xref: /linux/drivers/vhost/net.c (revision 0b87d2ab030fd969ea626b2da95594949a2c0508)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /* Copyright (C) 2009 Red Hat, Inc.
3  * Author: Michael S. Tsirkin <mst@redhat.com>
4  *
5  * virtio-net server in host kernel.
6  */
7 
8 #include <linux/compat.h>
9 #include <linux/eventfd.h>
10 #include <linux/vhost.h>
11 #include <linux/virtio_net.h>
12 #include <linux/miscdevice.h>
13 #include <linux/module.h>
14 #include <linux/moduleparam.h>
15 #include <linux/mutex.h>
16 #include <linux/workqueue.h>
17 #include <linux/file.h>
18 #include <linux/slab.h>
19 #include <linux/sched/clock.h>
20 #include <linux/sched/signal.h>
21 #include <linux/vmalloc.h>
22 
23 #include <linux/net.h>
24 #include <linux/if_packet.h>
25 #include <linux/if_arp.h>
26 #include <linux/if_tun.h>
27 #include <linux/if_macvlan.h>
28 #include <linux/if_tap.h>
29 #include <linux/if_vlan.h>
30 #include <linux/skb_array.h>
31 #include <linux/skbuff.h>
32 
33 #include <net/sock.h>
34 #include <net/xdp.h>
35 
36 #include "vhost.h"
37 
38 static int experimental_zcopytx = 0;
39 module_param(experimental_zcopytx, int, 0444);
40 MODULE_PARM_DESC(experimental_zcopytx, "Enable Zero Copy TX;"
41 		                       " 1 -Enable; 0 - Disable");
42 
43 /* Max number of bytes transferred before requeueing the job.
44  * Using this limit prevents one virtqueue from starving others. */
45 #define VHOST_NET_WEIGHT 0x80000
46 
47 /* Max number of packets transferred before requeueing the job.
48  * Using this limit prevents one virtqueue from starving others with small
49  * pkts.
50  */
51 #define VHOST_NET_PKT_WEIGHT 256
52 
53 /* MAX number of TX used buffers for outstanding zerocopy */
54 #define VHOST_MAX_PEND 128
55 #define VHOST_GOODCOPY_LEN 256
56 
57 /*
58  * For transmit, used buffer len is unused; we override it to track buffer
59  * status internally; used for zerocopy tx only.
60  */
61 /* Lower device DMA failed */
62 #define VHOST_DMA_FAILED_LEN	((__force __virtio32)3)
63 /* Lower device DMA done */
64 #define VHOST_DMA_DONE_LEN	((__force __virtio32)2)
65 /* Lower device DMA in progress */
66 #define VHOST_DMA_IN_PROGRESS	((__force __virtio32)1)
67 /* Buffer unused */
68 #define VHOST_DMA_CLEAR_LEN	((__force __virtio32)0)
69 
70 #define VHOST_DMA_IS_DONE(len) ((__force u32)(len) >= (__force u32)VHOST_DMA_DONE_LEN)
71 
72 static const int vhost_net_bits[] = {
73 	VHOST_FEATURES,
74 	VHOST_NET_F_VIRTIO_NET_HDR,
75 	VIRTIO_NET_F_MRG_RXBUF,
76 	VIRTIO_F_ACCESS_PLATFORM,
77 	VIRTIO_F_RING_RESET,
78 	VIRTIO_F_IN_ORDER,
79 	VIRTIO_NET_F_GUEST_UDP_TUNNEL_GSO,
80 	VIRTIO_NET_F_HOST_UDP_TUNNEL_GSO
81 };
82 
83 enum {
84 	VHOST_NET_BACKEND_FEATURES = (1ULL << VHOST_BACKEND_F_IOTLB_MSG_V2)
85 };
86 
87 enum {
88 	VHOST_NET_VQ_RX = 0,
89 	VHOST_NET_VQ_TX = 1,
90 	VHOST_NET_VQ_MAX = 2,
91 };
92 
93 struct vhost_net_ubuf_ref {
94 	/* refcount follows semantics similar to kref:
95 	 *  0: object is released
96 	 *  1: no outstanding ubufs
97 	 * >1: outstanding ubufs
98 	 */
99 	atomic_t refcount;
100 	wait_queue_head_t wait;
101 	struct vhost_virtqueue *vq;
102 	struct rcu_head rcu;
103 };
104 
105 #define VHOST_NET_BATCH 64
106 struct vhost_net_buf {
107 	void **queue;
108 	int tail;
109 	int head;
110 };
111 
112 struct vhost_net_virtqueue {
113 	struct vhost_virtqueue vq;
114 	size_t vhost_hlen;
115 	size_t sock_hlen;
116 	/* vhost zerocopy support fields below: */
117 	/* last used idx for outstanding DMA zerocopy buffers */
118 	int upend_idx;
119 	/* For TX, first used idx for DMA done zerocopy buffers
120 	 * For RX, number of batched heads
121 	 */
122 	int done_idx;
123 	/* Number of XDP frames batched */
124 	int batched_xdp;
125 	/* an array of userspace buffers info */
126 	struct ubuf_info_msgzc *ubuf_info;
127 	/* Reference counting for outstanding ubufs.
128 	 * Protected by vq mutex. Writers must also take device mutex. */
129 	struct vhost_net_ubuf_ref *ubufs;
130 	struct ptr_ring *rx_ring;
131 	struct vhost_net_buf rxq;
132 	/* Batched XDP buffs */
133 	struct xdp_buff *xdp;
134 };
135 
136 struct vhost_net {
137 	struct vhost_dev dev;
138 	struct vhost_net_virtqueue vqs[VHOST_NET_VQ_MAX];
139 	struct vhost_poll poll[VHOST_NET_VQ_MAX];
140 	/* Number of TX recently submitted.
141 	 * Protected by tx vq lock. */
142 	unsigned tx_packets;
143 	/* Number of times zerocopy TX recently failed.
144 	 * Protected by tx vq lock. */
145 	unsigned tx_zcopy_err;
146 	/* Flush in progress. Protected by tx vq lock. */
147 	bool tx_flush;
148 	/* Private page frag cache */
149 	struct page_frag_cache pf_cache;
150 };
151 
152 static unsigned vhost_net_zcopy_mask __read_mostly;
153 
154 static void *vhost_net_buf_get_ptr(struct vhost_net_buf *rxq)
155 {
156 	if (rxq->tail != rxq->head)
157 		return rxq->queue[rxq->head];
158 	else
159 		return NULL;
160 }
161 
162 static int vhost_net_buf_get_size(struct vhost_net_buf *rxq)
163 {
164 	return rxq->tail - rxq->head;
165 }
166 
167 static int vhost_net_buf_is_empty(struct vhost_net_buf *rxq)
168 {
169 	return rxq->tail == rxq->head;
170 }
171 
172 static void *vhost_net_buf_consume(struct vhost_net_buf *rxq)
173 {
174 	void *ret = vhost_net_buf_get_ptr(rxq);
175 	++rxq->head;
176 	return ret;
177 }
178 
179 static int vhost_net_buf_produce(struct sock *sk,
180 				 struct vhost_net_virtqueue *nvq)
181 {
182 	struct file *file = sk->sk_socket->file;
183 	struct vhost_net_buf *rxq = &nvq->rxq;
184 
185 	rxq->head = 0;
186 	spin_lock(&nvq->rx_ring->consumer_lock);
187 	rxq->tail = __ptr_ring_consume_batched(nvq->rx_ring, rxq->queue,
188 					       VHOST_NET_BATCH);
189 
190 	if (rxq->tail)
191 		tun_wake_queue(file, rxq->tail);
192 
193 	spin_unlock(&nvq->rx_ring->consumer_lock);
194 	return rxq->tail;
195 }
196 
197 static void vhost_net_buf_unproduce(struct vhost_net_virtqueue *nvq)
198 {
199 	struct vhost_net_buf *rxq = &nvq->rxq;
200 
201 	if (nvq->rx_ring && !vhost_net_buf_is_empty(rxq)) {
202 		ptr_ring_unconsume(nvq->rx_ring, rxq->queue + rxq->head,
203 				   vhost_net_buf_get_size(rxq),
204 				   tun_ptr_free);
205 		rxq->head = rxq->tail = 0;
206 	}
207 }
208 
209 static int vhost_net_buf_peek_len(void *ptr)
210 {
211 	if (tun_is_xdp_frame(ptr)) {
212 		struct xdp_frame *xdpf = tun_ptr_to_xdp(ptr);
213 
214 		return xdpf->len;
215 	}
216 
217 	return __skb_array_len_with_tag(ptr);
218 }
219 
220 static int vhost_net_buf_peek(struct sock *sk,
221 			      struct vhost_net_virtqueue *nvq)
222 {
223 	struct vhost_net_buf *rxq = &nvq->rxq;
224 
225 	if (!vhost_net_buf_is_empty(rxq))
226 		goto out;
227 
228 	if (!vhost_net_buf_produce(sk, nvq))
229 		return 0;
230 
231 out:
232 	return vhost_net_buf_peek_len(vhost_net_buf_get_ptr(rxq));
233 }
234 
235 static void vhost_net_buf_init(struct vhost_net_buf *rxq)
236 {
237 	rxq->head = rxq->tail = 0;
238 }
239 
240 static void vhost_net_enable_zcopy(int vq)
241 {
242 	vhost_net_zcopy_mask |= 0x1 << vq;
243 }
244 
245 static struct vhost_net_ubuf_ref *
246 vhost_net_ubuf_alloc(struct vhost_virtqueue *vq, bool zcopy)
247 {
248 	struct vhost_net_ubuf_ref *ubufs;
249 	/* No zero copy backend? Nothing to count. */
250 	if (!zcopy)
251 		return NULL;
252 	ubufs = kmalloc_obj(*ubufs);
253 	if (!ubufs)
254 		return ERR_PTR(-ENOMEM);
255 	atomic_set(&ubufs->refcount, 1);
256 	init_waitqueue_head(&ubufs->wait);
257 	ubufs->vq = vq;
258 	return ubufs;
259 }
260 
261 static int vhost_net_ubuf_put(struct vhost_net_ubuf_ref *ubufs)
262 {
263 	int r;
264 
265 	rcu_read_lock();
266 	r = atomic_sub_return(1, &ubufs->refcount);
267 	if (unlikely(!r))
268 		wake_up(&ubufs->wait);
269 	rcu_read_unlock();
270 	return r;
271 }
272 
273 static void vhost_net_ubuf_put_and_wait(struct vhost_net_ubuf_ref *ubufs)
274 {
275 	vhost_net_ubuf_put(ubufs);
276 	wait_event(ubufs->wait, !atomic_read(&ubufs->refcount));
277 }
278 
279 static void vhost_net_ubuf_put_wait_and_free(struct vhost_net_ubuf_ref *ubufs)
