vlan.c 21 KB

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  1. /*
  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: vlan@scry.wanfear.com
  7. * VLAN Home Page: http://www.candelatech.com/~greear/vlan.html
  8. *
  9. * Fixes:
  10. * Fix for packet capture - Nick Eggleston <nick@dccinc.com>;
  11. * Add HW acceleration hooks - David S. Miller <davem@redhat.com>;
  12. * Correct all the locking - David S. Miller <davem@redhat.com>;
  13. * Use hash table for VLAN groups - David S. Miller <davem@redhat.com>
  14. *
  15. * This program is free software; you can redistribute it and/or
  16. * modify it under the terms of the GNU General Public License
  17. * as published by the Free Software Foundation; either version
  18. * 2 of the License, or (at your option) any later version.
  19. */
  20. #include <asm/uaccess.h> /* for copy_from_user */
  21. #include <linux/capability.h>
  22. #include <linux/module.h>
  23. #include <linux/netdevice.h>
  24. #include <linux/skbuff.h>
  25. #include <net/datalink.h>
  26. #include <linux/mm.h>
  27. #include <linux/in.h>
  28. #include <linux/init.h>
  29. #include <net/p8022.h>
  30. #include <net/arp.h>
  31. #include <linux/rtnetlink.h>
  32. #include <linux/notifier.h>
  33. #include <net/net_namespace.h>
  34. #include <linux/if_vlan.h>
  35. #include "vlan.h"
  36. #include "vlanproc.h"
  37. #define DRV_VERSION "1.8"
  38. /* Global VLAN variables */
  39. /* Our listing of VLAN group(s) */
  40. static struct hlist_head vlan_group_hash[VLAN_GRP_HASH_SIZE];
  41. #define vlan_grp_hashfn(IDX) ((((IDX) >> VLAN_GRP_HASH_SHIFT) ^ (IDX)) & VLAN_GRP_HASH_MASK)
  42. static char vlan_fullname[] = "802.1Q VLAN Support";
  43. static char vlan_version[] = DRV_VERSION;
  44. static char vlan_copyright[] = "Ben Greear <greearb@candelatech.com>";
  45. static char vlan_buggyright[] = "David S. Miller <davem@redhat.com>";
  46. static int vlan_device_event(struct notifier_block *, unsigned long, void *);
  47. static int vlan_ioctl_handler(struct net *net, void __user *);
  48. static int unregister_vlan_dev(struct net_device *, unsigned short );
  49. static struct notifier_block vlan_notifier_block = {
  50. .notifier_call = vlan_device_event,
  51. };
  52. /* These may be changed at run-time through IOCTLs */
  53. /* Determines interface naming scheme. */
  54. unsigned short vlan_name_type = VLAN_NAME_TYPE_RAW_PLUS_VID_NO_PAD;
  55. static struct packet_type vlan_packet_type = {
  56. .type = __constant_htons(ETH_P_8021Q),
  57. .func = vlan_skb_recv, /* VLAN receive method */
  58. };
  59. /* End of global variables definitions. */
  60. /*
  61. * Function vlan_proto_init (pro)
  62. *
  63. * Initialize VLAN protocol layer,
  64. *
  65. */
  66. static int __init vlan_proto_init(void)
  67. {
  68. int err;
  69. printk(VLAN_INF "%s v%s %s\n",
  70. vlan_fullname, vlan_version, vlan_copyright);
  71. printk(VLAN_INF "All bugs added by %s\n",
  72. vlan_buggyright);
  73. /* proc file system initialization */
  74. err = vlan_proc_init();
  75. if (err < 0) {
  76. printk(KERN_ERR
  77. "%s %s: can't create entry in proc filesystem!\n",
  78. __FUNCTION__, VLAN_NAME);
  79. return err;
  80. }
  81. dev_add_pack(&vlan_packet_type);
  82. /* Register us to receive netdevice events */
  83. err = register_netdevice_notifier(&vlan_notifier_block);
  84. if (err < 0)
  85. goto err1;
  86. err = vlan_netlink_init();
  87. if (err < 0)
  88. goto err2;
  89. vlan_ioctl_set(vlan_ioctl_handler);
  90. return 0;
  91. err2:
  92. unregister_netdevice_notifier(&vlan_notifier_block);
  93. err1:
  94. vlan_proc_cleanup();
  95. dev_remove_pack(&vlan_packet_type);
  96. return err;
  97. }
  98. /*
  99. * Module 'remove' entry point.
