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1 /* -*- linux-c -*-
2  * INET		802.1Q VLAN
3  *		Ethernet-type device handling.
4  *
5  * Authors:	Ben Greear <greearb@candelatech.com>
6  *              Please send support related email to: netdev@vger.kernel.org
7  *              VLAN Home Page: http://www.candelatech.com/~greear/vlan.html
8  *
9  * Fixes:       Mar 22 2001: Martin Bokaemper <mbokaemper@unispherenetworks.com>
10  *                - reset skb->pkt_type on incoming packets when MAC was changed
11  *                - see that changed MAC is saddr for outgoing packets
12  *              Oct 20, 2001:  Ard van Breeman:
13  *                - Fix MC-list, finally.
14  *                - Flush MC-list on VLAN destroy.
15  *
16  *
17  *		This program is free software; you can redistribute it and/or
18  *		modify it under the terms of the GNU General Public License
19  *		as published by the Free Software Foundation; either version
20  *		2 of the License, or (at your option) any later version.
21  */
22 
23 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
24 
25 #include <linux/module.h>
26 #include <linux/slab.h>
27 #include <linux/skbuff.h>
28 #include <linux/netdevice.h>
29 #include <linux/etherdevice.h>
30 #include <linux/ethtool.h>
31 #include <net/arp.h>
32 
33 #include "vlan.h"
34 #include "vlanproc.h"
35 #include <linux/if_vlan.h>
36 #include <linux/netpoll.h>
37 
38 /*
39  *	Rebuild the Ethernet MAC header. This is called after an ARP
40  *	(or in future other address resolution) has completed on this
41  *	sk_buff. We now let ARP fill in the other fields.
42  *
43  *	This routine CANNOT use cached dst->neigh!
44  *	Really, it is used only when dst->neigh is wrong.
45  *
46  * TODO:  This needs a checkup, I'm ignorant here. --BLG
47  */
vlan_dev_rebuild_header(struct sk_buff * skb)48 static int vlan_dev_rebuild_header(struct sk_buff *skb)
49 {
50 	struct net_device *dev = skb->dev;
51 	struct vlan_ethhdr *veth = (struct vlan_ethhdr *)(skb->data);
52 
53 	switch (veth->h_vlan_encapsulated_proto) {
54 #ifdef CONFIG_INET
55 	case htons(ETH_P_IP):
56 
57 		/* TODO:  Confirm this will work with VLAN headers... */
58 		return arp_find(veth->h_dest, skb);
59 #endif
60 	default:
61 		pr_debug("%s: unable to resolve type %X addresses\n",
62 			 dev->name, ntohs(veth->h_vlan_encapsulated_proto));
63 
64 		ether_addr_copy(veth->h_source, dev->dev_addr);
65 		break;
66 	}
67 
68 	return 0;
69 }
70 
71 /*
72  *	Create the VLAN header for an arbitrary protocol layer
73  *
74  *	saddr=NULL	means use device source address
75  *	daddr=NULL	means leave destination address (eg unresolved arp)
76  *
77  *  This is called when the SKB is moving down the stack towards the
78  *  physical devices.
79  */
vlan_dev_hard_header(struct sk_buff * skb,struct net_device * dev,unsigned short type,const void * daddr,const void * saddr,unsigned int len)80 static int vlan_dev_hard_header(struct sk_buff *skb, struct net_device *dev,
81 				unsigned short type,
82 				const void *daddr, const void *saddr,
83 				unsigned int len)
84 {
85 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
86 	struct vlan_hdr *vhdr;
87 	unsigned int vhdrlen = 0;
88 	u16 vlan_tci = 0;
89 	int rc;
90 
91 	if (!(vlan->flags & VLAN_FLAG_REORDER_HDR)) {
92 		vhdr = (struct vlan_hdr *) skb_push(skb, VLAN_HLEN);
93 
94 		vlan_tci = vlan->vlan_id;
95 		vlan_tci |= vlan_dev_get_egress_qos_mask(dev, skb->priority);
96 		vhdr->h_vlan_TCI = htons(vlan_tci);
97 
98 		/*
99 		 *  Set the protocol type. For a packet of type ETH_P_802_3/2 we
100 		 *  put the length in here instead.