280 {
281 	vhost_net_ubuf_put_and_wait(ubufs);
282 	kfree_rcu(ubufs, rcu);
283 }
284 
285 static void vhost_net_clear_ubuf_info(struct vhost_net *n)
286 {
287 	int i;
288 
289 	for (i = 0; i < VHOST_NET_VQ_MAX; ++i) {
290 		kfree(n->vqs[i].ubuf_info);
291 		n->vqs[i].ubuf_info = NULL;
292 	}
293 }
294 
295 static int vhost_net_set_ubuf_info(struct vhost_net *n)
296 {
297 	bool zcopy;
298 	int i;
299 
300 	for (i = 0; i < VHOST_NET_VQ_MAX; ++i) {
301 		zcopy = vhost_net_zcopy_mask & (0x1 << i);
302 		if (!zcopy)
303 			continue;
304 		n->vqs[i].ubuf_info =
305 			kmalloc_objs(*n->vqs[i].ubuf_info, UIO_MAXIOV);
306 		if  (!n->vqs[i].ubuf_info)
307 			goto err;
308 	}
309 	return 0;
310 
311 err:
312 	vhost_net_clear_ubuf_info(n);
313 	return -ENOMEM;
314 }
315 
316 static void vhost_net_vq_reset(struct vhost_net *n)
317 {
318 	int i;
319 
320 	vhost_net_clear_ubuf_info(n);
321 
322 	for (i = 0; i < VHOST_NET_VQ_MAX; i++) {
323 		n->vqs[i].done_idx = 0;
324 		n->vqs[i].upend_idx = 0;
325 		n->vqs[i].ubufs = NULL;
326 		n->vqs[i].vhost_hlen = 0;
327 		n->vqs[i].sock_hlen = 0;
328 		vhost_net_buf_init(&n->vqs[i].rxq);
329 	}
330 
331 }
332 
333 static void vhost_net_tx_packet(struct vhost_net *net)
334 {
335 	++net->tx_packets;
336 	if (net->tx_packets < 1024)
337 		return;
338 	net->tx_packets = 0;
339 	net->tx_zcopy_err = 0;
340 }
341 
342 static void vhost_net_tx_err(struct vhost_net *net)
343 {
344 	++net->tx_zcopy_err;
345 }
346 
347 static bool vhost_net_tx_select_zcopy(struct vhost_net *net)
348 {
349 	/* TX flush waits for outstanding DMAs to be done.
350 	 * Don't start new DMAs.
351 	 */
352 	return !net->tx_flush &&
353 		net->tx_packets / 64 >= net->tx_zcopy_err;
354 }
355 
356 static bool vhost_sock_zcopy(struct socket *sock)
357 {
358 	return unlikely(experimental_zcopytx) &&
359 		sock_flag(sock->sk, SOCK_ZEROCOPY);
360 }
361 
362 static bool vhost_sock_xdp(struct socket *sock)
363 {
364 	return sock_flag(sock->sk, SOCK_XDP);
365 }
366 
367 /* In case of DMA done not in order in lower device driver for some reason.
368  * upend_idx is used to track end of used idx, done_idx is used to track head
369  * of used idx. Once lower device DMA done contiguously, we will signal KVM
370  * guest used idx.
371  */
372 static void vhost_zerocopy_signal_used(struct vhost_net *net,
373 				       struct vhost_virtqueue *vq)
374 {
375 	struct vhost_net_virtqueue *nvq =
376 		container_of(vq, struct vhost_net_virtqueue, vq);
377 	int i, add;
378 	int j = 0;
379 
380 	for (i = nvq->done_idx; i != nvq->upend_idx; i = (i + 1) % UIO_MAXIOV) {
381 		if (vq->heads[i].len == VHOST_DMA_FAILED_LEN)
382 			vhost_net_tx_err(net);
383 		if (VHOST_DMA_IS_DONE(vq->heads[i].len)) {
384 			vq->heads[i].len = VHOST_DMA_CLEAR_LEN;
385 			++j;
386 		} else
387 			break;
388 	}
389 	while (j) {
390 		add = min(UIO_MAXIOV - nvq->done_idx, j);
391 		vhost_add_used_and_signal_n(vq->dev, vq,
392 					    &vq->heads[nvq->done_idx],
393 					    NULL, add);
394 		nvq->done_idx = (nvq->done_idx + add) % UIO_MAXIOV;
395 		j -= add;
396 	}
397 }
398 
399 static void vhost_zerocopy_complete(struct sk_buff *skb,
400 				    struct ubuf_info *ubuf_base, bool success)
401 {
402 	struct ubuf_info_msgzc *ubuf = uarg_to_msgzc(ubuf_base);
403 	struct vhost_net_ubuf_ref *ubufs = ubuf->ctx;
404 	struct vhost_virtqueue *vq = ubufs->vq;
405 	int cnt;
406 
407 	rcu_read_lock_bh();
408 
409 	/* set len to mark this desc buffers done DMA */
410 	vq->heads[ubuf->desc].len = success ?
411 		VHOST_DMA_DONE_LEN : VHOST_DMA_FAILED_LEN;
412 	cnt = vhost_net_ubuf_put(ubufs);
413 
414 	/*
415 	 * Trigger polling thread if guest stopped submitting new buffers:
416 	 * in this case, the refcount after decrement will eventually reach 1.
417 	 * We also trigger polling periodically after each 16 packets
418 	 * (the value 16 here is more or less arbitrary, it's tuned to trigger
419 	 * less than 10% of times).
420 	 */
421 	if (cnt <= 1 || !(cnt % 16))
422 		vhost_poll_queue(&vq->poll);
423 
424 	rcu_read_unlock_bh();
425 }
426 
427 static const struct ubuf_info_ops vhost_ubuf_ops = {
428 	.complete = vhost_zerocopy_complete,
429 };
430 
431 static inline unsigned long busy_clock(void)
432 {
433 	return local_clock() >> 10;
434 }
435 
436 static bool vhost_can_busy_poll(unsigned long endtime)
437 {
438 	return likely(!need_resched() && !time_after(busy_clock(), endtime) &&
439 		      !signal_pending(current));
440 }
441 
442 static void vhost_net_disable_vq(struct vhost_net *n,
443 				 struct vhost_virtqueue *vq)
444 {
445 	struct vhost_net_virtqueue *nvq =
446 		container_of(vq, struct vhost_net_virtqueue, vq);
447 	struct vhost_poll *poll = n->poll + (nvq - n->vqs);
448 	if (!vhost_vq_get_backend(vq))
449 		return;
450 	vhost_poll_stop(poll);
451 }
452 
453 static int vhost_net_enable_vq(struct vhost_net *n,
454 				struct vhost_virtqueue *vq)
455 {
456 	struct vhost_net_virtqueue *nvq =
457 		container_of(vq, struct vhost_net_virtqueue, vq);
458 	struct vhost_poll *poll = n->poll + (nvq - n->vqs);
459 	struct socket *sock;
460 
461 	sock = vhost_vq_get_backend(vq);
462 	if (!sock)
463 		return 0;
464 
465 	return vhost_poll_start(poll, sock->file);
466 }
467 
468 static void vhost_net_signal_used(struct vhost_net_virtqueue *nvq,
469 				  unsigned int count)
470 {
471 	struct vhost_virtqueue *vq = &nvq->vq;
472 	struct vhost_dev *dev = vq->dev;
473 
474 	if (!nvq->done_idx)
475 		return;
476 
477 	vhost_add_used_and_signal_n(dev, vq, vq->heads,
478 				    vq->nheads, count);
479 	nvq->done_idx = 0;
480 }
481 
482 static void vhost_tx_batch(struct vhost_net *net,
483 			   struct vhost_net_virtqueue *nvq,
484 			   struct socket *sock,
485 			   struct msghdr *msghdr)
486 {
487 	struct vhost_virtqueue *vq = &nvq->vq;
488 	bool in_order = vhost_has_feature(vq, VIRTIO_F_IN_ORDER);
489 	struct tun_msg_ctl ctl = {
490 		.type = TUN_MSG_PTR,
491 		.num = nvq->batched_xdp,
492 		.ptr = nvq->xdp,
493 	};
494 	int i, err;
495 
496 	if (in_order) {
497 		vq->heads[0].len = 0;
498 		vq->nheads[0] = nvq->done_idx;
499 	}
500 
501 	if (nvq->batched_xdp == 0)
502 		goto signal_used;
503 
504 	msghdr->msg_control = &ctl;
505 	msghdr->msg_controllen = sizeof(ctl);
506 	err = sock->ops->sendmsg(sock, msghdr, 0);
507 	if (unlikely(err < 0)) {
508 		vq_err(&nvq->vq, "Fail to batch sending packets\n");
509 
510 		/* free pages owned by XDP; since this is an unlikely error path,
511 		 * keep it simple and avoid more complex bulk update for the
512 		 * used pages
513 		 */
514 		for (i = 0; i < nvq->batched_xdp; ++i)
515 			put_page(virt_to_head_page(nvq->xdp[i].data));
516 		nvq->batched_xdp = 0;
517 		nvq->done_idx = 0;
518 		return;
519 	}
520 
521 signal_used:
522 	vhost_net_signal_used(nvq, in_order ? 1 : nvq->done_idx);
523 	nvq->batched_xdp = 0;
524 }
525 
526 static int sock_has_rx_data(struct socket *sock)
527 {
528 	if (unlikely(!sock))
529 		return 0;
530 
531 	if (sock->ops->peek_len)
532 		return sock->ops->peek_len(sock);
533 
534 	return skb_queue_empty(&sock->sk->sk_receive_queue);
535 }
536 
537 static void vhost_net_busy_poll_try_queue(struct vhost_net *net,
538 					  struct vhost_virtqueue *vq)
539 {
540 	if (!vhost_vq_avail_empty(&net->dev, vq)) {
541 		vhost_poll_queue(&vq->poll);
542 	} else if (unlikely(vhost_enable_notify(&net->dev, vq))) {
543 		vhost_disable_notify(&net->dev, vq);
544 		vhost_poll_queue(&vq->poll);
545 	}
546 }
547 
548 static void vhost_net_busy_poll(struct vhost_net *net,
549 				struct vhost_virtqueue *rvq,
550 				struct vhost_virtqueue *tvq,
551 				bool *busyloop_intr,
552 				bool poll_rx)
553 {
554 	unsigned long busyloop_timeout;
555 	unsigned long endtime;
556 	struct socket *sock;
557 	struct vhost_virtqueue *vq = poll_rx ? tvq : rvq;
558 
559 	/* Try to hold the vq mutex of the paired virtqueue. We can't
560 	 * use mutex_lock() here since we could not guarantee a
561 	 * consistenet lock ordering.
