macvlan.c 27 KB

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  1. /*
  2. * Copyright (c) 2007 Patrick McHardy <kaber@trash.net>
  3. *
  4. * This program is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU General Public License as
  6. * published by the Free Software Foundation; either version 2 of
  7. * the License, or (at your option) any later version.
  8. *
  9. * The code this is based on carried the following copyright notice:
  10. * ---
  11. * (C) Copyright 2001-2006
  12. * Alex Zeffertt, Cambridge Broadband Ltd, ajz@cambridgebroadband.com
  13. * Re-worked by Ben Greear <greearb@candelatech.com>
  14. * ---
  15. */
  16. #include <linux/kernel.h>
  17. #include <linux/types.h>
  18. #include <linux/module.h>
  19. #include <linux/init.h>
  20. #include <linux/errno.h>
  21. #include <linux/slab.h>
  22. #include <linux/string.h>
  23. #include <linux/rculist.h>
  24. #include <linux/notifier.h>
  25. #include <linux/netdevice.h>
  26. #include <linux/etherdevice.h>
  27. #include <linux/ethtool.h>
  28. #include <linux/if_arp.h>
  29. #include <linux/if_vlan.h>
  30. #include <linux/if_link.h>
  31. #include <linux/if_macvlan.h>
  32. #include <linux/hash.h>
  33. #include <net/rtnetlink.h>
  34. #include <net/xfrm.h>
  35. #define MACVLAN_HASH_SIZE (1 << BITS_PER_BYTE)
  36. struct macvlan_port {
  37. struct net_device *dev;
  38. struct hlist_head vlan_hash[MACVLAN_HASH_SIZE];
  39. struct list_head vlans;
  40. struct rcu_head rcu;
  41. bool passthru;
  42. int count;
  43. };
  44. static void macvlan_port_destroy(struct net_device *dev);
  45. static struct macvlan_port *macvlan_port_get_rcu(const struct net_device *dev)
  46. {
  47. return rcu_dereference(dev->rx_handler_data);
  48. }
  49. static struct macvlan_port *macvlan_port_get_rtnl(const struct net_device *dev)
  50. {
  51. return rtnl_dereference(dev->rx_handler_data);
  52. }
  53. #define macvlan_port_exists(dev) (dev->priv_flags & IFF_MACVLAN_PORT)
  54. static struct macvlan_dev *macvlan_hash_lookup(const struct macvlan_port *port,
  55. const unsigned char *addr)
  56. {
  57. struct macvlan_dev *vlan;
  58. hlist_for_each_entry_rcu(vlan, &port->vlan_hash[addr[5]], hlist) {
  59. if (ether_addr_equal_64bits(vlan->dev->dev_addr, addr))
  60. return vlan;
  61. }
  62. return NULL;
  63. }
  64. static void macvlan_hash_add(struct macvlan_dev *vlan)
  65. {
  66. struct macvlan_port *port = vlan->port;
  67. const unsigned char *addr = vlan->dev->dev_addr;
  68. hlist_add_head_rcu(&vlan->hlist, &port->vlan_hash[addr[5]]);
  69. }
  70. static void macvlan_hash_del(struct macvlan_dev *vlan, bool sync)
  71. {
  72. hlist_del_rcu(&vlan->hlist);
  73. if (sync)
  74. synchronize_rcu();
  75. }
  76. static void macvlan_hash_change_addr(struct macvlan_dev *vlan,
  77. const unsigned char *addr)
  78. {
  79. macvlan_hash_del(vlan, true);
  80. /* Now that we are unhashed it is safe to change the device
  81. * address without confusing packet delivery.
  82. */
  83. memcpy(vlan->dev->dev_addr, addr, ETH_ALEN);
  84. macvlan_hash_add(vlan);
  85. }
  86. static int macvlan_addr_busy(const struct macvlan_port *port,
  87. const unsigned char *addr)
  88. {
  89. /* Test to see if the specified multicast address is
  90. * currently in use by the underlying device or
  91. * another macvlan.