101 		 */
102 		if (type != ETH_P_802_3 && type != ETH_P_802_2)
103 			vhdr->h_vlan_encapsulated_proto = htons(type);
104 		else
105 			vhdr->h_vlan_encapsulated_proto = htons(len);
106 
107 		skb->protocol = vlan->vlan_proto;
108 		type = ntohs(vlan->vlan_proto);
109 		vhdrlen = VLAN_HLEN;
110 	}
111 
112 	/* Before delegating work to the lower layer, enter our MAC-address */
113 	if (saddr == NULL)
114 		saddr = dev->dev_addr;
115 
116 	/* Now make the underlying real hard header */
117 	dev = vlan->real_dev;
118 	rc = dev_hard_header(skb, dev, type, daddr, saddr, len + vhdrlen);
119 	if (rc > 0)
120 		rc += vhdrlen;
121 	return rc;
122 }
123 
vlan_netpoll_send_skb(struct vlan_dev_priv * vlan,struct sk_buff * skb)124 static inline netdev_tx_t vlan_netpoll_send_skb(struct vlan_dev_priv *vlan, struct sk_buff *skb)
125 {
126 #ifdef CONFIG_NET_POLL_CONTROLLER
127 	if (vlan->netpoll)
128 		netpoll_send_skb(vlan->netpoll, skb);
129 #else
130 	BUG();
131 #endif
132 	return NETDEV_TX_OK;
133 }
134 
vlan_dev_hard_start_xmit(struct sk_buff * skb,struct net_device * dev)135 static netdev_tx_t vlan_dev_hard_start_xmit(struct sk_buff *skb,
136 					    struct net_device *dev)
137 {
138 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
139 	struct vlan_ethhdr *veth = (struct vlan_ethhdr *)(skb->data);
140 	unsigned int len;
141 	int ret;
142 
143 	/* Handle non-VLAN frames if they are sent to us, for example by DHCP.
144 	 *
145 	 * NOTE: THIS ASSUMES DIX ETHERNET, SPECIFICALLY NOT SUPPORTING
146 	 * OTHER THINGS LIKE FDDI/TokenRing/802.3 SNAPs...
147 	 */
148 	if (veth->h_vlan_proto != vlan->vlan_proto ||
149 	    vlan->flags & VLAN_FLAG_REORDER_HDR) {
150 		u16 vlan_tci;
151 		vlan_tci = vlan->vlan_id;
152 		vlan_tci |= vlan_dev_get_egress_qos_mask(dev, skb->priority);
153 		skb = __vlan_hwaccel_put_tag(skb, vlan->vlan_proto, vlan_tci);
154 	}
155 
156 	skb->dev = vlan->real_dev;
157 	len = skb->len;
158 	if (unlikely(netpoll_tx_running(dev)))
159 		return vlan_netpoll_send_skb(vlan, skb);
160 
161 	ret = dev_queue_xmit(skb);
162 
163 	if (likely(ret == NET_XMIT_SUCCESS || ret == NET_XMIT_CN)) {
164 		struct vlan_pcpu_stats *stats;
165 
166 		stats = this_cpu_ptr(vlan->vlan_pcpu_stats);
167 		u64_stats_update_begin(&stats->syncp);
168 		stats->tx_packets++;
169 		stats->tx_bytes += len;
170 		u64_stats_update_end(&stats->syncp);
171 	} else {
172 		this_cpu_inc(vlan->vlan_pcpu_stats->tx_dropped);
173 	}
174 
175 	return ret;
176 }
177 
vlan_dev_change_mtu(struct net_device * dev,int new_mtu)178 static int vlan_dev_change_mtu(struct net_device *dev, int new_mtu)
179 {
180 	/* TODO: gotta make sure the underlying layer can handle it,
181 	 * maybe an IFF_VLAN_CAPABLE flag for devices?
182 	 */
183 	if (vlan_dev_priv(dev)->real_dev->mtu < new_mtu)
184 		return -ERANGE;
185 
186 	dev->mtu = new_mtu;
187 
188 	return 0;
189 }
190 
vlan_dev_set_ingress_priority(const struct net_device * dev,u32 skb_prio,u16 vlan_prio)191 void vlan_dev_set_ingress_priority(const struct net_device *dev,
192 				   u32 skb_prio, u16 vlan_prio)
193 {
194 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
195 
196 	if (vlan->ingress_priority_map[vlan_prio & 0x7] && !skb_prio)
197 		vlan->nr_ingress_mappings--;
198 	else if (!vlan->ingress_priority_map[vlan_prio & 0x7] && skb_prio)
199 		vlan->nr_ingress_mappings++;
200 
201 	vlan->ingress_priority_map[vlan_prio & 0x7] = skb_prio;
202 }
203 
vlan_dev_set_egress_priority(const struct net_device * dev,u32 skb_prio,u16 vlan_prio)204 int vlan_dev_set_egress_priority(const struct net_device *dev,
205 				 u32 skb_prio, u16 vlan_prio)
206 {
207 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
208 	struct vlan_priority_tci_mapping *mp = NULL;
209 	struct vlan_priority_tci_mapping *np;
210 	u32 vlan_qos = (vlan_prio << VLAN_PRIO_SHIFT) & VLAN_PRIO_MASK;
211 
212 	/* See if a priority mapping exists.. */
213 	mp = vlan->egress_priority_map[skb_prio & 0xF];
214 	while (mp) {
215 		if (mp->priority == skb_prio) {
216 			if (mp->vlan_qos && !vlan_qos)
217 				vlan->nr_egress_mappings--;
218 			else if (!mp->vlan_qos && vlan_qos)
219 				vlan->nr_egress_mappings++;
220 			mp->vlan_qos = vlan_qos;
221 			return 0;
222 		}
223 		mp = mp->next;
224 	}
225 
226 	/* Create a new mapping then. */
227 	mp = vlan->egress_priority_map[skb_prio & 0xF];
228 	np = kmalloc(sizeof(struct vlan_priority_tci_mapping), GFP_KERNEL);
229 	if (!np)
230 		return -ENOBUFS;
231 
232 	np->next = mp;
233 	np->priority = skb_prio;
234 	np->vlan_qos = vlan_qos;
235 	/* Before inserting this element in hash table, make sure all its fields
236 	 * are committed to memory.