562 	 */
563 	if (!mutex_trylock(&vq->mutex))
564 		return;
565 
566 	vhost_disable_notify(&net->dev, vq);
567 	sock = vhost_vq_get_backend(rvq);
568 
569 	busyloop_timeout = poll_rx ? rvq->busyloop_timeout:
570 				     tvq->busyloop_timeout;
571 
572 	migrate_disable();
573 	endtime = busy_clock() + busyloop_timeout;
574 
575 	while (vhost_can_busy_poll(endtime)) {
576 		if (vhost_vq_has_work(vq)) {
577 			*busyloop_intr = true;
578 			break;
579 		}
580 
581 		if ((sock_has_rx_data(sock) &&
582 		     !vhost_vq_avail_empty(&net->dev, rvq)) ||
583 		    !vhost_vq_avail_empty(&net->dev, tvq))
584 			break;
585 
586 		cpu_relax();
587 	}
588 
589 	migrate_enable();
590 
591 	if (poll_rx || sock_has_rx_data(sock))
592 		vhost_net_busy_poll_try_queue(net, vq);
593 	else if (!poll_rx) /* On tx here, sock has no rx data. */
594 		vhost_enable_notify(&net->dev, rvq);
595 
596 	mutex_unlock(&vq->mutex);
597 }
598 
599 static int vhost_net_tx_get_vq_desc(struct vhost_net *net,
600 				    struct vhost_net_virtqueue *tnvq,
601 				    unsigned int *out_num, unsigned int *in_num,
602 				    struct msghdr *msghdr, bool *busyloop_intr,
603 				    unsigned int *ndesc)
604 {
605 	struct vhost_net_virtqueue *rnvq = &net->vqs[VHOST_NET_VQ_RX];
606 	struct vhost_virtqueue *rvq = &rnvq->vq;
607 	struct vhost_virtqueue *tvq = &tnvq->vq;
608 
609 	int r = vhost_get_vq_desc_n(tvq, tvq->iov, ARRAY_SIZE(tvq->iov),
610 				    out_num, in_num, NULL, NULL, ndesc);
611 
612 	if (r == tvq->num && tvq->busyloop_timeout) {
613 		/* Flush batched packets first */
614 		if (!vhost_sock_zcopy(vhost_vq_get_backend(tvq)))
615 			vhost_tx_batch(net, tnvq,
616 				       vhost_vq_get_backend(tvq),
617 				       msghdr);
618 
619 		vhost_net_busy_poll(net, rvq, tvq, busyloop_intr, false);
620 
621 		r = vhost_get_vq_desc_n(tvq, tvq->iov, ARRAY_SIZE(tvq->iov),
622 					out_num, in_num, NULL, NULL, ndesc);
623 	}
624 
625 	return r;
626 }
627 
628 static bool vhost_exceeds_maxpend(struct vhost_net *net)
629 {
630 	struct vhost_net_virtqueue *nvq = &net->vqs[VHOST_NET_VQ_TX];
631 	struct vhost_virtqueue *vq = &nvq->vq;
632 
633 	return (nvq->upend_idx + UIO_MAXIOV - nvq->done_idx) % UIO_MAXIOV >
634 	       min_t(unsigned int, VHOST_MAX_PEND, vq->num >> 2);
635 }
636 
637 static size_t init_iov_iter(struct vhost_virtqueue *vq, struct iov_iter *iter,
638 			    size_t hdr_size, int out)
639 {
640 	/* Skip header. TODO: support TSO. */
641 	size_t len = iov_length(vq->iov, out);
642 
643 	iov_iter_init(iter, ITER_SOURCE, vq->iov, out, len);
644 	iov_iter_advance(iter, hdr_size);
645 
646 	return iov_iter_count(iter);
647 }
648 
649 static int get_tx_bufs(struct vhost_net *net,
650 		       struct vhost_net_virtqueue *nvq,
651 		       struct msghdr *msg,
652 		       unsigned int *out, unsigned int *in,
653 		       size_t *len, bool *busyloop_intr,
654 		       unsigned int *ndesc)
655 {
656 	struct vhost_virtqueue *vq = &nvq->vq;
657 	int ret;
658 
659 	ret = vhost_net_tx_get_vq_desc(net, nvq, out, in, msg,
660 				       busyloop_intr, ndesc);
661 
662 	if (ret < 0 || ret == vq->num)
663 		return ret;
664 
665 	if (*in) {
666 		vq_err(vq, "Unexpected descriptor format for TX: out %d, int %d\n",
667 			*out, *in);
668 		return -EFAULT;
669 	}
670 
671 	/* Sanity check */
672 	*len = init_iov_iter(vq, &msg->msg_iter, nvq->vhost_hlen, *out);
673 	if (*len == 0) {
674 		vq_err(vq, "Unexpected header len for TX: %zd expected %zd\n",
675 			*len, nvq->vhost_hlen);
676 		return -EFAULT;
677 	}
678 
679 	return ret;
680 }
681 
682 static bool tx_can_batch(struct vhost_virtqueue *vq, size_t total_len)
683 {
684 	return total_len < VHOST_NET_WEIGHT &&
685 	       !vhost_vq_avail_empty(vq->dev, vq);
686 }
687 
688 #define VHOST_NET_RX_PAD (NET_IP_ALIGN + NET_SKB_PAD)
689 
690 static int vhost_net_build_xdp(struct vhost_net_virtqueue *nvq,
691 			       struct iov_iter *from)
692 {
693 	struct vhost_virtqueue *vq = &nvq->vq;
694 	struct vhost_net *net = container_of(vq->dev, struct vhost_net,
695 					     dev);
696 	struct socket *sock = vhost_vq_get_backend(vq);
697 	struct virtio_net_hdr *gso;
698 	struct xdp_buff *xdp = &nvq->xdp[nvq->batched_xdp];
699 	size_t len = iov_iter_count(from);
700 	int headroom = vhost_sock_xdp(sock) ? XDP_PACKET_HEADROOM : 0;
701 	int buflen = SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
702 	int pad = SKB_DATA_ALIGN(VHOST_NET_RX_PAD + headroom + nvq->sock_hlen);
703 	int sock_hlen = nvq->sock_hlen;
704 	void *buf;
705 	int copied;
706 	int ret;
707 
708 	if (unlikely(len < nvq->sock_hlen))
709 		return -EFAULT;
710 
711 	if (SKB_DATA_ALIGN(len + pad) +
712 	    SKB_DATA_ALIGN(sizeof(struct skb_shared_info)) > PAGE_SIZE)
713 		return -ENOSPC;
714 
715 	buflen += SKB_DATA_ALIGN(len + pad);
716 	buf = page_frag_alloc_align(&net->pf_cache, buflen, GFP_KERNEL,
717 				    SMP_CACHE_BYTES);
718 	if (unlikely(!buf))
719 		return -ENOMEM;
720 
721 	copied = copy_from_iter(buf + pad - sock_hlen, len, from);
722 	if (copied != len) {
723 		ret = -EFAULT;
724 		goto err;
725 	}
726 
727 	gso = buf + pad - sock_hlen;
728 
729 	if (!sock_hlen)
730 		memset(buf, 0, pad);
731 
732 	if ((gso->flags & VIRTIO_NET_HDR_F_NEEDS_CSUM) &&
733 	    vhost16_to_cpu(vq, gso->csum_start) +
734 	    vhost16_to_cpu(vq, gso->csum_offset) + 2 >
735 	    vhost16_to_cpu(vq, gso->hdr_len)) {
736 		gso->hdr_len = cpu_to_vhost16(vq,
737 			       vhost16_to_cpu(vq, gso->csum_start) +
738 			       vhost16_to_cpu(vq, gso->csum_offset) + 2);
739 
740 		if (vhost16_to_cpu(vq, gso->hdr_len) > len) {
741 			ret = -EINVAL;
742 			goto err;
743 		}
744 	}
745 
746 	/* pad contains sock_hlen */
747 	memcpy(buf, buf + pad - sock_hlen, sock_hlen);
748 
749 	xdp_init_buff(xdp, buflen, NULL);
750 	xdp_prepare_buff(xdp, buf, pad, len - sock_hlen, true);
751 
752 	++nvq->batched_xdp;
753 
754 	return 0;
755 
756 err:
757 	page_frag_free(buf);
758 	return ret;
759 }
760 
761 static void handle_tx_copy(struct vhost_net *net, struct socket *sock)
762 {
763 	struct vhost_net_virtqueue *nvq = &net->vqs[VHOST_NET_VQ_TX];
764 	struct vhost_virtqueue *vq = &nvq->vq;
765 	unsigned out, in;
766 	int head;
767 	struct msghdr msg = {
768 		.msg_name = NULL,
769 		.msg_namelen = 0,
770 		.msg_control = NULL,
771 		.msg_controllen = 0,
772 		.msg_flags = MSG_DONTWAIT,
773 	};
774 	size_t len, total_len = 0;
775 	int err;
776 	int sent_pkts = 0;
777 	bool sock_can_batch = (sock->sk->sk_sndbuf == INT_MAX);
778 	bool in_order = vhost_has_feature(vq, VIRTIO_F_IN_ORDER);
779 	unsigned int ndesc = 0;
780 
781 	do {
782 		bool busyloop_intr = false;
783 
784 		if (nvq->done_idx == VHOST_NET_BATCH)
785 			vhost_tx_batch(net, nvq, sock, &msg);
786 
787 		head = get_tx_bufs(net, nvq, &msg, &out, &in, &len,
788 				   &busyloop_intr, &ndesc);
789 		/* On error, stop handling until the next kick. */
790 		if (unlikely(head < 0))
791 			break;
792 		/* Nothing new?  Wait for eventfd to tell us they refilled. */
793 		if (head == vq->num) {
794 			/* Flush batched packets to handle pending RX
795 			 * work (if busyloop_intr is set) and to avoid
796 			 * unnecessary virtqueue kicks.
