bond_main.c 130 KB

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  1. /*
  2. * originally based on the dummy device.
  3. *
  4. * Copyright 1999, Thomas Davis, tadavis@lbl.gov.
  5. * Licensed under the GPL. Based on dummy.c, and eql.c devices.
  6. *
  7. * bonding.c: an Ethernet Bonding driver
  8. *
  9. * This is useful to talk to a Cisco EtherChannel compatible equipment:
  10. * Cisco 5500
  11. * Sun Trunking (Solaris)
  12. * Alteon AceDirector Trunks
  13. * Linux Bonding
  14. * and probably many L2 switches ...
  15. *
  16. * How it works:
  17. * ifconfig bond0 ipaddress netmask up
  18. * will setup a network device, with an ip address. No mac address
  19. * will be assigned at this time. The hw mac address will come from
  20. * the first slave bonded to the channel. All slaves will then use
  21. * this hw mac address.
  22. *
  23. * ifconfig bond0 down
  24. * will release all slaves, marking them as down.
  25. *
  26. * ifenslave bond0 eth0
  27. * will attach eth0 to bond0 as a slave. eth0 hw mac address will either
  28. * a: be used as initial mac address
  29. * b: if a hw mac address already is there, eth0's hw mac address
  30. * will then be set from bond0.
  31. *
  32. */
  33. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  34. #include <linux/kernel.h>
  35. #include <linux/module.h>
  36. #include <linux/types.h>
  37. #include <linux/fcntl.h>
  38. #include <linux/interrupt.h>
  39. #include <linux/ptrace.h>
  40. #include <linux/ioport.h>
  41. #include <linux/in.h>
  42. #include <net/ip.h>
  43. #include <linux/ip.h>
  44. #include <linux/tcp.h>
  45. #include <linux/udp.h>
  46. #include <linux/slab.h>
  47. #include <linux/string.h>
  48. #include <linux/init.h>
  49. #include <linux/timer.h>
  50. #include <linux/socket.h>
  51. #include <linux/ctype.h>
  52. #include <linux/inet.h>
  53. #include <linux/bitops.h>
  54. #include <linux/io.h>
  55. #include <asm/dma.h>
  56. #include <linux/uaccess.h>
  57. #include <linux/errno.h>
  58. #include <linux/netdevice.h>
  59. #include <linux/inetdevice.h>
  60. #include <linux/igmp.h>
  61. #include <linux/etherdevice.h>
  62. #include <linux/skbuff.h>
  63. #include <net/sock.h>
  64. #include <linux/rtnetlink.h>
  65. #include <linux/smp.h>
  66. #include <linux/if_ether.h>
  67. #include <net/arp.h>
  68. #include <linux/mii.h>
  69. #include <linux/ethtool.h>
  70. #include <linux/if_vlan.h>
  71. #include <linux/if_bonding.h>
  72. #include <linux/jiffies.h>
  73. #include <linux/preempt.h>
  74. #include <net/route.h>
  75. #include <net/net_namespace.h>
  76. #include <net/netns/generic.h>
  77. #include <net/pkt_sched.h>
  78. #include "bonding.h"
  79. #include "bond_3ad.h"
  80. #include "bond_alb.h"
  81. /*---------------------------- Module parameters ----------------------------*/
  82. /* monitor all links that often (in milliseconds). <=0 disables monitoring */
  83. #define BOND_LINK_MON_INTERV 0
  84. #define BOND_LINK_ARP_INTERV 0
  85. static int max_bonds = BOND_DEFAULT_MAX_BONDS;
  86. static int tx_queues = BOND_DEFAULT_TX_QUEUES;
  87. static int num_peer_notif = 1;
  88. static int miimon = BOND_LINK_MON_INTERV;
  89. static int updelay;
  90. static int downdelay;
  91. static int use_carrier = 1;
  92. static char *mode;
  93. static char *primary;
  94. static char *primary_reselect;
  95. static char *lacp_rate;
  96. static int min_links;
  97. static char *ad_select;
  98. static char *xmit_hash_policy;
  99. static int arp_interval = BOND_LINK_ARP_INTERV;
  100. static char *arp_ip_target[BOND_MAX_ARP_TARGETS];
  101. static char *arp_validate;
  102. static char *arp_all_targets;
  103. static char *fail_over_mac;
  104. static int all_slaves_active;
  105. static struct bond_params bonding_defaults;
  106. static int resend_igmp = BOND_DEFAULT_RESEND_IGMP;
  107. module_param(max_bonds, int, 0);
  108. MODULE_PARM_DESC(max_bonds, "Max number of bonded devices");
  109. module_param(tx_queues, int, 0);
  110. MODULE_PARM_DESC(tx_queues, "Max number of transmit queues (default = 16)");
  111. module_param_named(num_grat_arp, num_peer_notif, int, 0644);
  112. MODULE_PARM_DESC(num_grat_arp, "Number of peer notifications to send on "
  113. "failover event (alias of num_unsol_na)");
  114. module_param_named(num_unsol_na, num_peer_notif, int, 0644);
  115. MODULE_PARM_DESC(num_unsol_na, "Number of peer notifications to send on "
  116. "failover event (alias of num_grat_arp)");
  117. module_param(miimon, int, 0);
  118. MODULE_PARM_DESC(miimon, "Link check interval in milliseconds");
  119. module_param(updelay, int, 0);
  120. MODULE_PARM_DESC(updelay, "Delay before considering link up, in milliseconds");
  121. module_param(downdelay, int, 0);
  122. MODULE_PARM_DESC(downdelay, "Delay before considering link down, "
  123. "in milliseconds");
  124. module_param(use_carrier, int, 0);
  125. MODULE_PARM_DESC(use_carrier, "Use netif_carrier_ok (vs MII ioctls) in miimon; "
  126. "0 for off, 1 for on (default)");
  127. module_param(mode, charp, 0);
  128. MODULE_PARM_DESC(mode, "Mode of operation; 0 for balance-rr, "
  129. "1 for active-backup, 2 for balance-xor, "
  130. "3 for broadcast, 4 for 802.3ad, 5 for balance-tlb, "
  131. "6 for balance-alb");
  132. module_param(primary, charp, 0);
  133. MODULE_PARM_DESC(primary, "Primary network device to use");
  134. module_param(primary_reselect, charp, 0);
  135. MODULE_PARM_DESC(primary_reselect, "Reselect primary slave "
  136. "once it comes up; "
  137. "0 for always (default), "
  138. "1 for only if speed of primary is "
  139. "better, "
  140. "2 for only on active slave "
  141. "failure");
  142. module_param(lacp_rate, charp, 0);
  143. MODULE_PARM_DESC(lacp_rate, "LACPDU tx rate to request from 802.3ad partner; "
  144. "0 for slow, 1 for fast");
  145. module_param(ad_select, charp, 0);
  146. MODULE_PARM_DESC(ad_select, "803.ad aggregation selection logic; "
  147. "0 for stable (default), 1 for bandwidth, "
  148. "2 for count");
  149. module_param(min_links, int, 0);
  150. MODULE_PARM_DESC(min_links, "Minimum number of available links before turning on carrier");
  151. module_param(xmit_hash_policy, charp, 0);
  152. MODULE_PARM_DESC(xmit_hash_policy, "balance-xor and 802.3ad hashing method; "
  153. "0 for layer 2 (default), 1 for layer 3+4, "
  154. "2 for layer 2+3");
  155. module_param(arp_interval, int, 0);
  156. MODULE_PARM_DESC(arp_interval, "arp interval in milliseconds");
  157. module_param_array(arp_ip_target, charp, NULL, 0);
  158. MODULE_PARM_DESC(arp_ip_target, "arp targets in n.n.n.n form");
  159. module_param(arp_validate, charp, 0);
  160. MODULE_PARM_DESC(arp_validate, "validate src/dst of ARP probes; "
  161. "0 for none (default), 1 for active, "
  162. "2 for backup, 3 for all");
  163. module_param(arp_all_targets, charp, 0);
  164. MODULE_PARM_DESC(arp_all_targets, "fail on any/all arp targets timeout; 0 for any (default), 1 for all");
  165. module_param(fail_over_mac, charp, 0);
  166. MODULE_PARM_DESC(fail_over_mac, "For active-backup, do not set all slaves to "
  167. "the same MAC; 0 for none (default), "
  168. "1 for active, 2 for follow");
  169. module_param(all_slaves_active, int, 0);
  170. MODULE_PARM_DESC(all_slaves_active, "Keep all frames received on an interface"
  171. "by setting active flag for all slaves; "
  172. "0 for never (default), 1 for always.");
  173. module_param(resend_igmp, int, 0);
  174. MODULE_PARM_DESC(resend_igmp, "Number of IGMP membership reports to send on "
  175. "link failure");
  176. /*----------------------------- Global variables ----------------------------*/
  177. #ifdef CONFIG_NET_POLL_CONTROLLER
  178. atomic_t netpoll_block_tx = ATOMIC_INIT(0);
  179. #endif
  180. int bond_net_id __read_mostly;
  181. static __be32 arp_target[BOND_MAX_ARP_TARGETS];
  182. static int arp_ip_count;
  183. static int bond_mode = BOND_MODE_ROUNDROBIN;
  184. static int xmit_hashtype = BOND_XMIT_POLICY_LAYER2;
  185. static int lacp_fast;
  186. const struct bond_parm_tbl bond_lacp_tbl[] = {
  187. { "slow", AD_LACP_SLOW},
  188. { "fast", AD_LACP_FAST},
  189. { NULL, -1},
  190. };
  191. const struct bond_parm_tbl bond_mode_tbl[] = {
  192. { "balance-rr", BOND_MODE_ROUNDROBIN},
  193. { "active-backup", BOND_MODE_ACTIVEBACKUP},
  194. { "balance-xor", BOND_MODE_XOR},
  195. { "broadcast", BOND_MODE_BROADCAST},
  196. { "802.3ad", BOND_MODE_8023AD},
  197. { "balance-tlb", BOND_MODE_TLB},
  198. { "balance-alb", BOND_MODE_ALB},
  199. { NULL, -1},
  200. };
  201. const struct bond_parm_tbl xmit_hashtype_tbl[] = {
  202. { "layer2", BOND_XMIT_POLICY_LAYER2},
  203. { "layer3+4", BOND_XMIT_POLICY_LAYER34},
  204. { "layer2+3", BOND_XMIT_POLICY_LAYER23},
  205. { NULL, -1},
  206. };
  207. const struct bond_parm_tbl arp_all_targets_tbl[] = {
  208. { "any", BOND_ARP_TARGETS_ANY},
  209. { "all", BOND_ARP_TARGETS_ALL},
  210. { NULL, -1},
  211. };
  212. const struct bond_parm_tbl arp_validate_tbl[] = {
  213. { "none", BOND_ARP_VALIDATE_NONE},
  214. { "active", BOND_ARP_VALIDATE_ACTIVE},
  215. { "backup", BOND_ARP_VALIDATE_BACKUP},
  216. { "all", BOND_ARP_VALIDATE_ALL},
  217. { NULL, -1},
  218. };
  219. const struct bond_parm_tbl fail_over_mac_tbl[] = {
  220. { "none", BOND_FOM_NONE},
  221. { "active", BOND_FOM_ACTIVE},
  222. { "follow", BOND_FOM_FOLLOW},
  223. { NULL, -1},
  224. };
  225. const struct bond_parm_tbl pri_reselect_tbl[] = {
  226. { "always", BOND_PRI_RESELECT_ALWAYS},
  227. { "better", BOND_PRI_RESELECT_BETTER},
  228. { "failure", BOND_PRI_RESELECT_FAILURE},
  229. { NULL, -1},
  230. };
  231. struct bond_parm_tbl ad_select_tbl[] = {
  232. { "stable", BOND_AD_STABLE},
  233. { "bandwidth", BOND_AD_BANDWIDTH},
  234. { "count", BOND_AD_COUNT},
  235. { NULL, -1},
  236. };
  237. /*-------------------------- Forward declarations ---------------------------*/
  238. static int bond_init(struct net_device *bond_dev);
  239. static void bond_uninit(struct net_device *bond_dev);
  240. /*---------------------------- General routines -----------------------------*/
  241. const char *bond_mode_name(int mode)
  242. {
  243. static const char *names[] = {
  244. [BOND_MODE_ROUNDROBIN] = "load balancing (round-robin)",
  245. [BOND_MODE_ACTIVEBACKUP] = "fault-tolerance (active-backup)",
  246. [BOND_MODE_XOR] = "load balancing (xor)",
  247. [BOND_MODE_BROADCAST] = "fault-tolerance (broadcast)",
  248. [BOND_MODE_8023AD] = "IEEE 802.3ad Dynamic link aggregation",
  249. [BOND_MODE_TLB] = "transmit load balancing",
  250. [BOND_MODE_ALB] = "adaptive load balancing",
  251. };
  252. if (mode < BOND_MODE_ROUNDROBIN || mode > BOND_MODE_ALB)
  253. return "unknown";
  254. return names[mode];
  255. }
  256. /*---------------------------------- VLAN -----------------------------------*/
  257. /**
  258. * bond_add_vlan - add a new vlan id on bond
  259. * @bond: bond that got the notification
  260. * @vlan_id: the vlan id to add
  261. *
  262. * Returns -ENOMEM if allocation failed.
