!msg)
2495                 return 0;
2496
2497         msg->flags &= ~VHOST_USER_VERSION_MASK;
2498         msg->flags &= ~VHOST_USER_NEED_REPLY;
2499         msg->flags |= VHOST_USER_VERSION;
2500         msg->flags |= VHOST_USER_REPLY_MASK;
2501
2502         return send_vhost_message(sockfd, msg);
2503 }
2504
2505 static int
2506 send_vhost_slave_message(struct virtio_net *dev, struct VhostUserMsg *msg)
2507 {
2508         int ret;
2509
2510         if (msg->flags & VHOST_USER_NEED_REPLY)
2511                 rte_spinlock_lock(&dev->slave_req_lock);
2512
2513         ret = send_vhost_message(dev->slave_req_fd, msg);
2514         if (ret < 0 && (msg->flags & VHOST_USER_NEED_REPLY))
2515                 rte_spinlock_unlock(&dev->slave_req_lock);
2516
2517         return ret;
2518 }
2519
2520 /*
2521  * Allocate a queue pair if it hasn't been allocated yet
2522  */
2523 static int
2524 vhost_user_check_and_alloc_queue_pair(struct virtio_net *dev,
2525                         struct VhostUserMsg *msg)
2526 {
2527         uint16_t vring_idx;
2528
2529         switch (msg->request.master) {
2530         case VHOST_USER_SET_VRING_KICK:
2531         case VHOST_USER_SET_VRING_CALL:
2532         case VHOST_USER_SET_VRING_ERR:
2533                 vring_idx = msg->payload.u64 & VHOST_USER_VRING_IDX_MASK;
2534                 break;
2535         case VHOST_USER_SET_VRING_NUM:
2536         case VHOST_USER_SET_VRING_BASE:
2537         case VHOST_USER_SET_VRING_ENABLE:
2538                 vring_idx = msg->payload.state.index;
2539                 break;
2540         case VHOST_USER_SET_VRING_ADDR:
2541                 vring_idx = msg->payload.addr.index;
2542                 break;
2543         default:
2544                 return 0;
2545         }
2546
2547         if (vring_idx >= VHOST_MAX_VRING) {
2548                 VHOST_LOG_CONFIG(ERR,
2549                         "invalid vring index: %u\n", vring_idx);
2550                 return -1;
2551         }
2552
2553         if (dev->virtqueue[vring_idx])
2554                 return 0;
2555
2556         return alloc_vring_queue(dev, vring_idx);
2557 }
2558
2559 static void
2560 vhost_user_lock_all_queue_pairs(struct virtio_net *dev)
2561 {
2562         unsigned int i = 0;
2563         unsigned int vq_num = 0;
2564
2565         while (vq_num < dev->nr_vring) {
2566                 struct vhost_virtqueue *vq = dev->virtqueue[i];
2567
2568                 if (vq) {
2569                         rte_spinlock_lock(&vq->access_lock);
2570                         vq_num++;
2571                 }
2572                 i++;
2573         }
2574 }
2575
2576 static void
2577 vhost_user_unlock_all_queue_pairs(struct virtio_net *dev)
2578 {
2579         unsigned int i = 0;
2580         unsigned int vq_num = 0;
2581
2582         while (vq_num < dev->nr_vring) {
2583                 struct vhost_virtqueue *vq = dev->virtqueue[i];
2584
2585                 if (vq) {
2586                         rte_spinlock_unlock(&vq->access_lock);
2587                         vq_num++;
2588                 }
2589                 i++;
2590         }
2591 }
2592
2593 int
2594 vhost_user_msg_handler(int vid, int fd)
2595 {
2596         struct virtio_net *dev;
2597         struct VhostUserMsg msg;
2598         struct rte_vdpa_device *vdpa_dev;
2599         int did = -1;
2600         int ret;
2601         int unlock_required = 0;
2602         bool handled;
2603         int request;