237 	 * coupled with smp_rmb() in vlan_dev_get_egress_qos_mask()
238 	 */
239 	smp_wmb();
240 	vlan->egress_priority_map[skb_prio & 0xF] = np;
241 	if (vlan_qos)
242 		vlan->nr_egress_mappings++;
243 	return 0;
244 }
245 
246 /* Flags are defined in the vlan_flags enum in include/linux/if_vlan.h file. */
vlan_dev_change_flags(const struct net_device * dev,u32 flags,u32 mask)247 int vlan_dev_change_flags(const struct net_device *dev, u32 flags, u32 mask)
248 {
249 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
250 	u32 old_flags = vlan->flags;
251 
252 	if (mask & ~(VLAN_FLAG_REORDER_HDR | VLAN_FLAG_GVRP |
253 		     VLAN_FLAG_LOOSE_BINDING | VLAN_FLAG_MVRP))
254 		return -EINVAL;
255 
256 	vlan->flags = (old_flags & ~mask) | (flags & mask);
257 
258 	if (netif_running(dev) && (vlan->flags ^ old_flags) & VLAN_FLAG_GVRP) {
259 		if (vlan->flags & VLAN_FLAG_GVRP)
260 			vlan_gvrp_request_join(dev);
261 		else
262 			vlan_gvrp_request_leave(dev);
263 	}
264 
265 	if (netif_running(dev) && (vlan->flags ^ old_flags) & VLAN_FLAG_MVRP) {
266 		if (vlan->flags & VLAN_FLAG_MVRP)
267 			vlan_mvrp_request_join(dev);
268 		else
269 			vlan_mvrp_request_leave(dev);
270 	}
271 	return 0;
272 }
273 
vlan_dev_get_realdev_name(const struct net_device * dev,char * result)274 void vlan_dev_get_realdev_name(const struct net_device *dev, char *result)
275 {
276 	strncpy(result, vlan_dev_priv(dev)->real_dev->name, 23);
277 }
278 
vlan_dev_inherit_address(struct net_device * dev,struct net_device * real_dev)279 bool vlan_dev_inherit_address(struct net_device *dev,
280 			      struct net_device *real_dev)
281 {
282 	if (dev->addr_assign_type != NET_ADDR_STOLEN)
283 		return false;
284 
285 	ether_addr_copy(dev->dev_addr, real_dev->dev_addr);
286 	call_netdevice_notifiers(NETDEV_CHANGEADDR, dev);
287 	return true;
288 }
289 
vlan_dev_open(struct net_device * dev)290 static int vlan_dev_open(struct net_device *dev)
291 {
292 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
293 	struct net_device *real_dev = vlan->real_dev;
294 	int err;
295 
296 	if (!(real_dev->flags & IFF_UP) &&
297 	    !(vlan->flags & VLAN_FLAG_LOOSE_BINDING))
298 		return -ENETDOWN;
299 
300 	if (!ether_addr_equal(dev->dev_addr, real_dev->dev_addr) &&
301 	    !vlan_dev_inherit_address(dev, real_dev)) {
302 		err = dev_uc_add(real_dev, dev->dev_addr);
303 		if (err < 0)
304 			goto out;
305 	}
306 
307 	if (dev->flags & IFF_ALLMULTI) {
308 		err = dev_set_allmulti(real_dev, 1);
309 		if (err < 0)
310 			goto del_unicast;
311 	}
312 	if (dev->flags & IFF_PROMISC) {
313 		err = dev_set_promiscuity(real_dev, 1);
314 		if (err < 0)
315 			goto clear_allmulti;
316 	}
317 
318 	ether_addr_copy(vlan->real_dev_addr, real_dev->dev_addr);
319 
320 	if (vlan->flags & VLAN_FLAG_GVRP)
321 		vlan_gvrp_request_join(dev);
322 
323 	if (vlan->flags & VLAN_FLAG_MVRP)
324 		vlan_mvrp_request_join(dev);
325 
326 	if (netif_carrier_ok(real_dev))
327 		netif_carrier_on(dev);
328 	return 0;
329 
330 clear_allmulti:
331 	if (dev->flags & IFF_ALLMULTI)
332 		dev_set_allmulti(real_dev, -1);
333 del_unicast:
334 	if (!ether_addr_equal(dev->dev_addr, real_dev->dev_addr))
335 		dev_uc_del(real_dev, dev->dev_addr);
336 out:
337 	netif_carrier_off(dev);
338 	return err;
339 }
340 
vlan_dev_stop(struct net_device * dev)341 static int vlan_dev_stop(struct net_device *dev)
342 {
343 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
344 	struct net_device *real_dev = vlan->real_dev;
345 
346 	dev_mc_unsync(real_dev, dev);
347 	dev_uc_unsync(real_dev, dev);
348 	if (dev->flags & IFF_ALLMULTI)
349 		dev_set_allmulti(real_dev, -1);
350 	if (dev->flags & IFF_PROMISC)
351 		dev_set_promiscuity(real_dev, -1);
352 
353 	if (!ether_addr_equal(dev->dev_addr, real_dev->dev_addr))
354 		dev_uc_del(real_dev, dev->dev_addr);
355 
356 	netif_carrier_off(dev);
357 	return 0;
358 }
359 
vlan_dev_set_mac_address(struct net_device * dev,void * p)360 static int vlan_dev_set_mac_address(struct net_device *dev, void *p)
361 {
362 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
363 	struct sockaddr *addr = p;
364 	int err;
365 
366 	if (!is_valid_ether_addr(addr->sa_data))
367 		return -EADDRNOTAVAIL;
368 
369 	if (!(dev->flags & IFF_UP))
370 		goto out;
371 
372 	if (!ether_addr_equal(addr->sa_data, real_dev->dev_addr)) {
373 		err = dev_uc_add(real_dev, addr->sa_data);
374 		if (err < 0)
375 			return err;
376 	}
377 
378 	if (!ether_addr_equal(dev->dev_addr, real_dev->dev_addr))
379 		dev_uc_del(real_dev, dev->dev_addr);
380 
381 out:
382 	ether_addr_copy(dev->dev_addr, addr->sa_data);
383 	return 0;
384 }
385 
vlan_dev_ioctl(struct net_device * dev,struct ifreq * ifr,int cmd)386 static int vlan_dev_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd)
387 {
388 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
389 	const struct net_device_ops *ops = real_dev->netdev_ops;
390 	struct ifreq ifrr;
391 	int err = -EOPNOTSUPP;
392 
393 	strncpy(ifrr.ifr_name, real_dev->name, IFNAMSIZ);
394 	ifrr.ifr_ifru = ifr->ifr_ifru;
395 
396 	switch (cmd) {
397 	case SIOCGMIIPHY:
398 	case SIOCGMIIREG:
399 	case SIOCSMIIREG:
400 	case SIOCSHWTSTAMP:
401 	case SIOCGHWTSTAMP:
402 		if (netif_device_present(real_dev) && ops->ndo_do_ioctl)
403 			err = ops->ndo_do_ioctl(real_dev, &ifrr, cmd);
404 		break;
405 	}
406 
407 	if (!err)
408 		ifr->ifr_ifru = ifrr.ifr_ifru;
409 
410 	return err;
411 }
412 
vlan_dev_neigh_setup(struct net_device * dev,struct neigh_parms * pa)413 static int vlan_dev_neigh_setup(struct net_device *dev, struct neigh_parms *pa)
414 {
415 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
416 	const struct net_device_ops *ops = real_dev->netdev_ops;
417 	int err = 0;
418 
419 	if (netif_device_present(real_dev) && ops->ndo_neigh_setup)
420 		err = ops->ndo_neigh_setup(real_dev, pa);
421 
422 	return err;
423 }
424 
425 #if IS_ENABLED(CONFIG_FCOE)
vlan_dev_fcoe_ddp_setup(struct net_device * dev,u16 xid,struct scatterlist * sgl,unsigned int sgc)426 static int vlan_dev_fcoe_ddp_setup(struct net_device *dev, u16 xid,
427 				   struct scatterlist *sgl, unsigned int sgc)
428 {
429 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
430 	const struct net_device_ops *ops = real_dev->netdev_ops;