  263. */
  264. static int bond_add_vlan(struct bonding *bond, unsigned short vlan_id)
  265. {
  266. struct vlan_entry *vlan;
  267. pr_debug("bond: %s, vlan id %d\n",
  268. (bond ? bond->dev->name : "None"), vlan_id);
  269. vlan = kzalloc(sizeof(struct vlan_entry), GFP_KERNEL);
  270. if (!vlan)
  271. return -ENOMEM;
  272. INIT_LIST_HEAD(&vlan->vlan_list);
  273. vlan->vlan_id = vlan_id;
  274. write_lock_bh(&bond->lock);
  275. list_add_tail(&vlan->vlan_list, &bond->vlan_list);
  276. write_unlock_bh(&bond->lock);
  277. pr_debug("added VLAN ID %d on bond %s\n", vlan_id, bond->dev->name);
  278. return 0;
  279. }
  280. /**
  281. * bond_del_vlan - delete a vlan id from bond
  282. * @bond: bond that got the notification
  283. * @vlan_id: the vlan id to delete
  284. *
  285. * returns -ENODEV if @vlan_id was not found in @bond.
  286. */
  287. static int bond_del_vlan(struct bonding *bond, unsigned short vlan_id)
  288. {
  289. struct vlan_entry *vlan;
  290. int res = -ENODEV;
  291. pr_debug("bond: %s, vlan id %d\n", bond->dev->name, vlan_id);
  292. block_netpoll_tx();
  293. write_lock_bh(&bond->lock);
  294. list_for_each_entry(vlan, &bond->vlan_list, vlan_list) {
  295. if (vlan->vlan_id == vlan_id) {
  296. list_del(&vlan->vlan_list);
  297. if (bond_is_lb(bond))
  298. bond_alb_clear_vlan(bond, vlan_id);
  299. pr_debug("removed VLAN ID %d from bond %s\n",
  300. vlan_id, bond->dev->name);
  301. kfree(vlan);
  302. res = 0;
  303. goto out;
  304. }
  305. }
  306. pr_debug("couldn't find VLAN ID %d in bond %s\n",
  307. vlan_id, bond->dev->name);
  308. out:
  309. write_unlock_bh(&bond->lock);
  310. unblock_netpoll_tx();
  311. return res;
  312. }
  313. /**
  314. * bond_next_vlan - safely skip to the next item in the vlans list.
  315. * @bond: the bond we're working on
  316. * @curr: item we're advancing from
  317. *
  318. * Returns %NULL if list is empty, bond->next_vlan if @curr is %NULL,
  319. * or @curr->next otherwise (even if it is @curr itself again).
  320. *
  321. * Caller must hold bond->lock
  322. */
  323. struct vlan_entry *bond_next_vlan(struct bonding *bond, struct vlan_entry *curr)
  324. {
  325. struct vlan_entry *next, *last;
  326. if (list_empty(&bond->vlan_list))
  327. return NULL;
  328. if (!curr) {
  329. next = list_entry(bond->vlan_list.next,
  330. struct vlan_entry, vlan_list);
  331. } else {
  332. last = list_entry(bond->vlan_list.prev,
  333. struct vlan_entry, vlan_list);
  334. if (last == curr) {
  335. next = list_entry(bond->vlan_list.next,
  336. struct vlan_entry, vlan_list);
  337. } else {
  338. next = list_entry(curr->vlan_list.next,
  339. struct vlan_entry, vlan_list);
  340. }
  341. }
  342. return next;
  343. }
  344. /**
  345. * bond_dev_queue_xmit - Prepare skb for xmit.
  346. *
  347. * @bond: bond device that got this skb for tx.
  348. * @skb: hw accel VLAN tagged skb to transmit
  349. * @slave_dev: slave that is supposed to xmit this skbuff
  350. */
  351. int bond_dev_queue_xmit(struct bonding *bond, struct sk_buff *skb,
  352. struct net_device *slave_dev)
  353. {
  354. skb->dev = slave_dev;
  355. BUILD_BUG_ON(sizeof(skb->queue_mapping) !=
  356. sizeof(qdisc_skb_cb(skb)->slave_dev_queue_mapping));
  357. skb->queue_mapping = qdisc_skb_cb(skb)->slave_dev_queue_mapping;
  358. if (unlikely(netpoll_tx_running(bond->dev)))
  359. bond_netpoll_send_skb(bond_get_slave_by_dev(bond, slave_dev), skb);
  360. else
  361. dev_queue_xmit(skb);
  362. return 0;
  363. }
  364. /*
  365. * In the following 2 functions, bond_vlan_rx_add_vid and bond_vlan_rx_kill_vid,
  366. * We don't protect the slave list iteration with a lock because:
  367. * a. This operation is performed in IOCTL context,
  368. * b. The operation is protected by the RTNL semaphore in the 8021q code,
  369. * c. Holding a lock with BH disabled while directly calling a base driver
  370. * entry point is generally a BAD idea.
  371. *
  372. * The design of synchronization/protection for this operation in the 8021q
  373. * module is good for one or more VLAN devices over a single physical device
  374. * and cannot be extended for a teaming solution like bonding, so there is a
  375. * potential race condition here where a net device from the vlan group might
  376. * be referenced (either by a base driver or the 8021q code) while it is being
  377. * removed from the system. However, it turns out we're not making matters
  378. * worse, and if it works for regular VLAN usage it will work here too.
  379. */
  380. /**
  381. * bond_vlan_rx_add_vid - Propagates adding an id to slaves
  382. * @bond_dev: bonding net device that got called
  383. * @vid: vlan id being added
  384. */
  385. static int bond_vlan_rx_add_vid(struct net_device *bond_dev,
  386. __be16 proto, u16 vid)
  387. {
  388. struct bonding *bond = netdev_priv(bond_dev);
  389. struct slave *slave;
  390. int res;
  391. bond_for_each_slave(bond, slave) {
  392. res = vlan_vid_add(slave->dev, proto, vid);
  393. if (res)
  394. goto unwind;
  395. }
  396. res = bond_add_vlan(bond, vid);
  397. if (res) {
  398. pr_err("%s: Error: Failed to add vlan id %d\n",
  399. bond_dev->name, vid);
  400. return res;
  401. }
  402. return 0;
  403. unwind:
  404. /* unwind from head to the slave that failed */
  405. bond_for_each_slave_continue_reverse(bond, slave)
  406. vlan_vid_del(slave->dev, proto, vid);
  407. return res;
  408. }
  409. /**
  410. * bond_vlan_rx_kill_vid - Propagates deleting an id to slaves
  411. * @bond_dev: bonding net device that got called
  412. * @vid: vlan id being removed
  413. */
  414. static int bond_vlan_rx_kill_vid(struct net_device *bond_dev,
  415. __be16 proto, u16 vid)
  416. {
  417. struct bonding *bond = netdev_priv(bond_dev);
  418. struct slave *slave;
  419. int res;
  420. bond_for_each_slave(bond, slave)
  421. vlan_vid_del(slave->dev, proto, vid);
  422. res = bond_del_vlan(bond, vid);
  423. if (res) {
  424. pr_err("%s: Error: Failed to remove vlan id %d\n",
  425. bond_dev->name, vid);
  426. return res;
  427. }
  428. return 0;
  429. }
  430. static void bond_add_vlans_on_slave(struct bonding *bond, struct net_device *slave_dev)
  431. {
  432. struct vlan_entry *vlan;
  433. int res;
  434. list_for_each_entry(vlan, &bond->vlan_list, vlan_list) {
  435. res = vlan_vid_add(slave_dev, htons(ETH_P_8021Q),
  436. vlan->vlan_id);
  437. if (res)
  438. pr_warning("%s: Failed to add vlan id %d to device %s\n",
  439. bond->dev->name, vlan->vlan_id,
  440. slave_dev->name);
  441. }
  442. }
  443. static void bond_del_vlans_from_slave(struct bonding *bond,
  444. struct net_device *slave_dev)
  445. {
  446. struct vlan_entry *vlan;
  447. list_for_each_entry(vlan, &bond->vlan_list, vlan_list) {
  448. if (!vlan->vlan_id)
  449. continue;
  450. vlan_vid_del(slave_dev, htons(ETH_P_8021Q), vlan->vlan_id);
  451. }
  452. }
  453. /*------------------------------- Link status -------------------------------*/
  454. /*
  455. * Set the carrier state for the master according to the state of its
  456. * slaves. If any slaves are up, the master is up. In 802.3ad mode,
  457. * do special 802.3ad magic.
  458. *
  459. * Returns zero if carrier state does not change, nonzero if it does.
  460. */
  461. static int bond_set_carrier(struct bonding *bond)
  462. {
  463. struct slave *slave;
  464. if (list_empty(&bond->slave_list))
  465. goto down;
  466. if (bond->params.mode == BOND_MODE_8023AD)
  467. return bond_3ad_set_carrier(bond);
  468. bond_for_each_slave(bond, slave) {
  469. if (slave->link == BOND_LINK_UP) {
  470. if (!netif_carrier_ok(bond->dev)) {
  471. netif_carrier_on(bond->dev);
  472. return 1;
  473. }
  474. return 0;
  475. }
  476. }
  477. down:
  478. if (netif_carrier_ok(bond->dev)) {
  479. netif_carrier_off(bond->dev);
  480. return 1;
  481. }
  482. return 0;
  483. }
  484. /*
  485. * Get link speed and duplex from the slave's base driver
  486. * using ethtool. If for some reason the call fails or the
  487. * values are invalid, set speed and duplex to -1,
  488. * and return.
  489. */
  490. static void bond_update_speed_duplex(struct slave *slave)
  491. {
  492. struct net_device *slave_dev = slave->dev;
  493. struct ethtool_cmd ecmd;
  494. u32 slave_speed;
  495. int res;
  496. slave->speed = SPEED_UNKNOWN;
  497. slave->duplex = DUPLEX_UNKNOWN;
  498. res = __ethtool_get_settings(slave_dev, &ecmd);
  499. if (res < 0)
  500. return;
  501. slave_speed = ethtool_cmd_speed(&ecmd);
  502. if (slave_speed == 0 || slave_speed == ((__u32) -1))
  503. return;
  504. switch (ecmd.duplex) {
  505. case DUPLEX_FULL:
  506. case DUPLEX_HALF:
  507. break;
  508. default:
  509. return;
  510. }
  511. slave->speed = slave_speed;
  512. slave->duplex = ecmd.duplex;
  513. return;
  514. }
  515. /*
  516. * if <dev> supports MII link status reporting, check its link status.
  517. *
  518. * We either do MII/ETHTOOL ioctls, or check netif_carrier_ok(),
  519. * depending upon the setting of the use_carrier parameter.
  520. *
  521. * Return either BMSR_LSTATUS, meaning that the link is up (or we
  522. * can't tell and just pretend it is), or 0, meaning that the link is
  523. * down.
  524. *
  525. * If reporting is non-zero, instead of faking link up, return -1 if
  526. * both ETHTOOL and MII ioctls fail (meaning the device does not
  527. * support them). If use_carrier is set, return whatever it says.
  528. * It'd be nice if there was a good way to tell if a driver supports
  529. * netif_carrier, but there really isn't.
  530. */
  531. static int bond_check_dev_link(struct bonding *bond,
  532. struct net_device *slave_dev, int reporting)
  533. {
  534. const struct net_device_ops *slave_ops = slave_dev->netdev_ops;
  535. int (*ioctl)(struct net_device *, struct ifreq *, int);
  536. struct ifreq ifr;
  537. struct mii_ioctl_data *mii;
  538. if (!reporting && !netif_running(slave_dev))
  539. return 0;
  540. if (bond->params.use_carrier)
  541. return netif_carrier_ok(slave_dev) ? BMSR_LSTATUS : 0;
  542. /* Try to get link status using Ethtool first. */
  543. if (slave_dev->ethtool_ops->get_link)
  544. return slave_dev->ethtool_ops->get_link(slave_dev) ?
