vhost: postpone device creation until rings are mapped
[dpdk.git] / lib / librte_vhost / vhost_user.c
1 /*-
2  *   BSD LICENSE
3  *
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32  */
33
34 #include <stdint.h>
35 #include <stdio.h>
36 #include <stdlib.h>
37 #include <string.h>
38 #include <unistd.h>
39 #include <sys/mman.h>
40 #include <sys/types.h>
41 #include <sys/stat.h>
42 #include <assert.h>
43 #ifdef RTE_LIBRTE_VHOST_NUMA
44 #include <numaif.h>
45 #endif
46
47 #include <rte_common.h>
48 #include <rte_malloc.h>
49 #include <rte_log.h>
50
51 #include "iotlb.h"
52 #include "vhost.h"
53 #include "vhost_user.h"
54
55 #define VIRTIO_MIN_MTU 68
56 #define VIRTIO_MAX_MTU 65535
57
58 static const char *vhost_message_str[VHOST_USER_MAX] = {
59         [VHOST_USER_NONE] = "VHOST_USER_NONE",
60         [VHOST_USER_GET_FEATURES] = "VHOST_USER_GET_FEATURES",
61         [VHOST_USER_SET_FEATURES] = "VHOST_USER_SET_FEATURES",
62         [VHOST_USER_SET_OWNER] = "VHOST_USER_SET_OWNER",
63         [VHOST_USER_RESET_OWNER] = "VHOST_USER_RESET_OWNER",
64         [VHOST_USER_SET_MEM_TABLE] = "VHOST_USER_SET_MEM_TABLE",
65         [VHOST_USER_SET_LOG_BASE] = "VHOST_USER_SET_LOG_BASE",
66         [VHOST_USER_SET_LOG_FD] = "VHOST_USER_SET_LOG_FD",
67         [VHOST_USER_SET_VRING_NUM] = "VHOST_USER_SET_VRING_NUM",
68         [VHOST_USER_SET_VRING_ADDR] = "VHOST_USER_SET_VRING_ADDR",
69         [VHOST_USER_SET_VRING_BASE] = "VHOST_USER_SET_VRING_BASE",
70         [VHOST_USER_GET_VRING_BASE] = "VHOST_USER_GET_VRING_BASE",
71         [VHOST_USER_SET_VRING_KICK] = "VHOST_USER_SET_VRING_KICK",
72         [VHOST_USER_SET_VRING_CALL] = "VHOST_USER_SET_VRING_CALL",
73         [VHOST_USER_SET_VRING_ERR]  = "VHOST_USER_SET_VRING_ERR",
74         [VHOST_USER_GET_PROTOCOL_FEATURES]  = "VHOST_USER_GET_PROTOCOL_FEATURES",
75         [VHOST_USER_SET_PROTOCOL_FEATURES]  = "VHOST_USER_SET_PROTOCOL_FEATURES",
76         [VHOST_USER_GET_QUEUE_NUM]  = "VHOST_USER_GET_QUEUE_NUM",
77         [VHOST_USER_SET_VRING_ENABLE]  = "VHOST_USER_SET_VRING_ENABLE",
78         [VHOST_USER_SEND_RARP]  = "VHOST_USER_SEND_RARP",
79         [VHOST_USER_NET_SET_MTU]  = "VHOST_USER_NET_SET_MTU",
80         [VHOST_USER_SET_SLAVE_REQ_FD]  = "VHOST_USER_SET_SLAVE_REQ_FD",
81         [VHOST_USER_IOTLB_MSG]  = "VHOST_USER_IOTLB_MSG",
82 };
83
84 static uint64_t
85 get_blk_size(int fd)
86 {
87         struct stat stat;
88         int ret;
89
90         ret = fstat(fd, &stat);
91         return ret == -1 ? (uint64_t)-1 : (uint64_t)stat.st_blksize;
92 }
93
94 static void
95 free_mem_region(struct virtio_net *dev)
96 {
97         uint32_t i;
98         struct rte_vhost_mem_region *reg;
99
100         if (!dev || !dev->mem)
101                 return;
102
103         for (i = 0; i < dev->mem->nregions; i++) {
104                 reg = &dev->mem->regions[i];
105                 if (reg->host_user_addr) {
106                         munmap(reg->mmap_addr, reg->mmap_size);
107                         close(reg->fd);
108                 }
109         }
110 }
111
112 void
113 vhost_backend_cleanup(struct virtio_net *dev)
114 {
115         if (dev->mem) {
116                 free_mem_region(dev);
117                 rte_free(dev->mem);
118                 dev->mem = NULL;
119         }
120
121         free(dev->guest_pages);
122         dev->guest_pages = NULL;
123
124         if (dev->log_addr) {
125                 munmap((void *)(uintptr_t)dev->log_addr, dev->log_size);
126                 dev->log_addr = 0;
127         }
128
129         if (dev->slave_req_fd >= 0) {
130                 close(dev->slave_req_fd);
131                 dev->slave_req_fd = -1;
132         }
133 }
134
135 /*
136  * This function just returns success at the moment unless
137  * the device hasn't been initialised.
138  */
139 static int
140 vhost_user_set_owner(void)
141 {
142         return 0;
143 }
144
145 static int
146 vhost_user_reset_owner(struct virtio_net *dev)
147 {
148         if (dev->flags & VIRTIO_DEV_RUNNING) {
149                 dev->flags &= ~VIRTIO_DEV_RUNNING;
150                 dev->notify_ops->destroy_device(dev->vid);
151         }
152
153         cleanup_device(dev, 0);
154         reset_device(dev);
155         return 0;
156 }
157
158 /*
159  * The features that we support are requested.
160  */
161 static uint64_t
162 vhost_user_get_features(struct virtio_net *dev)
163 {
164         uint64_t features = 0;
165
166         rte_vhost_driver_get_features(dev->ifname, &features);
167         return features;
168 }
169
170 /*
171  * We receive the negotiated features supported by us and the virtio device.