  92. */
  93. if (ether_addr_equal_64bits(port->dev->dev_addr, addr))
  94. return 1;
  95. if (macvlan_hash_lookup(port, addr))
  96. return 1;
  97. return 0;
  98. }
  99. static int macvlan_broadcast_one(struct sk_buff *skb,
  100. const struct macvlan_dev *vlan,
  101. const struct ethhdr *eth, bool local)
  102. {
  103. struct net_device *dev = vlan->dev;
  104. if (local)
  105. return dev_forward_skb(dev, skb);
  106. skb->dev = dev;
  107. if (ether_addr_equal_64bits(eth->h_dest, dev->broadcast))
  108. skb->pkt_type = PACKET_BROADCAST;
  109. else
  110. skb->pkt_type = PACKET_MULTICAST;
  111. return netif_rx(skb);
  112. }
  113. static u32 macvlan_hash_mix(const struct macvlan_dev *vlan)
  114. {
  115. return (u32)(((unsigned long)vlan) >> L1_CACHE_SHIFT);
  116. }
  117. static unsigned int mc_hash(const struct macvlan_dev *vlan,
  118. const unsigned char *addr)
  119. {
  120. u32 val = __get_unaligned_cpu32(addr + 2);
  121. val ^= macvlan_hash_mix(vlan);
  122. return hash_32(val, MACVLAN_MC_FILTER_BITS);
  123. }
  124. static void macvlan_broadcast(struct sk_buff *skb,
  125. const struct macvlan_port *port,
  126. struct net_device *src,
  127. enum macvlan_mode mode)
  128. {
  129. const struct ethhdr *eth = eth_hdr(skb);
  130. const struct macvlan_dev *vlan;
  131. struct sk_buff *nskb;
  132. unsigned int i;
  133. int err;
  134. unsigned int hash;
  135. if (skb->protocol == htons(ETH_P_PAUSE))
  136. return;
  137. for (i = 0; i < MACVLAN_HASH_SIZE; i++) {
  138. hlist_for_each_entry_rcu(vlan, &port->vlan_hash[i], hlist) {
  139. if (vlan->dev == src || !(vlan->mode & mode))
  140. continue;
  141. hash = mc_hash(vlan, eth->h_dest);
  142. if (!test_bit(hash, vlan->mc_filter))
  143. continue;
  144. err = NET_RX_DROP;
  145. nskb = skb_clone(skb, GFP_ATOMIC);
  146. if (likely(nskb))
  147. err = macvlan_broadcast_one(
  148. nskb, vlan, eth,
  149. mode == MACVLAN_MODE_BRIDGE);
  150. macvlan_count_rx(vlan, skb->len + ETH_HLEN,
  151. err == NET_RX_SUCCESS, 1);
  152. }
  153. }
  154. }
  155. /* called under rcu_read_lock() from netif_receive_skb */
  156. static rx_handler_result_t macvlan_handle_frame(struct sk_buff **pskb)
  157. {
  158. struct macvlan_port *port;
  159. struct sk_buff *skb = *pskb;
  160. const struct ethhdr *eth = eth_hdr(skb);
  161. const struct macvlan_dev *vlan;
  162. const struct macvlan_dev *src;
  163. struct net_device *dev;
  164. unsigned int len = 0;
  165. int ret = NET_RX_DROP;
  166. port = macvlan_port_get_rcu(skb->dev);
  167. if (is_multicast_ether_addr(eth->h_dest)) {
  168. skb = ip_check_defrag(skb, IP_DEFRAG_MACVLAN);
  169. if (!skb)
  170. return RX_HANDLER_CONSUMED;
  171. eth = eth_hdr(skb);
  172. src = macvlan_hash_lookup(port, eth->h_source);
  173. if (!src)
  174. /* frame comes from an external address */
  175. macvlan_broadcast(skb, port, NULL,
  176. MACVLAN_MODE_PRIVATE |
  177. MACVLAN_MODE_VEPA |
  178. MACVLAN_MODE_PASSTHRU|
  179. MACVLAN_MODE_BRIDGE);
  180. else if (src->mode == MACVLAN_MODE_VEPA)
  181. /* flood to everyone except source */
  182. macvlan_broadcast(skb, port, src->dev,
  183. MACVLAN_MODE_VEPA |
  184. MACVLAN_MODE_BRIDGE);
  185. else if (src->mode == MACVLAN_MODE_BRIDGE)
  186. /*
  187. * flood only to VEPA ports, bridge ports
  188. * already saw the frame on the way out.
  189. */
  190. macvlan_broadcast(skb, port, src->dev,
  191. MACVLAN_MODE_VEPA);
  192. else {
  193. /* forward to original port. */
  194. vlan = src;
  195. ret = macvlan_broadcast_one(skb, vlan, eth, 0);
  196. goto out;
  197. }
  198. return RX_HANDLER_PASS;
  199. }
  200. if (port->passthru)
  201. vlan = list_first_or_null_rcu(&port->vlans,
  202. struct macvlan_dev, list);
  203. else
  204. vlan = macvlan_hash_lookup(port, eth->h_dest);
  205. if (vlan == NULL)
  206. return RX_HANDLER_PASS;
  207. dev = vlan->dev;
  208. if (unlikely(!(dev->flags & IFF_UP))) {
  209. kfree_skb(skb);
  210. return RX_HANDLER_CONSUMED;
  211. }
  212. len = skb->len + ETH_HLEN;
  213. skb = skb_share_check(skb, GFP_ATOMIC);
  214. if (!skb)
  215. goto out;
  216. skb->dev = dev;
  217. skb->pkt_type = PACKET_HOST;
  218. ret = netif_rx(skb);
  219. out:
  220. macvlan_count_rx(vlan, len, ret == NET_RX_SUCCESS, 0);
  221. return RX_HANDLER_CONSUMED;