  545. BMSR_LSTATUS : 0;
  546. /* Ethtool can't be used, fallback to MII ioctls. */
  547. ioctl = slave_ops->ndo_do_ioctl;
  548. if (ioctl) {
  549. /* TODO: set pointer to correct ioctl on a per team member */
  550. /* bases to make this more efficient. that is, once */
  551. /* we determine the correct ioctl, we will always */
  552. /* call it and not the others for that team */
  553. /* member. */
  554. /*
  555. * We cannot assume that SIOCGMIIPHY will also read a
  556. * register; not all network drivers (e.g., e100)
  557. * support that.
  558. */
  559. /* Yes, the mii is overlaid on the ifreq.ifr_ifru */
  560. strncpy(ifr.ifr_name, slave_dev->name, IFNAMSIZ);
  561. mii = if_mii(&ifr);
  562. if (IOCTL(slave_dev, &ifr, SIOCGMIIPHY) == 0) {
  563. mii->reg_num = MII_BMSR;
  564. if (IOCTL(slave_dev, &ifr, SIOCGMIIREG) == 0)
  565. return mii->val_out & BMSR_LSTATUS;
  566. }
  567. }
  568. /*
  569. * If reporting, report that either there's no dev->do_ioctl,
  570. * or both SIOCGMIIREG and get_link failed (meaning that we
  571. * cannot report link status). If not reporting, pretend
  572. * we're ok.
  573. */
  574. return reporting ? -1 : BMSR_LSTATUS;
  575. }
  576. /*----------------------------- Multicast list ------------------------------*/
  577. /*
  578. * Push the promiscuity flag down to appropriate slaves
  579. */
  580. static int bond_set_promiscuity(struct bonding *bond, int inc)
  581. {
  582. int err = 0;
  583. if (USES_PRIMARY(bond->params.mode)) {
  584. /* write lock already acquired */
  585. if (bond->curr_active_slave) {
  586. err = dev_set_promiscuity(bond->curr_active_slave->dev,
  587. inc);
  588. }
  589. } else {
  590. struct slave *slave;
  591. bond_for_each_slave(bond, slave) {
  592. err = dev_set_promiscuity(slave->dev, inc);
  593. if (err)
  594. return err;
  595. }
  596. }
  597. return err;
  598. }
  599. /*
  600. * Push the allmulti flag down to all slaves
  601. */
  602. static int bond_set_allmulti(struct bonding *bond, int inc)
  603. {
  604. int err = 0;
  605. if (USES_PRIMARY(bond->params.mode)) {
  606. /* write lock already acquired */
  607. if (bond->curr_active_slave) {
  608. err = dev_set_allmulti(bond->curr_active_slave->dev,
  609. inc);
  610. }
  611. } else {
  612. struct slave *slave;
  613. bond_for_each_slave(bond, slave) {
  614. err = dev_set_allmulti(slave->dev, inc);
  615. if (err)
  616. return err;
  617. }
  618. }
  619. return err;
  620. }
  621. /*
  622. * Retrieve the list of registered multicast addresses for the bonding
  623. * device and retransmit an IGMP JOIN request to the current active
  624. * slave.
  625. */
  626. static void bond_resend_igmp_join_requests(struct bonding *bond)
  627. {
  628. if (!rtnl_trylock()) {
  629. queue_delayed_work(bond->wq, &bond->mcast_work, 1);
  630. return;
  631. }
  632. call_netdevice_notifiers(NETDEV_RESEND_IGMP, bond->dev);
  633. rtnl_unlock();
  634. /* We use curr_slave_lock to protect against concurrent access to
  635. * igmp_retrans from multiple running instances of this function and
  636. * bond_change_active_slave
  637. */
  638. write_lock_bh(&bond->curr_slave_lock);
  639. if (bond->igmp_retrans > 1) {
  640. bond->igmp_retrans--;
  641. queue_delayed_work(bond->wq, &bond->mcast_work, HZ/5);
  642. }
  643. write_unlock_bh(&bond->curr_slave_lock);
  644. }
  645. static void bond_resend_igmp_join_requests_delayed(struct work_struct *work)
  646. {
  647. struct bonding *bond = container_of(work, struct bonding,
  648. mcast_work.work);
  649. bond_resend_igmp_join_requests(bond);
  650. }
  651. /* Flush bond's hardware addresses from slave
  652. */
  653. static void bond_hw_addr_flush(struct net_device *bond_dev,
  654. struct net_device *slave_dev)
  655. {
  656. struct bonding *bond = netdev_priv(bond_dev);
  657. dev_uc_unsync(slave_dev, bond_dev);
  658. dev_mc_unsync(slave_dev, bond_dev);
  659. if (bond->params.mode == BOND_MODE_8023AD) {
  660. /* del lacpdu mc addr from mc list */
  661. u8 lacpdu_multicast[ETH_ALEN] = MULTICAST_LACPDU_ADDR;
  662. dev_mc_del(slave_dev, lacpdu_multicast);
  663. }
  664. }
  665. /*--------------------------- Active slave change ---------------------------*/
  666. /* Update the hardware address list and promisc/allmulti for the new and
  667. * old active slaves (if any). Modes that are !USES_PRIMARY keep all
  668. * slaves up date at all times; only the USES_PRIMARY modes need to call
  669. * this function to swap these settings during a failover.
  670. */
  671. static void bond_hw_addr_swap(struct bonding *bond, struct slave *new_active,
  672. struct slave *old_active)
  673. {
  674. if (old_active) {
  675. if (bond->dev->flags & IFF_PROMISC)
  676. dev_set_promiscuity(old_active->dev, -1);
  677. if (bond->dev->flags & IFF_ALLMULTI)
  678. dev_set_allmulti(old_active->dev, -1);
  679. bond_hw_addr_flush(bond->dev, old_active->dev);
  680. }
  681. if (new_active) {
  682. /* FIXME: Signal errors upstream. */
  683. if (bond->dev->flags & IFF_PROMISC)
  684. dev_set_promiscuity(new_active->dev, 1);
  685. if (bond->dev->flags & IFF_ALLMULTI)
  686. dev_set_allmulti(new_active->dev, 1);
  687. netif_addr_lock_bh(bond->dev);
  688. dev_uc_sync(new_active->dev, bond->dev);
  689. dev_mc_sync(new_active->dev, bond->dev);
  690. netif_addr_unlock_bh(bond->dev);
  691. }
  692. }
  693. /**
  694. * bond_set_dev_addr - clone slave's address to bond
  695. * @bond_dev: bond net device
  696. * @slave_dev: slave net device
  697. *
  698. * Should be called with RTNL held.
  699. */
  700. static void bond_set_dev_addr(struct net_device *bond_dev,
  701. struct net_device *slave_dev)
  702. {
  703. pr_debug("bond_dev=%p slave_dev=%p slave_dev->addr_len=%d\n",
  704. bond_dev, slave_dev, slave_dev->addr_len);
  705. memcpy(bond_dev->dev_addr, slave_dev->dev_addr, slave_dev->addr_len);
  706. bond_dev->addr_assign_type = NET_ADDR_STOLEN;
  707. call_netdevice_notifiers(NETDEV_CHANGEADDR, bond_dev);
  708. }
  709. /*
  710. * bond_do_fail_over_mac
  711. *
  712. * Perform special MAC address swapping for fail_over_mac settings
  713. *
  714. * Called with RTNL, bond->lock for read, curr_slave_lock for write_bh.
  715. */
  716. static void bond_do_fail_over_mac(struct bonding *bond,
  717. struct slave *new_active,
  718. struct slave *old_active)
  719. __releases(&bond->curr_slave_lock)
  720. __releases(&bond->lock)
  721. __acquires(&bond->lock)
  722. __acquires(&bond->curr_slave_lock)
  723. {
  724. u8 tmp_mac[ETH_ALEN];
  725. struct sockaddr saddr;
  726. int rv;
  727. switch (bond->params.fail_over_mac) {
  728. case BOND_FOM_ACTIVE:
  729. if (new_active) {
  730. write_unlock_bh(&bond->curr_slave_lock);
  731. read_unlock(&bond->lock);
  732. bond_set_dev_addr(bond->dev, new_active->dev);
  733. read_lock(&bond->lock);
  734. write_lock_bh(&bond->curr_slave_lock);
  735. }
  736. break;
  737. case BOND_FOM_FOLLOW:
  738. /*
  739. * if new_active && old_active, swap them
  740. * if just old_active, do nothing (going to no active slave)
  741. * if just new_active, set new_active to bond's MAC
  742. */
  743. if (!new_active)
  744. return;
  745. write_unlock_bh(&bond->curr_slave_lock);
  746. read_unlock(&bond->lock);
  747. if (old_active) {
  748. memcpy(tmp_mac, new_active->dev->dev_addr, ETH_ALEN);
  749. memcpy(saddr.sa_data, old_active->dev->dev_addr,
  750. ETH_ALEN);
  751. saddr.sa_family = new_active->dev->type;
  752. } else {
  753. memcpy(saddr.sa_data, bond->dev->dev_addr, ETH_ALEN);
  754. saddr.sa_family = bond->dev->type;
  755. }
  756. rv = dev_set_mac_address(new_active->dev, &saddr);
  757. if (rv) {
  758. pr_err("%s: Error %d setting MAC of slave %s\n",
  759. bond->dev->name, -rv, new_active->dev->name);
  760. goto out;
  761. }
  762. if (!old_active)
  763. goto out;
  764. memcpy(saddr.sa_data, tmp_mac, ETH_ALEN);
  765. saddr.sa_family = old_active->dev->type;
  766. rv = dev_set_mac_address(old_active->dev, &saddr);
  767. if (rv)
  768. pr_err("%s: Error %d setting MAC of slave %s\n",
  769. bond->dev->name, -rv, new_active->dev->name);
  770. out:
  771. read_lock(&bond->lock);
  772. write_lock_bh(&bond->curr_slave_lock);
  773. break;
  774. default:
  775. pr_err("%s: bond_do_fail_over_mac impossible: bad policy %d\n",
  776. bond->dev->name, bond->params.fail_over_mac);
  777. break;
  778. }
  779. }
  780. static bool bond_should_change_active(struct bonding *bond)
  781. {
  782. struct slave *prim = bond->primary_slave;
  783. struct slave *curr = bond->curr_active_slave;
  784. if (!prim || !curr || curr->link != BOND_LINK_UP)
  785. return true;
  786. if (bond->force_primary) {
  787. bond->force_primary = false;
  788. return true;
  789. }
  790. if (bond->params.primary_reselect == BOND_PRI_RESELECT_BETTER &&
  791. (prim->speed < curr->speed ||
  792. (prim->speed == curr->speed && prim->duplex <= curr->duplex)))
  793. return false;
  794. if (bond->params.primary_reselect == BOND_PRI_RESELECT_FAILURE)
  795. return false;
  796. return true;
  797. }
  798. /**
  799. * find_best_interface - select the best available slave to be the active one
  800. * @bond: our bonding struct
  801. *
  802. * Warning: Caller must hold curr_slave_lock for writing.
  803. */
  804. static struct slave *bond_find_best_slave(struct bonding *bond)
  805. {
  806. struct slave *new_active, *old_active;
  807. struct slave *bestslave = NULL;
  808. int mintime = bond->params.updelay;
  809. int i;
  810. new_active = bond->curr_active_slave;
  811. if (!new_active) { /* there were no active slaves left */
  812. new_active = bond_first_slave(bond);
  813. if (!new_active)
  814. return NULL; /* still no slave, return NULL */
  815. }
  816. if ((bond->primary_slave) &&
  817. bond->primary_slave->link == BOND_LINK_UP &&
  818. bond_should_change_active(bond)) {
  819. new_active = bond->primary_slave;
  820. }
  821. /* remember where to stop iterating over the slaves */
  822. old_active = new_active;
  823. bond_for_each_slave_from(bond, new_active, i, old_active) {
  824. if (new_active->link == BOND_LINK_UP) {
  825. return new_active;
  826. } else if (new_active->link == BOND_LINK_BACK &&
  827. IS_UP(new_active->dev)) {
  828. /* link up, but waiting for stabilization */
  829. if (new_active->delay < mintime) {
  830. mintime = new_active->delay;
  831. bestslave = new_active;
  832. }
  833. }
  834. }
  835. return bestslave;
  836. }
  837. static bool bond_should_notify_peers(struct bonding *bond)
  838. {
  839. struct slave *slave = bond->curr_active_slave;
  840. pr_debug("bond_should_notify_peers: bond %s slave %s\n",
  841. bond->dev->name, slave ? slave->dev->name : "NULL");
  842. if (!slave || !bond->send_peer_notif ||
  843. test_bit(__LINK_STATE_LINKWATCH_PENDING, &slave->dev->state))
  844. return false;
  845. bond->send_peer_notif--;
  846. return true;
  847. }
  848. /**
  849. * change_active_interface - change the active slave into the specified one
  850. * @bond: our bonding struct
  851. * @new: the new slave to make the active one
  852. *
  853. * Set the new slave to the bond's settings and unset them on the old
  854. * curr_active_slave.