172  */
173 static int
174 vhost_user_set_features(struct virtio_net *dev, uint64_t features)
175 {
176         uint64_t vhost_features = 0;
177
178         rte_vhost_driver_get_features(dev->ifname, &vhost_features);
179         if (features & ~vhost_features) {
180                 RTE_LOG(ERR, VHOST_CONFIG,
181                         "(%d) received invalid negotiated features.\n",
182                         dev->vid);
183                 return -1;
184         }
185
186         if ((dev->flags & VIRTIO_DEV_RUNNING) && dev->features != features) {
187                 if (dev->notify_ops->features_changed)
188                         dev->notify_ops->features_changed(dev->vid, features);
189         }
190
191         dev->features = features;
192         if (dev->features &
193                 ((1 << VIRTIO_NET_F_MRG_RXBUF) | (1ULL << VIRTIO_F_VERSION_1))) {
194                 dev->vhost_hlen = sizeof(struct virtio_net_hdr_mrg_rxbuf);
195         } else {
196                 dev->vhost_hlen = sizeof(struct virtio_net_hdr);
197         }
198         LOG_DEBUG(VHOST_CONFIG,
199                 "(%d) mergeable RX buffers %s, virtio 1 %s\n",
200                 dev->vid,
201                 (dev->features & (1 << VIRTIO_NET_F_MRG_RXBUF)) ? "on" : "off",
202                 (dev->features & (1ULL << VIRTIO_F_VERSION_1)) ? "on" : "off");
203
204         return 0;
205 }
206
207 /*
208  * The virtio device sends us the size of the descriptor ring.
209  */
210 static int
211 vhost_user_set_vring_num(struct virtio_net *dev,
212                          VhostUserMsg *msg)
213 {
214         struct vhost_virtqueue *vq = dev->virtqueue[msg->payload.state.index];
215
216         vq->size = msg->payload.state.num;
217
218         if (dev->dequeue_zero_copy) {
219                 vq->nr_zmbuf = 0;
220                 vq->last_zmbuf_idx = 0;
221                 vq->zmbuf_size = vq->size;
222                 vq->zmbufs = rte_zmalloc(NULL, vq->zmbuf_size *
223                                          sizeof(struct zcopy_mbuf), 0);
224                 if (vq->zmbufs == NULL) {
225                         RTE_LOG(WARNING, VHOST_CONFIG,
226                                 "failed to allocate mem for zero copy; "
227                                 "zero copy is force disabled\n");
228                         dev->dequeue_zero_copy = 0;
229                 }
230         }
231
232         vq->shadow_used_ring = rte_malloc(NULL,
233                                 vq->size * sizeof(struct vring_used_elem),
234                                 RTE_CACHE_LINE_SIZE);
235         if (!vq->shadow_used_ring) {
236                 RTE_LOG(ERR, VHOST_CONFIG,
237                         "failed to allocate memory for shadow used ring.\n");
238                 return -1;
239         }
240
241         vq->batch_copy_elems = rte_malloc(NULL,
242                                 vq->size * sizeof(struct batch_copy_elem),
243                                 RTE_CACHE_LINE_SIZE);
244         if (!vq->batch_copy_elems) {
245                 RTE_LOG(ERR, VHOST_CONFIG,
246                         "failed to allocate memory for batching copy.\n");
247                 return -1;
248         }
249
250         return 0;
251 }
252
253 /*
254  * Reallocate virtio_dev and vhost_virtqueue data structure to make them on the
255  * same numa node as the memory of vring descriptor.
256  */
257 #ifdef RTE_LIBRTE_VHOST_NUMA
258 static struct virtio_net*
259 numa_realloc(struct virtio_net *dev, int index)
260 {
261         int oldnode, newnode;
262         struct virtio_net *old_dev;
263         struct vhost_virtqueue *old_vq, *vq;
264         int ret;
265
266         old_dev = dev;
267         vq = old_vq = dev->virtqueue[index];
268
269         ret = get_mempolicy(&newnode, NULL, 0, old_vq->desc,
270                             MPOL_F_NODE | MPOL_F_ADDR);
271
272         /* check if we need to reallocate vq */
273         ret |= get_mempolicy(&oldnode, NULL, 0, old_vq,
274                              MPOL_F_NODE | MPOL_F_ADDR);
275         if (ret) {
276                 RTE_LOG(ERR, VHOST_CONFIG,
277                         "Unable to get vq numa information.\n");
278                 return dev;
279         }
280         if (oldnode != newnode) {
281                 RTE_LOG(INFO, VHOST_CONFIG,
282                         "reallocate vq from %d to %d node\n", oldnode, newnode);
283                 vq = rte_malloc_socket(NULL, sizeof(*vq), 0, newnode);
284                 if (!vq)
285                         return dev;
286
287                 memcpy(vq, old_vq, sizeof(*vq));
288                 rte_free(old_vq);
289         }
290
291         /* check if we need to reallocate dev */
292         ret = get_mempolicy(&oldnode, NULL, 0, old_dev,
293                             MPOL_F_NODE | MPOL_F_ADDR);
294         if (ret) {
295                 RTE_LOG(ERR, VHOST_CONFIG,
296                         "Unable to get dev numa information.\n");
297                 goto out;
298         }
299         if (oldnode != newnode) {
300                 RTE_LOG(INFO, VHOST_CONFIG,
301                         "reallocate dev from %d to %d node\n",
302                         oldnode, newnode);
303                 dev = rte_malloc_socket(NULL, sizeof(*dev), 0, newnode);
304                 if (!dev) {
305                         dev = old_dev;
306                         goto out;
307                 }
308
309                 memcpy(dev, old_dev, sizeof(*dev));
310                 rte_free(old_dev);
311         }
312
313 out:
314         dev->virtqueue[index] = vq;
315         vhost_devices[dev->vid] = dev;
316
317         return dev;
318 }
319 #else
320 static struct virtio_net*
321 numa_realloc(struct virtio_net *dev, int index __rte_unused)
322 {
323         return dev;
324 }
325 #endif
326
327 /* Converts QEMU virtual address to Vhost virtual address. */
328 static uint64_t
329 qva_to_vva(struct virtio_net *dev, uint64_t qva)
330 {
331         struct rte_vhost_mem_region *reg;
332         uint32_t i;
333
334         /* Find the region where the address lives. */
335         for (i = 0; i < dev->mem->nregions; i++) {
336                 reg = &dev->mem->regions[i];
337
338                 if (qva >= reg->guest_user_addr &&
339                     qva <  reg->guest_user_addr + reg->size) {
340                         return qva - reg->guest_user_addr +
341                                reg->host_user_addr;
342                 }
343         }
344
345         return 0;
346 }
347
348
349 /*
350  * Converts ring address to Vhost virtual address.