  100. * o delete /proc/net/router directory and static entries.
  101. */
  102. static void __exit vlan_cleanup_module(void)
  103. {
  104. int i;
  105. vlan_netlink_fini();
  106. vlan_ioctl_set(NULL);
  107. /* Un-register us from receiving netdevice events */
  108. unregister_netdevice_notifier(&vlan_notifier_block);
  109. dev_remove_pack(&vlan_packet_type);
  110. /* This table must be empty if there are no module
  111. * references left.
  112. */
  113. for (i = 0; i < VLAN_GRP_HASH_SIZE; i++) {
  114. BUG_ON(!hlist_empty(&vlan_group_hash[i]));
  115. }
  116. vlan_proc_cleanup();
  117. synchronize_net();
  118. }
  119. module_init(vlan_proto_init);
  120. module_exit(vlan_cleanup_module);
  121. /* Must be invoked with RCU read lock (no preempt) */
  122. static struct vlan_group *__vlan_find_group(int real_dev_ifindex)
  123. {
  124. struct vlan_group *grp;
  125. struct hlist_node *n;
  126. int hash = vlan_grp_hashfn(real_dev_ifindex);
  127. hlist_for_each_entry_rcu(grp, n, &vlan_group_hash[hash], hlist) {
  128. if (grp->real_dev_ifindex == real_dev_ifindex)
  129. return grp;
  130. }
  131. return NULL;
  132. }
  133. /* Find the protocol handler. Assumes VID < VLAN_VID_MASK.
  134. *
  135. * Must be invoked with RCU read lock (no preempt)
  136. */
  137. struct net_device *__find_vlan_dev(struct net_device *real_dev,
  138. unsigned short VID)
  139. {
  140. struct vlan_group *grp = __vlan_find_group(real_dev->ifindex);
  141. if (grp)
  142. return vlan_group_get_device(grp, VID);
  143. return NULL;
  144. }
  145. static void vlan_group_free(struct vlan_group *grp)
  146. {
  147. int i;
  148. for (i=0; i < VLAN_GROUP_ARRAY_SPLIT_PARTS; i++)
  149. kfree(grp->vlan_devices_arrays[i]);
  150. kfree(grp);
  151. }
  152. static struct vlan_group *vlan_group_alloc(int ifindex)
  153. {
  154. struct vlan_group *grp;
  155. unsigned int size;
  156. unsigned int i;
  157. grp = kzalloc(sizeof(struct vlan_group), GFP_KERNEL);
  158. if (!grp)
  159. return NULL;
  160. size = sizeof(struct net_device *) * VLAN_GROUP_ARRAY_PART_LEN;
  161. for (i = 0; i < VLAN_GROUP_ARRAY_SPLIT_PARTS; i++) {
  162. grp->vlan_devices_arrays[i] = kzalloc(size, GFP_KERNEL);
  163. if (!grp->vlan_devices_arrays[i])
  164. goto err;
  165. }
  166. grp->real_dev_ifindex = ifindex;
  167. hlist_add_head_rcu(&grp->hlist,
  168. &vlan_group_hash[vlan_grp_hashfn(ifindex)]);
  169. return grp;
  170. err:
  171. vlan_group_free(grp);
  172. return NULL;
  173. }
  174. static void vlan_rcu_free(struct rcu_head *rcu)
  175. {
  176. vlan_group_free(container_of(rcu, struct vlan_group, rcu));
  177. }
  178. /* This returns 0 if everything went fine.