  855. * Setting include flags, mc-list, promiscuity, allmulti, etc.
  856. *
  857. * If @new's link state is %BOND_LINK_BACK we'll set it to %BOND_LINK_UP,
  858. * because it is apparently the best available slave we have, even though its
  859. * updelay hasn't timed out yet.
  860. *
  861. * If new_active is not NULL, caller must hold bond->lock for read and
  862. * curr_slave_lock for write_bh.
  863. */
  864. void bond_change_active_slave(struct bonding *bond, struct slave *new_active)
  865. {
  866. struct slave *old_active = bond->curr_active_slave;
  867. if (old_active == new_active)
  868. return;
  869. if (new_active) {
  870. new_active->jiffies = jiffies;
  871. if (new_active->link == BOND_LINK_BACK) {
  872. if (USES_PRIMARY(bond->params.mode)) {
  873. pr_info("%s: making interface %s the new active one %d ms earlier.\n",
  874. bond->dev->name, new_active->dev->name,
  875. (bond->params.updelay - new_active->delay) * bond->params.miimon);
  876. }
  877. new_active->delay = 0;
  878. new_active->link = BOND_LINK_UP;
  879. if (bond->params.mode == BOND_MODE_8023AD)
  880. bond_3ad_handle_link_change(new_active, BOND_LINK_UP);
  881. if (bond_is_lb(bond))
  882. bond_alb_handle_link_change(bond, new_active, BOND_LINK_UP);
  883. } else {
  884. if (USES_PRIMARY(bond->params.mode)) {
  885. pr_info("%s: making interface %s the new active one.\n",
  886. bond->dev->name, new_active->dev->name);
  887. }
  888. }
  889. }
  890. if (USES_PRIMARY(bond->params.mode))
  891. bond_hw_addr_swap(bond, new_active, old_active);
  892. if (bond_is_lb(bond)) {
  893. bond_alb_handle_active_change(bond, new_active);
  894. if (old_active)
  895. bond_set_slave_inactive_flags(old_active);
  896. if (new_active)
  897. bond_set_slave_active_flags(new_active);
  898. } else {
  899. bond->curr_active_slave = new_active;
  900. }
  901. if (bond->params.mode == BOND_MODE_ACTIVEBACKUP) {
  902. if (old_active)
  903. bond_set_slave_inactive_flags(old_active);
  904. if (new_active) {
  905. bool should_notify_peers = false;
  906. bond_set_slave_active_flags(new_active);
  907. if (bond->params.fail_over_mac)
  908. bond_do_fail_over_mac(bond, new_active,
  909. old_active);
  910. if (netif_running(bond->dev)) {
  911. bond->send_peer_notif =
  912. bond->params.num_peer_notif;
  913. should_notify_peers =
  914. bond_should_notify_peers(bond);
  915. }
  916. write_unlock_bh(&bond->curr_slave_lock);
  917. read_unlock(&bond->lock);
  918. call_netdevice_notifiers(NETDEV_BONDING_FAILOVER, bond->dev);
  919. if (should_notify_peers)
  920. call_netdevice_notifiers(NETDEV_NOTIFY_PEERS,
  921. bond->dev);
  922. read_lock(&bond->lock);
  923. write_lock_bh(&bond->curr_slave_lock);
  924. }
  925. }
  926. /* resend IGMP joins since active slave has changed or
  927. * all were sent on curr_active_slave.
  928. * resend only if bond is brought up with the affected
  929. * bonding modes and the retransmission is enabled */
  930. if (netif_running(bond->dev) && (bond->params.resend_igmp > 0) &&
  931. ((USES_PRIMARY(bond->params.mode) && new_active) ||
  932. bond->params.mode == BOND_MODE_ROUNDROBIN)) {
  933. bond->igmp_retrans = bond->params.resend_igmp;
  934. queue_delayed_work(bond->wq, &bond->mcast_work, 1);
  935. }
  936. }
  937. /**
  938. * bond_select_active_slave - select a new active slave, if needed
  939. * @bond: our bonding struct
  940. *
  941. * This functions should be called when one of the following occurs:
  942. * - The old curr_active_slave has been released or lost its link.
  943. * - The primary_slave has got its link back.
  944. * - A slave has got its link back and there's no old curr_active_slave.
  945. *
  946. * Caller must hold bond->lock for read and curr_slave_lock for write_bh.
  947. */
  948. void bond_select_active_slave(struct bonding *bond)
  949. {
  950. struct slave *best_slave;
  951. int rv;
  952. best_slave = bond_find_best_slave(bond);
  953. if (best_slave != bond->curr_active_slave) {
  954. bond_change_active_slave(bond, best_slave);
  955. rv = bond_set_carrier(bond);
  956. if (!rv)
  957. return;
  958. if (netif_carrier_ok(bond->dev)) {
  959. pr_info("%s: first active interface up!\n",
  960. bond->dev->name);
  961. } else {
  962. pr_info("%s: now running without any active interface !\n",
  963. bond->dev->name);
  964. }
  965. }
  966. }
  967. /*--------------------------- slave list handling ---------------------------*/
  968. /*
  969. * This function attaches the slave to the end of list.
  970. *
  971. * bond->lock held for writing by caller.
  972. */
  973. static void bond_attach_slave(struct bonding *bond, struct slave *new_slave)
  974. {
  975. list_add_tail(&new_slave->list, &bond->slave_list);
  976. bond->slave_cnt++;
  977. }
  978. /*
  979. * This function detaches the slave from the list.
  980. * WARNING: no check is made to verify if the slave effectively
  981. * belongs to <bond>.
  982. * Nothing is freed on return, structures are just unchained.
  983. * If any slave pointer in bond was pointing to <slave>,
  984. * it should be changed by the calling function.
  985. *
  986. * bond->lock held for writing by caller.
  987. */
  988. static void bond_detach_slave(struct bonding *bond, struct slave *slave)
  989. {
  990. list_del(&slave->list);
  991. bond->slave_cnt--;
  992. }
  993. #ifdef CONFIG_NET_POLL_CONTROLLER
  994. static inline int slave_enable_netpoll(struct slave *slave)
  995. {
  996. struct netpoll *np;
  997. int err = 0;
  998. np = kzalloc(sizeof(*np), GFP_ATOMIC);
  999. err = -ENOMEM;
  1000. if (!np)
  1001. goto out;
  1002. err = __netpoll_setup(np, slave->dev, GFP_ATOMIC);
  1003. if (err) {
  1004. kfree(np);
  1005. goto out;
  1006. }
  1007. slave->np = np;
  1008. out:
  1009. return err;
  1010. }
  1011. static inline void slave_disable_netpoll(struct slave *slave)
  1012. {
  1013. struct netpoll *np = slave->np;
  1014. if (!np)
  1015. return;
  1016. slave->np = NULL;
  1017. __netpoll_free_async(np);
  1018. }
  1019. static inline bool slave_dev_support_netpoll(struct net_device *slave_dev)
  1020. {
  1021. if (slave_dev->priv_flags & IFF_DISABLE_NETPOLL)
  1022. return false;
  1023. if (!slave_dev->netdev_ops->ndo_poll_controller)
  1024. return false;
  1025. return true;
  1026. }
  1027. static void bond_poll_controller(struct net_device *bond_dev)
  1028. {
  1029. }
  1030. static void bond_netpoll_cleanup(struct net_device *bond_dev)
  1031. {
  1032. struct bonding *bond = netdev_priv(bond_dev);
  1033. struct slave *slave;
  1034. bond_for_each_slave(bond, slave)
  1035. if (IS_UP(slave->dev))
  1036. slave_disable_netpoll(slave);
  1037. }
  1038. static int bond_netpoll_setup(struct net_device *dev, struct netpoll_info *ni, gfp_t gfp)
  1039. {
  1040. struct bonding *bond = netdev_priv(dev);
  1041. struct slave *slave;
  1042. int err = 0;
  1043. bond_for_each_slave(bond, slave) {
  1044. err = slave_enable_netpoll(slave);
  1045. if (err) {
  1046. bond_netpoll_cleanup(dev);
  1047. break;
  1048. }
  1049. }
  1050. return err;
  1051. }
  1052. #else
  1053. static inline int slave_enable_netpoll(struct slave *slave)
  1054. {
  1055. return 0;
  1056. }
  1057. static inline void slave_disable_netpoll(struct slave *slave)
  1058. {
  1059. }
  1060. static void bond_netpoll_cleanup(struct net_device *bond_dev)
  1061. {
  1062. }
  1063. #endif
  1064. /*---------------------------------- IOCTL ----------------------------------*/
  1065. static netdev_features_t bond_fix_features(struct net_device *dev,
  1066. netdev_features_t features)
  1067. {
  1068. struct slave *slave;
  1069. struct bonding *bond = netdev_priv(dev);
  1070. netdev_features_t mask;
  1071. read_lock(&bond->lock);
  1072. if (list_empty(&bond->slave_list)) {
  1073. /* Disable adding VLANs to empty bond. But why? --mq */
  1074. features |= NETIF_F_VLAN_CHALLENGED;
  1075. goto out;
  1076. }
  1077. mask = features;
  1078. features &= ~NETIF_F_ONE_FOR_ALL;
  1079. features |= NETIF_F_ALL_FOR_ALL;
  1080. bond_for_each_slave(bond, slave) {
  1081. features = netdev_increment_features(features,
  1082. slave->dev->features,
  1083. mask);
  1084. }
  1085. features = netdev_add_tso_features(features, mask);
  1086. out:
  1087. read_unlock(&bond->lock);
  1088. return features;
  1089. }
  1090. #define BOND_VLAN_FEATURES (NETIF_F_ALL_CSUM | NETIF_F_SG | \
  1091. NETIF_F_FRAGLIST | NETIF_F_ALL_TSO | \
  1092. NETIF_F_HIGHDMA | NETIF_F_LRO)
  1093. static void bond_compute_features(struct bonding *bond)
  1094. {
  1095. struct slave *slave;
  1096. struct net_device *bond_dev = bond->dev;
  1097. netdev_features_t vlan_features = BOND_VLAN_FEATURES;
  1098. unsigned short max_hard_header_len = ETH_HLEN;
  1099. unsigned int gso_max_size = GSO_MAX_SIZE;
  1100. u16 gso_max_segs = GSO_MAX_SEGS;
  1101. unsigned int flags, dst_release_flag = IFF_XMIT_DST_RELEASE;
  1102. read_lock(&bond->lock);
  1103. if (list_empty(&bond->slave_list))
  1104. goto done;
  1105. bond_for_each_slave(bond, slave) {
  1106. vlan_features = netdev_increment_features(vlan_features,
  1107. slave->dev->vlan_features, BOND_VLAN_FEATURES);
  1108. dst_release_flag &= slave->dev->priv_flags;
  1109. if (slave->dev->hard_header_len > max_hard_header_len)
  1110. max_hard_header_len = slave->dev->hard_header_len;
  1111. gso_max_size = min(gso_max_size, slave->dev->gso_max_size);
  1112. gso_max_segs = min(gso_max_segs, slave->dev->gso_max_segs);
  1113. }
  1114. done:
  1115. bond_dev->vlan_features = vlan_features;
  1116. bond_dev->hard_header_len = max_hard_header_len;
  1117. bond_dev->gso_max_segs = gso_max_segs;
  1118. netif_set_gso_max_size(bond_dev, gso_max_size);
  1119. flags = bond_dev->priv_flags & ~IFF_XMIT_DST_RELEASE;
  1120. bond_dev->priv_flags = flags | dst_release_flag;
  1121. read_unlock(&bond->lock);
  1122. netdev_change_features(bond_dev);
  1123. }
  1124. static void bond_setup_by_slave(struct net_device *bond_dev,
  1125. struct net_device *slave_dev)
  1126. {
  1127. bond_dev->header_ops = slave_dev->header_ops;
  1128. bond_dev->type = slave_dev->type;
  1129. bond_dev->hard_header_len = slave_dev->hard_header_len;
  1130. bond_dev->addr_len = slave_dev->addr_len;
  1131. memcpy(bond_dev->broadcast, slave_dev->broadcast,
  1132. slave_dev->addr_len);
  1133. }
  1134. /* On bonding slaves other than the currently active slave, suppress
  1135. * duplicates except for alb non-mcast/bcast.