  222. }
  223. static int macvlan_queue_xmit(struct sk_buff *skb, struct net_device *dev)
  224. {
  225. const struct macvlan_dev *vlan = netdev_priv(dev);
  226. const struct macvlan_port *port = vlan->port;
  227. const struct macvlan_dev *dest;
  228. __u8 ip_summed = skb->ip_summed;
  229. if (vlan->mode == MACVLAN_MODE_BRIDGE) {
  230. const struct ethhdr *eth = (void *)skb->data;
  231. skb->ip_summed = CHECKSUM_UNNECESSARY;
  232. /* send to other bridge ports directly */
  233. if (is_multicast_ether_addr(eth->h_dest)) {
  234. macvlan_broadcast(skb, port, dev, MACVLAN_MODE_BRIDGE);
  235. goto xmit_world;
  236. }
  237. dest = macvlan_hash_lookup(port, eth->h_dest);
  238. if (dest && dest->mode == MACVLAN_MODE_BRIDGE) {
  239. /* send to lowerdev first for its network taps */
  240. dev_forward_skb(vlan->lowerdev, skb);
  241. return NET_XMIT_SUCCESS;
  242. }
  243. }
  244. xmit_world:
  245. skb->ip_summed = ip_summed;
  246. skb->dev = vlan->lowerdev;
  247. return dev_queue_xmit(skb);
  248. }
  249. static netdev_tx_t macvlan_start_xmit(struct sk_buff *skb,
  250. struct net_device *dev)
  251. {
  252. unsigned int len = skb->len;
  253. int ret;
  254. const struct macvlan_dev *vlan = netdev_priv(dev);
  255. if (vlan->fwd_priv) {
  256. skb->dev = vlan->lowerdev;
  257. ret = dev_queue_xmit_accel(skb, vlan->fwd_priv);
  258. } else {
  259. ret = macvlan_queue_xmit(skb, dev);
  260. }
  261. if (likely(ret == NET_XMIT_SUCCESS || ret == NET_XMIT_CN)) {
  262. struct vlan_pcpu_stats *pcpu_stats;
  263. pcpu_stats = this_cpu_ptr(vlan->pcpu_stats);
  264. u64_stats_update_begin(&pcpu_stats->syncp);
  265. pcpu_stats->tx_packets++;
  266. pcpu_stats->tx_bytes += len;
  267. u64_stats_update_end(&pcpu_stats->syncp);
  268. } else {
  269. this_cpu_inc(vlan->pcpu_stats->tx_dropped);
  270. }
  271. return ret;
  272. }
  273. static int macvlan_hard_header(struct sk_buff *skb, struct net_device *dev,
  274. unsigned short type, const void *daddr,
  275. const void *saddr, unsigned len)
  276. {
  277. const struct macvlan_dev *vlan = netdev_priv(dev);
  278. struct net_device *lowerdev = vlan->lowerdev;
  279. return dev_hard_header(skb, lowerdev, type, daddr,
  280. saddr ? : dev->dev_addr, len);
  281. }
  282. static const struct header_ops macvlan_hard_header_ops = {
  283. .create = macvlan_hard_header,
  284. .rebuild = eth_rebuild_header,
  285. .parse = eth_header_parse,
  286. .cache = eth_header_cache,
  287. .cache_update = eth_header_cache_update,
  288. };
  289. static struct rtnl_link_ops macvlan_link_ops;
  290. static int macvlan_open(struct net_device *dev)
  291. {
  292. struct macvlan_dev *vlan = netdev_priv(dev);
  293. struct net_device *lowerdev = vlan->lowerdev;
  294. int err;
  295. if (vlan->port->passthru) {
  296. if (!(vlan->flags & MACVLAN_FLAG_NOPROMISC)) {
  297. err = dev_set_promiscuity(lowerdev, 1);
  298. if (err < 0)
  299. goto out;
  300. }
  301. goto hash_add;
  302. }
  303. if (lowerdev->features & NETIF_F_HW_L2FW_DOFFLOAD &&
  304. dev->rtnl_link_ops == &macvlan_link_ops) {
  305. vlan->fwd_priv =
  306. lowerdev->netdev_ops->ndo_dfwd_add_station(lowerdev, dev);
  307. /* If we get a NULL pointer back, or if we get an error
  308. * then we should just fall through to the non accelerated path
  309. */
  310. if (IS_ERR_OR_NULL(vlan->fwd_priv)) {
  311. vlan->fwd_priv = NULL;
  312. } else
  313. return 0;
  314. }
  315. err = -EBUSY;
  316. if (macvlan_addr_busy(vlan->port, dev->dev_addr))
  317. goto out;
  318. err = dev_uc_add(lowerdev, dev->dev_addr);
  319. if (err < 0)
  320. goto out;
  321. if (dev->flags & IFF_ALLMULTI) {
  322. err = dev_set_allmulti(lowerdev, 1);
  323. if (err < 0)
  324. goto del_unicast;
  325. }
  326. hash_add:
  327. macvlan_hash_add(vlan);
  328. return 0;
  329. del_unicast:
  330. dev_uc_del(lowerdev, dev->dev_addr);
  331. out:
  332. if (vlan->fwd_priv) {
  333. lowerdev->netdev_ops->ndo_dfwd_del_station(lowerdev,
  334. vlan->fwd_priv);
  335. vlan->fwd_priv = NULL;
  336. }
  337. return err;
  338. }
  339. static int macvlan_stop(struct net_device *dev)
  340. {
  341. struct macvlan_dev *vlan = netdev_priv(dev);
  342. struct net_device *lowerdev = vlan->lowerdev;
  343. if (vlan->fwd_priv) {