2604
2605         dev = get_device(vid);
2606         if (dev == NULL)
2607                 return -1;
2608
2609         if (!dev->notify_ops) {
2610                 dev->notify_ops = vhost_driver_callback_get(dev->ifname);
2611                 if (!dev->notify_ops) {
2612                         VHOST_LOG_CONFIG(ERR,
2613                                 "failed to get callback ops for driver %s\n",
2614                                 dev->ifname);
2615                         return -1;
2616                 }
2617         }
2618
2619         ret = read_vhost_message(fd, &msg);
2620         if (ret <= 0) {
2621                 if (ret < 0)
2622                         VHOST_LOG_CONFIG(ERR,
2623                                 "vhost read message failed\n");
2624                 else
2625                         VHOST_LOG_CONFIG(INFO,
2626                                 "vhost peer closed\n");
2627
2628                 return -1;
2629         }
2630
2631         ret = 0;
2632         request = msg.request.master;
2633         if (request > VHOST_USER_NONE && request < VHOST_USER_MAX &&
2634                         vhost_message_str[request]) {
2635                 if (request != VHOST_USER_IOTLB_MSG)
2636                         VHOST_LOG_CONFIG(INFO, "read message %s\n",
2637                                 vhost_message_str[request]);
2638                 else
2639                         VHOST_LOG_CONFIG(DEBUG, "read message %s\n",
2640                                 vhost_message_str[request]);
2641         } else {
2642                 VHOST_LOG_CONFIG(DEBUG, "External request %d\n", request);
2643         }
2644
2645         ret = vhost_user_check_and_alloc_queue_pair(dev, &msg);
2646         if (ret < 0) {
2647                 VHOST_LOG_CONFIG(ERR,
2648                         "failed to alloc queue\n");
2649                 return -1;
2650         }
2651
2652         /*
2653          * Note: we don't lock all queues on VHOST_USER_GET_VRING_BASE
2654          * and VHOST_USER_RESET_OWNER, since it is sent when virtio stops
2655          * and device is destroyed. destroy_device waits for queues to be
2656          * inactive, so it is safe. Otherwise taking the access_lock
2657          * would cause a dead lock.
2658          */
2659         switch (request) {
2660         case VHOST_USER_SET_FEATURES:
2661         case VHOST_USER_SET_PROTOCOL_FEATURES:
2662         case VHOST_USER_SET_OWNER:
2663         case VHOST_USER_SET_MEM_TABLE:
2664         case VHOST_USER_SET_LOG_BASE:
2665         case VHOST_USER_SET_LOG_FD:
2666         case VHOST_USER_SET_VRING_NUM:
2667         case VHOST_USER_SET_VRING_ADDR:
2668         case VHOST_USER_SET_VRING_BASE:
2669         case VHOST_USER_SET_VRING_KICK:
2670         case VHOST_USER_SET_VRING_CALL:
2671         case VHOST_USER_SET_VRING_ERR:
2672         case VHOST_USER_SET_VRING_ENABLE:
2673         case VHOST_USER_SEND_RARP:
2674         case VHOST_USER_NET_SET_MTU:
2675         case VHOST_USER_SET_SLAVE_REQ_FD:
2676                 vhost_user_lock_all_queue_pairs(dev);
2677                 unlock_required = 1;
2678                 break;
2679         default:
2680                 break;
2681
2682         }
2683
2684         handled = false;
2685         if (dev->extern_ops.pre_msg_handle) {
2686                 ret = (*dev->extern_ops.pre_msg_handle)(dev->vid,
2687                                 (void *)&msg);
