xref: /linux/drivers/net/xen-netback/interface.c (revision 59024954a1e7e26b62680e1f2b5725249a6c09f7)
1 /*
2  * Network-device interface management.
3  *
4  * Copyright (c) 2004-2005, Keir Fraser
5  *
6  * This program is free software; you can redistribute it and/or
7  * modify it under the terms of the GNU General Public License version 2
8  * as published by the Free Software Foundation; or, when distributed
9  * separately from the Linux kernel or incorporated into other
10  * software packages, subject to the following license:
11  *
12  * Permission is hereby granted, free of charge, to any person obtaining a copy
13  * of this source file (the "Software"), to deal in the Software without
14  * restriction, including without limitation the rights to use, copy, modify,
15  * merge, publish, distribute, sublicense, and/or sell copies of the Software,
16  * and to permit persons to whom the Software is furnished to do so, subject to
17  * the following conditions:
18  *
19  * The above copyright notice and this permission notice shall be included in
20  * all copies or substantial portions of the Software.
21  *
22  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
23  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
24  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
25  * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
26  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
27  * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
28  * IN THE SOFTWARE.
29  */
30 
31 #include "common.h"
32 
33 #include <linux/kthread.h>
34 #include <linux/ethtool.h>
35 #include <linux/rtnetlink.h>
36 #include <linux/if_vlan.h>
37 #include <linux/vmalloc.h>
38 
39 #include <xen/events.h>
40 #include <asm/xen/hypercall.h>
41 #include <xen/balloon.h>
42 
43 #define XENVIF_QUEUE_LENGTH 32
44 #define XENVIF_NAPI_WEIGHT  64
45 
46 /* Number of bytes allowed on the internal guest Rx queue. */
47 #define XENVIF_RX_QUEUE_BYTES (XEN_NETIF_RX_RING_SIZE/2 * PAGE_SIZE)
48 
49 /* This function is used to set SKBTX_DEV_ZEROCOPY as well as
50  * increasing the inflight counter. We need to increase the inflight
51  * counter because core driver calls into xenvif_zerocopy_callback
52  * which calls xenvif_skb_zerocopy_complete.
53  */
54 void xenvif_skb_zerocopy_prepare(struct xenvif_queue *queue,
55 				 struct sk_buff *skb)
56 {
57 	skb_shinfo(skb)->tx_flags |= SKBTX_DEV_ZEROCOPY;
58 	atomic_inc(&queue->inflight_packets);
59 }
60 
61 void xenvif_skb_zerocopy_complete(struct xenvif_queue *queue)
62 {
63 	atomic_dec(&queue->inflight_packets);
64 
65 	/* Wake the dealloc thread _after_ decrementing inflight_packets so
66 	 * that if kthread_stop() has already been called, the dealloc thread
67 	 * does not wait forever with nothing to wake it.
68 	 */
69 	wake_up(&queue->dealloc_wq);
70 }
71 
72 int xenvif_schedulable(struct xenvif *vif)
73 {
74 	return netif_running(vif->dev) &&
75 		test_bit(VIF_STATUS_CONNECTED, &vif->status) &&
76 		!vif->disabled;
77 }
78 
79 static irqreturn_t xenvif_tx_interrupt(int irq, void *dev_id)
80 {
81 	struct xenvif_queue *queue = dev_id;
82 
83 	if (RING_HAS_UNCONSUMED_REQUESTS(&queue->tx))
84 		napi_schedule(&queue->napi);
85 
86 	return IRQ_HANDLED;
87 }
88 
89 static int xenvif_poll(struct napi_struct *napi, int budget)
90 {
91 	struct xenvif_queue *queue =
92 		container_of(napi, struct xenvif_queue, napi);
93 	int work_done;
94 
95 	/* This vif is rogue, we pretend we've there is nothing to do
96 	 * for this vif to deschedule it from NAPI. But this interface
97 	 * will be turned off in thread context later.