  1136. */
  1137. static bool bond_should_deliver_exact_match(struct sk_buff *skb,
  1138. struct slave *slave,
  1139. struct bonding *bond)
  1140. {
  1141. if (bond_is_slave_inactive(slave)) {
  1142. if (bond->params.mode == BOND_MODE_ALB &&
  1143. skb->pkt_type != PACKET_BROADCAST &&
  1144. skb->pkt_type != PACKET_MULTICAST)
  1145. return false;
  1146. return true;
  1147. }
  1148. return false;
  1149. }
  1150. static rx_handler_result_t bond_handle_frame(struct sk_buff **pskb)
  1151. {
  1152. struct sk_buff *skb = *pskb;
  1153. struct slave *slave;
  1154. struct bonding *bond;
  1155. int (*recv_probe)(const struct sk_buff *, struct bonding *,
  1156. struct slave *);
  1157. int ret = RX_HANDLER_ANOTHER;
  1158. skb = skb_share_check(skb, GFP_ATOMIC);
  1159. if (unlikely(!skb))
  1160. return RX_HANDLER_CONSUMED;
  1161. *pskb = skb;
  1162. slave = bond_slave_get_rcu(skb->dev);
  1163. bond = slave->bond;
  1164. if (bond->params.arp_interval)
  1165. slave->dev->last_rx = jiffies;
  1166. recv_probe = ACCESS_ONCE(bond->recv_probe);
  1167. if (recv_probe) {
  1168. ret = recv_probe(skb, bond, slave);
  1169. if (ret == RX_HANDLER_CONSUMED) {
  1170. consume_skb(skb);
  1171. return ret;
  1172. }
  1173. }
  1174. if (bond_should_deliver_exact_match(skb, slave, bond)) {
  1175. return RX_HANDLER_EXACT;
  1176. }
  1177. skb->dev = bond->dev;
  1178. if (bond->params.mode == BOND_MODE_ALB &&
  1179. bond->dev->priv_flags & IFF_BRIDGE_PORT &&
  1180. skb->pkt_type == PACKET_HOST) {
  1181. if (unlikely(skb_cow_head(skb,
  1182. skb->data - skb_mac_header(skb)))) {
  1183. kfree_skb(skb);
  1184. return RX_HANDLER_CONSUMED;
  1185. }
  1186. memcpy(eth_hdr(skb)->h_dest, bond->dev->dev_addr, ETH_ALEN);
  1187. }
  1188. return ret;
  1189. }
  1190. static int bond_master_upper_dev_link(struct net_device *bond_dev,
  1191. struct net_device *slave_dev)
  1192. {
  1193. int err;
  1194. err = netdev_master_upper_dev_link(slave_dev, bond_dev);
  1195. if (err)
  1196. return err;
  1197. slave_dev->flags |= IFF_SLAVE;
  1198. rtmsg_ifinfo(RTM_NEWLINK, slave_dev, IFF_SLAVE);
  1199. return 0;
  1200. }
  1201. static void bond_upper_dev_unlink(struct net_device *bond_dev,
  1202. struct net_device *slave_dev)
  1203. {
  1204. netdev_upper_dev_unlink(slave_dev, bond_dev);
  1205. slave_dev->flags &= ~IFF_SLAVE;
  1206. rtmsg_ifinfo(RTM_NEWLINK, slave_dev, IFF_SLAVE);
  1207. }
  1208. /* enslave device <slave> to bond device <master> */
  1209. int bond_enslave(struct net_device *bond_dev, struct net_device *slave_dev)
  1210. {
  1211. struct bonding *bond = netdev_priv(bond_dev);
  1212. const struct net_device_ops *slave_ops = slave_dev->netdev_ops;
  1213. struct slave *new_slave = NULL;
  1214. struct sockaddr addr;
  1215. int link_reporting;
  1216. int res = 0, i;
  1217. if (!bond->params.use_carrier &&
  1218. slave_dev->ethtool_ops->get_link == NULL &&
  1219. slave_ops->ndo_do_ioctl == NULL) {
  1220. pr_warning("%s: Warning: no link monitoring support for %s\n",
  1221. bond_dev->name, slave_dev->name);
  1222. }
  1223. /* already enslaved */
  1224. if (slave_dev->flags & IFF_SLAVE) {
  1225. pr_debug("Error, Device was already enslaved\n");
  1226. return -EBUSY;
  1227. }
  1228. /* vlan challenged mutual exclusion */
  1229. /* no need to lock since we're protected by rtnl_lock */
  1230. if (slave_dev->features & NETIF_F_VLAN_CHALLENGED) {
  1231. pr_debug("%s: NETIF_F_VLAN_CHALLENGED\n", slave_dev->name);
  1232. if (vlan_uses_dev(bond_dev)) {
  1233. pr_err("%s: Error: cannot enslave VLAN challenged slave %s on VLAN enabled bond %s\n",
  1234. bond_dev->name, slave_dev->name, bond_dev->name);
  1235. return -EPERM;
  1236. } else {
  1237. pr_warning("%s: Warning: enslaved VLAN challenged slave %s. Adding VLANs will be blocked as long as %s is part of bond %s\n",
  1238. bond_dev->name, slave_dev->name,
  1239. slave_dev->name, bond_dev->name);
  1240. }
  1241. } else {
  1242. pr_debug("%s: ! NETIF_F_VLAN_CHALLENGED\n", slave_dev->name);
  1243. }
  1244. /*
  1245. * Old ifenslave binaries are no longer supported. These can
  1246. * be identified with moderate accuracy by the state of the slave:
  1247. * the current ifenslave will set the interface down prior to
  1248. * enslaving it; the old ifenslave will not.
  1249. */
  1250. if ((slave_dev->flags & IFF_UP)) {
  1251. pr_err("%s is up. This may be due to an out of date ifenslave.\n",
  1252. slave_dev->name);
  1253. res = -EPERM;
  1254. goto err_undo_flags;
  1255. }
  1256. /* set bonding device ether type by slave - bonding netdevices are
  1257. * created with ether_setup, so when the slave type is not ARPHRD_ETHER
  1258. * there is a need to override some of the type dependent attribs/funcs.
  1259. *
  1260. * bond ether type mutual exclusion - don't allow slaves of dissimilar
  1261. * ether type (eg ARPHRD_ETHER and ARPHRD_INFINIBAND) share the same bond
  1262. */
  1263. if (list_empty(&bond->slave_list)) {
  1264. if (bond_dev->type != slave_dev->type) {
  1265. pr_debug("%s: change device type from %d to %d\n",
  1266. bond_dev->name,
  1267. bond_dev->type, slave_dev->type);
  1268. res = call_netdevice_notifiers(NETDEV_PRE_TYPE_CHANGE,
  1269. bond_dev);
  1270. res = notifier_to_errno(res);
  1271. if (res) {
  1272. pr_err("%s: refused to change device type\n",
  1273. bond_dev->name);
  1274. res = -EBUSY;
  1275. goto err_undo_flags;
  1276. }
  1277. /* Flush unicast and multicast addresses */
  1278. dev_uc_flush(bond_dev);
  1279. dev_mc_flush(bond_dev);
  1280. if (slave_dev->type != ARPHRD_ETHER)
  1281. bond_setup_by_slave(bond_dev, slave_dev);
  1282. else {
  1283. ether_setup(bond_dev);
  1284. bond_dev->priv_flags &= ~IFF_TX_SKB_SHARING;
  1285. }
  1286. call_netdevice_notifiers(NETDEV_POST_TYPE_CHANGE,
  1287. bond_dev);
  1288. }
  1289. } else if (bond_dev->type != slave_dev->type) {
  1290. pr_err("%s ether type (%d) is different from other slaves (%d), can not enslave it.\n",
  1291. slave_dev->name,
  1292. slave_dev->type, bond_dev->type);
  1293. res = -EINVAL;
  1294. goto err_undo_flags;
  1295. }
  1296. if (slave_ops->ndo_set_mac_address == NULL) {
  1297. if (list_empty(&bond->slave_list)) {
  1298. pr_warning("%s: Warning: The first slave device specified does not support setting the MAC address. Setting fail_over_mac to active.",
  1299. bond_dev->name);
  1300. bond->params.fail_over_mac = BOND_FOM_ACTIVE;
  1301. } else if (bond->params.fail_over_mac != BOND_FOM_ACTIVE) {
  1302. pr_err("%s: Error: The slave device specified does not support setting the MAC address, but fail_over_mac is not set to active.\n",
  1303. bond_dev->name);
  1304. res = -EOPNOTSUPP;
  1305. goto err_undo_flags;
  1306. }
  1307. }
  1308. call_netdevice_notifiers(NETDEV_JOIN, slave_dev);
  1309. /* If this is the first slave, then we need to set the master's hardware
  1310. * address to be the same as the slave's. */
  1311. if (list_empty(&bond->slave_list) &&
  1312. bond->dev->addr_assign_type == NET_ADDR_RANDOM)
  1313. bond_set_dev_addr(bond->dev, slave_dev);
  1314. new_slave = kzalloc(sizeof(struct slave), GFP_KERNEL);
  1315. if (!new_slave) {
  1316. res = -ENOMEM;
  1317. goto err_undo_flags;
  1318. }
  1319. INIT_LIST_HEAD(&new_slave->list);
  1320. /*
  1321. * Set the new_slave's queue_id to be zero. Queue ID mapping
  1322. * is set via sysfs or module option if desired.
  1323. */
  1324. new_slave->queue_id = 0;
  1325. /* Save slave's original mtu and then set it to match the bond */
  1326. new_slave->original_mtu = slave_dev->mtu;
  1327. res = dev_set_mtu(slave_dev, bond->dev->mtu);
  1328. if (res) {
  1329. pr_debug("Error %d calling dev_set_mtu\n", res);
  1330. goto err_free;
  1331. }
  1332. /*
  1333. * Save slave's original ("permanent") mac address for modes
  1334. * that need it, and for restoring it upon release, and then
  1335. * set it to the master's address
  1336. */
  1337. memcpy(new_slave->perm_hwaddr, slave_dev->dev_addr, ETH_ALEN);
  1338. if (!bond->params.fail_over_mac) {
  1339. /*
  1340. * Set slave to master's mac address. The application already
  1341. * set the master's mac address to that of the first slave
  1342. */
  1343. memcpy(addr.sa_data, bond_dev->dev_addr, bond_dev->addr_len);
  1344. addr.sa_family = slave_dev->type;
  1345. res = dev_set_mac_address(slave_dev, &addr);
  1346. if (res) {
  1347. pr_debug("Error %d calling set_mac_address\n", res);
  1348. goto err_restore_mtu;
  1349. }
  1350. }
  1351. res = bond_master_upper_dev_link(bond_dev, slave_dev);
  1352. if (res) {
  1353. pr_debug("Error %d calling bond_master_upper_dev_link\n", res);
  1354. goto err_restore_mac;
  1355. }
  1356. /* open the slave since the application closed it */
  1357. res = dev_open(slave_dev);
  1358. if (res) {
  1359. pr_debug("Opening slave %s failed\n", slave_dev->name);
  1360. goto err_unset_master;
  1361. }
  1362. new_slave->bond = bond;
  1363. new_slave->dev = slave_dev;
  1364. slave_dev->priv_flags |= IFF_BONDING;
  1365. if (bond_is_lb(bond)) {
  1366. /* bond_alb_init_slave() must be called before all other stages since
  1367. * it might fail and we do not want to have to undo everything
  1368. */
  1369. res = bond_alb_init_slave(bond, new_slave);
  1370. if (res)
  1371. goto err_close;
  1372. }
  1373. /* If the mode USES_PRIMARY, then the following is handled by
  1374. * bond_change_active_slave().