  179. * It will return 1 if the group was killed as a result.
  180. * A negative return indicates failure.
  181. *
  182. * The RTNL lock must be held.
  183. */
  184. static int unregister_vlan_dev(struct net_device *real_dev,
  185. unsigned short vlan_id)
  186. {
  187. struct net_device *dev = NULL;
  188. int real_dev_ifindex = real_dev->ifindex;
  189. struct vlan_group *grp;
  190. int i, ret;
  191. #ifdef VLAN_DEBUG
  192. printk(VLAN_DBG "%s: VID: %i\n", __FUNCTION__, vlan_id);
  193. #endif
  194. /* sanity check */
  195. if (vlan_id >= VLAN_VID_MASK)
  196. return -EINVAL;
  197. ASSERT_RTNL();
  198. grp = __vlan_find_group(real_dev_ifindex);
  199. ret = 0;
  200. if (grp) {
  201. dev = vlan_group_get_device(grp, vlan_id);
  202. if (dev) {
  203. /* Remove proc entry */
  204. vlan_proc_rem_dev(dev);
  205. /* Take it out of our own structures, but be sure to
  206. * interlock with HW accelerating devices or SW vlan
  207. * input packet processing.
  208. */
  209. if (real_dev->features & NETIF_F_HW_VLAN_FILTER)
  210. real_dev->vlan_rx_kill_vid(real_dev, vlan_id);
  211. vlan_group_set_device(grp, vlan_id, NULL);
  212. synchronize_net();
  213. /* Caller unregisters (and if necessary, puts)
  214. * VLAN device, but we get rid of the reference to
  215. * real_dev here.
  216. */
  217. dev_put(real_dev);
  218. /* If the group is now empty, kill off the
  219. * group.
  220. */
  221. for (i = 0; i < VLAN_VID_MASK; i++)
  222. if (vlan_group_get_device(grp, i))
  223. break;
  224. if (i == VLAN_VID_MASK) {
  225. if (real_dev->features & NETIF_F_HW_VLAN_RX)
  226. real_dev->vlan_rx_register(real_dev, NULL);
  227. hlist_del_rcu(&grp->hlist);
  228. /* Free the group, after all cpu's are done. */
  229. call_rcu(&grp->rcu, vlan_rcu_free);
  230. grp = NULL;
  231. ret = 1;
  232. }
  233. }
  234. }
  235. return ret;
  236. }
  237. int unregister_vlan_device(struct net_device *dev)
  238. {
  239. int ret;
  240. ret = unregister_vlan_dev(VLAN_DEV_INFO(dev)->real_dev,
  241. VLAN_DEV_INFO(dev)->vlan_id);
  242. unregister_netdevice(dev);
  243. if (ret == 1)
  244. ret = 0;
  245. return ret;
  246. }
  247. /*
  248. * vlan network devices have devices nesting below it, and are a special
  249. * "super class" of normal network devices; split their locks off into a
  250. * separate class since they always nest.