98 	 */
99 	if (unlikely(queue->vif->disabled)) {
100 		napi_complete(napi);
101 		return 0;
102 	}
103 
104 	work_done = xenvif_tx_action(queue, budget);
105 
106 	if (work_done < budget) {
107 		napi_complete(napi);
108 		xenvif_napi_schedule_or_enable_events(queue);
109 	}
110 
111 	return work_done;
112 }
113 
114 static irqreturn_t xenvif_rx_interrupt(int irq, void *dev_id)
115 {
116 	struct xenvif_queue *queue = dev_id;
117 
118 	xenvif_kick_thread(queue);
119 
120 	return IRQ_HANDLED;
121 }
122 
123 irqreturn_t xenvif_interrupt(int irq, void *dev_id)
124 {
125 	xenvif_tx_interrupt(irq, dev_id);
126 	xenvif_rx_interrupt(irq, dev_id);
127 
128 	return IRQ_HANDLED;
129 }
130 
131 int xenvif_queue_stopped(struct xenvif_queue *queue)
132 {
133 	struct net_device *dev = queue->vif->dev;
134 	unsigned int id = queue->id;
135 	return netif_tx_queue_stopped(netdev_get_tx_queue(dev, id));
136 }
137 
138 void xenvif_wake_queue(struct xenvif_queue *queue)
139 {
140 	struct net_device *dev = queue->vif->dev;
141 	unsigned int id = queue->id;
142 	netif_tx_wake_queue(netdev_get_tx_queue(dev, id));
143 }
144 
145 static u16 xenvif_select_queue(struct net_device *dev, struct sk_buff *skb,
146 			       void *accel_priv,
147 			       select_queue_fallback_t fallback)
148 {
149 	struct xenvif *vif = netdev_priv(dev);
150 	unsigned int size = vif->hash.size;
151 
152 	if (vif->hash.alg == XEN_NETIF_CTRL_HASH_ALGORITHM_NONE) {
153 		u16 index = fallback(dev, skb) % dev->real_num_tx_queues;
154 
155 		/* Make sure there is no hash information in the socket
156 		 * buffer otherwise it would be incorrectly forwarded
157 		 * to the frontend.
158 		 */
159 		skb_clear_hash(skb);
160 
161 		return index;
162 	}
163 
164 	xenvif_set_skb_hash(vif, skb);
165 
166 	if (size == 0)
167 		return skb_get_hash_raw(skb) % dev->real_num_tx_queues;
168 
169 	return vif->hash.mapping[skb_get_hash_raw(skb) % size];
170 }
171 
172 static int xenvif_start_xmit(struct sk_buff *skb, struct net_device *dev)
173 {
174 	struct xenvif *vif = netdev_priv(dev);
175 	struct xenvif_queue *queue = NULL;
176 	unsigned int num_queues = vif->num_queues;
177 	u16 index;
178 	struct xenvif_rx_cb *cb;
179 
180 	BUG_ON(skb->dev != dev);
181 
182 	/* Drop the packet if queues are not set up */
183 	if (num_queues < 1)
184 		goto drop;
185 
186 	/* Obtain the queue to be used to transmit this packet */
187 	index = skb_get_queue_mapping(skb);
188 	if (index >= num_queues) {
189 		pr_warn_ratelimited("Invalid queue %hu for packet on interface %s\n.",
190 				    index, vif->dev->name);
191 		index %= num_queues;
192 	}
193 	queue = &vif->queues[index];
194 
195 	/* Drop the packet if queue is not ready */
196 	if (queue->task == NULL ||
197 	    queue->dealloc_task == NULL ||