  1375. */
  1376. if (!USES_PRIMARY(bond->params.mode)) {
  1377. /* set promiscuity level to new slave */
  1378. if (bond_dev->flags & IFF_PROMISC) {
  1379. res = dev_set_promiscuity(slave_dev, 1);
  1380. if (res)
  1381. goto err_close;
  1382. }
  1383. /* set allmulti level to new slave */
  1384. if (bond_dev->flags & IFF_ALLMULTI) {
  1385. res = dev_set_allmulti(slave_dev, 1);
  1386. if (res)
  1387. goto err_close;
  1388. }
  1389. netif_addr_lock_bh(bond_dev);
  1390. dev_mc_sync_multiple(slave_dev, bond_dev);
  1391. dev_uc_sync_multiple(slave_dev, bond_dev);
  1392. netif_addr_unlock_bh(bond_dev);
  1393. }
  1394. if (bond->params.mode == BOND_MODE_8023AD) {
  1395. /* add lacpdu mc addr to mc list */
  1396. u8 lacpdu_multicast[ETH_ALEN] = MULTICAST_LACPDU_ADDR;
  1397. dev_mc_add(slave_dev, lacpdu_multicast);
  1398. }
  1399. bond_add_vlans_on_slave(bond, slave_dev);
  1400. write_lock_bh(&bond->lock);
  1401. bond_attach_slave(bond, new_slave);
  1402. new_slave->delay = 0;
  1403. new_slave->link_failure_count = 0;
  1404. write_unlock_bh(&bond->lock);
  1405. bond_compute_features(bond);
  1406. bond_update_speed_duplex(new_slave);
  1407. read_lock(&bond->lock);
  1408. new_slave->last_arp_rx = jiffies -
  1409. (msecs_to_jiffies(bond->params.arp_interval) + 1);
  1410. for (i = 0; i < BOND_MAX_ARP_TARGETS; i++)
  1411. new_slave->target_last_arp_rx[i] = new_slave->last_arp_rx;
  1412. if (bond->params.miimon && !bond->params.use_carrier) {
  1413. link_reporting = bond_check_dev_link(bond, slave_dev, 1);
  1414. if ((link_reporting == -1) && !bond->params.arp_interval) {
  1415. /*
  1416. * miimon is set but a bonded network driver
  1417. * does not support ETHTOOL/MII and
  1418. * arp_interval is not set. Note: if
  1419. * use_carrier is enabled, we will never go
  1420. * here (because netif_carrier is always
  1421. * supported); thus, we don't need to change
  1422. * the messages for netif_carrier.
  1423. */
  1424. pr_warning("%s: Warning: MII and ETHTOOL support not available for interface %s, and arp_interval/arp_ip_target module parameters not specified, thus bonding will not detect link failures! see bonding.txt for details.\n",
  1425. bond_dev->name, slave_dev->name);
  1426. } else if (link_reporting == -1) {
  1427. /* unable get link status using mii/ethtool */
  1428. pr_warning("%s: Warning: can't get link status from interface %s; the network driver associated with this interface does not support MII or ETHTOOL link status reporting, thus miimon has no effect on this interface.\n",
  1429. bond_dev->name, slave_dev->name);
  1430. }
  1431. }
  1432. /* check for initial state */
  1433. if (bond->params.miimon) {
  1434. if (bond_check_dev_link(bond, slave_dev, 0) == BMSR_LSTATUS) {
  1435. if (bond->params.updelay) {
  1436. new_slave->link = BOND_LINK_BACK;
  1437. new_slave->delay = bond->params.updelay;
  1438. } else {
  1439. new_slave->link = BOND_LINK_UP;
  1440. }
  1441. } else {
  1442. new_slave->link = BOND_LINK_DOWN;
  1443. }
  1444. } else if (bond->params.arp_interval) {
  1445. new_slave->link = (netif_carrier_ok(slave_dev) ?
  1446. BOND_LINK_UP : BOND_LINK_DOWN);
  1447. } else {
  1448. new_slave->link = BOND_LINK_UP;
  1449. }
  1450. if (new_slave->link != BOND_LINK_DOWN)
  1451. new_slave->jiffies = jiffies;
  1452. pr_debug("Initial state of slave_dev is BOND_LINK_%s\n",
  1453. new_slave->link == BOND_LINK_DOWN ? "DOWN" :
  1454. (new_slave->link == BOND_LINK_UP ? "UP" : "BACK"));
  1455. if (USES_PRIMARY(bond->params.mode) && bond->params.primary[0]) {
  1456. /* if there is a primary slave, remember it */
  1457. if (strcmp(bond->params.primary, new_slave->dev->name) == 0) {
  1458. bond->primary_slave = new_slave;
  1459. bond->force_primary = true;
  1460. }
  1461. }
  1462. write_lock_bh(&bond->curr_slave_lock);
  1463. switch (bond->params.mode) {
  1464. case BOND_MODE_ACTIVEBACKUP:
  1465. bond_set_slave_inactive_flags(new_slave);
  1466. bond_select_active_slave(bond);
  1467. break;
  1468. case BOND_MODE_8023AD:
  1469. /* in 802.3ad mode, the internal mechanism
  1470. * will activate the slaves in the selected
  1471. * aggregator
  1472. */
  1473. bond_set_slave_inactive_flags(new_slave);
  1474. /* if this is the first slave */
  1475. if (bond_first_slave(bond) == new_slave) {
  1476. SLAVE_AD_INFO(new_slave).id = 1;
  1477. /* Initialize AD with the number of times that the AD timer is called in 1 second
  1478. * can be called only after the mac address of the bond is set
  1479. */
  1480. bond_3ad_initialize(bond, 1000/AD_TIMER_INTERVAL);
  1481. } else {
  1482. struct slave *prev_slave;
  1483. prev_slave = bond_prev_slave(bond, new_slave);
  1484. SLAVE_AD_INFO(new_slave).id =
  1485. SLAVE_AD_INFO(prev_slave).id + 1;
  1486. }
  1487. bond_3ad_bind_slave(new_slave);
  1488. break;
  1489. case BOND_MODE_TLB:
  1490. case BOND_MODE_ALB:
  1491. bond_set_active_slave(new_slave);
  1492. bond_set_slave_inactive_flags(new_slave);
  1493. bond_select_active_slave(bond);
  1494. break;
  1495. default:
  1496. pr_debug("This slave is always active in trunk mode\n");
  1497. /* always active in trunk mode */
  1498. bond_set_active_slave(new_slave);
  1499. /* In trunking mode there is little meaning to curr_active_slave
  1500. * anyway (it holds no special properties of the bond device),
  1501. * so we can change it without calling change_active_interface()
  1502. */
  1503. if (!bond->curr_active_slave && new_slave->link == BOND_LINK_UP)
  1504. bond->curr_active_slave = new_slave;
  1505. break;
  1506. } /* switch(bond_mode) */
  1507. write_unlock_bh(&bond->curr_slave_lock);
  1508. bond_set_carrier(bond);
  1509. #ifdef CONFIG_NET_POLL_CONTROLLER
  1510. slave_dev->npinfo = bond->dev->npinfo;
  1511. if (slave_dev->npinfo) {
  1512. if (slave_enable_netpoll(new_slave)) {
  1513. read_unlock(&bond->lock);
  1514. pr_info("Error, %s: master_dev is using netpoll, "
  1515. "but new slave device does not support netpoll.\n",
  1516. bond_dev->name);
  1517. res = -EBUSY;
  1518. goto err_detach;
  1519. }
  1520. }
  1521. #endif
  1522. read_unlock(&bond->lock);
  1523. res = bond_create_slave_symlinks(bond_dev, slave_dev);
  1524. if (res)
  1525. goto err_detach;
  1526. res = netdev_rx_handler_register(slave_dev, bond_handle_frame,
  1527. new_slave);
  1528. if (res) {
  1529. pr_debug("Error %d calling netdev_rx_handler_register\n", res);
  1530. goto err_dest_symlinks;
  1531. }
  1532. pr_info("%s: enslaving %s as a%s interface with a%s link.\n",
  1533. bond_dev->name, slave_dev->name,
  1534. bond_is_active_slave(new_slave) ? "n active" : " backup",
  1535. new_slave->link != BOND_LINK_DOWN ? "n up" : " down");
  1536. /* enslave is successful */
  1537. return 0;
  1538. /* Undo stages on error */
  1539. err_dest_symlinks:
  1540. bond_destroy_slave_symlinks(bond_dev, slave_dev);
  1541. err_detach:
  1542. if (!USES_PRIMARY(bond->params.mode))
  1543. bond_hw_addr_flush(bond_dev, slave_dev);
  1544. bond_del_vlans_from_slave(bond, slave_dev);
  1545. write_lock_bh(&bond->lock);
  1546. bond_detach_slave(bond, new_slave);
  1547. if (bond->primary_slave == new_slave)
  1548. bond->primary_slave = NULL;
  1549. if (bond->curr_active_slave == new_slave) {
  1550. bond_change_active_slave(bond, NULL);
  1551. write_unlock_bh(&bond->lock);
  1552. read_lock(&bond->lock);
  1553. write_lock_bh(&bond->curr_slave_lock);
  1554. bond_select_active_slave(bond);
  1555. write_unlock_bh(&bond->curr_slave_lock);
  1556. read_unlock(&bond->lock);
  1557. } else {
  1558. write_unlock_bh(&bond->lock);
  1559. }
  1560. slave_disable_netpoll(new_slave);
  1561. err_close:
  1562. slave_dev->priv_flags &= ~IFF_BONDING;
  1563. dev_close(slave_dev);
  1564. err_unset_master:
  1565. bond_upper_dev_unlink(bond_dev, slave_dev);
  1566. err_restore_mac:
  1567. if (!bond->params.fail_over_mac) {
  1568. /* XXX TODO - fom follow mode needs to change master's
  1569. * MAC if this slave's MAC is in use by the bond, or at
  1570. * least print a warning.
  1571. */
  1572. memcpy(addr.sa_data, new_slave->perm_hwaddr, ETH_ALEN);
  1573. addr.sa_family = slave_dev->type;
  1574. dev_set_mac_address(slave_dev, &addr);
  1575. }
  1576. err_restore_mtu:
  1577. dev_set_mtu(slave_dev, new_slave->original_mtu);
  1578. err_free:
  1579. kfree(new_slave);
  1580. err_undo_flags:
  1581. bond_compute_features(bond);
  1582. /* Enslave of first slave has failed and we need to fix master's mac */
  1583. if (list_empty(&bond->slave_list) &&
  1584. ether_addr_equal(bond_dev->dev_addr, slave_dev->dev_addr))
  1585. eth_hw_addr_random(bond_dev);
  1586. return res;
  1587. }
  1588. /*
  1589. * Try to release the slave device <slave> from the bond device <master>
  1590. * It is legal to access curr_active_slave without a lock because all the function
  1591. * is write-locked. If "all" is true it means that the function is being called
  1592. * while destroying a bond interface and all slaves are being released.
  1593. *
  1594. * The rules for slave state should be:
  1595. * for Active/Backup:
  1596. * Active stays on all backups go down
  1597. * for Bonded connections:
  1598. * The first up interface should be left on and all others downed.
  1599. */
  1600. static int __bond_release_one(struct net_device *bond_dev,
  1601. struct net_device *slave_dev,
  1602. bool all)
  1603. {
  1604. struct bonding *bond = netdev_priv(bond_dev);
  1605. struct slave *slave, *oldcurrent;
  1606. struct sockaddr addr;
  1607. netdev_features_t old_features = bond_dev->features;
  1608. /* slave is not a slave or master is not master of this slave */
  1609. if (!(slave_dev->flags & IFF_SLAVE) ||
  1610. !netdev_has_upper_dev(slave_dev, bond_dev)) {
  1611. pr_err("%s: Error: cannot release %s.\n",
  1612. bond_dev->name, slave_dev->name);
  1613. return -EINVAL;
  1614. }
  1615. block_netpoll_tx();
  1616. write_lock_bh(&bond->lock);
  1617. slave = bond_get_slave_by_dev(bond, slave_dev);
  1618. if (!slave) {
  1619. /* not a slave of this bond */
  1620. pr_info("%s: %s not enslaved\n",
  1621. bond_dev->name, slave_dev->name);
  1622. write_unlock_bh(&bond->lock);
  1623. unblock_netpoll_tx();
  1624. return -EINVAL;
  1625. }
  1626. write_unlock_bh(&bond->lock);
  1627. /* unregister rx_handler early so bond_handle_frame wouldn't be called
  1628. * for this slave anymore.