351  * If IOMMU is enabled, the ring address is a guest IO virtual address,
352  * else it is a QEMU virtual address.
353  */
354 static uint64_t
355 ring_addr_to_vva(struct virtio_net *dev, struct vhost_virtqueue *vq,
356                 uint64_t ra, uint64_t size)
357 {
358         if (dev->features & (1ULL << VIRTIO_F_IOMMU_PLATFORM)) {
359                 uint64_t vva;
360
361                 vva = vhost_user_iotlb_cache_find(vq, ra,
362                                         &size, VHOST_ACCESS_RW);
363                 if (!vva)
364                         vhost_user_iotlb_miss(dev, ra, VHOST_ACCESS_RW);
365
366                 return vva;
367         }
368
369         return qva_to_vva(dev, ra);
370 }
371
372 /*
373  * The virtio device sends us the desc, used and avail ring addresses.
374  * This function then converts these to our address space.
375  */
376 static int
377 vhost_user_set_vring_addr(struct virtio_net *dev, VhostUserMsg *msg)
378 {
379         struct vhost_virtqueue *vq;
380         struct vhost_vring_addr *addr = &msg->payload.addr;
381
382         if (dev->mem == NULL)
383                 return -1;
384
385         /* addr->index refers to the queue index. The txq 1, rxq is 0. */
386         vq = dev->virtqueue[msg->payload.addr.index];
387
388         /*
389          * Rings addresses should not be interpreted as long as the ring is not
390          * started and enabled
391          */
392         memcpy(&vq->ring_addrs, addr, sizeof(*addr));
393
394         vq->desc = NULL;
395         vq->avail = NULL;
396         vq->used = NULL;
397
398         vq->access_ok = 0;
399
400         return 0;
401 }
402
403 static struct virtio_net *
404 translate_ring_addresses(struct virtio_net *dev, int vq_index)
405 {
406         struct vhost_virtqueue *vq = dev->virtqueue[vq_index];
407         struct vhost_vring_addr *addr = &vq->ring_addrs;
408
409         /* The addresses are converted from QEMU virtual to Vhost virtual. */
410         if (vq->desc && vq->avail && vq->used)
411                 return dev;
412
413         vq->desc = (struct vring_desc *)(uintptr_t)ring_addr_to_vva(dev,
414                         vq, addr->desc_user_addr, sizeof(struct vring_desc));
415         if (vq->desc == 0) {
416                 RTE_LOG(DEBUG, VHOST_CONFIG,
417                         "(%d) failed to find desc ring address.\n",
418                         dev->vid);
419                 return dev;
420         }
421
422         dev = numa_realloc(dev, vq_index);
423         vq = dev->virtqueue[vq_index];
424
425         vq->avail = (struct vring_avail *)(uintptr_t)ring_addr_to_vva(dev,
426                         vq, addr->avail_user_addr, sizeof(struct vring_avail));
427         if (vq->avail == 0) {
428                 RTE_LOG(DEBUG, VHOST_CONFIG,
429                         "(%d) failed to find avail ring address.\n",
430                         dev->vid);
431                 return dev;
432         }
433
434         vq->used = (struct vring_used *)(uintptr_t)ring_addr_to_vva(dev,
435                         vq, addr->used_user_addr, sizeof(struct vring_used));
436         if (vq->used == 0) {
437                 RTE_LOG(DEBUG, VHOST_CONFIG,
438                         "(%d) failed to find used ring address.\n",
439                         dev->vid);
440                 return dev;
441         }
442
443         if (vq->last_used_idx != vq->used->idx) {
444                 RTE_LOG(WARNING, VHOST_CONFIG,
445                         "last_used_idx (%u) and vq->used->idx (%u) mismatches; "
446                         "some packets maybe resent for Tx and dropped for Rx\n",
447                         vq->last_used_idx, vq->used->idx);
448                 vq->last_used_idx  = vq->used->idx;
449                 vq->last_avail_idx = vq->used->idx;
450         }
451
452         vq->log_guest_addr = addr->log_guest_addr;
453
454         LOG_DEBUG(VHOST_CONFIG, "(%d) mapped address desc: %p\n",
455                         dev->vid, vq->desc);
456         LOG_DEBUG(VHOST_CONFIG, "(%d) mapped address avail: %p\n",
457                         dev->vid, vq->avail);
458         LOG_DEBUG(VHOST_CONFIG, "(%d) mapped address used: %p\n",
459                         dev->vid, vq->used);
460         LOG_DEBUG(VHOST_CONFIG, "(%d) log_guest_addr: %" PRIx64 "\n",
461                         dev->vid, vq->log_guest_addr);
462
463         return dev;
464 }
465
466 /*
467  * The virtio device sends us the available ring last used index.