  251. */
  252. static struct lock_class_key vlan_netdev_xmit_lock_key;
  253. static int vlan_dev_init(struct net_device *dev)
  254. {
  255. struct net_device *real_dev = VLAN_DEV_INFO(dev)->real_dev;
  256. /* IFF_BROADCAST|IFF_MULTICAST; ??? */
  257. dev->flags = real_dev->flags & ~IFF_UP;
  258. dev->iflink = real_dev->ifindex;
  259. dev->state = (real_dev->state & ((1<<__LINK_STATE_NOCARRIER) |
  260. (1<<__LINK_STATE_DORMANT))) |
  261. (1<<__LINK_STATE_PRESENT);
  262. if (is_zero_ether_addr(dev->dev_addr))
  263. memcpy(dev->dev_addr, real_dev->dev_addr, dev->addr_len);
  264. if (is_zero_ether_addr(dev->broadcast))
  265. memcpy(dev->broadcast, real_dev->broadcast, dev->addr_len);
  266. if (real_dev->features & NETIF_F_HW_VLAN_TX) {
  267. dev->hard_header = real_dev->hard_header;
  268. dev->hard_header_len = real_dev->hard_header_len;
  269. dev->hard_start_xmit = vlan_dev_hwaccel_hard_start_xmit;
  270. dev->rebuild_header = real_dev->rebuild_header;
  271. } else {
  272. dev->hard_header = vlan_dev_hard_header;
  273. dev->hard_header_len = real_dev->hard_header_len + VLAN_HLEN;
  274. dev->hard_start_xmit = vlan_dev_hard_start_xmit;
  275. dev->rebuild_header = vlan_dev_rebuild_header;
  276. }
  277. dev->hard_header_parse = real_dev->hard_header_parse;
  278. dev->hard_header_cache = NULL;
  279. lockdep_set_class(&dev->_xmit_lock, &vlan_netdev_xmit_lock_key);
  280. return 0;
  281. }
  282. void vlan_setup(struct net_device *new_dev)
  283. {
  284. SET_MODULE_OWNER(new_dev);
  285. ether_setup(new_dev);
  286. /* new_dev->ifindex = 0; it will be set when added to
  287. * the global list.
  288. * iflink is set as well.
  289. */
  290. new_dev->get_stats = vlan_dev_get_stats;
  291. /* Make this thing known as a VLAN device */
  292. new_dev->priv_flags |= IFF_802_1Q_VLAN;
  293. /* Set us up to have no queue, as the underlying Hardware device
  294. * can do all the queueing we could want.
  295. */
  296. new_dev->tx_queue_len = 0;
  297. /* set up method calls */
  298. new_dev->change_mtu = vlan_dev_change_mtu;
  299. new_dev->init = vlan_dev_init;
  300. new_dev->open = vlan_dev_open;
  301. new_dev->stop = vlan_dev_stop;
  302. new_dev->set_multicast_list = vlan_dev_set_multicast_list;
  303. new_dev->change_rx_flags = vlan_change_rx_flags;
  304. new_dev->destructor = free_netdev;
  305. new_dev->do_ioctl = vlan_dev_ioctl;
  306. memset(new_dev->broadcast, 0, ETH_ALEN);
  307. }
  308. static void vlan_transfer_operstate(const struct net_device *dev, struct net_device *vlandev)
  309. {
  310. /* Have to respect userspace enforced dormant state
  311. * of real device, also must allow supplicant running
  312. * on VLAN device
  313. */
  314. if (dev->operstate == IF_OPER_DORMANT)
  315. netif_dormant_on(vlandev);
  316. else
  317. netif_dormant_off(vlandev);
  318. if (netif_carrier_ok(dev)) {
  319. if (!netif_carrier_ok(vlandev))
  320. netif_carrier_on(vlandev);
  321. } else {
  322. if (netif_carrier_ok(vlandev))
  323. netif_carrier_off(vlandev);
  324. }
  325. }
  326. int vlan_check_real_dev(struct net_device *real_dev, unsigned short vlan_id)
  327. {
  328. if (real_dev->features & NETIF_F_VLAN_CHALLENGED) {
  329. printk(VLAN_DBG "%s: VLANs not supported on %s.\n",
  330. __FUNCTION__, real_dev->name);
  331. return -EOPNOTSUPP;
  332. }
  333. if ((real_dev->features & NETIF_F_HW_VLAN_RX) &&
  334. !real_dev->vlan_rx_register) {
  335. printk(VLAN_DBG "%s: Device %s has buggy VLAN hw accel.\n",
  336. __FUNCTION__, real_dev->name);
  337. return -EOPNOTSUPP;
  338. }
  339. if ((real_dev->features & NETIF_F_HW_VLAN_FILTER) &&
  340. (!real_dev->vlan_rx_add_vid || !real_dev->vlan_rx_kill_vid)) {
  341. printk(VLAN_DBG "%s: Device %s has buggy VLAN hw accel.\n",
  342. __FUNCTION__, real_dev->name);
  343. return -EOPNOTSUPP;
  344. }
  345. /* The real device must be up and operating in order to
  346. * assosciate a VLAN device with it.