797 			 */
798 			vhost_tx_batch(net, nvq, sock, &msg);
799 			if (unlikely(busyloop_intr)) {
800 				vhost_poll_queue(&vq->poll);
801 			} else if (unlikely(vhost_enable_notify(&net->dev,
802 								vq))) {
803 				vhost_disable_notify(&net->dev, vq);
804 				continue;
805 			}
806 			break;
807 		}
808 
809 		total_len += len;
810 
811 		/* For simplicity, TX batching is only enabled if
812 		 * sndbuf is unlimited.
813 		 */
814 		if (sock_can_batch) {
815 			err = vhost_net_build_xdp(nvq, &msg.msg_iter);
816 			if (!err) {
817 				goto done;
818 			} else if (unlikely(err != -ENOSPC)) {
819 				vhost_tx_batch(net, nvq, sock, &msg);
820 				vhost_discard_vq_desc(vq, 1, ndesc);
821 				vhost_net_enable_vq(net, vq);
822 				break;
823 			}
824 
825 			if (nvq->batched_xdp) {
826 				/* We can't build XDP buff, go for single
827 				 * packet path but let's flush batched
828 				 * packets.
829 				 */
830 				vhost_tx_batch(net, nvq, sock, &msg);
831 			}
832 			msg.msg_control = NULL;
833 		} else {
834 			if (tx_can_batch(vq, total_len))
835 				msg.msg_flags |= MSG_MORE;
836 			else
837 				msg.msg_flags &= ~MSG_MORE;
838 		}
839 
840 		err = sock->ops->sendmsg(sock, &msg, len);
841 		if (unlikely(err < 0)) {
842 			if (err == -EAGAIN || err == -ENOMEM || err == -ENOBUFS) {
843 				vhost_discard_vq_desc(vq, 1, ndesc);
844 				vhost_net_enable_vq(net, vq);
845 				break;
846 			}
847 			pr_debug("Fail to send packet: err %d", err);
848 		} else if (unlikely(err != len))
849 			pr_debug("Truncated TX packet: len %d != %zd\n",
850 				 err, len);
851 done:
852 		if (in_order) {
853 			vq->heads[0].id = cpu_to_vhost32(vq, head);
854 		} else {
855 			vq->heads[nvq->done_idx].id = cpu_to_vhost32(vq, head);
856 			vq->heads[nvq->done_idx].len = 0;
857 		}
858 		++nvq->done_idx;
859 	} while (likely(!vhost_exceeds_weight(vq, ++sent_pkts, total_len)));
860 
861 	vhost_tx_batch(net, nvq, sock, &msg);
862 }
863 
864 static void handle_tx_zerocopy(struct vhost_net *net, struct socket *sock)
865 {
866 	struct vhost_net_virtqueue *nvq = &net->vqs[VHOST_NET_VQ_TX];
867 	struct vhost_virtqueue *vq = &nvq->vq;
868 	unsigned out, in;
869 	int head;
870 	struct msghdr msg = {
871 		.msg_name = NULL,
872 		.msg_namelen = 0,
873 		.msg_control = NULL,
874 		.msg_controllen = 0,
875 		.msg_flags = MSG_DONTWAIT,
876 	};
877 	struct tun_msg_ctl ctl;
878 	size_t len, total_len = 0;
879 	int err;
880 	struct vhost_net_ubuf_ref *ubufs;
881 	struct ubuf_info_msgzc *ubuf;
882 	unsigned int ndesc = 0;
883 	bool zcopy_used;
884 	int sent_pkts = 0;
885 
886 	do {
887 		bool busyloop_intr;
888 
889 		/* Release DMAs done buffers first */
890 		vhost_zerocopy_signal_used(net, vq);
891 
892 		busyloop_intr = false;
893 		head = get_tx_bufs(net, nvq, &msg, &out, &in, &len,
894 				   &busyloop_intr, &ndesc);
895 		/* On error, stop handling until the next kick. */
896 		if (unlikely(head < 0))
897 			break;
898 		/* Nothing new?  Wait for eventfd to tell us they refilled. */
899 		if (head == vq->num) {
900 			if (unlikely(busyloop_intr)) {
901 				vhost_poll_queue(&vq->poll);
902 			} else if (unlikely(vhost_enable_notify(&net->dev, vq))) {
903 				vhost_disable_notify(&net->dev, vq);
904 				continue;
905 			}
906 			break;
907 		}
908 
909 		zcopy_used = len >= VHOST_GOODCOPY_LEN
910 			     && !vhost_exceeds_maxpend(net)
911 			     && vhost_net_tx_select_zcopy(net);
912 
913 		/* use msg_control to pass vhost zerocopy ubuf info to skb */
914 		if (zcopy_used) {
915 			ubuf = nvq->ubuf_info + nvq->upend_idx;
916 			vq->heads[nvq->upend_idx].id = cpu_to_vhost32(vq, head);
917 			vq->heads[nvq->upend_idx].len = VHOST_DMA_IN_PROGRESS;
918 			ubuf->ctx = nvq->ubufs;
919 			ubuf->desc = nvq->upend_idx;
920 			ubuf->ubuf.ops = &vhost_ubuf_ops;
921 			ubuf->ubuf.flags = SKBFL_ZEROCOPY_FRAG;
922 			refcount_set(&ubuf->ubuf.refcnt, 1);
923 			msg.msg_control = &ctl;
924 			ctl.type = TUN_MSG_UBUF;
925 			ctl.ptr = &ubuf->ubuf;
926 			msg.msg_controllen = sizeof(ctl);
927 			ubufs = nvq->ubufs;
928 			atomic_inc(&ubufs->refcount);
929 			nvq->upend_idx = (nvq->upend_idx + 1) % UIO_MAXIOV;
930 		} else {
931 			msg.msg_control = NULL;
932 			ubufs = NULL;
933 		}
934 		total_len += len;
935 		if (tx_can_batch(vq, total_len) &&
936 		    likely(!vhost_exceeds_maxpend(net))) {
937 			msg.msg_flags |= MSG_MORE;
938 		} else {
939 			msg.msg_flags &= ~MSG_MORE;
940 		}
941 
942 		err = sock->ops->sendmsg(sock, &msg, len);
943 		if (unlikely(err < 0)) {
944 			bool retry = err == -EAGAIN || err == -ENOMEM || err == -ENOBUFS;
945 
946 			if (zcopy_used) {
947 				if (vq->heads[ubuf->desc].len == VHOST_DMA_IN_PROGRESS)
948 					vhost_net_ubuf_put(ubufs);
949 				if (retry)
950 					nvq->upend_idx = ((unsigned)nvq->upend_idx - 1)
951 						% UIO_MAXIOV;
952 				else
953 					vq->heads[ubuf->desc].len = VHOST_DMA_DONE_LEN;
954 			}
955 			if (retry) {
956 				vhost_discard_vq_desc(vq, 1, ndesc);
957 				vhost_net_enable_vq(net, vq);
958 				break;
959 			}
960 			pr_debug("Fail to send packet: err %d", err);
961 		} else if (unlikely(err != len))
962 			pr_debug("Truncated TX packet: "
963 				 " len %d != %zd\n", err, len);
964 		if (!zcopy_used)
965 			vhost_add_used_and_signal(&net->dev, vq, head, 0);
966 		else
967 			vhost_zerocopy_signal_used(net, vq);
968 		vhost_net_tx_packet(net);
969 	} while (likely(!vhost_exceeds_weight(vq, ++sent_pkts, total_len)));
970 }
971 
972 /* Expects to be always run from workqueue - which acts as
973  * read-size critical section for our kind of RCU. */
974 static void handle_tx(struct vhost_net *net)
975 {
976 	struct vhost_net_virtqueue *nvq = &net->vqs[VHOST_NET_VQ_TX];
977 	struct vhost_virtqueue *vq = &nvq->vq;
978 	struct socket *sock;
979 
980 	mutex_lock_nested(&vq->mutex, VHOST_NET_VQ_TX);
981 	sock = vhost_vq_get_backend(vq);
982 	if (!sock)
983 		goto out;
984 
985 	if (!vq_meta_prefetch(vq))
986 		goto out;
987 
988 	vhost_disable_notify(&net->dev, vq);
989 	vhost_net_disable_vq(net, vq);
990 
991 	if (vhost_sock_zcopy(sock))
992 		handle_tx_zerocopy(net, sock);
993 	else
994 		handle_tx_copy(net, sock);
995 
996 out:
997 	mutex_unlock(&vq->mutex);
998 }
999 
1000 static int peek_head_len(struct vhost_net_virtqueue *rvq, struct sock *sk)
1001 {
1002 	struct sk_buff *head;
1003 	int len = 0;
1004 	unsigned long flags;
1005 
1006 	if (rvq->rx_ring)
1007 		return vhost_net_buf_peek(sk, rvq);
1008 
1009 	spin_lock_irqsave(&sk->sk_receive_queue.lock, flags);
1010 	head = skb_peek(&sk->sk_receive_queue);
1011 	if (likely(head)) {
1012 		len = head->len;
1013 		if (skb_vlan_tag_present(head))
1014 			len += VLAN_HLEN;
1015 	}
1016 
1017 	spin_unlock_irqrestore(&sk->sk_receive_queue.lock, flags);
1018 	return len;
1019 }
1020 
1021 static int vhost_net_rx_peek_head_len(struct vhost_net *net, struct sock *sk,
1022 				      bool *busyloop_intr, unsigned int *count)
1023 {
1024 	struct vhost_net_virtqueue *rnvq = &net->vqs[VHOST_NET_VQ_RX];
1025 	struct vhost_net_virtqueue *tnvq = &net->vqs[VHOST_NET_VQ_TX];
1026 	struct vhost_virtqueue *rvq = &rnvq->vq;
1027 	struct vhost_virtqueue *tvq = &tnvq->vq;
1028 	int len = peek_head_len(rnvq, sk);
1029 
1030 	if (!len && rvq->busyloop_timeout) {
1031 		/* Flush batched heads first */
1032 		vhost_net_signal_used(rnvq, *count);
1033 		*count = 0;
1034 		/* Both tx vq and rx socket were polled here */
1035 		vhost_net_busy_poll(net, rvq, tvq, busyloop_intr, true);
1036 
1037 		len = peek_head_len(rnvq, sk);
1038 	}
1039 
1040 	return len;
1041 }
1042 
1043 /* This is a multi-buffer version of vhost_get_desc, that works if
1044  *	vq has read descriptors only.