468  */
469 static int
470 vhost_user_set_vring_base(struct virtio_net *dev,
471                           VhostUserMsg *msg)
472 {
473         dev->virtqueue[msg->payload.state.index]->last_used_idx  =
474                         msg->payload.state.num;
475         dev->virtqueue[msg->payload.state.index]->last_avail_idx =
476                         msg->payload.state.num;
477
478         return 0;
479 }
480
481 static void
482 add_one_guest_page(struct virtio_net *dev, uint64_t guest_phys_addr,
483                    uint64_t host_phys_addr, uint64_t size)
484 {
485         struct guest_page *page, *last_page;
486
487         if (dev->nr_guest_pages == dev->max_guest_pages) {
488                 dev->max_guest_pages *= 2;
489                 dev->guest_pages = realloc(dev->guest_pages,
490                                         dev->max_guest_pages * sizeof(*page));
491         }
492
493         if (dev->nr_guest_pages > 0) {
494                 last_page = &dev->guest_pages[dev->nr_guest_pages - 1];
495                 /* merge if the two pages are continuous */
496                 if (host_phys_addr == last_page->host_phys_addr +
497                                       last_page->size) {
498                         last_page->size += size;
499                         return;
500                 }
501         }
502
503         page = &dev->guest_pages[dev->nr_guest_pages++];
504         page->guest_phys_addr = guest_phys_addr;
505         page->host_phys_addr  = host_phys_addr;
506         page->size = size;
507 }
508
509 static void
510 add_guest_pages(struct virtio_net *dev, struct rte_vhost_mem_region *reg,
511                 uint64_t page_size)
512 {
513         uint64_t reg_size = reg->size;
514         uint64_t host_user_addr  = reg->host_user_addr;
515         uint64_t guest_phys_addr = reg->guest_phys_addr;
516         uint64_t host_phys_addr;
517         uint64_t size;
518
519         host_phys_addr = rte_mem_virt2phy((void *)(uintptr_t)host_user_addr);
520         size = page_size - (guest_phys_addr & (page_size - 1));
521         size = RTE_MIN(size, reg_size);
522
523         add_one_guest_page(dev, guest_phys_addr, host_phys_addr, size);
524         host_user_addr  += size;
525         guest_phys_addr += size;
526         reg_size -= size;
527
528         while (reg_size > 0) {
529                 size = RTE_MIN(reg_size, page_size);
530                 host_phys_addr = rte_mem_virt2phy((void *)(uintptr_t)
531                                                   host_user_addr);
532                 add_one_guest_page(dev, guest_phys_addr, host_phys_addr, size);
533
534                 host_user_addr  += size;
535                 guest_phys_addr += size;
536                 reg_size -= size;
537         }
538 }
539
540 #ifdef RTE_LIBRTE_VHOST_DEBUG
541 /* TODO: enable it only in debug mode? */
542 static void
543 dump_guest_pages(struct virtio_net *dev)
544 {
545         uint32_t i;
546         struct guest_page *page;
547
548         for (i = 0; i < dev->nr_guest_pages; i++) {
549                 page = &dev->guest_pages[i];
550
551                 RTE_LOG(INFO, VHOST_CONFIG,
552                         "guest physical page region %u\n"
553                         "\t guest_phys_addr: %" PRIx64 "\n"
554                         "\t host_phys_addr : %" PRIx64 "\n"
555                         "\t size           : %" PRIx64 "\n",
556                         i,
557                         page->guest_phys_addr,
558                         page->host_phys_addr,
559                         page->size);
560         }
561 }
562 #else
563 #define dump_guest_pages(dev)
564 #endif
565
566 static int
567 vhost_user_set_mem_table(struct virtio_net *dev, struct VhostUserMsg *pmsg)
568 {
569         struct VhostUserMemory memory = pmsg->payload.memory;
570         struct rte_vhost_mem_region *reg;
571         void *mmap_addr;
572         uint64_t mmap_size;
573         uint64_t mmap_offset;
574         uint64_t alignment;
575         uint32_t i;
576         int fd;
577
578         if (dev->mem) {
579                 free_mem_region(dev);
580                 rte_free(dev->mem);
581                 dev->mem = NULL;
582         }
583
584         dev->nr_guest_pages = 0;
585         if (!dev->guest_pages) {
586                 dev->max_guest_pages = 8;
587                 dev->guest_pages = malloc(dev->max_guest_pages *
588                                                 sizeof(struct guest_page));
589                 if (dev->guest_pages == NULL) {
590                         RTE_LOG(ERR, VHOST_CONFIG,
591                                 "(%d) failed to allocate memory "
592                                 "for dev->guest_pages\n",
593                                 dev->vid);
594                         return -1;
595                 }
596         }
597
598         dev->mem = rte_zmalloc("vhost-mem-table", sizeof(struct rte_vhost_memory) +
599                 sizeof(struct rte_vhost_mem_region) * memory.nregions, 0);
600         if (dev->mem == NULL) {
601                 RTE_LOG(ERR, VHOST_CONFIG,
602                         "(%d) failed to allocate memory for dev->mem\n",
603                         dev->vid);
604                 return -1;
605         }
606         dev->mem->nregions = memory.nregions;
607
608         for (i = 0; i < memory.nregions; i++) {
609                 fd  = pmsg->fds[i];
610                 reg = &dev->mem->regions[i];
611
612                 reg->guest_phys_addr = memory.regions[i].guest_phys_addr;
613                 reg->guest_user_addr = memory.regions[i].userspace_addr;
614                 reg->size            = memory.regions[i].memory_size;
615                 reg->fd              = fd;
616
617                 mmap_offset = memory.regions[i].mmap_offset;
618                 mmap_size   = reg->size + mmap_offset;
619
620                 /* mmap() without flag of MAP_ANONYMOUS, should be called
621                  * with length argument aligned with hugepagesz at older
622                  * longterm version Linux, like 2.6.32 and 3.2.72, or
623                  * mmap() will fail with EINVAL.
624                  *
625                  * to avoid failure, make sure in caller to keep length
626                  * aligned.
627                  */
628                 alignment = get_blk_size(fd);
629                 if (alignment == (uint64_t)-1) {
630                         RTE_LOG(ERR, VHOST_CONFIG,
631                                 "couldn't get hugepage size through fstat\n");
632                         goto err_mmap;
633                 }
634                 mmap_size = RTE_ALIGN_CEIL(mmap_size, alignment);
635
636                 mmap_addr = mmap(NULL, mmap_size, PROT_READ | PROT_WRITE,
637                                  MAP_SHARED | MAP_POPULATE, fd, 0);
638
639                 if (mmap_addr == MAP_FAILED) {
640                         RTE_LOG(ERR, VHOST_CONFIG,
641                                 "mmap region %u failed.\n", i);
642                         goto err_mmap;
643                 }
644
645                 reg->mmap_addr = mmap_addr;