431 	int rc = 0;
432 
433 	if (ops->ndo_fcoe_ddp_setup)
434 		rc = ops->ndo_fcoe_ddp_setup(real_dev, xid, sgl, sgc);
435 
436 	return rc;
437 }
438 
vlan_dev_fcoe_ddp_done(struct net_device * dev,u16 xid)439 static int vlan_dev_fcoe_ddp_done(struct net_device *dev, u16 xid)
440 {
441 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
442 	const struct net_device_ops *ops = real_dev->netdev_ops;
443 	int len = 0;
444 
445 	if (ops->ndo_fcoe_ddp_done)
446 		len = ops->ndo_fcoe_ddp_done(real_dev, xid);
447 
448 	return len;
449 }
450 
vlan_dev_fcoe_enable(struct net_device * dev)451 static int vlan_dev_fcoe_enable(struct net_device *dev)
452 {
453 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
454 	const struct net_device_ops *ops = real_dev->netdev_ops;
455 	int rc = -EINVAL;
456 
457 	if (ops->ndo_fcoe_enable)
458 		rc = ops->ndo_fcoe_enable(real_dev);
459 	return rc;
460 }
461 
vlan_dev_fcoe_disable(struct net_device * dev)462 static int vlan_dev_fcoe_disable(struct net_device *dev)
463 {
464 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
465 	const struct net_device_ops *ops = real_dev->netdev_ops;
466 	int rc = -EINVAL;
467 
468 	if (ops->ndo_fcoe_disable)
469 		rc = ops->ndo_fcoe_disable(real_dev);
470 	return rc;
471 }
472 
vlan_dev_fcoe_get_wwn(struct net_device * dev,u64 * wwn,int type)473 static int vlan_dev_fcoe_get_wwn(struct net_device *dev, u64 *wwn, int type)
474 {
475 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
476 	const struct net_device_ops *ops = real_dev->netdev_ops;
477 	int rc = -EINVAL;
478 
479 	if (ops->ndo_fcoe_get_wwn)
480 		rc = ops->ndo_fcoe_get_wwn(real_dev, wwn, type);
481 	return rc;
482 }
483 
vlan_dev_fcoe_ddp_target(struct net_device * dev,u16 xid,struct scatterlist * sgl,unsigned int sgc)484 static int vlan_dev_fcoe_ddp_target(struct net_device *dev, u16 xid,
485 				    struct scatterlist *sgl, unsigned int sgc)
486 {
487 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
488 	const struct net_device_ops *ops = real_dev->netdev_ops;
489 	int rc = 0;
490 
491 	if (ops->ndo_fcoe_ddp_target)
492 		rc = ops->ndo_fcoe_ddp_target(real_dev, xid, sgl, sgc);
493 
494 	return rc;
495 }
496 #endif
497 
vlan_dev_change_rx_flags(struct net_device * dev,int change)498 static void vlan_dev_change_rx_flags(struct net_device *dev, int change)
499 {
500 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
501 
502 	if (dev->flags & IFF_UP) {
503 		if (change & IFF_ALLMULTI)
504 			dev_set_allmulti(real_dev, dev->flags & IFF_ALLMULTI ? 1 : -1);
505 		if (change & IFF_PROMISC)
506 			dev_set_promiscuity(real_dev, dev->flags & IFF_PROMISC ? 1 : -1);
507 	}
508 }
509 
vlan_dev_set_rx_mode(struct net_device * vlan_dev)510 static void vlan_dev_set_rx_mode(struct net_device *vlan_dev)
511 {
512 	dev_mc_sync(vlan_dev_priv(vlan_dev)->real_dev, vlan_dev);
513 	dev_uc_sync(vlan_dev_priv(vlan_dev)->real_dev, vlan_dev);
514 }
515 
516 /*
517  * vlan network devices have devices nesting below it, and are a special
518  * "super class" of normal network devices; split their locks off into a
519  * separate class since they always nest.