  1629. */
  1630. netdev_rx_handler_unregister(slave_dev);
  1631. write_lock_bh(&bond->lock);
  1632. /* Inform AD package of unbinding of slave. */
  1633. if (bond->params.mode == BOND_MODE_8023AD) {
  1634. /* must be called before the slave is
  1635. * detached from the list
  1636. */
  1637. bond_3ad_unbind_slave(slave);
  1638. }
  1639. pr_info("%s: releasing %s interface %s\n",
  1640. bond_dev->name,
  1641. bond_is_active_slave(slave) ? "active" : "backup",
  1642. slave_dev->name);
  1643. oldcurrent = bond->curr_active_slave;
  1644. bond->current_arp_slave = NULL;
  1645. /* release the slave from its bond */
  1646. bond_detach_slave(bond, slave);
  1647. if (!all && !bond->params.fail_over_mac) {
  1648. if (ether_addr_equal(bond_dev->dev_addr, slave->perm_hwaddr) &&
  1649. !list_empty(&bond->slave_list))
  1650. pr_warn("%s: Warning: the permanent HWaddr of %s - %pM - is still in use by %s. Set the HWaddr of %s to a different address to avoid conflicts.\n",
  1651. bond_dev->name, slave_dev->name,
  1652. slave->perm_hwaddr,
  1653. bond_dev->name, slave_dev->name);
  1654. }
  1655. if (bond->primary_slave == slave)
  1656. bond->primary_slave = NULL;
  1657. if (oldcurrent == slave)
  1658. bond_change_active_slave(bond, NULL);
  1659. if (bond_is_lb(bond)) {
  1660. /* Must be called only after the slave has been
  1661. * detached from the list and the curr_active_slave
  1662. * has been cleared (if our_slave == old_current),
  1663. * but before a new active slave is selected.
  1664. */
  1665. write_unlock_bh(&bond->lock);
  1666. bond_alb_deinit_slave(bond, slave);
  1667. write_lock_bh(&bond->lock);
  1668. }
  1669. if (all) {
  1670. bond->curr_active_slave = NULL;
  1671. } else if (oldcurrent == slave) {
  1672. /*
  1673. * Note that we hold RTNL over this sequence, so there
  1674. * is no concern that another slave add/remove event
  1675. * will interfere.
  1676. */
  1677. write_unlock_bh(&bond->lock);
  1678. read_lock(&bond->lock);
  1679. write_lock_bh(&bond->curr_slave_lock);
  1680. bond_select_active_slave(bond);
  1681. write_unlock_bh(&bond->curr_slave_lock);
  1682. read_unlock(&bond->lock);
  1683. write_lock_bh(&bond->lock);
  1684. }
  1685. if (list_empty(&bond->slave_list)) {
  1686. bond_set_carrier(bond);
  1687. eth_hw_addr_random(bond_dev);
  1688. if (bond_vlan_used(bond)) {
  1689. pr_warning("%s: Warning: clearing HW address of %s while it still has VLANs.\n",
  1690. bond_dev->name, bond_dev->name);
  1691. pr_warning("%s: When re-adding slaves, make sure the bond's HW address matches its VLANs'.\n",
  1692. bond_dev->name);
  1693. }
  1694. }
  1695. write_unlock_bh(&bond->lock);
  1696. unblock_netpoll_tx();
  1697. if (list_empty(&bond->slave_list)) {
  1698. call_netdevice_notifiers(NETDEV_CHANGEADDR, bond->dev);
  1699. call_netdevice_notifiers(NETDEV_RELEASE, bond->dev);
  1700. }
  1701. bond_compute_features(bond);
  1702. if (!(bond_dev->features & NETIF_F_VLAN_CHALLENGED) &&
  1703. (old_features & NETIF_F_VLAN_CHALLENGED))
  1704. pr_info("%s: last VLAN challenged slave %s left bond %s. VLAN blocking is removed\n",
  1705. bond_dev->name, slave_dev->name, bond_dev->name);
  1706. /* must do this from outside any spinlocks */
  1707. bond_destroy_slave_symlinks(bond_dev, slave_dev);
  1708. bond_del_vlans_from_slave(bond, slave_dev);
  1709. /* If the mode USES_PRIMARY, then this cases was handled above by
  1710. * bond_change_active_slave(..., NULL)
  1711. */
  1712. if (!USES_PRIMARY(bond->params.mode)) {
  1713. /* unset promiscuity level from slave */
  1714. if (bond_dev->flags & IFF_PROMISC)
  1715. dev_set_promiscuity(slave_dev, -1);
  1716. /* unset allmulti level from slave */
  1717. if (bond_dev->flags & IFF_ALLMULTI)
  1718. dev_set_allmulti(slave_dev, -1);
  1719. bond_hw_addr_flush(bond_dev, slave_dev);
  1720. }
  1721. bond_upper_dev_unlink(bond_dev, slave_dev);
  1722. slave_disable_netpoll(slave);
  1723. /* close slave before restoring its mac address */
  1724. dev_close(slave_dev);
  1725. if (bond->params.fail_over_mac != BOND_FOM_ACTIVE) {
  1726. /* restore original ("permanent") mac address */
  1727. memcpy(addr.sa_data, slave->perm_hwaddr, ETH_ALEN);
  1728. addr.sa_family = slave_dev->type;
  1729. dev_set_mac_address(slave_dev, &addr);
  1730. }
  1731. dev_set_mtu(slave_dev, slave->original_mtu);
  1732. slave_dev->priv_flags &= ~IFF_BONDING;
  1733. kfree(slave);
  1734. return 0; /* deletion OK */
  1735. }
  1736. /* A wrapper used because of ndo_del_link */
  1737. int bond_release(struct net_device *bond_dev, struct net_device *slave_dev)
  1738. {
  1739. return __bond_release_one(bond_dev, slave_dev, false);
  1740. }
  1741. /*
  1742. * First release a slave and then destroy the bond if no more slaves are left.
  1743. * Must be under rtnl_lock when this function is called.
  1744. */
  1745. static int bond_release_and_destroy(struct net_device *bond_dev,
  1746. struct net_device *slave_dev)
  1747. {
  1748. struct bonding *bond = netdev_priv(bond_dev);
  1749. int ret;
  1750. ret = bond_release(bond_dev, slave_dev);
  1751. if (ret == 0 && list_empty(&bond->slave_list)) {
  1752. bond_dev->priv_flags |= IFF_DISABLE_NETPOLL;
  1753. pr_info("%s: destroying bond %s.\n",
  1754. bond_dev->name, bond_dev->name);
  1755. unregister_netdevice(bond_dev);
  1756. }
  1757. return ret;
  1758. }
  1759. /*
  1760. * This function changes the active slave to slave <slave_dev>.
  1761. * It returns -EINVAL in the following cases.
  1762. * - <slave_dev> is not found in the list.
  1763. * - There is not active slave now.
  1764. * - <slave_dev> is already active.
  1765. * - The link state of <slave_dev> is not BOND_LINK_UP.
  1766. * - <slave_dev> is not running.
  1767. * In these cases, this function does nothing.
  1768. * In the other cases, current_slave pointer is changed and 0 is returned.
  1769. */
  1770. static int bond_ioctl_change_active(struct net_device *bond_dev, struct net_device *slave_dev)
  1771. {
  1772. struct bonding *bond = netdev_priv(bond_dev);
  1773. struct slave *old_active = NULL;
  1774. struct slave *new_active = NULL;
  1775. int res = 0;
  1776. if (!USES_PRIMARY(bond->params.mode))
  1777. return -EINVAL;
  1778. /* Verify that bond_dev is indeed the master of slave_dev */
  1779. if (!(slave_dev->flags & IFF_SLAVE) ||
  1780. !netdev_has_upper_dev(slave_dev, bond_dev))
  1781. return -EINVAL;
  1782. read_lock(&bond->lock);
  1783. old_active = bond->curr_active_slave;
  1784. new_active = bond_get_slave_by_dev(bond, slave_dev);
  1785. /*
  1786. * Changing to the current active: do nothing; return success.
  1787. */
  1788. if (new_active && new_active == old_active) {
  1789. read_unlock(&bond->lock);
  1790. return 0;
  1791. }
  1792. if (new_active &&
  1793. old_active &&
  1794. new_active->link == BOND_LINK_UP &&
  1795. IS_UP(new_active->dev)) {
  1796. block_netpoll_tx();
  1797. write_lock_bh(&bond->curr_slave_lock);
  1798. bond_change_active_slave(bond, new_active);
  1799. write_unlock_bh(&bond->curr_slave_lock);
  1800. unblock_netpoll_tx();
  1801. } else
  1802. res = -EINVAL;
  1803. read_unlock(&bond->lock);
  1804. return res;
  1805. }
  1806. static int bond_info_query(struct net_device *bond_dev, struct ifbond *info)
  1807. {
  1808. struct bonding *bond = netdev_priv(bond_dev);
  1809. info->bond_mode = bond->params.mode;
  1810. info->miimon = bond->params.miimon;
  1811. read_lock(&bond->lock);
  1812. info->num_slaves = bond->slave_cnt;
  1813. read_unlock(&bond->lock);
  1814. return 0;
  1815. }
  1816. static int bond_slave_info_query(struct net_device *bond_dev, struct ifslave *info)
  1817. {
  1818. struct bonding *bond = netdev_priv(bond_dev);
  1819. int i = 0, res = -ENODEV;
  1820. struct slave *slave;
  1821. read_lock(&bond->lock);
  1822. bond_for_each_slave(bond, slave) {
  1823. if (i++ == (int)info->slave_id) {
  1824. res = 0;
  1825. strcpy(info->slave_name, slave->dev->name);
  1826. info->link = slave->link;
  1827. info->state = bond_slave_state(slave);
  1828. info->link_failure_count = slave->link_failure_count;
  1829. break;
  1830. }
  1831. }
  1832. read_unlock(&bond->lock);
  1833. return res;
  1834. }
  1835. /*-------------------------------- Monitoring -------------------------------*/
  1836. static int bond_miimon_inspect(struct bonding *bond)
  1837. {
  1838. int link_state, commit = 0;
  1839. struct slave *slave;
  1840. bool ignore_updelay;
  1841. ignore_updelay = !bond->curr_active_slave ? true : false;
  1842. bond_for_each_slave(bond, slave) {
  1843. slave->new_link = BOND_LINK_NOCHANGE;
  1844. link_state = bond_check_dev_link(bond, slave->dev, 0);
  1845. switch (slave->link) {
  1846. case BOND_LINK_UP:
  1847. if (link_state)
  1848. continue;
  1849. slave->link = BOND_LINK_FAIL;
  1850. slave->delay = bond->params.downdelay;
  1851. if (slave->delay) {
  1852. pr_info("%s: link status down for %sinterface %s, disabling it in %d ms.\n",
  1853. bond->dev->name,
  1854. (bond->params.mode ==
  1855. BOND_MODE_ACTIVEBACKUP) ?
  1856. (bond_is_active_slave(slave) ?