646                 reg->mmap_size = mmap_size;
647                 reg->host_user_addr = (uint64_t)(uintptr_t)mmap_addr +
648                                       mmap_offset;
649
650                 if (dev->dequeue_zero_copy)
651                         add_guest_pages(dev, reg, alignment);
652
653                 RTE_LOG(INFO, VHOST_CONFIG,
654                         "guest memory region %u, size: 0x%" PRIx64 "\n"
655                         "\t guest physical addr: 0x%" PRIx64 "\n"
656                         "\t guest virtual  addr: 0x%" PRIx64 "\n"
657                         "\t host  virtual  addr: 0x%" PRIx64 "\n"
658                         "\t mmap addr : 0x%" PRIx64 "\n"
659                         "\t mmap size : 0x%" PRIx64 "\n"
660                         "\t mmap align: 0x%" PRIx64 "\n"
661                         "\t mmap off  : 0x%" PRIx64 "\n",
662                         i, reg->size,
663                         reg->guest_phys_addr,
664                         reg->guest_user_addr,
665                         reg->host_user_addr,
666                         (uint64_t)(uintptr_t)mmap_addr,
667                         mmap_size,
668                         alignment,
669                         mmap_offset);
670         }
671
672         dump_guest_pages(dev);
673
674         return 0;
675
676 err_mmap:
677         free_mem_region(dev);
678         rte_free(dev->mem);
679         dev->mem = NULL;
680         return -1;
681 }
682
683 static int
684 vq_is_ready(struct vhost_virtqueue *vq)
685 {
686         return vq && vq->desc && vq->avail && vq->used &&
687                vq->kickfd != VIRTIO_UNINITIALIZED_EVENTFD &&
688                vq->callfd != VIRTIO_UNINITIALIZED_EVENTFD;
689 }
690
691 static int
692 virtio_is_ready(struct virtio_net *dev)
693 {
694         struct vhost_virtqueue *vq;
695         uint32_t i;
696
697         if (dev->nr_vring == 0)
698                 return 0;
699
700         for (i = 0; i < dev->nr_vring; i++) {
701                 vq = dev->virtqueue[i];
702
703                 if (!vq_is_ready(vq))
704                         return 0;
705         }
706
707         RTE_LOG(INFO, VHOST_CONFIG,
708                 "virtio is now ready for processing.\n");
709         return 1;
710 }
711
712 static void
713 vhost_user_set_vring_call(struct virtio_net *dev, struct VhostUserMsg *pmsg)
714 {
715         struct vhost_vring_file file;
716         struct vhost_virtqueue *vq;
717
718         file.index = pmsg->payload.u64 & VHOST_USER_VRING_IDX_MASK;
719         if (pmsg->payload.u64 & VHOST_USER_VRING_NOFD_MASK)
720                 file.fd = VIRTIO_INVALID_EVENTFD;
721         else
722                 file.fd = pmsg->fds[0];
723         RTE_LOG(INFO, VHOST_CONFIG,
724                 "vring call idx:%d file:%d\n", file.index, file.fd);
725
726         vq = dev->virtqueue[file.index];
727         if (vq->callfd >= 0)
728                 close(vq->callfd);
729
730         vq->callfd = file.fd;
731 }
732
733 static void
734 vhost_user_set_vring_kick(struct virtio_net **pdev, struct VhostUserMsg *pmsg)
735 {
736         struct vhost_vring_file file;
737         struct vhost_virtqueue *vq;
738         struct virtio_net *dev = *pdev;
739
740         file.index = pmsg->payload.u64 & VHOST_USER_VRING_IDX_MASK;
741         if (pmsg->payload.u64 & VHOST_USER_VRING_NOFD_MASK)
742                 file.fd = VIRTIO_INVALID_EVENTFD;
743         else
744                 file.fd = pmsg->fds[0];
745         RTE_LOG(INFO, VHOST_CONFIG,
746                 "vring kick idx:%d file:%d\n", file.index, file.fd);
747
748         /*
749          * Interpret ring addresses only when ring is started and enabled.
750          * This is now if protocol features aren't supported.
751          */
752         if (!(dev->features & (1ULL << VHOST_USER_F_PROTOCOL_FEATURES))) {
753                 *pdev = dev = translate_ring_addresses(dev, file.index);
754                 if (!dev)
755                         return;
756         }
757
758         vq = dev->virtqueue[file.index];
759
760         /*
761          * When VHOST_USER_F_PROTOCOL_FEATURES is not negotiated,
762          * the ring starts already enabled. Otherwise, it is enabled via
763          * the SET_VRING_ENABLE message.
764          */
765         if (!(dev->features & (1ULL << VHOST_USER_F_PROTOCOL_FEATURES)))
766                 vq->enabled = 1;
767
768         if (vq->kickfd >= 0)
769                 close(vq->kickfd);
770         vq->kickfd = file.fd;
771 }
772
773 static void
774 free_zmbufs(struct vhost_virtqueue *vq)
775 {
776         struct zcopy_mbuf *zmbuf, *next;
777
778         for (zmbuf = TAILQ_FIRST(&vq->zmbuf_list);
779              zmbuf != NULL; zmbuf = next) {
780                 next = TAILQ_NEXT(zmbuf, next);
781
782                 rte_pktmbuf_free(zmbuf->mbuf);
783                 TAILQ_REMOVE(&vq->zmbuf_list, zmbuf, next);
784         }
785
786         rte_free(vq->zmbufs);
787 }
788
789 /*
790  * when virtio is stopped, qemu will send us the GET_VRING_BASE message.
791  */
792 static int
793 vhost_user_get_vring_base(struct virtio_net *dev,
794                           VhostUserMsg *msg)
795 {
796         struct vhost_virtqueue *vq = dev->virtqueue[msg->payload.state.index];
797
798         /* We have to stop the queue (virtio) if it is running. */
799         if (dev->flags & VIRTIO_DEV_RUNNING) {
800                 dev->flags &= ~VIRTIO_DEV_RUNNING;
801                 dev->notify_ops->destroy_device(dev->vid);
802         }
803
804         dev->flags &= ~VIRTIO_DEV_READY;
805
806         /* Here we are safe to get the last used index */
807         msg->payload.state.num = vq->last_used_idx;
808
809         RTE_LOG(INFO, VHOST_CONFIG,
810                 "vring base idx:%d file:%d\n", msg->payload.state.index,
811                 msg->payload.state.num);
812         /*
813          * Based on current qemu vhost-user implementation, this message is
814          * sent and only sent in vhost_vring_stop.
815          * TODO: cleanup the vring, it isn't usable since here.
816          */
817         if (vq->kickfd >= 0)
818                 close(vq->kickfd);
819
820         vq->kickfd = VIRTIO_UNINITIALIZED_EVENTFD;
821
822         if (dev->dequeue_zero_copy)
823                 free_zmbufs(vq);
824         rte_free(vq->shadow_used_ring);
825         vq->shadow_used_ring = NULL;
826
827         rte_free(vq->batch_copy_elems);
828         vq->batch_copy_elems = NULL;
829
830         return 0;
831 }
832
833 /*
834  * when virtio queues are ready to work, qemu will send us to
835  * enable the virtio queue pair.
836  */
837 static int
838 vhost_user_set_vring_enable(struct virtio_net **pdev,
839                             VhostUserMsg *msg)
840 {
841         struct virtio_net *dev = *pdev;
842         int enable = (int)msg->payload.state.num;
843
844         RTE_LOG(INFO, VHOST_CONFIG,
845                 "set queue enable: %d to qp idx: %d\n",
846                 enable, msg->payload.state.index);
847
848         /*
849          * Interpret ring addresses only when ring is started and enabled.