  344. lowerdev->netdev_ops->ndo_dfwd_del_station(lowerdev,
  345. vlan->fwd_priv);
  346. vlan->fwd_priv = NULL;
  347. return 0;
  348. }
  349. dev_uc_unsync(lowerdev, dev);
  350. dev_mc_unsync(lowerdev, dev);
  351. if (vlan->port->passthru) {
  352. if (!(vlan->flags & MACVLAN_FLAG_NOPROMISC))
  353. dev_set_promiscuity(lowerdev, -1);
  354. goto hash_del;
  355. }
  356. if (dev->flags & IFF_ALLMULTI)
  357. dev_set_allmulti(lowerdev, -1);
  358. dev_uc_del(lowerdev, dev->dev_addr);
  359. hash_del:
  360. macvlan_hash_del(vlan, !dev->dismantle);
  361. return 0;
  362. }
  363. static int macvlan_set_mac_address(struct net_device *dev, void *p)
  364. {
  365. struct macvlan_dev *vlan = netdev_priv(dev);
  366. struct net_device *lowerdev = vlan->lowerdev;
  367. struct sockaddr *addr = p;
  368. int err;
  369. if (!is_valid_ether_addr(addr->sa_data))
  370. return -EADDRNOTAVAIL;
  371. if (!(dev->flags & IFF_UP)) {
  372. /* Just copy in the new address */
  373. memcpy(dev->dev_addr, addr->sa_data, ETH_ALEN);
  374. } else {
  375. /* Rehash and update the device filters */
  376. if (macvlan_addr_busy(vlan->port, addr->sa_data))
  377. return -EBUSY;
  378. err = dev_uc_add(lowerdev, addr->sa_data);
  379. if (err)
  380. return err;
  381. dev_uc_del(lowerdev, dev->dev_addr);
  382. macvlan_hash_change_addr(vlan, addr->sa_data);
  383. }
  384. return 0;
  385. }
  386. static void macvlan_change_rx_flags(struct net_device *dev, int change)
  387. {
  388. struct macvlan_dev *vlan = netdev_priv(dev);
  389. struct net_device *lowerdev = vlan->lowerdev;
  390. if (change & IFF_ALLMULTI)
  391. dev_set_allmulti(lowerdev, dev->flags & IFF_ALLMULTI ? 1 : -1);
  392. }
  393. static void macvlan_set_mac_lists(struct net_device *dev)
  394. {
  395. struct macvlan_dev *vlan = netdev_priv(dev);
  396. if (dev->flags & (IFF_PROMISC | IFF_ALLMULTI)) {
  397. bitmap_fill(vlan->mc_filter, MACVLAN_MC_FILTER_SZ);
  398. } else {
  399. struct netdev_hw_addr *ha;
  400. DECLARE_BITMAP(filter, MACVLAN_MC_FILTER_SZ);
  401. bitmap_zero(filter, MACVLAN_MC_FILTER_SZ);
  402. netdev_for_each_mc_addr(ha, dev) {
  403. __set_bit(mc_hash(vlan, ha->addr), filter);
  404. }
  405. __set_bit(mc_hash(vlan, dev->broadcast), filter);
  406. bitmap_copy(vlan->mc_filter, filter, MACVLAN_MC_FILTER_SZ);
  407. }
  408. dev_uc_sync(vlan->lowerdev, dev);
  409. dev_mc_sync(vlan->lowerdev, dev);
  410. }
  411. static int macvlan_change_mtu(struct net_device *dev, int new_mtu)
  412. {
  413. struct macvlan_dev *vlan = netdev_priv(dev);
  414. if (new_mtu < 68 || vlan->lowerdev->mtu < new_mtu)
  415. return -EINVAL;
  416. dev->mtu = new_mtu;
  417. return 0;
  418. }
  419. /*
  420. * macvlan network devices have devices nesting below it and are a special
  421. * "super class" of normal network devices; split their locks off into a
  422. * separate class since they always nest.
  423. */
  424. static struct lock_class_key macvlan_netdev_xmit_lock_key;
  425. static struct lock_class_key macvlan_netdev_addr_lock_key;
  426. #define ALWAYS_ON_FEATURES \
  427. (NETIF_F_SG | NETIF_F_GEN_CSUM | NETIF_F_GSO_SOFTWARE | NETIF_F_LLTX)
  428. #define MACVLAN_FEATURES \
  429. (NETIF_F_SG | NETIF_F_ALL_CSUM | NETIF_F_HIGHDMA | NETIF_F_FRAGLIST | \
  430. NETIF_F_GSO | NETIF_F_TSO | NETIF_F_UFO | NETIF_F_GSO_ROBUST | \
  431. NETIF_F_TSO_ECN | NETIF_F_TSO6 | NETIF_F_GRO | NETIF_F_RXCSUM | \
  432. NETIF_F_HW_VLAN_CTAG_FILTER | NETIF_F_HW_VLAN_STAG_FILTER)
  433. #define MACVLAN_STATE_MASK \
  434. ((1<<__LINK_STATE_NOCARRIER) | (1<<__LINK_STATE_DORMANT))
  435. static void macvlan_set_lockdep_class_one(struct net_device *dev,
  436. struct netdev_queue *txq,
  437. void *_unused)
  438. {
  439. lockdep_set_class(&txq->_xmit_lock,
  440. &macvlan_netdev_xmit_lock_key);
  441. }
  442. static void macvlan_set_lockdep_class(struct net_device *dev)
  443. {
  444. lockdep_set_class(&dev->addr_list_lock,
  445. &macvlan_netdev_addr_lock_key);
  446. netdev_for_each_tx_queue(dev, macvlan_set_lockdep_class_one, NULL);
  447. }
  448. static int macvlan_init(struct net_device *dev)
  449. {
  450. struct macvlan_dev *vlan = netdev_priv(dev);
  451. const struct net_device *lowerdev = vlan->lowerdev;
  452. dev->state = (dev->state & ~MACVLAN_STATE_MASK) |
  453. (lowerdev->state & MACVLAN_STATE_MASK);