198 	    !xenvif_schedulable(vif))
199 		goto drop;
200 
201 	if (vif->multicast_control && skb->pkt_type == PACKET_MULTICAST) {
202 		struct ethhdr *eth = (struct ethhdr *)skb->data;
203 
204 		if (!xenvif_mcast_match(vif, eth->h_dest))
205 			goto drop;
206 	}
207 
208 	cb = XENVIF_RX_CB(skb);
209 	cb->expires = jiffies + vif->drain_timeout;
210 
211 	xenvif_rx_queue_tail(queue, skb);
212 	xenvif_kick_thread(queue);
213 
214 	return NETDEV_TX_OK;
215 
216  drop:
217 	vif->dev->stats.tx_dropped++;
218 	dev_kfree_skb(skb);
219 	return NETDEV_TX_OK;
220 }
221 
222 static struct net_device_stats *xenvif_get_stats(struct net_device *dev)
223 {
224 	struct xenvif *vif = netdev_priv(dev);
225 	struct xenvif_queue *queue = NULL;
226 	unsigned int num_queues = vif->num_queues;
227 	unsigned long rx_bytes = 0;
228 	unsigned long rx_packets = 0;
229 	unsigned long tx_bytes = 0;
230 	unsigned long tx_packets = 0;
231 	unsigned int index;
232 
233 	if (vif->queues == NULL)
234 		goto out;
235 
236 	/* Aggregate tx and rx stats from each queue */
237 	for (index = 0; index < num_queues; ++index) {
238 		queue = &vif->queues[index];
239 		rx_bytes += queue->stats.rx_bytes;
240 		rx_packets += queue->stats.rx_packets;
241 		tx_bytes += queue->stats.tx_bytes;
242 		tx_packets += queue->stats.tx_packets;
243 	}
244 
245 out:
246 	vif->dev->stats.rx_bytes = rx_bytes;
247 	vif->dev->stats.rx_packets = rx_packets;
248 	vif->dev->stats.tx_bytes = tx_bytes;
249 	vif->dev->stats.tx_packets = tx_packets;
250 
251 	return &vif->dev->stats;
252 }
253 
254 static void xenvif_up(struct xenvif *vif)
255 {
256 	struct xenvif_queue *queue = NULL;
257 	unsigned int num_queues = vif->num_queues;
258 	unsigned int queue_index;
259 
260 	for (queue_index = 0; queue_index < num_queues; ++queue_index) {
261 		queue = &vif->queues[queue_index];
262 		napi_enable(&queue->napi);
263 		enable_irq(queue->tx_irq);
264 		if (queue->tx_irq != queue->rx_irq)
265 			enable_irq(queue->rx_irq);
266 		xenvif_napi_schedule_or_enable_events(queue);
267 	}
268 }
269 
270 static void xenvif_down(struct xenvif *vif)
271 {
272 	struct xenvif_queue *queue = NULL;
273 	unsigned int num_queues = vif->num_queues;
274 	unsigned int queue_index;
275 
276 	for (queue_index = 0; queue_index < num_queues; ++queue_index) {
277 		queue = &vif->queues[queue_index];
278 		disable_irq(queue->tx_irq);
279 		if (queue->tx_irq != queue->rx_irq)
280 			disable_irq(queue->rx_irq);
281 		napi_disable(&queue->napi);
282 		del_timer_sync(&queue->credit_timeout);
283 	}
284 }
285 
286 static int xenvif_open(struct net_device *dev)
287 {
288 	struct xenvif *vif = netdev_priv(dev);
289 	if (test_bit(VIF_STATUS_CONNECTED, &vif->status))
290 		xenvif_up(vif);
291 	netif_tx_start_all_queues(dev);
292 	return 0;
293 }