850          * This is now if protocol features are supported.
851          */
852         if (enable && (dev->features &
853                                 (1ULL << VHOST_USER_F_PROTOCOL_FEATURES))) {
854                 dev = translate_ring_addresses(dev, msg->payload.state.index);
855                 if (!dev)
856                         return -1;
857
858                 *pdev = dev;
859         }
860
861         if (dev->notify_ops->vring_state_changed)
862                 dev->notify_ops->vring_state_changed(dev->vid,
863                                 msg->payload.state.index, enable);
864
865         dev->virtqueue[msg->payload.state.index]->enabled = enable;
866
867         return 0;
868 }
869
870 static void
871 vhost_user_set_protocol_features(struct virtio_net *dev,
872                                  uint64_t protocol_features)
873 {
874         if (protocol_features & ~VHOST_USER_PROTOCOL_FEATURES)
875                 return;
876
877         dev->protocol_features = protocol_features;
878 }
879
880 static int
881 vhost_user_set_log_base(struct virtio_net *dev, struct VhostUserMsg *msg)
882 {
883         int fd = msg->fds[0];
884         uint64_t size, off;
885         void *addr;
886
887         if (fd < 0) {
888                 RTE_LOG(ERR, VHOST_CONFIG, "invalid log fd: %d\n", fd);
889                 return -1;
890         }
891
892         if (msg->size != sizeof(VhostUserLog)) {
893                 RTE_LOG(ERR, VHOST_CONFIG,
894                         "invalid log base msg size: %"PRId32" != %d\n",
895                         msg->size, (int)sizeof(VhostUserLog));
896                 return -1;
897         }
898
899         size = msg->payload.log.mmap_size;
900         off  = msg->payload.log.mmap_offset;
901         RTE_LOG(INFO, VHOST_CONFIG,
902                 "log mmap size: %"PRId64", offset: %"PRId64"\n",
903                 size, off);
904
905         /*
906          * mmap from 0 to workaround a hugepage mmap bug: mmap will
907          * fail when offset is not page size aligned.
908          */
909         addr = mmap(0, size, PROT_READ | PROT_WRITE, MAP_SHARED, fd, 0);
910         close(fd);
911         if (addr == MAP_FAILED) {
912                 RTE_LOG(ERR, VHOST_CONFIG, "mmap log base failed!\n");
913                 return -1;
914         }
915
916         /*
917          * Free previously mapped log memory on occasionally
918          * multiple VHOST_USER_SET_LOG_BASE.
919          */
920         if (dev->log_addr) {
921                 munmap((void *)(uintptr_t)dev->log_addr, dev->log_size);
922         }
923         dev->log_addr = (uint64_t)(uintptr_t)addr;
924         dev->log_base = dev->log_addr + off;
925         dev->log_size = size;
926
927         return 0;
928 }
929
930 /*
931  * An rarp packet is constructed and broadcasted to notify switches about
932  * the new location of the migrated VM, so that packets from outside will
933  * not be lost after migration.
934  *
935  * However, we don't actually "send" a rarp packet here, instead, we set
936  * a flag 'broadcast_rarp' to let rte_vhost_dequeue_burst() inject it.
937  */
938 static int
939 vhost_user_send_rarp(struct virtio_net *dev, struct VhostUserMsg *msg)
940 {
941         uint8_t *mac = (uint8_t *)&msg->payload.u64;
942
943         RTE_LOG(DEBUG, VHOST_CONFIG,
944                 ":: mac: %02x:%02x:%02x:%02x:%02x:%02x\n",
945                 mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]);
946         memcpy(dev->mac.addr_bytes, mac, 6);
947
948         /*
949          * Set the flag to inject a RARP broadcast packet at
950          * rte_vhost_dequeue_burst().
951          *
952          * rte_smp_wmb() is for making sure the mac is copied
953          * before the flag is set.
954          */
955         rte_smp_wmb();
956         rte_atomic16_set(&dev->broadcast_rarp, 1);
957
958         return 0;
959 }
960
961 static int
962 vhost_user_net_set_mtu(struct virtio_net *dev, struct VhostUserMsg *msg)
963 {
964         if (msg->payload.u64 < VIRTIO_MIN_MTU ||
965                         msg->payload.u64 > VIRTIO_MAX_MTU) {
966                 RTE_LOG(ERR, VHOST_CONFIG, "Invalid MTU size (%"PRIu64")\n",
967                                 msg->payload.u64);
968
969                 return -1;
970         }
971
972         dev->mtu = msg->payload.u64;
973
974         return 0;
975 }
976
977 static int
978 vhost_user_set_req_fd(struct virtio_net *dev, struct VhostUserMsg *msg)
979 {
980         int fd = msg->fds[0];
981
982         if (fd < 0) {
983                 RTE_LOG(ERR, VHOST_CONFIG,
984                                 "Invalid file descriptor for slave channel (%d)\n",
985                                 fd);
986                 return -1;
987         }
988
989         dev->slave_req_fd = fd;
990
991         return 0;
992 }
993
994 static int
995 is_vring_iotlb_update(struct vhost_virtqueue *vq, struct vhost_iotlb_msg *imsg)
996 {
997         struct vhost_vring_addr *ra;
998         uint64_t start, end;
999
1000         start = imsg->iova;
1001         end = start + imsg->size;
1002
1003         ra = &vq->ring_addrs;
1004         if (ra->desc_user_addr >= start && ra->desc_user_addr < end)
1005                 return 1;
1006         if (ra->avail_user_addr >= start && ra->avail_user_addr < end)
1007                 return 1;
1008         if (ra->used_user_addr >= start && ra->used_user_addr < end)
1009                 return 1;
1010
1011         return 0;
1012 }
1013
1014 static int
1015 vhost_user_iotlb_msg(struct virtio_net **pdev, struct VhostUserMsg *msg)
1016 {
1017         struct virtio_net *dev = *pdev;
1018         struct vhost_iotlb_msg *imsg = &msg->payload.iotlb;
1019         uint16_t i;
1020         uint64_t vva;
1021
1022         switch (imsg->type) {
1023         case VHOST_IOTLB_UPDATE:
1024                 vva = qva_to_vva(dev, imsg->uaddr);
1025                 if (!vva)
1026                         return -1;