  454. dev->features = lowerdev->features & MACVLAN_FEATURES;
  455. dev->features |= ALWAYS_ON_FEATURES;
  456. dev->gso_max_size = lowerdev->gso_max_size;
  457. dev->iflink = lowerdev->ifindex;
  458. dev->hard_header_len = lowerdev->hard_header_len;
  459. macvlan_set_lockdep_class(dev);
  460. vlan->pcpu_stats = netdev_alloc_pcpu_stats(struct vlan_pcpu_stats);
  461. if (!vlan->pcpu_stats)
  462. return -ENOMEM;
  463. return 0;
  464. }
  465. static void macvlan_uninit(struct net_device *dev)
  466. {
  467. struct macvlan_dev *vlan = netdev_priv(dev);
  468. struct macvlan_port *port = vlan->port;
  469. free_percpu(vlan->pcpu_stats);
  470. port->count -= 1;
  471. if (!port->count)
  472. macvlan_port_destroy(port->dev);
  473. }
  474. static struct rtnl_link_stats64 *macvlan_dev_get_stats64(struct net_device *dev,
  475. struct rtnl_link_stats64 *stats)
  476. {
  477. struct macvlan_dev *vlan = netdev_priv(dev);
  478. if (vlan->pcpu_stats) {
  479. struct vlan_pcpu_stats *p;
  480. u64 rx_packets, rx_bytes, rx_multicast, tx_packets, tx_bytes;
  481. u32 rx_errors = 0, tx_dropped = 0;
  482. unsigned int start;
  483. int i;
  484. for_each_possible_cpu(i) {
  485. p = per_cpu_ptr(vlan->pcpu_stats, i);
  486. do {
  487. start = u64_stats_fetch_begin_irq(&p->syncp);
  488. rx_packets = p->rx_packets;
  489. rx_bytes = p->rx_bytes;
  490. rx_multicast = p->rx_multicast;
  491. tx_packets = p->tx_packets;
  492. tx_bytes = p->tx_bytes;
  493. } while (u64_stats_fetch_retry_irq(&p->syncp, start));
  494. stats->rx_packets += rx_packets;
  495. stats->rx_bytes += rx_bytes;
  496. stats->multicast += rx_multicast;
  497. stats->tx_packets += tx_packets;
  498. stats->tx_bytes += tx_bytes;
  499. /* rx_errors & tx_dropped are u32, updated
  500. * without syncp protection.
  501. */
  502. rx_errors += p->rx_errors;
  503. tx_dropped += p->tx_dropped;
  504. }
  505. stats->rx_errors = rx_errors;
  506. stats->rx_dropped = rx_errors;
  507. stats->tx_dropped = tx_dropped;
  508. }
  509. return stats;
  510. }
  511. static int macvlan_vlan_rx_add_vid(struct net_device *dev,
  512. __be16 proto, u16 vid)
  513. {
  514. struct macvlan_dev *vlan = netdev_priv(dev);
  515. struct net_device *lowerdev = vlan->lowerdev;
  516. return vlan_vid_add(lowerdev, proto, vid);
  517. }
  518. static int macvlan_vlan_rx_kill_vid(struct net_device *dev,
  519. __be16 proto, u16 vid)
  520. {
  521. struct macvlan_dev *vlan = netdev_priv(dev);
  522. struct net_device *lowerdev = vlan->lowerdev;
  523. vlan_vid_del(lowerdev, proto, vid);
  524. return 0;
  525. }
  526. static int macvlan_fdb_add(struct ndmsg *ndm, struct nlattr *tb[],
  527. struct net_device *dev,
  528. const unsigned char *addr,
  529. u16 flags)
  530. {
  531. struct macvlan_dev *vlan = netdev_priv(dev);
  532. int err = -EINVAL;
  533. if (!vlan->port->passthru)
  534. return -EOPNOTSUPP;
  535. if (flags & NLM_F_REPLACE)
  536. return -EOPNOTSUPP;
  537. if (is_unicast_ether_addr(addr))
  538. err = dev_uc_add_excl(dev, addr);
  539. else if (is_multicast_ether_addr(addr))
  540. err = dev_mc_add_excl(dev, addr);
  541. return err;
  542. }
  543. static int macvlan_fdb_del(struct ndmsg *ndm, struct nlattr *tb[],
  544. struct net_device *dev,
  545. const unsigned char *addr)
  546. {
  547. struct macvlan_dev *vlan = netdev_priv(dev);
  548. int err = -EINVAL;
  549. if (!vlan->port->passthru)
  550. return -EOPNOTSUPP;
  551. if (is_unicast_ether_addr(addr))
  552. err = dev_uc_del(dev, addr);
  553. else if (is_multicast_ether_addr(addr))
  554. err = dev_mc_del(dev, addr);
  555. return err;
  556. }
  557. static void macvlan_ethtool_get_drvinfo(struct net_device *dev,
  558. struct ethtool_drvinfo *drvinfo)
  559. {
  560. strlcpy(drvinfo->driver, "macvlan", sizeof(drvinfo->driver));
  561. strlcpy(drvinfo->version, "0.1", sizeof(drvinfo->version));
  562. }
  563. static int macvlan_ethtool_get_settings(struct net_device *dev,
  564. struct ethtool_cmd *cmd)
  565. {
  566. const struct macvlan_dev *vlan = netdev_priv(dev);
  567. return __ethtool_get_settings(vlan->lowerdev, cmd);
  568. }
  569. static netdev_features_t macvlan_fix_features(struct net_device *dev,
  570. netdev_features_t features)
  571. {