  347. */
  348. if (!(real_dev->flags & IFF_UP))
  349. return -ENETDOWN;
  350. if (__find_vlan_dev(real_dev, vlan_id) != NULL) {
  351. /* was already registered. */
  352. printk(VLAN_DBG "%s: ALREADY had VLAN registered\n", __FUNCTION__);
  353. return -EEXIST;
  354. }
  355. return 0;
  356. }
  357. int register_vlan_dev(struct net_device *dev)
  358. {
  359. struct vlan_dev_info *vlan = VLAN_DEV_INFO(dev);
  360. struct net_device *real_dev = vlan->real_dev;
  361. unsigned short vlan_id = vlan->vlan_id;
  362. struct vlan_group *grp, *ngrp = NULL;
  363. int err;
  364. grp = __vlan_find_group(real_dev->ifindex);
  365. if (!grp) {
  366. ngrp = grp = vlan_group_alloc(real_dev->ifindex);
  367. if (!grp)
  368. return -ENOBUFS;
  369. }
  370. err = register_netdevice(dev);
  371. if (err < 0)
  372. goto out_free_group;
  373. /* Account for reference in struct vlan_dev_info */
  374. dev_hold(real_dev);
  375. vlan_transfer_operstate(real_dev, dev);
  376. linkwatch_fire_event(dev); /* _MUST_ call rfc2863_policy() */
  377. /* So, got the sucker initialized, now lets place
  378. * it into our local structure.
  379. */
  380. vlan_group_set_device(grp, vlan_id, dev);
  381. if (ngrp && real_dev->features & NETIF_F_HW_VLAN_RX)
  382. real_dev->vlan_rx_register(real_dev, ngrp);
  383. if (real_dev->features & NETIF_F_HW_VLAN_FILTER)
  384. real_dev->vlan_rx_add_vid(real_dev, vlan_id);
  385. if (vlan_proc_add_dev(dev) < 0)
  386. printk(KERN_WARNING "VLAN: failed to add proc entry for %s\n",
  387. dev->name);
  388. return 0;
  389. out_free_group:
  390. if (ngrp)
  391. vlan_group_free(ngrp);
  392. return err;
  393. }
  394. /* Attach a VLAN device to a mac address (ie Ethernet Card).
  395. * Returns 0 if the device was created or a negative error code otherwise.
  396. */
  397. static int register_vlan_device(struct net_device *real_dev,
  398. unsigned short VLAN_ID)
  399. {
  400. struct net_device *new_dev;
  401. char name[IFNAMSIZ];
  402. int err;
  403. #ifdef VLAN_DEBUG
  404. printk(VLAN_DBG "%s: if_name -:%s:- vid: %i\n",
  405. __FUNCTION__, eth_IF_name, VLAN_ID);
  406. #endif
  407. if (VLAN_ID >= VLAN_VID_MASK)
  408. return -ERANGE;
  409. err = vlan_check_real_dev(real_dev, VLAN_ID);
  410. if (err < 0)
  411. return err;
  412. /* Gotta set up the fields for the device. */
  413. #ifdef VLAN_DEBUG
  414. printk(VLAN_DBG "About to allocate name, vlan_name_type: %i\n",
  415. vlan_name_type);
  416. #endif
  417. switch (vlan_name_type) {
  418. case VLAN_NAME_TYPE_RAW_PLUS_VID:
  419. /* name will look like: eth1.0005 */
  420. snprintf(name, IFNAMSIZ, "%s.%.4i", real_dev->name, VLAN_ID);
  421. break;
  422. case VLAN_NAME_TYPE_PLUS_VID_NO_PAD:
  423. /* Put our vlan.VID in the name.