1027
1028                 for (i = 0; i < dev->nr_vring; i++) {
1029                         struct vhost_virtqueue *vq = dev->virtqueue[i];
1030
1031                         vhost_user_iotlb_cache_insert(vq, imsg->iova, vva,
1032                                         imsg->size, imsg->perm);
1033
1034                         if (is_vring_iotlb_update(vq, imsg))
1035                                 *pdev = dev = translate_ring_addresses(dev, i);
1036                 }
1037                 break;
1038         case VHOST_IOTLB_INVALIDATE:
1039                 for (i = 0; i < dev->nr_vring; i++) {
1040                         struct vhost_virtqueue *vq = dev->virtqueue[i];
1041
1042                         vhost_user_iotlb_cache_remove(vq, imsg->iova,
1043                                         imsg->size);
1044                 }
1045                 break;
1046         default:
1047                 RTE_LOG(ERR, VHOST_CONFIG, "Invalid IOTLB message type (%d)\n",
1048                                 imsg->type);
1049                 return -1;
1050         }
1051
1052         return 0;
1053 }
1054
1055 /* return bytes# of read on success or negative val on failure. */
1056 static int
1057 read_vhost_message(int sockfd, struct VhostUserMsg *msg)
1058 {
1059         int ret;
1060
1061         ret = read_fd_message(sockfd, (char *)msg, VHOST_USER_HDR_SIZE,
1062                 msg->fds, VHOST_MEMORY_MAX_NREGIONS);
1063         if (ret <= 0)
1064                 return ret;
1065
1066         if (msg && msg->size) {
1067                 if (msg->size > sizeof(msg->payload)) {
1068                         RTE_LOG(ERR, VHOST_CONFIG,
1069                                 "invalid msg size: %d\n", msg->size);
1070                         return -1;
1071                 }
1072                 ret = read(sockfd, &msg->payload, msg->size);
1073                 if (ret <= 0)
1074                         return ret;
1075                 if (ret != (int)msg->size) {
1076                         RTE_LOG(ERR, VHOST_CONFIG,
1077                                 "read control message failed\n");
1078                         return -1;
1079                 }
1080         }
1081
1082         return ret;
1083 }
1084
1085 static int
1086 send_vhost_message(int sockfd, struct VhostUserMsg *msg)
1087 {
1088         if (!msg)
1089                 return 0;
1090
1091         return send_fd_message(sockfd, (char *)msg,
1092                 VHOST_USER_HDR_SIZE + msg->size, NULL, 0);
1093 }
1094
1095 static int
1096 send_vhost_reply(int sockfd, struct VhostUserMsg *msg)
1097 {
1098         if (!msg)
1099                 return 0;
1100
1101         msg->flags &= ~VHOST_USER_VERSION_MASK;
1102         msg->flags &= ~VHOST_USER_NEED_REPLY;
1103         msg->flags |= VHOST_USER_VERSION;
1104         msg->flags |= VHOST_USER_REPLY_MASK;
1105
1106         return send_vhost_message(sockfd, msg);
1107 }
1108
1109 /*
1110  * Allocate a queue pair if it hasn't been allocated yet
1111  */
1112 static int
1113 vhost_user_check_and_alloc_queue_pair(struct virtio_net *dev, VhostUserMsg *msg)
1114 {
1115         uint16_t vring_idx;
1116
1117         switch (msg->request) {
1118         case VHOST_USER_SET_VRING_KICK:
1119         case VHOST_USER_SET_VRING_CALL:
1120         case VHOST_USER_SET_VRING_ERR:
1121                 vring_idx = msg->payload.u64 & VHOST_USER_VRING_IDX_MASK;
1122                 break;
1123         case VHOST_USER_SET_VRING_NUM:
1124         case VHOST_USER_SET_VRING_BASE:
1125         case VHOST_USER_SET_VRING_ENABLE:
1126                 vring_idx = msg->payload.state.index;
1127                 break;
1128         case VHOST_USER_SET_VRING_ADDR:
1129                 vring_idx = msg->payload.addr.index;
1130                 break;
1131         default:
1132                 return 0;
1133         }
1134
1135         if (vring_idx >= VHOST_MAX_VRING) {
1136                 RTE_LOG(ERR, VHOST_CONFIG,
1137                         "invalid vring index: %u\n", vring_idx);
1138                 return -1;
1139         }
1140
1141         if (dev->virtqueue[vring_idx])
1142                 return 0;
1143
1144         return alloc_vring_queue(dev, vring_idx);
1145 }
1146
1147 int
1148 vhost_user_msg_handler(int vid, int fd)
1149 {
1150         struct virtio_net *dev;
1151         struct VhostUserMsg msg;
1152         int ret;
1153
1154         dev = get_device(vid);
1155         if (dev == NULL)
1156                 return -1;
1157
1158         if (!dev->notify_ops) {
1159                 dev->notify_ops = vhost_driver_callback_get(dev->ifname);
1160                 if (!dev->notify_ops) {
1161                         RTE_LOG(ERR, VHOST_CONFIG,
1162                                 "failed to get callback ops for driver %s\n",
1163                                 dev->ifname);
1164                         return -1;
1165                 }
1166         }
1167
1168         ret = read_vhost_message(fd, &msg);
1169         if (ret <= 0 || msg.request >= VHOST_USER_MAX) {
1170                 if (ret < 0)
1171                         RTE_LOG(ERR, VHOST_CONFIG,
1172                                 "vhost read message failed\n");
1173                 else if (ret == 0)
1174                         RTE_LOG(INFO, VHOST_CONFIG,
1175                                 "vhost peer closed\n");
1176                 else
1177                         RTE_LOG(ERR, VHOST_CONFIG,
1178                                 "vhost read incorrect message\n");
1179
1180                 return -1;
1181         }
1182
1183         ret = 0;
1184         if (msg.request != VHOST_USER_IOTLB_MSG)
1185                 RTE_LOG(INFO, VHOST_CONFIG, "read message %s\n",
1186                         vhost_message_str[msg.request]);
1187         else
1188                 RTE_LOG(DEBUG, VHOST_CONFIG, "read message %s\n",
1189                         vhost_message_str[msg.request]);
1190