2688                 switch (ret) {
2689                 case RTE_VHOST_MSG_RESULT_REPLY:
2690                         send_vhost_reply(fd, &msg);
2691                         /* Fall-through */
2692                 case RTE_VHOST_MSG_RESULT_ERR:
2693                 case RTE_VHOST_MSG_RESULT_OK:
2694                         handled = true;
2695                         goto skip_to_post_handle;
2696                 case RTE_VHOST_MSG_RESULT_NOT_HANDLED:
2697                 default:
2698                         break;
2699                 }
2700         }
2701
2702         if (request > VHOST_USER_NONE && request < VHOST_USER_MAX) {
2703                 if (!vhost_message_handlers[request])
2704                         goto skip_to_post_handle;
2705                 ret = vhost_message_handlers[request](&dev, &msg, fd);
2706
2707                 switch (ret) {
2708                 case RTE_VHOST_MSG_RESULT_ERR:
2709                         VHOST_LOG_CONFIG(ERR,
2710                                 "Processing %s failed.\n",
2711                                 vhost_message_str[request]);
2712                         handled = true;
2713                         break;
2714                 case RTE_VHOST_MSG_RESULT_OK:
2715                         VHOST_LOG_CONFIG(DEBUG,
2716                                 "Processing %s succeeded.\n",
2717                                 vhost_message_str[request]);
2718                         handled = true;
2719                         break;
2720                 case RTE_VHOST_MSG_RESULT_REPLY:
2721                         VHOST_LOG_CONFIG(DEBUG,
2722                                 "Processing %s succeeded and needs reply.\n",
2723                                 vhost_message_str[request]);
2724                         send_vhost_reply(fd, &msg);
2725                         handled = true;
2726                         break;
2727                 default:
2728                         break;
2729                 }
2730         }
2731
2732 skip_to_post_handle:
2733         if (ret != RTE_VHOST_MSG_RESULT_ERR &&
2734                         dev->extern_ops.post_msg_handle) {
2735                 ret = (*dev->extern_ops.post_msg_handle)(dev->vid,
2736                                 (void *)&msg);
2737                 switch (ret) {
2738                 case RTE_VHOST_MSG_RESULT_REPLY:
2739                         send_vhost_reply(fd, &msg);
2740                         /* Fall-through */
2741                 case RTE_VHOST_MSG_RESULT_ERR:
2742                 case RTE_VHOST_MSG_RESULT_OK:
2743                         handled = true;
2744                 case RTE_VHOST_MSG_RESULT_NOT_HANDLED:
2745                 default:
2746                         break;
2747                 }
2748         }
2749
2750         if (unlock_required)
2751                 vhost_user_unlock_all_queue_pairs(dev);
2752
2753         /* If message was not handled at this stage, treat it as an error */
2754         if (!handled) {
2755                 VHOST_LOG_CONFIG(ERR,
2756                         "vhost message (req: %d) was not handled.\n", request);
2757                 close_msg_fds(&msg);
2758                 ret = RTE_VHOST_MSG_RESULT_ERR;
2759         }
2760
2761         /*
2762          * If the request required a reply that was already sent,
2763          * this optional reply-ack won't be sent as the
2764          * VHOST_USER_NEED_REPLY was cleared in send_vhost_reply().