  572. struct macvlan_dev *vlan = netdev_priv(dev);
  573. netdev_features_t mask;
  574. features |= NETIF_F_ALL_FOR_ALL;
  575. features &= (vlan->set_features | ~MACVLAN_FEATURES);
  576. mask = features;
  577. features = netdev_increment_features(vlan->lowerdev->features,
  578. features,
  579. mask);
  580. features |= ALWAYS_ON_FEATURES;
  581. return features;
  582. }
  583. static const struct ethtool_ops macvlan_ethtool_ops = {
  584. .get_link = ethtool_op_get_link,
  585. .get_settings = macvlan_ethtool_get_settings,
  586. .get_drvinfo = macvlan_ethtool_get_drvinfo,
  587. };
  588. static const struct net_device_ops macvlan_netdev_ops = {
  589. .ndo_init = macvlan_init,
  590. .ndo_uninit = macvlan_uninit,
  591. .ndo_open = macvlan_open,
  592. .ndo_stop = macvlan_stop,
  593. .ndo_start_xmit = macvlan_start_xmit,
  594. .ndo_change_mtu = macvlan_change_mtu,
  595. .ndo_fix_features = macvlan_fix_features,
  596. .ndo_change_rx_flags = macvlan_change_rx_flags,
  597. .ndo_set_mac_address = macvlan_set_mac_address,
  598. .ndo_set_rx_mode = macvlan_set_mac_lists,
  599. .ndo_get_stats64 = macvlan_dev_get_stats64,
  600. .ndo_validate_addr = eth_validate_addr,
  601. .ndo_vlan_rx_add_vid = macvlan_vlan_rx_add_vid,
  602. .ndo_vlan_rx_kill_vid = macvlan_vlan_rx_kill_vid,
  603. .ndo_fdb_add = macvlan_fdb_add,
  604. .ndo_fdb_del = macvlan_fdb_del,
  605. .ndo_fdb_dump = ndo_dflt_fdb_dump,
  606. };
  607. void macvlan_common_setup(struct net_device *dev)
  608. {
  609. ether_setup(dev);
  610. dev->priv_flags &= ~(IFF_XMIT_DST_RELEASE | IFF_TX_SKB_SHARING);
  611. dev->priv_flags |= IFF_UNICAST_FLT;
  612. dev->netdev_ops = &macvlan_netdev_ops;
  613. dev->destructor = free_netdev;
  614. dev->header_ops = &macvlan_hard_header_ops;
  615. dev->ethtool_ops = &macvlan_ethtool_ops;
  616. }
  617. EXPORT_SYMBOL_GPL(macvlan_common_setup);
  618. static void macvlan_setup(struct net_device *dev)
  619. {
  620. macvlan_common_setup(dev);
  621. dev->tx_queue_len = 0;
  622. }
  623. static int macvlan_port_create(struct net_device *dev)
  624. {
  625. struct macvlan_port *port;
  626. unsigned int i;
  627. int err;
  628. if (dev->type != ARPHRD_ETHER || dev->flags & IFF_LOOPBACK)
  629. return -EINVAL;
  630. port = kzalloc(sizeof(*port), GFP_KERNEL);
  631. if (port == NULL)
  632. return -ENOMEM;
  633. port->passthru = false;
  634. port->dev = dev;
  635. INIT_LIST_HEAD(&port->vlans);
  636. for (i = 0; i < MACVLAN_HASH_SIZE; i++)
  637. INIT_HLIST_HEAD(&port->vlan_hash[i]);
  638. err = netdev_rx_handler_register(dev, macvlan_handle_frame, port);
  639. if (err)
  640. kfree(port);
  641. else
  642. dev->priv_flags |= IFF_MACVLAN_PORT;
  643. return err;
  644. }
  645. static void macvlan_port_destroy(struct net_device *dev)
  646. {
  647. struct macvlan_port *port = macvlan_port_get_rtnl(dev);
  648. dev->priv_flags &= ~IFF_MACVLAN_PORT;
  649. netdev_rx_handler_unregister(dev);
  650. kfree_rcu(port, rcu);
  651. }
  652. static int macvlan_validate(struct nlattr *tb[], struct nlattr *data[])
  653. {
  654. if (tb[IFLA_ADDRESS]) {
  655. if (nla_len(tb[IFLA_ADDRESS]) != ETH_ALEN)
  656. return -EINVAL;
  657. if (!is_valid_ether_addr(nla_data(tb[IFLA_ADDRESS])))
  658. return -EADDRNOTAVAIL;
  659. }
  660. if (data && data[IFLA_MACVLAN_FLAGS] &&
  661. nla_get_u16(data[IFLA_MACVLAN_FLAGS]) & ~MACVLAN_FLAG_NOPROMISC)
  662. return -EINVAL;
  663. if (data && data[IFLA_MACVLAN_MODE]) {
  664. switch (nla_get_u32(data[IFLA_MACVLAN_MODE])) {
  665. case MACVLAN_MODE_PRIVATE:
  666. case MACVLAN_MODE_VEPA:
  667. case MACVLAN_MODE_BRIDGE:
  668. case MACVLAN_MODE_PASSTHRU:
  669. break;
  670. default:
  671. return -EINVAL;
  672. }
  673. }
  674. return 0;
  675. }
  676. int macvlan_common_newlink(struct net *src_net, struct net_device *dev,
  677. struct nlattr *tb[], struct nlattr *data[])
  678. {
  679. struct macvlan_dev *vlan = netdev_priv(dev);
  680. struct macvlan_port *port;
  681. struct net_device *lowerdev;
  682. int err;
  683. if (!tb[IFLA_LINK])
  684. return -EINVAL;
  685. lowerdev = __dev_get_by_index(src_net, nla_get_u32(tb[IFLA_LINK]));
  686. if (lowerdev == NULL)
  687. return -ENODEV;
  688. /* When creating macvlans or macvtaps on top of other macvlans - use
  689. * the real device as the lowerdev.