294 
295 static int xenvif_close(struct net_device *dev)
296 {
297 	struct xenvif *vif = netdev_priv(dev);
298 	if (test_bit(VIF_STATUS_CONNECTED, &vif->status))
299 		xenvif_down(vif);
300 	netif_tx_stop_all_queues(dev);
301 	return 0;
302 }
303 
304 static int xenvif_change_mtu(struct net_device *dev, int mtu)
305 {
306 	struct xenvif *vif = netdev_priv(dev);
307 	int max = vif->can_sg ? 65535 - VLAN_ETH_HLEN : ETH_DATA_LEN;
308 
309 	if (mtu > max)
310 		return -EINVAL;
311 	dev->mtu = mtu;
312 	return 0;
313 }
314 
315 static netdev_features_t xenvif_fix_features(struct net_device *dev,
316 	netdev_features_t features)
317 {
318 	struct xenvif *vif = netdev_priv(dev);
319 
320 	if (!vif->can_sg)
321 		features &= ~NETIF_F_SG;
322 	if (~(vif->gso_mask | vif->gso_prefix_mask) & GSO_BIT(TCPV4))
323 		features &= ~NETIF_F_TSO;
324 	if (~(vif->gso_mask | vif->gso_prefix_mask) & GSO_BIT(TCPV6))
325 		features &= ~NETIF_F_TSO6;
326 	if (!vif->ip_csum)
327 		features &= ~NETIF_F_IP_CSUM;
328 	if (!vif->ipv6_csum)
329 		features &= ~NETIF_F_IPV6_CSUM;
330 
331 	return features;
332 }
333 
334 static const struct xenvif_stat {
335 	char name[ETH_GSTRING_LEN];
336 	u16 offset;
337 } xenvif_stats[] = {
338 	{
339 		"rx_gso_checksum_fixup",
340 		offsetof(struct xenvif_stats, rx_gso_checksum_fixup)
341 	},
342 	/* If (sent != success + fail), there are probably packets never
343 	 * freed up properly!
344 	 */
345 	{
346 		"tx_zerocopy_sent",
347 		offsetof(struct xenvif_stats, tx_zerocopy_sent),
348 	},
349 	{
350 		"tx_zerocopy_success",
351 		offsetof(struct xenvif_stats, tx_zerocopy_success),
352 	},
353 	{
354 		"tx_zerocopy_fail",
355 		offsetof(struct xenvif_stats, tx_zerocopy_fail)
356 	},
357 	/* Number of packets exceeding MAX_SKB_FRAG slots. You should use
358 	 * a guest with the same MAX_SKB_FRAG
359 	 */
360 	{
361 		"tx_frag_overflow",
362 		offsetof(struct xenvif_stats, tx_frag_overflow)
363 	},
364 };
365 
366 static int xenvif_get_sset_count(struct net_device *dev, int string_set)
367 {
368 	switch (string_set) {
369 	case ETH_SS_STATS:
370 		return ARRAY_SIZE(xenvif_stats);
371 	default:
372 		return -EINVAL;
373 	}
374 }
375 
376 static void xenvif_get_ethtool_stats(struct net_device *dev,
377 				     struct ethtool_stats *stats, u64 * data)
378 {
379 	struct xenvif *vif = netdev_priv(dev);
380 	unsigned int num_queues = vif->num_queues;
381 	int i;
382 	unsigned int queue_index;
383 
384 	for (i = 0; i < ARRAY_SIZE(xenvif_stats); i++) {
385 		unsigned long accum = 0;
386 		for (queue_index = 0; queue_index < num_queues; ++queue_index) {
387 			void *vif_stats = &vif->queues[queue_index].stats;
388 			accum += *(unsigned long *)(vif_stats + xenvif_stats[i].offset);
389 		}
390 		data[i] = accum;
391 	}
392 }
393 