  424. * Name will look like: vlan5
  425. */
  426. snprintf(name, IFNAMSIZ, "vlan%i", VLAN_ID);
  427. break;
  428. case VLAN_NAME_TYPE_RAW_PLUS_VID_NO_PAD:
  429. /* Put our vlan.VID in the name.
  430. * Name will look like: eth0.5
  431. */
  432. snprintf(name, IFNAMSIZ, "%s.%i", real_dev->name, VLAN_ID);
  433. break;
  434. case VLAN_NAME_TYPE_PLUS_VID:
  435. /* Put our vlan.VID in the name.
  436. * Name will look like: vlan0005
  437. */
  438. default:
  439. snprintf(name, IFNAMSIZ, "vlan%.4i", VLAN_ID);
  440. }
  441. new_dev = alloc_netdev(sizeof(struct vlan_dev_info), name,
  442. vlan_setup);
  443. if (new_dev == NULL)
  444. return -ENOBUFS;
  445. /* need 4 bytes for extra VLAN header info,
  446. * hope the underlying device can handle it.
  447. */
  448. new_dev->mtu = real_dev->mtu;
  449. #ifdef VLAN_DEBUG
  450. printk(VLAN_DBG "Allocated new name -:%s:-\n", new_dev->name);
  451. VLAN_MEM_DBG("new_dev->priv malloc, addr: %p size: %i\n",
  452. new_dev->priv,
  453. sizeof(struct vlan_dev_info));
  454. #endif
  455. VLAN_DEV_INFO(new_dev)->vlan_id = VLAN_ID; /* 1 through VLAN_VID_MASK */
  456. VLAN_DEV_INFO(new_dev)->real_dev = real_dev;
  457. VLAN_DEV_INFO(new_dev)->dent = NULL;
  458. VLAN_DEV_INFO(new_dev)->flags = VLAN_FLAG_REORDER_HDR;
  459. new_dev->rtnl_link_ops = &vlan_link_ops;
  460. err = register_vlan_dev(new_dev);
  461. if (err < 0)
  462. goto out_free_newdev;
  463. #ifdef VLAN_DEBUG
  464. printk(VLAN_DBG "Allocated new device successfully, returning.\n");
  465. #endif
  466. return 0;
  467. out_free_newdev:
  468. free_netdev(new_dev);
  469. return err;
  470. }
  471. static void vlan_sync_address(struct net_device *dev,
  472. struct net_device *vlandev)
  473. {
  474. struct vlan_dev_info *vlan = VLAN_DEV_INFO(vlandev);
  475. /* May be called without an actual change */
  476. if (!compare_ether_addr(vlan->real_dev_addr, dev->dev_addr))
  477. return;
  478. /* vlan address was different from the old address and is equal to
  479. * the new address */
  480. if (compare_ether_addr(vlandev->dev_addr, vlan->real_dev_addr) &&
  481. !compare_ether_addr(vlandev->dev_addr, dev->dev_addr))
  482. dev_unicast_delete(dev, vlandev->dev_addr, ETH_ALEN);
  483. /* vlan address was equal to the old address and is different from
  484. * the new address */
  485. if (!compare_ether_addr(vlandev->dev_addr, vlan->real_dev_addr) &&
  486. compare_ether_addr(vlandev->dev_addr, dev->dev_addr))
  487. dev_unicast_add(dev, vlandev->dev_addr, ETH_ALEN);
  488. memcpy(vlan->real_dev_addr, dev->dev_addr, ETH_ALEN);
  489. }
  490. static int vlan_device_event(struct notifier_block *unused, unsigned long event, void *ptr)
  491. {
  492. struct net_device *dev = ptr;
  493. struct vlan_group *grp = __vlan_find_group(dev->ifindex);
  494. int i, flgs;
  495. struct net_device *vlandev;
  496. if (dev->nd_net != &init_net)
  497. return NOTIFY_DONE;
  498. if (!grp)
  499. goto out;
  500. /* It is OK that we do not hold the group lock right now,
  501. * as we run under the RTNL lock.