520  */
521 static struct lock_class_key vlan_netdev_xmit_lock_key;
522 static struct lock_class_key vlan_netdev_addr_lock_key;
523 
vlan_dev_set_lockdep_one(struct net_device * dev,struct netdev_queue * txq,void * _subclass)524 static void vlan_dev_set_lockdep_one(struct net_device *dev,
525 				     struct netdev_queue *txq,
526 				     void *_subclass)
527 {
528 	lockdep_set_class_and_subclass(&txq->_xmit_lock,
529 				       &vlan_netdev_xmit_lock_key,
530 				       *(int *)_subclass);
531 }
532 
vlan_dev_set_lockdep_class(struct net_device * dev,int subclass)533 static void vlan_dev_set_lockdep_class(struct net_device *dev, int subclass)
534 {
535 	lockdep_set_class_and_subclass(&dev->addr_list_lock,
536 				       &vlan_netdev_addr_lock_key,
537 				       subclass);
538 	netdev_for_each_tx_queue(dev, vlan_dev_set_lockdep_one, &subclass);
539 }
540 
vlan_dev_get_lock_subclass(struct net_device * dev)541 static int vlan_dev_get_lock_subclass(struct net_device *dev)
542 {
543 	return vlan_dev_priv(dev)->nest_level;
544 }
545 
546 static const struct header_ops vlan_header_ops = {
547 	.create	 = vlan_dev_hard_header,
548 	.rebuild = vlan_dev_rebuild_header,
549 	.parse	 = eth_header_parse,
550 };
551 
vlan_passthru_hard_header(struct sk_buff * skb,struct net_device * dev,unsigned short type,const void * daddr,const void * saddr,unsigned int len)552 static int vlan_passthru_hard_header(struct sk_buff *skb, struct net_device *dev,
553 				     unsigned short type,
554 				     const void *daddr, const void *saddr,
555 				     unsigned int len)
556 {
557 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
558 	struct net_device *real_dev = vlan->real_dev;
559 
560 	if (saddr == NULL)
561 		saddr = dev->dev_addr;
562 
563 	return dev_hard_header(skb, real_dev, type, daddr, saddr, len);
564 }
565 
566 static const struct header_ops vlan_passthru_header_ops = {
567 	.create	 = vlan_passthru_hard_header,
568 	.rebuild = dev_rebuild_header,
569 	.parse	 = eth_header_parse,
570 };
571 
572 static struct device_type vlan_type = {
573 	.name	= "vlan",
574 };
575 
576 static const struct net_device_ops vlan_netdev_ops;
577 
vlan_dev_init(struct net_device * dev)578 static int vlan_dev_init(struct net_device *dev)
579 {
580 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
581 
582 	netif_carrier_off(dev);
583 
584 	/* IFF_BROADCAST|IFF_MULTICAST; ??? */
585 	dev->flags  = real_dev->flags & ~(IFF_UP | IFF_PROMISC | IFF_ALLMULTI |
586 					  IFF_MASTER | IFF_SLAVE);
587 	dev->iflink = real_dev->ifindex;
588 	dev->state  = (real_dev->state & ((1<<__LINK_STATE_NOCARRIER) |
589 					  (1<<__LINK_STATE_DORMANT))) |
590 		      (1<<__LINK_STATE_PRESENT);
591 
592 	dev->hw_features = NETIF_F_ALL_CSUM | NETIF_F_SG |
593 			   NETIF_F_FRAGLIST | NETIF_F_ALL_TSO |
594 			   NETIF_F_HIGHDMA | NETIF_F_SCTP_CSUM |
595 			   NETIF_F_ALL_FCOE;
596 
597 	dev->features |= real_dev->vlan_features | NETIF_F_LLTX;
598 	dev->gso_max_size = real_dev->gso_max_size;
599 	if (dev->features & NETIF_F_VLAN_FEATURES)
600 		netdev_warn(real_dev, "VLAN features are set incorrectly.  Q-in-Q configurations may not work correctly.\n");
601 
602 
603 	/* ipv6 shared card related stuff */
604 	dev->dev_id = real_dev->dev_id;
605 
606 	if (is_zero_ether_addr(dev->dev_addr)) {
607 		ether_addr_copy(dev->dev_addr, real_dev->dev_addr);
608 		dev->addr_assign_type = NET_ADDR_STOLEN;
609 	}
610 	if (is_zero_ether_addr(dev->broadcast))
611 		memcpy(dev->broadcast, real_dev->broadcast, dev->addr_len);
612 
613 #if IS_ENABLED(CONFIG_FCOE)
614 	dev->fcoe_ddp_xid = real_dev->fcoe_ddp_xid;