394 static void xenvif_get_strings(struct net_device *dev, u32 stringset, u8 * data)
395 {
396 	int i;
397 
398 	switch (stringset) {
399 	case ETH_SS_STATS:
400 		for (i = 0; i < ARRAY_SIZE(xenvif_stats); i++)
401 			memcpy(data + i * ETH_GSTRING_LEN,
402 			       xenvif_stats[i].name, ETH_GSTRING_LEN);
403 		break;
404 	}
405 }
406 
407 static const struct ethtool_ops xenvif_ethtool_ops = {
408 	.get_link	= ethtool_op_get_link,
409 
410 	.get_sset_count = xenvif_get_sset_count,
411 	.get_ethtool_stats = xenvif_get_ethtool_stats,
412 	.get_strings = xenvif_get_strings,
413 };
414 
415 static const struct net_device_ops xenvif_netdev_ops = {
416 	.ndo_select_queue = xenvif_select_queue,
417 	.ndo_start_xmit	= xenvif_start_xmit,
418 	.ndo_get_stats	= xenvif_get_stats,
419 	.ndo_open	= xenvif_open,
420 	.ndo_stop	= xenvif_close,
421 	.ndo_change_mtu	= xenvif_change_mtu,
422 	.ndo_fix_features = xenvif_fix_features,
423 	.ndo_set_mac_address = eth_mac_addr,
424 	.ndo_validate_addr   = eth_validate_addr,
425 };
426 
427 struct xenvif *xenvif_alloc(struct device *parent, domid_t domid,
428 			    unsigned int handle)
429 {
430 	int err;
431 	struct net_device *dev;
432 	struct xenvif *vif;
433 	char name[IFNAMSIZ] = {};
434 
435 	snprintf(name, IFNAMSIZ - 1, "vif%u.%u", domid, handle);
436 	/* Allocate a netdev with the max. supported number of queues.
437 	 * When the guest selects the desired number, it will be updated
438 	 * via netif_set_real_num_*_queues().
439 	 */
440 	dev = alloc_netdev_mq(sizeof(struct xenvif), name, NET_NAME_UNKNOWN,
441 			      ether_setup, xenvif_max_queues);
442 	if (dev == NULL) {
443 		pr_warn("Could not allocate netdev for %s\n", name);
444 		return ERR_PTR(-ENOMEM);
445 	}
446 
447 	SET_NETDEV_DEV(dev, parent);
448 
449 	vif = netdev_priv(dev);
450 
451 	vif->domid  = domid;
452 	vif->handle = handle;
453 	vif->can_sg = 1;
454 	vif->ip_csum = 1;
455 	vif->dev = dev;
456 	vif->disabled = false;
457 	vif->drain_timeout = msecs_to_jiffies(rx_drain_timeout_msecs);
458 	vif->stall_timeout = msecs_to_jiffies(rx_stall_timeout_msecs);
459 
460 	/* Start out with no queues. */
461 	vif->queues = NULL;
462 	vif->num_queues = 0;
463 
464 	spin_lock_init(&vif->lock);
465 	INIT_LIST_HEAD(&vif->fe_mcast_addr);
466 
467 	dev->netdev_ops	= &xenvif_netdev_ops;
468 	dev->hw_features = NETIF_F_SG |
469 		NETIF_F_IP_CSUM | NETIF_F_IPV6_CSUM |
470 		NETIF_F_TSO | NETIF_F_TSO6;
471 	dev->features = dev->hw_features | NETIF_F_RXCSUM;
472 	dev->ethtool_ops = &xenvif_ethtool_ops;
473 
474 	dev->tx_queue_len = XENVIF_QUEUE_LENGTH;
475 
476 	/*
477 	 * Initialise a dummy MAC address. We choose the numerically
478 	 * largest non-broadcast address to prevent the address getting
479 	 * stolen by an Ethernet bridge for STP purposes.