1045  * @nvq		- the relevant vhost_net virtqueue
1046  * @datalen	- data length we'll be reading
1047  * @iovcount	- returned count of io vectors we fill
1048  * @log		- vhost log
1049  * @log_num	- log offset
1050  * @quota       - headcount quota, 1 for big buffer
1051  *	returns number of buffer heads allocated, negative on error
1052  */
1053 static int get_rx_bufs(struct vhost_net_virtqueue *nvq,
1054 		       struct vring_used_elem *heads,
1055 		       u16 *nheads,
1056 		       int datalen,
1057 		       unsigned *iovcount,
1058 		       struct vhost_log *log,
1059 		       unsigned *log_num,
1060 		       unsigned int quota,
1061 		       unsigned int *ndesc)
1062 {
1063 	struct vhost_virtqueue *vq = &nvq->vq;
1064 	bool in_order = vhost_has_feature(vq, VIRTIO_F_IN_ORDER);
1065 	unsigned int out, in, desc_num, n = 0;
1066 	int seg = 0;
1067 	int headcount = 0;
1068 	unsigned d;
1069 	int r, nlogs = 0;
1070 	/* len is always initialized before use since we are always called with
1071 	 * datalen > 0.
1072 	 */
1073 	u32 len;
1074 
1075 	while (datalen > 0 && headcount < quota) {
1076 		if (unlikely(seg >= UIO_MAXIOV)) {
1077 			r = -ENOBUFS;
1078 			goto err;
1079 		}
1080 		r = vhost_get_vq_desc_n(vq, vq->iov + seg,
1081 					ARRAY_SIZE(vq->iov) - seg, &out,
1082 					&in, log, log_num, &desc_num);
1083 		if (unlikely(r < 0))
1084 			goto err;
1085 
1086 		d = r;
1087 		if (d == vq->num) {
1088 			r = 0;
1089 			goto err;
1090 		}
1091 		if (unlikely(out || in <= 0)) {
1092 			vq_err(vq, "unexpected descriptor format for RX: "
1093 				"out %d, in %d\n", out, in);
1094 			r = -EINVAL;
1095 			goto err;
1096 		}
1097 		if (unlikely(log)) {
1098 			nlogs += *log_num;
1099 			log += *log_num;
1100 		}
1101 		len = iov_length(vq->iov + seg, in);
1102 		if (!in_order) {
1103 			heads[headcount].id = cpu_to_vhost32(vq, d);
1104 			heads[headcount].len = cpu_to_vhost32(vq, len);
1105 		}
1106 		++headcount;
1107 		datalen -= len;
1108 		seg += in;
1109 		n += desc_num;
1110 	}
1111 
1112 	*iovcount = seg;
1113 	if (unlikely(log))
1114 		*log_num = nlogs;
1115 
1116 	/* Detect overrun */
1117 	if (unlikely(datalen > 0)) {
1118 		r = UIO_MAXIOV + 1;
1119 		goto err;
1120 	}
1121 
1122 	if (!in_order)
1123 		heads[headcount - 1].len = cpu_to_vhost32(vq, len + datalen);
1124 	else {
1125 		heads[0].len = cpu_to_vhost32(vq, len + datalen);
1126 		heads[0].id = cpu_to_vhost32(vq, d);
1127 		nheads[0] = headcount;
1128 	}
1129 
1130 	*ndesc = n;
1131 
1132 	return headcount;
1133 err:
1134 	vhost_discard_vq_desc(vq, headcount, n);
1135 	return r;
1136 }
1137 
1138 /* Expects to be always run from workqueue - which acts as
1139  * read-size critical section for our kind of RCU. */
1140 static void handle_rx(struct vhost_net *net)
1141 {
1142 	struct vhost_net_virtqueue *nvq = &net->vqs[VHOST_NET_VQ_RX];
1143 	struct vhost_virtqueue *vq = &nvq->vq;
1144 	bool in_order = vhost_has_feature(vq, VIRTIO_F_IN_ORDER);
1145 	unsigned int count = 0;
1146 	unsigned in, log;
1147 	struct vhost_log *vq_log;
1148 	struct msghdr msg = {
1149 		.msg_name = NULL,
1150 		.msg_namelen = 0,
1151 		.msg_control = NULL, /* FIXME: get and handle RX aux data. */
1152 		.msg_controllen = 0,
1153 		.msg_flags = MSG_DONTWAIT,
1154 	};
1155 	struct virtio_net_hdr hdr = {
1156 		.flags = 0,
1157 		.gso_type = VIRTIO_NET_HDR_GSO_NONE
1158 	};
1159 	size_t total_len = 0;
1160 	int err, mergeable;
1161 	s16 headcount;
1162 	size_t vhost_hlen, sock_hlen;
1163 	size_t vhost_len, sock_len;
1164 	bool busyloop_intr = false;
1165 	bool set_num_buffers;
1166 	struct socket *sock;
1167 	struct iov_iter fixup;
1168 	__virtio16 num_buffers;
1169 	int recv_pkts = 0;
1170 	unsigned int ndesc;
1171 
1172 	mutex_lock_nested(&vq->mutex, VHOST_NET_VQ_RX);
1173 	sock = vhost_vq_get_backend(vq);
1174 	if (!sock)
1175 		goto out;
1176 
1177 	if (!vq_meta_prefetch(vq))
1178 		goto out;
1179 
1180 	vhost_disable_notify(&net->dev, vq);
1181 	vhost_net_disable_vq(net, vq);
1182 
1183 	vhost_hlen = nvq->vhost_hlen;
1184 	sock_hlen = nvq->sock_hlen;
1185 
1186 	vq_log = unlikely(vhost_has_feature(vq, VHOST_F_LOG_ALL)) ?
1187 		vq->log : NULL;
1188 	mergeable = vhost_has_feature(vq, VIRTIO_NET_F_MRG_RXBUF);
1189 	set_num_buffers = mergeable ||
1190 			  vhost_has_feature(vq, VIRTIO_F_VERSION_1);
1191 
1192 	do {
1193 		sock_len = vhost_net_rx_peek_head_len(net, sock->sk,
1194 						      &busyloop_intr, &count);
1195 		if (!sock_len)
1196 			break;
1197 		sock_len += sock_hlen;
1198 		vhost_len = sock_len + vhost_hlen;
1199 		headcount = get_rx_bufs(nvq, vq->heads + count,
1200 					vq->nheads + count,
1201 					vhost_len, &in, vq_log, &log,
1202 					likely(mergeable) ? UIO_MAXIOV : 1,
1203 					&ndesc);
1204 		/* On error, stop handling until the next kick. */
1205 		if (unlikely(headcount < 0))
1206 			goto out;
1207 		/* OK, now we need to know about added descriptors. */
1208 		if (!headcount) {
1209 			if (unlikely(busyloop_intr)) {
1210 				vhost_poll_queue(&vq->poll);
1211 			} else if (unlikely(vhost_enable_notify(&net->dev, vq))) {
1212 				/* They have slipped one in as we were
1213 				 * doing that: check again. */
1214 				vhost_disable_notify(&net->dev, vq);
1215 				continue;
1216 			}
1217 			/* Nothing new?  Wait for eventfd to tell us
1218 			 * they refilled. */
1219 			goto out;
1220 		}
1221 		busyloop_intr = false;
1222 		if (nvq->rx_ring)
1223 			msg.msg_control = vhost_net_buf_consume(&nvq->rxq);
1224 		/* On overrun, truncate and discard */
1225 		if (unlikely(headcount > UIO_MAXIOV)) {
1226 			iov_iter_init(&msg.msg_iter, ITER_DEST, vq->iov, 1, 1);
1227 			err = sock->ops->recvmsg(sock, &msg,
1228 						 1, MSG_DONTWAIT | MSG_TRUNC);
1229 			pr_debug("Discarded rx packet: len %zd\n", sock_len);
1230 			continue;
1231 		}
1232 		/* We don't need to be notified again. */
1233 		iov_iter_init(&msg.msg_iter, ITER_DEST, vq->iov, in, vhost_len);
1234 		fixup = msg.msg_iter;
1235 		if (unlikely((vhost_hlen))) {
1236 			/* We will supply the header ourselves
1237 			 * TODO: support TSO.