  690. */
  691. if (netif_is_macvlan(lowerdev))
  692. lowerdev = macvlan_dev_real_dev(lowerdev);
  693. if (!tb[IFLA_MTU])
  694. dev->mtu = lowerdev->mtu;
  695. else if (dev->mtu > lowerdev->mtu)
  696. return -EINVAL;
  697. if (!tb[IFLA_ADDRESS])
  698. eth_hw_addr_random(dev);
  699. if (!macvlan_port_exists(lowerdev)) {
  700. err = macvlan_port_create(lowerdev);
  701. if (err < 0)
  702. return err;
  703. }
  704. port = macvlan_port_get_rtnl(lowerdev);
  705. /* Only 1 macvlan device can be created in passthru mode */
  706. if (port->passthru)
  707. return -EINVAL;
  708. vlan->lowerdev = lowerdev;
  709. vlan->dev = dev;
  710. vlan->port = port;
  711. vlan->set_features = MACVLAN_FEATURES;
  712. vlan->mode = MACVLAN_MODE_VEPA;
  713. if (data && data[IFLA_MACVLAN_MODE])
  714. vlan->mode = nla_get_u32(data[IFLA_MACVLAN_MODE]);
  715. if (data && data[IFLA_MACVLAN_FLAGS])
  716. vlan->flags = nla_get_u16(data[IFLA_MACVLAN_FLAGS]);
  717. if (vlan->mode == MACVLAN_MODE_PASSTHRU) {
  718. if (port->count)
  719. return -EINVAL;
  720. port->passthru = true;
  721. eth_hw_addr_inherit(dev, lowerdev);
  722. }
  723. port->count += 1;
  724. err = register_netdevice(dev);
  725. if (err < 0)
  726. goto destroy_port;
  727. dev->priv_flags |= IFF_MACVLAN;
  728. err = netdev_upper_dev_link(lowerdev, dev);
  729. if (err)
  730. goto unregister_netdev;
  731. list_add_tail_rcu(&vlan->list, &port->vlans);
  732. netif_stacked_transfer_operstate(lowerdev, dev);
  733. return 0;
  734. unregister_netdev:
  735. unregister_netdevice(dev);
  736. destroy_port:
  737. port->count -= 1;
  738. if (!port->count)
  739. macvlan_port_destroy(lowerdev);
  740. return err;
  741. }
  742. EXPORT_SYMBOL_GPL(macvlan_common_newlink);
  743. static int macvlan_newlink(struct net *src_net, struct net_device *dev,
  744. struct nlattr *tb[], struct nlattr *data[])
  745. {
  746. return macvlan_common_newlink(src_net, dev, tb, data);
  747. }
  748. void macvlan_dellink(struct net_device *dev, struct list_head *head)
  749. {
  750. struct macvlan_dev *vlan = netdev_priv(dev);
  751. list_del_rcu(&vlan->list);
  752. unregister_netdevice_queue(dev, head);
  753. netdev_upper_dev_unlink(vlan->lowerdev, dev);
  754. }
  755. EXPORT_SYMBOL_GPL(macvlan_dellink);
  756. static int macvlan_changelink(struct net_device *dev,
  757. struct nlattr *tb[], struct nlattr *data[])
  758. {
  759. struct macvlan_dev *vlan = netdev_priv(dev);
  760. enum macvlan_mode mode;
  761. bool set_mode = false;
  762. /* Validate mode, but don't set yet: setting flags may fail. */
  763. if (data && data[IFLA_MACVLAN_MODE]) {
  764. set_mode = true;
  765. mode = nla_get_u32(data[IFLA_MACVLAN_MODE]);
  766. /* Passthrough mode can't be set or cleared dynamically */
  767. if ((mode == MACVLAN_MODE_PASSTHRU) !=
  768. (vlan->mode == MACVLAN_MODE_PASSTHRU))
  769. return -EINVAL;
  770. }
  771. if (data && data[IFLA_MACVLAN_FLAGS]) {
  772. __u16 flags = nla_get_u16(data[IFLA_MACVLAN_FLAGS]);
  773. bool promisc = (flags ^ vlan->flags) & MACVLAN_FLAG_NOPROMISC;
  774. if (vlan->port->passthru && promisc) {
  775. int err;
  776. if (flags & MACVLAN_FLAG_NOPROMISC)
  777. err = dev_set_promiscuity(vlan->lowerdev, -1);
  778. else
  779. err = dev_set_promiscuity(vlan->lowerdev, 1);
  780. if (err < 0)
  781. return err;
  782. }
  783. vlan->flags = flags;
  784. }
  785. if (set_mode)
  786. vlan->mode = mode;
  787. return 0;
  788. }
  789. static size_t macvlan_get_size(const struct net_device *dev)
  790. {
  791. return (0
  792. + nla_total_size(4) /* IFLA_MACVLAN_MODE */