480 	 * (FE:FF:FF:FF:FF:FF)
481 	 */
482 	eth_broadcast_addr(dev->dev_addr);
483 	dev->dev_addr[0] &= ~0x01;
484 
485 	netif_carrier_off(dev);
486 
487 	err = register_netdev(dev);
488 	if (err) {
489 		netdev_warn(dev, "Could not register device: err=%d\n", err);
490 		free_netdev(dev);
491 		return ERR_PTR(err);
492 	}
493 
494 	netdev_dbg(dev, "Successfully created xenvif\n");
495 
496 	__module_get(THIS_MODULE);
497 
498 	return vif;
499 }
500 
501 int xenvif_init_queue(struct xenvif_queue *queue)
502 {
503 	int err, i;
504 
505 	queue->credit_bytes = queue->remaining_credit = ~0UL;
506 	queue->credit_usec  = 0UL;
507 	init_timer(&queue->credit_timeout);
508 	queue->credit_timeout.function = xenvif_tx_credit_callback;
509 	queue->credit_window_start = get_jiffies_64();
510 
511 	queue->rx_queue_max = XENVIF_RX_QUEUE_BYTES;
512 
513 	skb_queue_head_init(&queue->rx_queue);
514 	skb_queue_head_init(&queue->tx_queue);
515 
516 	queue->pending_cons = 0;
517 	queue->pending_prod = MAX_PENDING_REQS;
518 	for (i = 0; i < MAX_PENDING_REQS; ++i)
519 		queue->pending_ring[i] = i;
520 
521 	spin_lock_init(&queue->callback_lock);
522 	spin_lock_init(&queue->response_lock);
523 
524 	/* If ballooning is disabled, this will consume real memory, so you
525 	 * better enable it. The long term solution would be to use just a
526 	 * bunch of valid page descriptors, without dependency on ballooning
527 	 */
528 	err = gnttab_alloc_pages(MAX_PENDING_REQS,
529 				 queue->mmap_pages);
530 	if (err) {
531 		netdev_err(queue->vif->dev, "Could not reserve mmap_pages\n");
532 		return -ENOMEM;
533 	}
534 
535 	for (i = 0; i < MAX_PENDING_REQS; i++) {
536 		queue->pending_tx_info[i].callback_struct = (struct ubuf_info)
537 			{ .callback = xenvif_zerocopy_callback,
538 			  .ctx = NULL,
539 			  .desc = i };
540 		queue->grant_tx_handle[i] = NETBACK_INVALID_HANDLE;
541 	}
542 
543 	return 0;
544 }
545 
546 void xenvif_carrier_on(struct xenvif *vif)
547 {
548 	rtnl_lock();
549 	if (!vif->can_sg && vif->dev->mtu > ETH_DATA_LEN)
550 		dev_set_mtu(vif->dev, ETH_DATA_LEN);
551 	netdev_update_features(vif->dev);
552 	set_bit(VIF_STATUS_CONNECTED, &vif->status);
553 	if (netif_running(vif->dev))
554 		xenvif_up(vif);
555 	rtnl_unlock();
556 }
557 
558 int xenvif_connect_ctrl(struct xenvif *vif, grant_ref_t ring_ref,
559 			unsigned int evtchn)
560 {
561 	struct net_device *dev = vif->dev;
562 	void *addr;
563 	struct xen_netif_ctrl_sring *shared;
564 	int err;
565 
566 	err = xenbus_map_ring_valloc(xenvif_to_xenbus_device(vif),
567 				     &ring_ref, 1, &addr);
568 	if (err)
569 		goto err;
570 
571 	shared = (struct xen_netif_ctrl_sring *)addr;
572 	BACK_RING_INIT(&vif->ctrl, shared, XEN_PAGE_SIZE);
573 
574 	err = bind_interdomain_evtchn_to_irq(vif->domid, evtchn);
575 	if (err < 0)
576 		goto err_unmap;
577 
578 	vif->ctrl_irq = err;
579 
580 	xenvif_init_hash(vif);
581 
582 	err = request_threaded_irq(vif->ctrl_irq, NULL, xenvif_ctrl_irq_fn,