1238 			 */
1239 			iov_iter_advance(&msg.msg_iter, vhost_hlen);
1240 		}
1241 		err = sock->ops->recvmsg(sock, &msg,
1242 					 sock_len, MSG_DONTWAIT | MSG_TRUNC);
1243 		/* Userspace might have consumed the packet meanwhile:
1244 		 * it's not supposed to do this usually, but might be hard
1245 		 * to prevent. Discard data we got (if any) and keep going. */
1246 		if (unlikely(err != sock_len)) {
1247 			pr_debug("Discarded rx packet: "
1248 				 " len %d, expected %zd\n", err, sock_len);
1249 			vhost_discard_vq_desc(vq, headcount, ndesc);
1250 			continue;
1251 		}
1252 		/* Supply virtio_net_hdr if VHOST_NET_F_VIRTIO_NET_HDR */
1253 		if (unlikely(vhost_hlen)) {
1254 			if (copy_to_iter(&hdr, sizeof(hdr),
1255 					 &fixup) != sizeof(hdr)) {
1256 				vq_err(vq, "Unable to write vnet_hdr "
1257 				       "at addr %p\n", vq->iov->iov_base);
1258 				goto out;
1259 			}
1260 		} else {
1261 			/* Header came from socket; we'll need to patch
1262 			 * ->num_buffers over if VIRTIO_NET_F_MRG_RXBUF
1263 			 */
1264 			iov_iter_advance(&fixup, sizeof(hdr));
1265 		}
1266 		/* TODO: Should check and handle checksum. */
1267 
1268 		num_buffers = cpu_to_vhost16(vq, headcount);
1269 		if (likely(set_num_buffers) &&
1270 		    copy_to_iter(&num_buffers, sizeof num_buffers,
1271 				 &fixup) != sizeof num_buffers) {
1272 			vq_err(vq, "Failed num_buffers write");
1273 			vhost_discard_vq_desc(vq, headcount, ndesc);
1274 			goto out;
1275 		}
1276 		nvq->done_idx += headcount;
1277 		count += in_order ? 1 : headcount;
1278 		if (nvq->done_idx > VHOST_NET_BATCH) {
1279 			vhost_net_signal_used(nvq, count);
1280 			count = 0;
1281 		}
1282 		if (unlikely(vq_log))
1283 			vhost_log_write(vq, vq_log, log, vhost_len,
1284 					vq->iov, in);
1285 		total_len += vhost_len;
1286 	} while (likely(!vhost_exceeds_weight(vq, ++recv_pkts, total_len)));
1287 
1288 	if (unlikely(busyloop_intr))
1289 		vhost_poll_queue(&vq->poll);
1290 	else if (!sock_len)
1291 		vhost_net_enable_vq(net, vq);
1292 out:
1293 	vhost_net_signal_used(nvq, count);
1294 	mutex_unlock(&vq->mutex);
1295 }
1296 
1297 static void handle_tx_kick(struct vhost_work *work)
1298 {
1299 	struct vhost_virtqueue *vq = container_of(work, struct vhost_virtqueue,
1300 						  poll.work);
1301 	struct vhost_net *net = container_of(vq->dev, struct vhost_net, dev);
1302 
1303 	handle_tx(net);
1304 }
1305 
1306 static void handle_rx_kick(struct vhost_work *work)
1307 {
1308 	struct vhost_virtqueue *vq = container_of(work, struct vhost_virtqueue,
1309 						  poll.work);
1310 	struct vhost_net *net = container_of(vq->dev, struct vhost_net, dev);
1311 
1312 	handle_rx(net);
1313 }
1314 
1315 static void handle_tx_net(struct vhost_work *work)
1316 {
1317 	struct vhost_net *net = container_of(work, struct vhost_net,
1318 					     poll[VHOST_NET_VQ_TX].work);
1319 	handle_tx(net);
1320 }
1321 
1322 static void handle_rx_net(struct vhost_work *work)
1323 {
1324 	struct vhost_net *net = container_of(work, struct vhost_net,
1325 					     poll[VHOST_NET_VQ_RX].work);
1326 	handle_rx(net);
1327 }
1328 
1329 static int vhost_net_open(struct inode *inode, struct file *f)
1330 {
1331 	struct vhost_net *n;
1332 	struct vhost_dev *dev;
1333 	struct vhost_virtqueue **vqs;
1334 	void **queue;
1335 	struct xdp_buff *xdp;
1336 	int i;
1337 
1338 	n = kvmalloc_obj(*n, GFP_KERNEL | __GFP_RETRY_MAYFAIL);
1339 	if (!n)
1340 		return -ENOMEM;
1341 	vqs = kmalloc_objs(*vqs, VHOST_NET_VQ_MAX);
1342 	if (!vqs) {
1343 		kvfree(n);
1344 		return -ENOMEM;
1345 	}
1346 
1347 	queue = kmalloc_array(VHOST_NET_BATCH, sizeof(void *),
1348 			      GFP_KERNEL);
1349 	if (!queue) {
1350 		kfree(vqs);
1351 		kvfree(n);
1352 		return -ENOMEM;
1353 	}
1354 	n->vqs[VHOST_NET_VQ_RX].rxq.queue = queue;
1355 
1356 	xdp = kmalloc_objs(*xdp, VHOST_NET_BATCH);
1357 	if (!xdp) {
1358 		kfree(vqs);
1359 		kvfree(n);
1360 		kfree(queue);
1361 		return -ENOMEM;
1362 	}
1363 	n->vqs[VHOST_NET_VQ_TX].xdp = xdp;
1364 
1365 	dev = &n->dev;
1366 	vqs[VHOST_NET_VQ_TX] = &n->vqs[VHOST_NET_VQ_TX].vq;
1367 	vqs[VHOST_NET_VQ_RX] = &n->vqs[VHOST_NET_VQ_RX].vq;
1368 	n->vqs[VHOST_NET_VQ_TX].vq.handle_kick = handle_tx_kick;
1369 	n->vqs[VHOST_NET_VQ_RX].vq.handle_kick = handle_rx_kick;
1370 	for (i = 0; i < VHOST_NET_VQ_MAX; i++) {
1371 		n->vqs[i].ubufs = NULL;
1372 		n->vqs[i].ubuf_info = NULL;
1373 		n->vqs[i].upend_idx = 0;
1374 		n->vqs[i].done_idx = 0;
1375 		n->vqs[i].batched_xdp = 0;
1376 		n->vqs[i].vhost_hlen = 0;
1377 		n->vqs[i].sock_hlen = 0;
1378 		n->vqs[i].rx_ring = NULL;
1379 		vhost_net_buf_init(&n->vqs[i].rxq);
1380 	}
1381 	vhost_dev_init(dev, vqs, VHOST_NET_VQ_MAX,
1382 		       UIO_MAXIOV + VHOST_NET_BATCH,
1383 		       VHOST_NET_PKT_WEIGHT, VHOST_NET_WEIGHT, true,
1384 		       NULL);
1385 
1386 	vhost_poll_init(n->poll + VHOST_NET_VQ_TX, handle_tx_net, EPOLLOUT, dev,
1387 			vqs[VHOST_NET_VQ_TX]);
1388 	vhost_poll_init(n->poll + VHOST_NET_VQ_RX, handle_rx_net, EPOLLIN, dev,
1389 			vqs[VHOST_NET_VQ_RX]);
1390 
1391 	f->private_data = n;
1392 	page_frag_cache_init(&n->pf_cache);
1393 
1394 	return 0;
1395 }
1396 
1397 static struct socket *vhost_net_stop_vq(struct vhost_net *n,
1398 					struct vhost_virtqueue *vq)
1399 {
1400 	struct socket *sock;
1401 	struct vhost_net_virtqueue *nvq =
1402 		container_of(vq, struct vhost_net_virtqueue, vq);
1403 
1404 	mutex_lock(&vq->mutex);
1405 	sock = vhost_vq_get_backend(vq);
1406 	vhost_net_disable_vq(n, vq);
1407 	vhost_vq_set_backend(vq, NULL);
1408 	vhost_net_buf_unproduce(nvq);
1409 	nvq->rx_ring = NULL;
1410 	mutex_unlock(&vq->mutex);
1411 	return sock;
1412 }
1413 
1414 static void vhost_net_stop(struct vhost_net *n, struct socket **tx_sock,
1415 			   struct socket **rx_sock)
1416 {
1417 	*tx_sock = vhost_net_stop_vq(n, &n->vqs[VHOST_NET_VQ_TX].vq);
1418 	*rx_sock = vhost_net_stop_vq(n, &n->vqs[VHOST_NET_VQ_RX].vq);
1419 }
1420 
1421 static void vhost_net_flush(struct vhost_net *n)
1422 {
1423 	vhost_dev_flush(&n->dev);
1424 	if (n->vqs[VHOST_NET_VQ_TX].ubufs) {
1425 		mutex_lock(&n->vqs[VHOST_NET_VQ_TX].vq.mutex);
1426 		n->tx_flush = true;
1427 		mutex_unlock(&n->vqs[VHOST_NET_VQ_TX].vq.mutex);
1428 		/* Wait for all lower device DMAs done. */