  793. + nla_total_size(2) /* IFLA_MACVLAN_FLAGS */
  794. );
  795. }
  796. static int macvlan_fill_info(struct sk_buff *skb,
  797. const struct net_device *dev)
  798. {
  799. struct macvlan_dev *vlan = netdev_priv(dev);
  800. if (nla_put_u32(skb, IFLA_MACVLAN_MODE, vlan->mode))
  801. goto nla_put_failure;
  802. if (nla_put_u16(skb, IFLA_MACVLAN_FLAGS, vlan->flags))
  803. goto nla_put_failure;
  804. return 0;
  805. nla_put_failure:
  806. return -EMSGSIZE;
  807. }
  808. static const struct nla_policy macvlan_policy[IFLA_MACVLAN_MAX + 1] = {
  809. [IFLA_MACVLAN_MODE] = { .type = NLA_U32 },
  810. [IFLA_MACVLAN_FLAGS] = { .type = NLA_U16 },
  811. };
  812. int macvlan_link_register(struct rtnl_link_ops *ops)
  813. {
  814. /* common fields */
  815. ops->priv_size = sizeof(struct macvlan_dev);
  816. ops->validate = macvlan_validate;
  817. ops->maxtype = IFLA_MACVLAN_MAX;
  818. ops->policy = macvlan_policy;
  819. ops->changelink = macvlan_changelink;
  820. ops->get_size = macvlan_get_size;
  821. ops->fill_info = macvlan_fill_info;
  822. return rtnl_link_register(ops);
  823. };
  824. EXPORT_SYMBOL_GPL(macvlan_link_register);
  825. static struct rtnl_link_ops macvlan_link_ops = {
  826. .kind = "macvlan",
  827. .setup = macvlan_setup,
  828. .newlink = macvlan_newlink,
  829. .dellink = macvlan_dellink,
  830. };
  831. static int macvlan_device_event(struct notifier_block *unused,
  832. unsigned long event, void *ptr)
  833. {
  834. struct net_device *dev = netdev_notifier_info_to_dev(ptr);
  835. struct macvlan_dev *vlan, *next;
  836. struct macvlan_port *port;
  837. LIST_HEAD(list_kill);
  838. if (!macvlan_port_exists(dev))
  839. return NOTIFY_DONE;
  840. port = macvlan_port_get_rtnl(dev);
  841. switch (event) {
  842. case NETDEV_CHANGE:
  843. list_for_each_entry(vlan, &port->vlans, list)
  844. netif_stacked_transfer_operstate(vlan->lowerdev,
  845. vlan->dev);
  846. break;
  847. case NETDEV_FEAT_CHANGE:
  848. list_for_each_entry(vlan, &port->vlans, list) {
  849. vlan->dev->gso_max_size = dev->gso_max_size;
  850. netdev_update_features(vlan->dev);
  851. }
  852. break;
  853. case NETDEV_UNREGISTER:
  854. /* twiddle thumbs on netns device moves */
  855. if (dev->reg_state != NETREG_UNREGISTERING)
  856. break;
  857. list_for_each_entry_safe(vlan, next, &port->vlans, list)
  858. vlan->dev->rtnl_link_ops->dellink(vlan->dev, &list_kill);
  859. unregister_netdevice_many(&list_kill);
  860. list_del(&list_kill);
  861. break;
  862. case NETDEV_PRE_TYPE_CHANGE:
  863. /* Forbid underlaying device to change its type. */
  864. return NOTIFY_BAD;
  865. }
  866. return NOTIFY_DONE;
  867. }
  868. static struct notifier_block macvlan_notifier_block __read_mostly = {
  869. .notifier_call = macvlan_device_event,
  870. };
  871. static int __init macvlan_init_module(void)
  872. {
  873. int err;
  874. register_netdevice_notifier(&macvlan_notifier_block);
  875. err = macvlan_link_register(&macvlan_link_ops);
  876. if (err < 0)
  877. goto err1;
  878. return 0;
  879. err1:
  880. unregister_netdevice_notifier(&macvlan_notifier_block);
  881. return err;
  882. }
  883. static void __exit macvlan_cleanup_module(void)
  884. {
  885. rtnl_link_unregister(&macvlan_link_ops);
  886. unregister_netdevice_notifier(&macvlan_notifier_block);
  887. }
  888. module_init(macvlan_init_module);
  889. module_exit(macvlan_cleanup_module);
  890. MODULE_LICENSE("GPL");
  891. MODULE_AUTHOR("Patrick McHardy <kaber@trash.net>");
  892. MODULE_DESCRIPTION("Driver for MAC address based VLANs");
  893. MODULE_ALIAS_RTNL_LINK("macvlan");