583 				   IRQF_ONESHOT, "xen-netback-ctrl", vif);
584 	if (err) {
585 		pr_warn("Could not setup irq handler for %s\n", dev->name);
586 		goto err_deinit;
587 	}
588 
589 	return 0;
590 
591 err_deinit:
592 	xenvif_deinit_hash(vif);
593 	unbind_from_irqhandler(vif->ctrl_irq, vif);
594 	vif->ctrl_irq = 0;
595 
596 err_unmap:
597 	xenbus_unmap_ring_vfree(xenvif_to_xenbus_device(vif),
598 				vif->ctrl.sring);
599 	vif->ctrl.sring = NULL;
600 
601 err:
602 	return err;
603 }
604 
605 int xenvif_connect_data(struct xenvif_queue *queue,
606 			unsigned long tx_ring_ref,
607 			unsigned long rx_ring_ref,
608 			unsigned int tx_evtchn,
609 			unsigned int rx_evtchn)
610 {
611 	struct task_struct *task;
612 	int err = -ENOMEM;
613 
614 	BUG_ON(queue->tx_irq);
615 	BUG_ON(queue->task);
616 	BUG_ON(queue->dealloc_task);
617 
618 	err = xenvif_map_frontend_data_rings(queue, tx_ring_ref,
619 					     rx_ring_ref);
620 	if (err < 0)
621 		goto err;
622 
623 	init_waitqueue_head(&queue->wq);
624 	init_waitqueue_head(&queue->dealloc_wq);
625 	atomic_set(&queue->inflight_packets, 0);
626 
627 	netif_napi_add(queue->vif->dev, &queue->napi, xenvif_poll,
628 			XENVIF_NAPI_WEIGHT);
629 
630 	if (tx_evtchn == rx_evtchn) {
631 		/* feature-split-event-channels == 0 */
632 		err = bind_interdomain_evtchn_to_irqhandler(
633 			queue->vif->domid, tx_evtchn, xenvif_interrupt, 0,
634 			queue->name, queue);
635 		if (err < 0)
636 			goto err_unmap;
637 		queue->tx_irq = queue->rx_irq = err;
638 		disable_irq(queue->tx_irq);
639 	} else {
640 		/* feature-split-event-channels == 1 */
641 		snprintf(queue->tx_irq_name, sizeof(queue->tx_irq_name),
642 			 "%s-tx", queue->name);
643 		err = bind_interdomain_evtchn_to_irqhandler(
644 			queue->vif->domid, tx_evtchn, xenvif_tx_interrupt, 0,
645 			queue->tx_irq_name, queue);
646 		if (err < 0)
647 			goto err_unmap;
648 		queue->tx_irq = err;
649 		disable_irq(queue->tx_irq);
650 
651 		snprintf(queue->rx_irq_name, sizeof(queue->rx_irq_name),
652 			 "%s-rx", queue->name);
653 		err = bind_interdomain_evtchn_to_irqhandler(
654 			queue->vif->domid, rx_evtchn, xenvif_rx_interrupt, 0,
655 			queue->rx_irq_name, queue);
656 		if (err < 0)
657 			goto err_tx_unbind;
658 		queue->rx_irq = err;
659 		disable_irq(queue->rx_irq);
660 	}
661 
662 	queue->stalled = true;
663 
664 	task = kthread_create(xenvif_kthread_guest_rx,
665 			      (void *)queue, "%s-guest-rx", queue->name);
666 	if (IS_ERR(task)) {
667 		pr_warn("Could not allocate kthread for %s\n", queue->name);
668 		err = PTR_ERR(task);
669 		goto err_rx_unbind;
670 	}
671 	queue->task = task;
672 	get_task_struct(task);
673 
674 	task = kthread_create(xenvif_dealloc_kthread,
675 			      (void *)queue, "%s-dealloc", queue->name);
676 	if (IS_ERR(task)) {
677 		pr_warn("Could not allocate kthread for %s\n", queue->name);
678 		err = PTR_ERR(task);
679 		goto err_rx_unbind;
680 	}
681 	queue->dealloc_task = task;