2765          */
2766         if (msg.flags & VHOST_USER_NEED_REPLY) {
2767                 msg.payload.u64 = ret == RTE_VHOST_MSG_RESULT_ERR;
2768                 msg.size = sizeof(msg.payload.u64);
2769                 msg.fd_num = 0;
2770                 send_vhost_reply(fd, &msg);
2771         } else if (ret == RTE_VHOST_MSG_RESULT_ERR) {
2772                 VHOST_LOG_CONFIG(ERR,
2773                         "vhost message handling failed.\n");
2774                 return -1;
2775         }
2776
2777         if (!(dev->flags & VIRTIO_DEV_RUNNING) && virtio_is_ready(dev)) {
2778                 dev->flags |= VIRTIO_DEV_READY;
2779
2780                 if (!(dev->flags & VIRTIO_DEV_RUNNING)) {
2781                         if (dev->dequeue_zero_copy) {
2782                                 VHOST_LOG_CONFIG(INFO,
2783                                                 "dequeue zero copy is enabled\n");
2784                         }
2785
2786                         if (dev->notify_ops->new_device(dev->vid) == 0)
2787                                 dev->flags |= VIRTIO_DEV_RUNNING;
2788                 }
2789         }
2790
2791         did = dev->vdpa_dev_id;
2792         vdpa_dev = rte_vdpa_get_device(did);
2793         if (vdpa_dev && virtio_is_ready(dev) &&
2794                         !(dev->flags & VIRTIO_DEV_VDPA_CONFIGURED) &&
2795                         msg.request.master == VHOST_USER_SET_VRING_CALL) {
2796                 if (vdpa_dev->ops->dev_conf)
2797                         vdpa_dev->ops->dev_conf(dev->vid);
2798                 dev->flags |= VIRTIO_DEV_VDPA_CONFIGURED;
2799         }
2800
2801         return 0;
2802 }
2803
2804 static int process_slave_message_reply(struct virtio_net *dev,
2805                                        const struct VhostUserMsg *msg)
2806 {
2807         struct VhostUserMsg msg_reply;
2808         int ret;
2809
2810         if ((msg->flags & VHOST_USER_NEED_REPLY) == 0)
2811                 return 0;
2812
2813         if (read_vhost_message(dev->slave_req_fd, &msg_reply) < 0) {
2814                 ret = -1;
2815                 goto out;
2816         }
2817
2818         if (msg_reply.request.slave != msg->request.slave) {
2819                 VHOST_LOG_CONFIG(ERR,
2820                         "Received unexpected msg type (%u), expected %u\n",
2821                         msg_reply.request.slave, msg->request.slave);
2822                 ret = -1;
2823                 goto out;
2824         }
2825
2826         ret = msg_reply.payload.u64 ? -1 : 0;
2827
2828 out:
2829         rte_spinlock_unlock(&dev->slave_req_lock);
2830         return ret;
2831 }
2832
2833 int
2834 vhost_user_iotlb_miss(struct virtio_net *dev, uint64_t iova, uint8_t perm)
2835 {
2836         int ret;
2837         struct VhostUserMsg msg = {
2838                 .request.slave = VHOST_USER_SLAVE_IOTLB_MSG,
2839                 .flags = VHOST_USER_VERSION,
2840                 .size = sizeof(msg.payload.iotlb),
2841                 .payload.iotlb = {
2842                         .iova = iova,
2843                         .perm = perm,
2844                         .type = VHOST_IOTLB_MISS,
2845                 },
2846         };
2847
2848         ret = send_vhost_message(dev->slave_req_fd, &msg);
2849         if (ret < 0) {
2850                 VHOST_LOG_CONFIG(ERR,
2851                                 "Failed to send IOTLB miss message (%d)\n",
2852                                 ret);
2853                 return ret;
2854         }
2855
2856         return 0;
2857 }
2858
2859 static int
2860 vhost_user_slave_config_change(struct virtio_net *dev, bool need_reply)
2861 {
2862         int ret;
2863         struct VhostUserMsg msg = {
2864                 .request.slave = VHOST_USER_SLAVE_CONFIG_CHANGE_MSG,
2865                 .flags = VHOST_USER_VERSION,
2866                 .size = 0,
2867         };
2868
2869         if (need_reply)
2870                 msg.flags |= VHOST_USER_NEED_REPLY;
2871
2872         ret = send_vhost_slave_message(dev, &msg);
2873         if (ret < 0) {
2874                 VHOST_LOG_CONFIG(ERR,
2875                                 "Failed to send config change (%d)\n",
2876                                 ret);