1429 		vhost_net_ubuf_put_and_wait(n->vqs[VHOST_NET_VQ_TX].ubufs);
1430 		mutex_lock(&n->vqs[VHOST_NET_VQ_TX].vq.mutex);
1431 		n->tx_flush = false;
1432 		atomic_set(&n->vqs[VHOST_NET_VQ_TX].ubufs->refcount, 1);
1433 		mutex_unlock(&n->vqs[VHOST_NET_VQ_TX].vq.mutex);
1434 	}
1435 }
1436 
1437 static int vhost_net_release(struct inode *inode, struct file *f)
1438 {
1439 	struct vhost_net *n = f->private_data;
1440 	struct socket *tx_sock;
1441 	struct socket *rx_sock;
1442 
1443 	vhost_net_stop(n, &tx_sock, &rx_sock);
1444 	vhost_net_flush(n);
1445 	vhost_dev_stop(&n->dev);
1446 	vhost_dev_cleanup(&n->dev);
1447 	vhost_net_vq_reset(n);
1448 	if (tx_sock)
1449 		sockfd_put(tx_sock);
1450 	if (rx_sock)
1451 		sockfd_put(rx_sock);
1452 	/* Make sure no callbacks are outstanding */
1453 	synchronize_rcu();
1454 	/* We do an extra flush before freeing memory,
1455 	 * since jobs can re-queue themselves. */
1456 	vhost_net_flush(n);
1457 	kfree(n->vqs[VHOST_NET_VQ_RX].rxq.queue);
1458 	kfree(n->vqs[VHOST_NET_VQ_TX].xdp);
1459 	kfree(n->dev.vqs);
1460 	page_frag_cache_drain(&n->pf_cache);
1461 	kvfree(n);
1462 	return 0;
1463 }
1464 
1465 static struct socket *get_raw_socket(int fd)
1466 {
1467 	int r;
1468 	struct socket *sock = sockfd_lookup(fd, &r);
1469 
1470 	if (!sock)
1471 		return ERR_PTR(-ENOTSOCK);
1472 
1473 	/* Parameter checking */
1474 	if (sock->sk->sk_type != SOCK_RAW) {
1475 		r = -ESOCKTNOSUPPORT;
1476 		goto err;
1477 	}
1478 
1479 	if (sock->sk->sk_family != AF_PACKET) {
1480 		r = -EPFNOSUPPORT;
1481 		goto err;
1482 	}
1483 	return sock;
1484 err:
1485 	sockfd_put(sock);
1486 	return ERR_PTR(r);
1487 }
1488 
1489 static struct ptr_ring *get_tap_ptr_ring(struct file *file)
1490 {
1491 	struct ptr_ring *ring;
1492 	ring = tun_get_tx_ring(file);
1493 	if (!IS_ERR(ring))
1494 		goto out;
1495 	ring = tap_get_ptr_ring(file);
1496 	if (!IS_ERR(ring))
1497 		goto out;
1498 	ring = NULL;
1499 out:
1500 	return ring;
1501 }
1502 
1503 static struct socket *get_tap_socket(int fd)
1504 {
1505 	struct file *file = fget(fd);
1506 	struct socket *sock;
1507 
1508 	if (!file)
1509 		return ERR_PTR(-EBADF);
1510 	sock = tun_get_socket(file);
1511 	if (!IS_ERR(sock))
1512 		return sock;
1513 	sock = tap_get_socket(file);
1514 	if (IS_ERR(sock))
1515 		fput(file);
1516 	return sock;
1517 }
1518 
1519 static struct socket *get_socket(int fd)
1520 {
1521 	struct socket *sock;
1522 
1523 	/* special case to disable backend */
1524 	if (fd == -1)
1525 		return NULL;
1526 	sock = get_raw_socket(fd);
1527 	if (!IS_ERR(sock))
1528 		return sock;
1529 	sock = get_tap_socket(fd);
1530 	if (!IS_ERR(sock))
1531 		return sock;
1532 	return ERR_PTR(-ENOTSOCK);
1533 }
1534 
1535 static long vhost_net_set_backend(struct vhost_net *n, unsigned index, int fd)
1536 {
1537 	struct socket *sock, *oldsock;
1538 	struct vhost_virtqueue *vq;
1539 	struct vhost_net_virtqueue *nvq;
1540 	struct vhost_net_ubuf_ref *ubufs, *oldubufs = NULL;
1541 	int r;
1542 
1543 	mutex_lock(&n->dev.mutex);
1544 	r = vhost_dev_check_owner(&n->dev);
1545 	if (r)
1546 		goto err;
1547 
1548 	if (index >= VHOST_NET_VQ_MAX) {
1549 		r = -ENOBUFS;
1550 		goto err;
1551 	}
1552 	vq = &n->vqs[index].vq;
1553 	nvq = &n->vqs[index];
1554 	mutex_lock(&vq->mutex);
1555 
1556 	if (fd == -1)
1557 		vhost_clear_msg(&n->dev);
1558 
1559 	/* Verify that ring has been setup correctly. */
1560 	if (!vhost_vq_access_ok(vq)) {
1561 		r = -EFAULT;
1562 		goto err_vq;
1563 	}
1564 	sock = get_socket(fd);
1565 	if (IS_ERR(sock)) {
1566 		r = PTR_ERR(sock);
1567 		goto err_vq;
1568 	}
1569 
1570 	/* start polling new socket */
1571 	oldsock = vhost_vq_get_backend(vq);
1572 	if (sock != oldsock) {
1573 		ubufs = vhost_net_ubuf_alloc(vq,
1574 					     sock && vhost_sock_zcopy(sock));
1575 		if (IS_ERR(ubufs)) {
1576 			r = PTR_ERR(ubufs);
1577 			goto err_ubufs;
1578 		}
1579 
1580 		vhost_net_disable_vq(n, vq);
1581 		vhost_vq_set_backend(vq, sock);
1582 		vhost_net_buf_unproduce(nvq);
1583 		r = vhost_vq_init_access(vq);
1584 		if (r)
1585 			goto err_used;
1586 		r = vhost_net_enable_vq(n, vq);
1587 		if (r)
1588 			goto err_used;
1589 		if (index == VHOST_NET_VQ_RX) {
1590 			if (sock)
1591 				nvq->rx_ring = get_tap_ptr_ring(sock->file);
1592 			else
1593 				nvq->rx_ring = NULL;
1594 		}
1595 
1596 		oldubufs = nvq->ubufs;
1597 		nvq->ubufs = ubufs;
1598 
1599 		n->tx_packets = 0;
1600 		n->tx_zcopy_err = 0;
1601 		n->tx_flush = false;
1602 	}
1603 
1604 	mutex_unlock(&vq->mutex);
1605 
1606 	if (oldubufs) {
1607 		vhost_net_ubuf_put_wait_and_free(oldubufs);
1608 		mutex_lock(&vq->mutex);
1609 		vhost_zerocopy_signal_used(n, vq);
1610 		mutex_unlock(&vq->mutex);
1611 	}
1612 
1613 	if (oldsock) {
1614 		vhost_dev_flush(&n->dev);
1615 		sockfd_put(oldsock);
1616 	}
1617 
1618 	mutex_unlock(&n->dev.mutex);
1619 	return 0;
1620 
1621 err_used:
1622 	vhost_vq_set_backend(vq, oldsock);
1623 	vhost_net_enable_vq(n, vq);
1624 	if (ubufs)
1625 		vhost_net_ubuf_put_wait_and_free(ubufs);
1626 err_ubufs:
1627 	if (sock)
1628 		sockfd_put(sock);
1629 err_vq:
1630 	mutex_unlock(&vq->mutex);
1631 err:
1632 	mutex_unlock(&n->dev.mutex);
1633 	return r;
1634 }
1635 
1636 static long vhost_net_reset_owner(struct vhost_net *n)
1637 {
1638 	struct socket *tx_sock = NULL;
1639 	struct socket *rx_sock = NULL;
1640 	long err;
1641 	struct vhost_iotlb *umem;
1642 
1643 	mutex_lock(&n->dev.mutex);
1644 	err = vhost_dev_check_owner(&n->dev);
1645 	if (err)
1646 		goto done;
1647 	umem = vhost_dev_reset_owner_prepare();
1648 	if (!umem) {
1649 		err = -ENOMEM;
1650 		goto done;
1651 	}
1652 	vhost_net_stop(n, &tx_sock, &rx_sock);
1653 	vhost_net_flush(n);
1654 	vhost_dev_stop(&n->dev);
1655 	vhost_dev_reset_owner(&n->dev, umem);
1656 	vhost_net_vq_reset(n);
1657 done:
1658 	mutex_unlock(&n->dev.mutex);
1659 	if (tx_sock)
1660 		sockfd_put(tx_sock);
1661 	if (rx_sock)
1662 		sockfd_put(rx_sock);
1663 	return err;
1664 }
1665 
1666 static int vhost_net_set_features(struct vhost_net *n, const u64 *features)
1667 {
1668 	size_t vhost_hlen, sock_hlen, hdr_len;
1669 	int i;
1670 
1671 	hdr_len = virtio_features_test_bit(features, VIRTIO_NET_F_MRG_RXBUF) ||
1672 		  virtio_features_test_bit(features, VIRTIO_F_VERSION_1) ?