  502. */
  503. switch (event) {
  504. case NETDEV_CHANGE:
  505. /* Propagate real device state to vlan devices */
  506. for (i = 0; i < VLAN_GROUP_ARRAY_LEN; i++) {
  507. vlandev = vlan_group_get_device(grp, i);
  508. if (!vlandev)
  509. continue;
  510. vlan_transfer_operstate(dev, vlandev);
  511. }
  512. break;
  513. case NETDEV_CHANGEADDR:
  514. /* Adjust unicast filters on underlying device */
  515. for (i = 0; i < VLAN_GROUP_ARRAY_LEN; i++) {
  516. vlandev = vlan_group_get_device(grp, i);
  517. if (!vlandev)
  518. continue;
  519. vlan_sync_address(dev, vlandev);
  520. }
  521. break;
  522. case NETDEV_DOWN:
  523. /* Put all VLANs for this dev in the down state too. */
  524. for (i = 0; i < VLAN_GROUP_ARRAY_LEN; i++) {
  525. vlandev = vlan_group_get_device(grp, i);
  526. if (!vlandev)
  527. continue;
  528. flgs = vlandev->flags;
  529. if (!(flgs & IFF_UP))
  530. continue;
  531. dev_change_flags(vlandev, flgs & ~IFF_UP);
  532. }
  533. break;
  534. case NETDEV_UP:
  535. /* Put all VLANs for this dev in the up state too. */
  536. for (i = 0; i < VLAN_GROUP_ARRAY_LEN; i++) {
  537. vlandev = vlan_group_get_device(grp, i);
  538. if (!vlandev)
  539. continue;
  540. flgs = vlandev->flags;
  541. if (flgs & IFF_UP)
  542. continue;
  543. dev_change_flags(vlandev, flgs | IFF_UP);
  544. }
  545. break;
  546. case NETDEV_UNREGISTER:
  547. /* Delete all VLANs for this dev. */
  548. for (i = 0; i < VLAN_GROUP_ARRAY_LEN; i++) {
  549. int ret;
  550. vlandev = vlan_group_get_device(grp, i);
  551. if (!vlandev)
  552. continue;
  553. ret = unregister_vlan_dev(dev,
  554. VLAN_DEV_INFO(vlandev)->vlan_id);
  555. unregister_netdevice(vlandev);
  556. /* Group was destroyed? */
  557. if (ret == 1)
  558. break;
  559. }
  560. break;
  561. }
  562. out:
  563. return NOTIFY_DONE;
  564. }
  565. /*
  566. * VLAN IOCTL handler.
  567. * o execute requested action or pass command to the device driver
  568. * arg is really a struct vlan_ioctl_args __user *.
  569. */
  570. static int vlan_ioctl_handler(struct net *net, void __user *arg)
  571. {
  572. int err;
  573. unsigned short vid = 0;
  574. struct vlan_ioctl_args args;
  575. struct net_device *dev = NULL;
  576. if (copy_from_user(&args, arg, sizeof(struct vlan_ioctl_args)))
  577. return -EFAULT;
  578. /* Null terminate this sucker, just in case. */
  579. args.device1[23] = 0;
  580. args.u.device2[23] = 0;
  581. #ifdef VLAN_DEBUG
  582. printk(VLAN_DBG "%s: args.cmd: %x\n", __FUNCTION__, args.cmd);
  583. #endif
  584. rtnl_lock();
  585. switch (args.cmd) {
  586. case SET_VLAN_INGRESS_PRIORITY_CMD:
  587. case SET_VLAN_EGRESS_PRIORITY_CMD:
  588. case SET_VLAN_FLAG_CMD:
  589. case ADD_VLAN_CMD:
  590. case DEL_VLAN_CMD:
  591. case GET_VLAN_REALDEV_NAME_CMD:
  592. case GET_VLAN_VID_CMD:
  593. err = -ENODEV;