615 #endif
616 
617 	dev->needed_headroom = real_dev->needed_headroom;
618 	if (vlan_hw_offload_capable(real_dev->features,
619 				    vlan_dev_priv(dev)->vlan_proto)) {
620 		dev->header_ops      = &vlan_passthru_header_ops;
621 		dev->hard_header_len = real_dev->hard_header_len;
622 	} else {
623 		dev->header_ops      = &vlan_header_ops;
624 		dev->hard_header_len = real_dev->hard_header_len + VLAN_HLEN;
625 	}
626 
627 	dev->netdev_ops = &vlan_netdev_ops;
628 
629 	SET_NETDEV_DEVTYPE(dev, &vlan_type);
630 
631 	vlan_dev_set_lockdep_class(dev, vlan_dev_get_lock_subclass(dev));
632 
633 	vlan_dev_priv(dev)->vlan_pcpu_stats = netdev_alloc_pcpu_stats(struct vlan_pcpu_stats);
634 	if (!vlan_dev_priv(dev)->vlan_pcpu_stats)
635 		return -ENOMEM;
636 
637 	return 0;
638 }
639 
vlan_dev_uninit(struct net_device * dev)640 static void vlan_dev_uninit(struct net_device *dev)
641 {
642 	struct vlan_priority_tci_mapping *pm;
643 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
644 	int i;
645 
646 	for (i = 0; i < ARRAY_SIZE(vlan->egress_priority_map); i++) {
647 		while ((pm = vlan->egress_priority_map[i]) != NULL) {
648 			vlan->egress_priority_map[i] = pm->next;
649 			kfree(pm);
650 		}
651 	}
652 }
653 
vlan_dev_fix_features(struct net_device * dev,netdev_features_t features)654 static netdev_features_t vlan_dev_fix_features(struct net_device *dev,
655 	netdev_features_t features)
656 {
657 	struct net_device *real_dev = vlan_dev_priv(dev)->real_dev;
658 	netdev_features_t old_features = features;
659 
660 	features = netdev_intersect_features(features, real_dev->vlan_features);
661 	features |= NETIF_F_RXCSUM;
662 	features = netdev_intersect_features(features, real_dev->features);
663 
664 	features |= old_features & NETIF_F_SOFT_FEATURES;
665 	features |= NETIF_F_LLTX;
666 
667 	return features;
668 }
669 
vlan_ethtool_get_settings(struct net_device * dev,struct ethtool_cmd * cmd)670 static int vlan_ethtool_get_settings(struct net_device *dev,
671 				     struct ethtool_cmd *cmd)
672 {
673 	const struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
674 
675 	return __ethtool_get_settings(vlan->real_dev, cmd);
676 }
677 
vlan_ethtool_get_drvinfo(struct net_device * dev,struct ethtool_drvinfo * info)678 static void vlan_ethtool_get_drvinfo(struct net_device *dev,
679 				     struct ethtool_drvinfo *info)
680 {
681 	strlcpy(info->driver, vlan_fullname, sizeof(info->driver));
682 	strlcpy(info->version, vlan_version, sizeof(info->version));
683 	strlcpy(info->fw_version, "N/A", sizeof(info->fw_version));
684 }
685 
vlan_dev_get_stats64(struct net_device * dev,struct rtnl_link_stats64 * stats)686 static struct rtnl_link_stats64 *vlan_dev_get_stats64(struct net_device *dev, struct rtnl_link_stats64 *stats)
687 {
688 	struct vlan_pcpu_stats *p;
689 	u32 rx_errors = 0, tx_dropped = 0;
690 	int i;
691 
692 	for_each_possible_cpu(i) {
693 		u64 rxpackets, rxbytes, rxmulticast, txpackets, txbytes;
694 		unsigned int start;
695 
696 		p = per_cpu_ptr(vlan_dev_priv(dev)->vlan_pcpu_stats, i);
697 		do {
698 			start = u64_stats_fetch_begin_irq(&p->syncp);
699 			rxpackets	= p->rx_packets;
700 			rxbytes		= p->rx_bytes;
701 			rxmulticast	= p->rx_multicast;
702 			txpackets	= p->tx_packets;
703 			txbytes		= p->tx_bytes;
704 		} while (u64_stats_fetch_retry_irq(&p->syncp, start));
705 
706 		stats->rx_packets	+= rxpackets;
707 		stats->rx_bytes		+= rxbytes;
708 		stats->multicast	+= rxmulticast;
709 		stats->tx_packets	+= txpackets;
710 		stats->tx_bytes		+= txbytes;
711 		/* rx_errors & tx_dropped are u32 */