682 
683 	wake_up_process(queue->task);
684 	wake_up_process(queue->dealloc_task);
685 
686 	return 0;
687 
688 err_rx_unbind:
689 	unbind_from_irqhandler(queue->rx_irq, queue);
690 	queue->rx_irq = 0;
691 err_tx_unbind:
692 	unbind_from_irqhandler(queue->tx_irq, queue);
693 	queue->tx_irq = 0;
694 err_unmap:
695 	xenvif_unmap_frontend_data_rings(queue);
696 	netif_napi_del(&queue->napi);
697 err:
698 	module_put(THIS_MODULE);
699 	return err;
700 }
701 
702 void xenvif_carrier_off(struct xenvif *vif)
703 {
704 	struct net_device *dev = vif->dev;
705 
706 	rtnl_lock();
707 	if (test_and_clear_bit(VIF_STATUS_CONNECTED, &vif->status)) {
708 		netif_carrier_off(dev); /* discard queued packets */
709 		if (netif_running(dev))
710 			xenvif_down(vif);
711 	}
712 	rtnl_unlock();
713 }
714 
715 void xenvif_disconnect_data(struct xenvif *vif)
716 {
717 	struct xenvif_queue *queue = NULL;
718 	unsigned int num_queues = vif->num_queues;
719 	unsigned int queue_index;
720 
721 	xenvif_carrier_off(vif);
722 
723 	for (queue_index = 0; queue_index < num_queues; ++queue_index) {
724 		queue = &vif->queues[queue_index];
725 
726 		netif_napi_del(&queue->napi);
727 
728 		if (queue->task) {
729 			kthread_stop(queue->task);
730 			put_task_struct(queue->task);
731 			queue->task = NULL;
732 		}
733 
734 		if (queue->dealloc_task) {
735 			kthread_stop(queue->dealloc_task);
736 			queue->dealloc_task = NULL;
737 		}
738 
739 		if (queue->tx_irq) {
740 			if (queue->tx_irq == queue->rx_irq)
741 				unbind_from_irqhandler(queue->tx_irq, queue);
742 			else {
743 				unbind_from_irqhandler(queue->tx_irq, queue);
744 				unbind_from_irqhandler(queue->rx_irq, queue);
745 			}
746 			queue->tx_irq = 0;
747 		}
748 
749 		xenvif_unmap_frontend_data_rings(queue);
750 	}
751 
752 	xenvif_mcast_addr_list_free(vif);
753 }
754 
755 void xenvif_disconnect_ctrl(struct xenvif *vif)
756 {
757 	if (vif->ctrl_irq) {
758 		xenvif_deinit_hash(vif);
759 		unbind_from_irqhandler(vif->ctrl_irq, vif);
760 		vif->ctrl_irq = 0;
761 	}
762 
763 	if (vif->ctrl.sring) {
764 		xenbus_unmap_ring_vfree(xenvif_to_xenbus_device(vif),
765 					vif->ctrl.sring);
766 		vif->ctrl.sring = NULL;
767 	}
768 }
769 
770 /* Reverse the relevant parts of xenvif_init_queue().
771  * Used for queue teardown from xenvif_free(), and on the
772  * error handling paths in xenbus.c:connect().
773  */
774 void xenvif_deinit_queue(struct xenvif_queue *queue)
775 {
776 	gnttab_free_pages(MAX_PENDING_REQS, queue->mmap_pages);
777 }
778 
779 void xenvif_free(struct xenvif *vif)
780 {
781 	struct xenvif_queue *queues = vif->queues;
782 	unsigned int num_queues = vif->num_queues;
783 	unsigned int queue_index;
784 
785 	unregister_netdev(vif->dev);
786 	free_netdev(vif->dev);
787 
788 	for (queue_index = 0; queue_index < num_queues; ++queue_index)
789 		xenvif_deinit_queue(&queues[queue_index]);
790 	vfree(queues);
791 
792 	module_put(THIS_MODULE);
793 }
794