2877                 return ret;
2878         }
2879
2880         return process_slave_message_reply(dev, &msg);
2881 }
2882
2883 int
2884 rte_vhost_slave_config_change(int vid, bool need_reply)
2885 {
2886         struct virtio_net *dev;
2887
2888         dev = get_device(vid);
2889         if (!dev)
2890                 return -ENODEV;
2891
2892         return vhost_user_slave_config_change(dev, need_reply);
2893 }
2894
2895 static int vhost_user_slave_set_vring_host_notifier(struct virtio_net *dev,
2896                                                     int index, int fd,
2897                                                     uint64_t offset,
2898                                                     uint64_t size)
2899 {
2900         int ret;
2901         struct VhostUserMsg msg = {
2902                 .request.slave = VHOST_USER_SLAVE_VRING_HOST_NOTIFIER_MSG,
2903                 .flags = VHOST_USER_VERSION | VHOST_USER_NEED_REPLY,
2904                 .size = sizeof(msg.payload.area),
2905                 .payload.area = {
2906                         .u64 = index & VHOST_USER_VRING_IDX_MASK,
2907                         .size = size,
2908                         .offset = offset,
2909                 },
2910         };
2911
2912         if (fd < 0)
2913                 msg.payload.area.u64 |= VHOST_USER_VRING_NOFD_MASK;
2914         else {
2915                 msg.fds[0] = fd;
2916                 msg.fd_num = 1;
2917         }
2918
2919         ret = send_vhost_slave_message(dev, &msg);
2920         if (ret < 0) {
2921                 VHOST_LOG_CONFIG(ERR,
2922                         "Failed to set host notifier (%d)\n", ret);
2923                 return ret;
2924         }
2925
2926         return process_slave_message_reply(dev, &msg);
2927 }
2928
2929 int rte_vhost_host_notifier_ctrl(int vid, bool enable)
2930 {
2931         struct virtio_net *dev;
2932         struct rte_vdpa_device *vdpa_dev;
2933         int vfio_device_fd, did, ret = 0;
2934         uint64_t offset, size;
2935         unsigned int i;
2936
2937         dev = get_device(vid);
2938         if (!dev)
2939                 return -ENODEV;
2940
2941         did = dev->vdpa_dev_id;
2942         if (did < 0)
2943                 return -EINVAL;
2944
2945         if (!(dev->features & (1ULL << VIRTIO_F_VERSION_1)) ||
2946             !(dev->features & (1ULL << VHOST_USER_F_PROTOCOL_FEATURES)) ||
2947             !(dev->protocol_features &
2948                         (1ULL << VHOST_USER_PROTOCOL_F_SLAVE_REQ)) ||
2949             !(dev->protocol_features &
2950                         (1ULL << VHOST_USER_PROTOCOL_F_SLAVE_SEND_FD)) ||
2951             !(dev->protocol_features &
2952                         (1ULL << VHOST_USER_PROTOCOL_F_HOST_NOTIFIER)))
2953                 return -ENOTSUP;
2954
2955         vdpa_dev = rte_vdpa_get_device(did);
2956         if (!vdpa_dev)
2957                 return -ENODEV;
2958
2959         RTE_FUNC_PTR_OR_ERR_RET(vdpa_dev->ops->get_vfio_device_fd, -ENOTSUP);
2960         RTE_FUNC_PTR_OR_ERR_RET(vdpa_dev->ops->get_notify_area, -ENOTSUP);
2961
2962         vfio_device_fd = vdpa_dev->ops->get_vfio_device_fd(vid);
2963         if (vfio_device_fd < 0)
2964                 return -ENOTSUP;
2965
2966         if (enable) {
2967                 for (i = 0; i < dev->nr_vring; i++) {
2968                         if (vdpa_dev->ops->get_notify_area(vid, i, &offset,
2969                                         &size) < 0) {
2970                                 ret = -ENOTSUP;
2971                                 goto disable;
2972                         }
2973
2974                         if (vhost_user_slave_set_vring_host_notifier(dev, i,
2975                                         vfio_device_fd, offset, size) < 0) {
2976                                 ret = -EFAULT;
2977                                 goto disable;
2978                         }
2979                 }
2980         } else {
2981 disable:
2982                 for (i = 0; i < dev->nr_vring; i++) {
2983                         vhost_user_slave_set_vring_host_notifier(dev, i, -1,
2984                                         0, 0);
2985                 }
2986         }
2987
2988         return ret;
2989 }