712 		rx_errors	+= p->rx_errors;
713 		tx_dropped	+= p->tx_dropped;
714 	}
715 	stats->rx_errors  = rx_errors;
716 	stats->tx_dropped = tx_dropped;
717 
718 	return stats;
719 }
720 
721 #ifdef CONFIG_NET_POLL_CONTROLLER
vlan_dev_poll_controller(struct net_device * dev)722 static void vlan_dev_poll_controller(struct net_device *dev)
723 {
724 	return;
725 }
726 
vlan_dev_netpoll_setup(struct net_device * dev,struct netpoll_info * npinfo)727 static int vlan_dev_netpoll_setup(struct net_device *dev, struct netpoll_info *npinfo)
728 {
729 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
730 	struct net_device *real_dev = vlan->real_dev;
731 	struct netpoll *netpoll;
732 	int err = 0;
733 
734 	netpoll = kzalloc(sizeof(*netpoll), GFP_KERNEL);
735 	err = -ENOMEM;
736 	if (!netpoll)
737 		goto out;
738 
739 	err = __netpoll_setup(netpoll, real_dev);
740 	if (err) {
741 		kfree(netpoll);
742 		goto out;
743 	}
744 
745 	vlan->netpoll = netpoll;
746 
747 out:
748 	return err;
749 }
750 
vlan_dev_netpoll_cleanup(struct net_device * dev)751 static void vlan_dev_netpoll_cleanup(struct net_device *dev)
752 {
753 	struct vlan_dev_priv *vlan= vlan_dev_priv(dev);
754 	struct netpoll *netpoll = vlan->netpoll;
755 
756 	if (!netpoll)
757 		return;
758 
759 	vlan->netpoll = NULL;
760 
761 	__netpoll_free_async(netpoll);
762 }
763 #endif /* CONFIG_NET_POLL_CONTROLLER */
764 
765 static const struct ethtool_ops vlan_ethtool_ops = {
766 	.get_settings	        = vlan_ethtool_get_settings,
767 	.get_drvinfo	        = vlan_ethtool_get_drvinfo,
768 	.get_link		= ethtool_op_get_link,
769 };
770 
771 static const struct net_device_ops vlan_netdev_ops = {
772 	.ndo_change_mtu		= vlan_dev_change_mtu,
773 	.ndo_init		= vlan_dev_init,
774 	.ndo_uninit		= vlan_dev_uninit,
775 	.ndo_open		= vlan_dev_open,
776 	.ndo_stop		= vlan_dev_stop,
777 	.ndo_start_xmit =  vlan_dev_hard_start_xmit,
778 	.ndo_validate_addr	= eth_validate_addr,
779 	.ndo_set_mac_address	= vlan_dev_set_mac_address,
780 	.ndo_set_rx_mode	= vlan_dev_set_rx_mode,
781 	.ndo_change_rx_flags	= vlan_dev_change_rx_flags,
782 	.ndo_do_ioctl		= vlan_dev_ioctl,
783 	.ndo_neigh_setup	= vlan_dev_neigh_setup,
784 	.ndo_get_stats64	= vlan_dev_get_stats64,
785 #if IS_ENABLED(CONFIG_FCOE)
786 	.ndo_fcoe_ddp_setup	= vlan_dev_fcoe_ddp_setup,
787 	.ndo_fcoe_ddp_done	= vlan_dev_fcoe_ddp_done,
788 	.ndo_fcoe_enable	= vlan_dev_fcoe_enable,
789 	.ndo_fcoe_disable	= vlan_dev_fcoe_disable,
790 	.ndo_fcoe_get_wwn	= vlan_dev_fcoe_get_wwn,
791 	.ndo_fcoe_ddp_target	= vlan_dev_fcoe_ddp_target,
792 #endif
793 #ifdef CONFIG_NET_POLL_CONTROLLER
794 	.ndo_poll_controller	= vlan_dev_poll_controller,
795 	.ndo_netpoll_setup	= vlan_dev_netpoll_setup,
796 	.ndo_netpoll_cleanup	= vlan_dev_netpoll_cleanup,
797 #endif
798 	.ndo_fix_features	= vlan_dev_fix_features,
799 	.ndo_get_lock_subclass  = vlan_dev_get_lock_subclass,
800 };
801 
vlan_dev_free(struct net_device * dev)802 static void vlan_dev_free(struct net_device *dev)
803 {
804 	struct vlan_dev_priv *vlan = vlan_dev_priv(dev);
805 
806 	free_percpu(vlan->vlan_pcpu_stats);
807 	vlan->vlan_pcpu_stats = NULL;
808 	free_netdev(dev);
809 }
810 
vlan_setup(struct net_device * dev)811 void vlan_setup(struct net_device *dev)
812 {
813 	ether_setup(dev);
814 
815 	dev->priv_flags		|= IFF_802_1Q_VLAN;
816 	dev->priv_flags		&= ~IFF_TX_SKB_SHARING;
817 	netif_keep_dst(dev);
818 	dev->tx_queue_len	= 0;
819 
820 	dev->netdev_ops		= &vlan_netdev_ops;
821 	dev->destructor		= vlan_dev_free;
822 	dev->ethtool_ops	= &vlan_ethtool_ops;
823 
824 	memset(dev->broadcast, 0, ETH_ALEN);
825 }
826