  594. dev = __dev_get_by_name(&init_net, args.device1);
  595. if (!dev)
  596. goto out;
  597. err = -EINVAL;
  598. if (args.cmd != ADD_VLAN_CMD &&
  599. !(dev->priv_flags & IFF_802_1Q_VLAN))
  600. goto out;
  601. }
  602. switch (args.cmd) {
  603. case SET_VLAN_INGRESS_PRIORITY_CMD:
  604. err = -EPERM;
  605. if (!capable(CAP_NET_ADMIN))
  606. break;
  607. vlan_dev_set_ingress_priority(dev,
  608. args.u.skb_priority,
  609. args.vlan_qos);
  610. break;
  611. case SET_VLAN_EGRESS_PRIORITY_CMD:
  612. err = -EPERM;
  613. if (!capable(CAP_NET_ADMIN))
  614. break;
  615. err = vlan_dev_set_egress_priority(dev,
  616. args.u.skb_priority,
  617. args.vlan_qos);
  618. break;
  619. case SET_VLAN_FLAG_CMD:
  620. err = -EPERM;
  621. if (!capable(CAP_NET_ADMIN))
  622. break;
  623. err = vlan_dev_set_vlan_flag(dev,
  624. args.u.flag,
  625. args.vlan_qos);
  626. break;
  627. case SET_VLAN_NAME_TYPE_CMD:
  628. err = -EPERM;
  629. if (!capable(CAP_NET_ADMIN))
  630. return -EPERM;
  631. if ((args.u.name_type >= 0) &&
  632. (args.u.name_type < VLAN_NAME_TYPE_HIGHEST)) {
  633. vlan_name_type = args.u.name_type;
  634. err = 0;
  635. } else {
  636. err = -EINVAL;
  637. }
  638. break;
  639. case ADD_VLAN_CMD:
  640. err = -EPERM;
  641. if (!capable(CAP_NET_ADMIN))
  642. break;
  643. err = register_vlan_device(dev, args.u.VID);
  644. break;
  645. case DEL_VLAN_CMD:
  646. err = -EPERM;
  647. if (!capable(CAP_NET_ADMIN))
  648. break;
  649. err = unregister_vlan_device(dev);
  650. break;
  651. case GET_VLAN_INGRESS_PRIORITY_CMD:
  652. /* TODO: Implement
  653. err = vlan_dev_get_ingress_priority(args);
  654. if (copy_to_user((void*)arg, &args,
  655. sizeof(struct vlan_ioctl_args))) {
  656. err = -EFAULT;
  657. }
  658. */
  659. err = -EINVAL;
  660. break;
  661. case GET_VLAN_EGRESS_PRIORITY_CMD:
  662. /* TODO: Implement
  663. err = vlan_dev_get_egress_priority(args.device1, &(args.args);
  664. if (copy_to_user((void*)arg, &args,
  665. sizeof(struct vlan_ioctl_args))) {
  666. err = -EFAULT;
  667. }
  668. */
  669. err = -EINVAL;
  670. break;
  671. case GET_VLAN_REALDEV_NAME_CMD:
  672. err = 0;
  673. vlan_dev_get_realdev_name(dev, args.u.device2);
  674. if (copy_to_user(arg, &args,
  675. sizeof(struct vlan_ioctl_args))) {
  676. err = -EFAULT;
  677. }
  678. break;
  679. case GET_VLAN_VID_CMD:
  680. err = 0;
  681. vlan_dev_get_vid(dev, &vid);
  682. args.u.VID = vid;
  683. if (copy_to_user(arg, &args,
  684. sizeof(struct vlan_ioctl_args))) {
  685. err = -EFAULT;
  686. }
  687. break;
  688. default:
  689. /* pass on to underlying device instead?? */
  690. printk(VLAN_DBG "%s: Unknown VLAN CMD: %x \n",
  691. __FUNCTION__, args.cmd);
  692. err = -EINVAL;
  693. break;
  694. }
  695. out:
  696. rtnl_unlock();
  697. return err;
  698. }
  699. MODULE_LICENSE("GPL");
  700. MODULE_VERSION(DRV_VERSION);