1673 		  sizeof(struct virtio_net_hdr_mrg_rxbuf) :
1674 		  sizeof(struct virtio_net_hdr);
1675 
1676 	if (virtio_features_test_bit(features,
1677 				     VIRTIO_NET_F_HOST_UDP_TUNNEL_GSO) ||
1678 	    virtio_features_test_bit(features,
1679 				     VIRTIO_NET_F_GUEST_UDP_TUNNEL_GSO))
1680 		hdr_len = sizeof(struct virtio_net_hdr_v1_hash_tunnel);
1681 
1682 	if (virtio_features_test_bit(features, VHOST_NET_F_VIRTIO_NET_HDR)) {
1683 		/* vhost provides vnet_hdr */
1684 		vhost_hlen = hdr_len;
1685 		sock_hlen = 0;
1686 	} else {
1687 		/* socket provides vnet_hdr */
1688 		vhost_hlen = 0;
1689 		sock_hlen = hdr_len;
1690 	}
1691 	mutex_lock(&n->dev.mutex);
1692 	if (virtio_features_test_bit(features, VHOST_F_LOG_ALL) &&
1693 	    !vhost_log_access_ok(&n->dev))
1694 		goto out_unlock;
1695 
1696 	if (virtio_features_test_bit(features, VIRTIO_F_ACCESS_PLATFORM)) {
1697 		if (vhost_init_device_iotlb(&n->dev))
1698 			goto out_unlock;
1699 	}
1700 
1701 	for (i = 0; i < VHOST_NET_VQ_MAX; ++i) {
1702 		mutex_lock(&n->vqs[i].vq.mutex);
1703 		virtio_features_copy(n->vqs[i].vq.acked_features_array,
1704 				     features);
1705 		n->vqs[i].vhost_hlen = vhost_hlen;
1706 		n->vqs[i].sock_hlen = sock_hlen;
1707 		mutex_unlock(&n->vqs[i].vq.mutex);
1708 	}
1709 	mutex_unlock(&n->dev.mutex);
1710 	return 0;
1711 
1712 out_unlock:
1713 	mutex_unlock(&n->dev.mutex);
1714 	return -EFAULT;
1715 }
1716 
1717 static long vhost_net_set_owner(struct vhost_net *n)
1718 {
1719 	int r;
1720 
1721 	mutex_lock(&n->dev.mutex);
1722 	if (vhost_dev_has_owner(&n->dev)) {
1723 		r = -EBUSY;
1724 		goto out;
1725 	}
1726 	r = vhost_net_set_ubuf_info(n);
1727 	if (r)
1728 		goto out;
1729 	r = vhost_dev_set_owner(&n->dev);
1730 	if (r)
1731 		vhost_net_clear_ubuf_info(n);
1732 	vhost_net_flush(n);
1733 out:
1734 	mutex_unlock(&n->dev.mutex);
1735 	return r;
1736 }
1737 
1738 static long vhost_net_ioctl(struct file *f, unsigned int ioctl,
1739 			    unsigned long arg)
1740 {
1741 	const DEFINE_VHOST_FEATURES_ARRAY(vhost_net_features, vhost_net_bits);
1742 	u64 all_features[VIRTIO_FEATURES_U64S];
1743 	struct vhost_net *n = f->private_data;
1744 	void __user *argp = (void __user *)arg;
1745 	u64 __user *featurep = argp;
1746 	struct vhost_vring_file backend;
1747 	u64 features, count, copied;
1748 	int r, i;
1749 
1750 	switch (ioctl) {
1751 	case VHOST_NET_SET_BACKEND:
1752 		if (copy_from_user(&backend, argp, sizeof backend))
1753 			return -EFAULT;
1754 		return vhost_net_set_backend(n, backend.index, backend.fd);
1755 	case VHOST_GET_FEATURES:
1756 		features = vhost_net_features[0];
1757 		if (copy_to_user(featurep, &features, sizeof features))
1758 			return -EFAULT;
1759 		return 0;
1760 	case VHOST_SET_FEATURES:
1761 		if (copy_from_user(&features, featurep, sizeof features))
1762 			return -EFAULT;
1763 		if (features & ~vhost_net_features[0])
1764 			return -EOPNOTSUPP;
1765 
1766 		virtio_features_from_u64(all_features, features);
1767 		return vhost_net_set_features(n, all_features);
1768 	case VHOST_GET_FEATURES_ARRAY:
1769 		if (copy_from_user(&count, featurep, sizeof(count)))
1770 			return -EFAULT;
1771 
1772 		/* Copy the net features, up to the user-provided buffer size */
1773 		argp += sizeof(u64);
1774 		copied = min(count, (u64)VIRTIO_FEATURES_U64S);
1775 		if (copy_to_user(argp, vhost_net_features,
1776 				 copied * sizeof(u64)))
1777 			return -EFAULT;
1778 
1779 		/* Zero the trailing space provided by user-space, if any */
1780 		if (clear_user(argp, size_mul(count - copied, sizeof(u64))))
1781 			return -EFAULT;
1782 		return 0;
1783 	case VHOST_SET_FEATURES_ARRAY:
1784 		if (copy_from_user(&count, featurep, sizeof(count)))
1785 			return -EFAULT;
1786 
1787 		virtio_features_zero(all_features);
1788 		argp += sizeof(u64);
1789 		copied = min(count, (u64)VIRTIO_FEATURES_U64S);
1790 		if (copy_from_user(all_features, argp, copied * sizeof(u64)))
1791 			return -EFAULT;
1792 
1793 		/*
1794 		 * Any feature specified by user-space above
1795 		 * VIRTIO_FEATURES_BITS is not supported by definition.
1796 		 */
1797 		for (i = copied; i < count; ++i) {
1798 			if (copy_from_user(&features, featurep + 1 + i,
1799 					   sizeof(features)))
1800 				return -EFAULT;
1801 			if (features)
1802 				return -EOPNOTSUPP;
1803 		}
1804 
1805 		for (i = 0; i < VIRTIO_FEATURES_U64S; i++)
1806 			if (all_features[i] & ~vhost_net_features[i])
1807 				return -EOPNOTSUPP;
1808 
1809 		return vhost_net_set_features(n, all_features);
1810 	case VHOST_GET_BACKEND_FEATURES:
1811 		features = VHOST_NET_BACKEND_FEATURES;
1812 		if (copy_to_user(featurep, &features, sizeof(features)))
1813 			return -EFAULT;
1814 		return 0;
1815 	case VHOST_SET_BACKEND_FEATURES:
1816 		if (copy_from_user(&features, featurep, sizeof(features)))
1817 			return -EFAULT;
1818 		if (features & ~VHOST_NET_BACKEND_FEATURES)
1819 			return -EOPNOTSUPP;
1820 		vhost_set_backend_features(&n->dev, features);
1821 		return 0;
1822 	case VHOST_RESET_OWNER:
1823 		return vhost_net_reset_owner(n);
1824 	case VHOST_SET_OWNER:
1825 		return vhost_net_set_owner(n);
1826 	default:
1827 		mutex_lock(&n->dev.mutex);
1828 		r = vhost_dev_ioctl(&n->dev, ioctl, argp);
1829 		if (r == -ENOIOCTLCMD)
1830 			r = vhost_vring_ioctl(&n->dev, ioctl, argp);
1831 		else
1832 			vhost_net_flush(n);
1833 		mutex_unlock(&n->dev.mutex);
1834 		return r;
1835 	}
1836 }
1837 
1838 static ssize_t vhost_net_chr_read_iter(struct kiocb *iocb, struct iov_iter *to)
1839 {
1840 	struct file *file = iocb->ki_filp;
1841 	struct vhost_net *n = file->private_data;
1842 	struct vhost_dev *dev = &n->dev;
1843 	int noblock = file->f_flags & O_NONBLOCK;
1844 
1845 	return vhost_chr_read_iter(dev, to, noblock);
1846 }
1847 
1848 static ssize_t vhost_net_chr_write_iter(struct kiocb *iocb,
1849 					struct iov_iter *from)
1850 {
1851 	struct file *file = iocb->ki_filp;
1852 	struct vhost_net *n = file->private_data;
1853 	struct vhost_dev *dev = &n->dev;
1854 
1855 	return vhost_chr_write_iter(dev, from);
1856 }
1857 
1858 static __poll_t vhost_net_chr_poll(struct file *file, poll_table *wait)
1859 {
1860 	struct vhost_net *n = file->private_data;
1861 	struct vhost_dev *dev = &n->dev;
1862 
1863 	return vhost_chr_poll(file, dev, wait);
1864 }
1865 
1866 static const struct file_operations vhost_net_fops = {
1867 	.owner          = THIS_MODULE,
1868 	.release        = vhost_net_release,
1869 	.read_iter      = vhost_net_chr_read_iter,
1870 	.write_iter     = vhost_net_chr_write_iter,
1871 	.poll           = vhost_net_chr_poll,
1872 	.unlocked_ioctl = vhost_net_ioctl,
1873 	.compat_ioctl   = compat_ptr_ioctl,
1874 	.open           = vhost_net_open,
1875 	.llseek		= noop_llseek,
1876 };
1877 
1878 static struct miscdevice vhost_net_misc = {
1879 	.minor = VHOST_NET_MINOR,
1880 	.name = "vhost-net",
1881 	.fops = &vhost_net_fops,
1882 };
1883 
1884 static int __init vhost_net_init(void)
1885 {
1886 	if (experimental_zcopytx)
1887 		vhost_net_enable_zcopy(VHOST_NET_VQ_TX);
1888 	return misc_register(&vhost_net_misc);
1889 }
1890 module_init(vhost_net_init);
1891 
1892 static void __exit vhost_net_exit(void)
1893 {
1894 	misc_deregister(&vhost_net_misc);
1895 }
1896 module_exit(vhost_net_exit);
1897 
1898 MODULE_VERSION("0.0.1");
1899 MODULE_LICENSE("GPL v2");
1900 MODULE_AUTHOR("Michael S. Tsirkin");
1901 MODULE_DESCRIPTION("Host kernel accelerator for virtio net");
1902 MODULE_ALIAS_MISCDEV(VHOST_NET_MINOR);
1903 MODULE_ALIAS("devname:vhost-net");
1904