1191         ret = vhost_user_check_and_alloc_queue_pair(dev, &msg);
1192         if (ret < 0) {
1193                 RTE_LOG(ERR, VHOST_CONFIG,
1194                         "failed to alloc queue\n");
1195                 return -1;
1196         }
1197
1198         switch (msg.request) {
1199         case VHOST_USER_GET_FEATURES:
1200                 msg.payload.u64 = vhost_user_get_features(dev);
1201                 msg.size = sizeof(msg.payload.u64);
1202                 send_vhost_reply(fd, &msg);
1203                 break;
1204         case VHOST_USER_SET_FEATURES:
1205                 vhost_user_set_features(dev, msg.payload.u64);
1206                 break;
1207
1208         case VHOST_USER_GET_PROTOCOL_FEATURES:
1209                 msg.payload.u64 = VHOST_USER_PROTOCOL_FEATURES;
1210                 msg.size = sizeof(msg.payload.u64);
1211                 send_vhost_reply(fd, &msg);
1212                 break;
1213         case VHOST_USER_SET_PROTOCOL_FEATURES:
1214                 vhost_user_set_protocol_features(dev, msg.payload.u64);
1215                 break;
1216
1217         case VHOST_USER_SET_OWNER:
1218                 vhost_user_set_owner();
1219                 break;
1220         case VHOST_USER_RESET_OWNER:
1221                 vhost_user_reset_owner(dev);
1222                 break;
1223
1224         case VHOST_USER_SET_MEM_TABLE:
1225                 ret = vhost_user_set_mem_table(dev, &msg);
1226                 break;
1227
1228         case VHOST_USER_SET_LOG_BASE:
1229                 vhost_user_set_log_base(dev, &msg);
1230
1231                 /* it needs a reply */
1232                 msg.size = sizeof(msg.payload.u64);
1233                 send_vhost_reply(fd, &msg);
1234                 break;
1235         case VHOST_USER_SET_LOG_FD:
1236                 close(msg.fds[0]);
1237                 RTE_LOG(INFO, VHOST_CONFIG, "not implemented.\n");
1238                 break;
1239
1240         case VHOST_USER_SET_VRING_NUM:
1241                 vhost_user_set_vring_num(dev, &msg);
1242                 break;
1243         case VHOST_USER_SET_VRING_ADDR:
1244                 vhost_user_set_vring_addr(dev, &msg);
1245                 break;
1246         case VHOST_USER_SET_VRING_BASE:
1247                 vhost_user_set_vring_base(dev, &msg);
1248                 break;
1249
1250         case VHOST_USER_GET_VRING_BASE:
1251                 vhost_user_get_vring_base(dev, &msg);
1252                 msg.size = sizeof(msg.payload.state);
1253                 send_vhost_reply(fd, &msg);
1254                 break;
1255
1256         case VHOST_USER_SET_VRING_KICK:
1257                 vhost_user_set_vring_kick(&dev, &msg);
1258                 break;
1259         case VHOST_USER_SET_VRING_CALL:
1260                 vhost_user_set_vring_call(dev, &msg);
1261                 break;
1262
1263         case VHOST_USER_SET_VRING_ERR:
1264                 if (!(msg.payload.u64 & VHOST_USER_VRING_NOFD_MASK))
1265                         close(msg.fds[0]);
1266                 RTE_LOG(INFO, VHOST_CONFIG, "not implemented\n");
1267                 break;
1268
1269         case VHOST_USER_GET_QUEUE_NUM:
1270                 msg.payload.u64 = VHOST_MAX_QUEUE_PAIRS;
1271                 msg.size = sizeof(msg.payload.u64);
1272                 send_vhost_reply(fd, &msg);
1273                 break;
1274
1275         case VHOST_USER_SET_VRING_ENABLE:
1276                 vhost_user_set_vring_enable(&dev, &msg);
1277                 break;
1278         case VHOST_USER_SEND_RARP:
1279                 vhost_user_send_rarp(dev, &msg);
1280                 break;
1281
1282         case VHOST_USER_NET_SET_MTU:
1283                 ret = vhost_user_net_set_mtu(dev, &msg);
1284                 break;
1285
1286         case VHOST_USER_SET_SLAVE_REQ_FD:
1287                 ret = vhost_user_set_req_fd(dev, &msg);
1288                 break;
1289
1290         case VHOST_USER_IOTLB_MSG:
1291                 ret = vhost_user_iotlb_msg(&dev, &msg);
1292                 break;
1293
1294         default:
1295                 ret = -1;
1296                 break;
1297
1298         }
1299
1300         if (msg.flags & VHOST_USER_NEED_REPLY) {
1301                 msg.payload.u64 = !!ret;
1302                 msg.size = sizeof(msg.payload.u64);
1303                 send_vhost_reply(fd, &msg);
1304         }
1305
1306         if (!(dev->flags & VIRTIO_DEV_RUNNING) && virtio_is_ready(dev)) {
1307                 dev->flags |= VIRTIO_DEV_READY;
1308
1309                 if (!(dev->flags & VIRTIO_DEV_RUNNING)) {
1310                         if (dev->dequeue_zero_copy) {
1311                                 RTE_LOG(INFO, VHOST_CONFIG,
1312                                                 "dequeue zero copy is enabled\n");
1313                         }
1314
1315                         if (dev->notify_ops->new_device(dev->vid) == 0)
1316                                 dev->flags |= VIRTIO_DEV_RUNNING;
1317                 }
1318         }
1319
1320         return 0;
1321 }
1322
1323 int
1324 vhost_user_iotlb_miss(struct virtio_net *dev, uint64_t iova, uint8_t perm)
1325 {
1326         int ret;
1327         struct VhostUserMsg msg = {
1328                 .request = (enum VhostUserRequest)VHOST_USER_SLAVE_IOTLB_MSG,
1329                 .flags = VHOST_USER_VERSION,
1330                 .size = sizeof(msg.payload.iotlb),
1331                 .payload.iotlb = {
1332                         .iova = iova,
1333                         .perm = perm,
1334                         .type = VHOST_IOTLB_MISS,
1335                 },
1336         };
1337
1338         ret = send_vhost_message(dev->slave_req_fd, &msg);
1339         if (ret < 0) {
1340                 RTE_LOG(ERR, VHOST_CONFIG,
1341                                 "Failed to send IOTLB miss message (%d)\n",
1342                                 ret);
1343                 return ret;
1344         }
1345
1346         return 0;
1347 }