  1857. "active " : "backup ") : "",
  1858. slave->dev->name,
  1859. bond->params.downdelay * bond->params.miimon);
  1860. }
  1861. /*FALLTHRU*/
  1862. case BOND_LINK_FAIL:
  1863. if (link_state) {
  1864. /*
  1865. * recovered before downdelay expired
  1866. */
  1867. slave->link = BOND_LINK_UP;
  1868. slave->jiffies = jiffies;
  1869. pr_info("%s: link status up again after %d ms for interface %s.\n",
  1870. bond->dev->name,
  1871. (bond->params.downdelay - slave->delay) *
  1872. bond->params.miimon,
  1873. slave->dev->name);
  1874. continue;
  1875. }
  1876. if (slave->delay <= 0) {
  1877. slave->new_link = BOND_LINK_DOWN;
  1878. commit++;
  1879. continue;
  1880. }
  1881. slave->delay--;
  1882. break;
  1883. case BOND_LINK_DOWN:
  1884. if (!link_state)
  1885. continue;
  1886. slave->link = BOND_LINK_BACK;
  1887. slave->delay = bond->params.updelay;
  1888. if (slave->delay) {
  1889. pr_info("%s: link status up for interface %s, enabling it in %d ms.\n",
  1890. bond->dev->name, slave->dev->name,
  1891. ignore_updelay ? 0 :
  1892. bond->params.updelay *
  1893. bond->params.miimon);
  1894. }
  1895. /*FALLTHRU*/
  1896. case BOND_LINK_BACK:
  1897. if (!link_state) {
  1898. slave->link = BOND_LINK_DOWN;
  1899. pr_info("%s: link status down again after %d ms for interface %s.\n",
  1900. bond->dev->name,
  1901. (bond->params.updelay - slave->delay) *
  1902. bond->params.miimon,
  1903. slave->dev->name);
  1904. continue;
  1905. }
  1906. if (ignore_updelay)
  1907. slave->delay = 0;
  1908. if (slave->delay <= 0) {
  1909. slave->new_link = BOND_LINK_UP;
  1910. commit++;
  1911. ignore_updelay = false;
  1912. continue;
  1913. }
  1914. slave->delay--;
  1915. break;
  1916. }
  1917. }
  1918. return commit;
  1919. }
  1920. static void bond_miimon_commit(struct bonding *bond)
  1921. {
  1922. struct slave *slave;
  1923. bond_for_each_slave(bond, slave) {
  1924. switch (slave->new_link) {
  1925. case BOND_LINK_NOCHANGE:
  1926. continue;
  1927. case BOND_LINK_UP:
  1928. slave->link = BOND_LINK_UP;
  1929. slave->jiffies = jiffies;
  1930. if (bond->params.mode == BOND_MODE_8023AD) {
  1931. /* prevent it from being the active one */
  1932. bond_set_backup_slave(slave);
  1933. } else if (bond->params.mode != BOND_MODE_ACTIVEBACKUP) {
  1934. /* make it immediately active */
  1935. bond_set_active_slave(slave);
  1936. } else if (slave != bond->primary_slave) {
  1937. /* prevent it from being the active one */
  1938. bond_set_backup_slave(slave);
  1939. }
  1940. pr_info("%s: link status definitely up for interface %s, %u Mbps %s duplex.\n",
  1941. bond->dev->name, slave->dev->name,
  1942. slave->speed == SPEED_UNKNOWN ? 0 : slave->speed,
  1943. slave->duplex ? "full" : "half");
  1944. /* notify ad that the link status has changed */
  1945. if (bond->params.mode == BOND_MODE_8023AD)
  1946. bond_3ad_handle_link_change(slave, BOND_LINK_UP);
  1947. if (bond_is_lb(bond))
  1948. bond_alb_handle_link_change(bond, slave,
  1949. BOND_LINK_UP);
  1950. if (!bond->curr_active_slave ||
  1951. (slave == bond->primary_slave))
  1952. goto do_failover;
  1953. continue;
  1954. case BOND_LINK_DOWN:
  1955. if (slave->link_failure_count < UINT_MAX)
  1956. slave->link_failure_count++;
  1957. slave->link = BOND_LINK_DOWN;
  1958. if (bond->params.mode == BOND_MODE_ACTIVEBACKUP ||
  1959. bond->params.mode == BOND_MODE_8023AD)
  1960. bond_set_slave_inactive_flags(slave);
  1961. pr_info("%s: link status definitely down for interface %s, disabling it\n",
  1962. bond->dev->name, slave->dev->name);
  1963. if (bond->params.mode == BOND_MODE_8023AD)
  1964. bond_3ad_handle_link_change(slave,
  1965. BOND_LINK_DOWN);
  1966. if (bond_is_lb(bond))
  1967. bond_alb_handle_link_change(bond, slave,
  1968. BOND_LINK_DOWN);
  1969. if (slave == bond->curr_active_slave)
  1970. goto do_failover;
  1971. continue;
  1972. default:
  1973. pr_err("%s: invalid new link %d on slave %s\n",
  1974. bond->dev->name, slave->new_link,
  1975. slave->dev->name);
  1976. slave->new_link = BOND_LINK_NOCHANGE;
  1977. continue;
  1978. }
  1979. do_failover:
  1980. ASSERT_RTNL();
  1981. block_netpoll_tx();
  1982. write_lock_bh(&bond->curr_slave_lock);
  1983. bond_select_active_slave(bond);
  1984. write_unlock_bh(&bond->curr_slave_lock);
  1985. unblock_netpoll_tx();
  1986. }
  1987. bond_set_carrier(bond);
  1988. }
  1989. /*
  1990. * bond_mii_monitor
  1991. *
  1992. * Really a wrapper that splits the mii monitor into two phases: an
  1993. * inspection, then (if inspection indicates something needs to be done)
  1994. * an acquisition of appropriate locks followed by a commit phase to
  1995. * implement whatever link state changes are indicated.
  1996. */
  1997. void bond_mii_monitor(struct work_struct *work)
  1998. {
  1999. struct bonding *bond = container_of(work, struct bonding,
  2000. mii_work.work);
  2001. bool should_notify_peers = false;
  2002. unsigned long delay;
  2003. read_lock(&bond->lock);
  2004. delay = msecs_to_jiffies(bond->params.miimon);
  2005. if (list_empty(&bond->slave_list))
  2006. goto re_arm;
  2007. should_notify_peers = bond_should_notify_peers(bond);
  2008. if (bond_miimon_inspect(bond)) {
  2009. read_unlock(&bond->lock);
  2010. /* Race avoidance with bond_close cancel of workqueue */
  2011. if (!rtnl_trylock()) {
  2012. read_lock(&bond->lock);
  2013. delay = 1;
  2014. should_notify_peers = false;
  2015. goto re_arm;
  2016. }
  2017. read_lock(&bond->lock);
  2018. bond_miimon_commit(bond);
  2019. read_unlock(&bond->lock);
  2020. rtnl_unlock(); /* might sleep, hold no other locks */
  2021. read_lock(&bond->lock);
  2022. }
  2023. re_arm:
  2024. if (bond->params.miimon)
  2025. queue_delayed_work(bond->wq, &bond->mii_work, delay);
  2026. read_unlock(&bond->lock);
  2027. if (should_notify_peers) {
  2028. if (!rtnl_trylock()) {
  2029. read_lock(&bond->lock);
  2030. bond->send_peer_notif++;
  2031. read_unlock(&bond->lock);
  2032. return;
  2033. }
  2034. call_netdevice_notifiers(NETDEV_NOTIFY_PEERS, bond->dev);
  2035. rtnl_unlock();
  2036. }
  2037. }
  2038. static int bond_has_this_ip(struct bonding *bond, __be32 ip)
  2039. {
  2040. struct vlan_entry *vlan;
  2041. struct net_device *vlan_dev;
  2042. if (ip == bond_confirm_addr(bond->dev, 0, ip))
  2043. return 1;
  2044. list_for_each_entry(vlan, &bond->vlan_list, vlan_list) {
  2045. rcu_read_lock();
  2046. vlan_dev = __vlan_find_dev_deep(bond->dev, htons(ETH_P_8021Q),
  2047. vlan->vlan_id);
  2048. rcu_read_unlock();
  2049. if (vlan_dev && ip == bond_confirm_addr(vlan_dev, 0, ip))
  2050. return 1;
  2051. }
  2052. return 0;
  2053. }
  2054. /*
  2055. * We go to the (large) trouble of VLAN tagging ARP frames because
  2056. * switches in VLAN mode (especially if ports are configured as
  2057. * "native" to a VLAN) might not pass non-tagged frames.
  2058. */
  2059. static void bond_arp_send(struct net_device *slave_dev, int arp_op, __be32 dest_ip, __be32 src_ip, unsigned short vlan_id)
  2060. {
  2061. struct sk_buff *skb;
  2062. pr_debug("arp %d on slave %s: dst %pI4 src %pI4 vid %d\n", arp_op,
  2063. slave_dev->name, &dest_ip, &src_ip, vlan_id);
  2064. skb = arp_create(arp_op, ETH_P_ARP, dest_ip, slave_dev, src_ip,
  2065. NULL, slave_dev->dev_addr, NULL);
  2066. if (!skb) {
  2067. pr_err("ARP packet allocation failed\n");
  2068. return;
  2069. }
  2070. if (vlan_id) {
  2071. skb = vlan_put_tag(skb, htons(ETH_P_8021Q), vlan_id);
  2072. if (!skb) {
  2073. pr_err("failed to insert VLAN tag\n");
  2074. return;
  2075. }
  2076. }
  2077. arp_xmit(skb);
  2078. }
  2079. static void bond_arp_send_all(struct bonding *bond, struct slave *slave)
  2080. {
  2081. int i, vlan_id;
  2082. __be32 *targets = bond->params.arp_targets;
  2083. struct vlan_entry *vlan;
  2084. struct net_device *vlan_dev = NULL;
  2085. struct rtable *rt;
  2086. for (i = 0; (i < BOND_MAX_ARP_TARGETS); i++) {
  2087. __be32 addr;
  2088. if (!targets[i])
  2089. break;
  2090. pr_debug("basa: target %pI4\n", &targets[i]);
  2091. if (!bond_vlan_used(bond)) {
  2092. pr_debug("basa: empty vlan: arp_send\n");
  2093. addr = bond_confirm_addr(bond->dev, targets[i], 0);
  2094. bond_arp_send(slave->dev, ARPOP_REQUEST, targets[i],
  2095. addr, 0);
  2096. continue;
  2097. }
  2098. /*
  2099. * If VLANs are configured, we do a route lookup to
  2100. * determine which VLAN interface would be used, so we
  2101. * can tag the ARP with the proper VLAN tag.
  2102. */
  2103. rt = ip_route_output(dev_net(bond->dev), targets[i], 0,
  2104. RTO_ONLINK, 0);
  2105. if (IS_ERR(rt)) {
  2106. if (net_ratelimit()) {
  2107. pr_warning("%s: no route to arp_ip_target %pI4\n",
  2108. bond->dev->name, &targets[i]);
  2109. }
  2110. continue;
  2111. }
  2112. /*
  2113. * This target is not on a VLAN
  2114. */
  2115. if (rt->dst.dev == bond->dev) {
  2116. ip_rt_put(rt);
  2117. pr_debug("basa: rtdev == bond->dev: arp_send\n");
  2118. addr = bond_confirm_addr(bond->dev, targets[i], 0);
  2119. bond_arp_send(slave->dev, ARPOP_REQUEST, targets[i],
  2120. addr, 0);
  2121. continue;
  2122. }
  2123. vlan_id = 0;
  2124. list_for_each_entry(vlan, &bond->vlan_list, vlan_list) {
  2125. rcu_read_lock();
  2126. vlan_dev = __vlan_find_dev_deep(bond->dev,
  2127. htons(ETH_P_8021Q),
  2128. vlan->vlan_id);
  2129. rcu_read_unlock();
  2130. if (vlan_dev == rt->dst.dev) {
  2131. vlan_id = vlan->vlan_id;
  2132. pr_debug("basa: vlan match on %s %d\n",
  2133. vlan_dev->name, vlan_id);
  2134. break;
  2135. }
  2136. }
  2137. if (vlan_id && vlan_dev) {
  2138. ip_rt_put(rt);
  2139. addr = bond_confirm_addr(vlan_dev, targets[i], 0);
  2140. bond_arp_send(slave->dev, ARPOP_REQUEST, targets[i],
  2141. addr, vlan_id);
  2142. continue;
  2143. }
  2144. if (net_ratelimit()) {
  2145. pr_warning("%s: no path to arp_ip_target %pI4 via rt.dev %s\n",
  2146. bond->dev->name, &targets[i],
  2147. rt->dst.dev ? rt->dst.dev->name : "NULL");
  2148. }
  2149. ip_rt_put(rt);
  2150. }
  2151. }
  2152. static void bond_validate_arp(struct bonding *bond, struct slave *slave, __be32 sip, __be32 tip)
  2153. {
  2154. int i;
  2155. if (!sip || !bond_has_this_ip(bond, tip)) {
  2156. pr_debug("bva: sip %pI4 tip %pI4 not found\n", &sip, &tip);
  2157. return;
  2158. }
  2159. i = bond_get_targets_ip(bond->params.arp_targets, sip);
  2160. if (i == -1) {
  2161. pr_debug("bva: sip %pI4 not found in targets\n", &sip);
  2162. return;
  2163. }
  2164. slave->last_arp_rx = jiffies;
  2165. slave->target_last_arp_rx[i] = jiffies;
  2166. }
  2167. static int bond_arp_rcv(const struct sk_buff *skb, struct bonding *bond,
  2168. struct slave *slave)
  2169. {
  2170. struct arphdr *arp = (struct arphdr *)skb->data;
  2171. unsigned char *arp_ptr;
  2172. __be32 sip, tip;
  2173. int alen;
  2174. if (skb->protocol != __cpu_to_be16(ETH_P_ARP))
  2175. return RX_HANDLER_ANOTHER;
  2176. read_lock(&bond->lock);
  2177. if (!slave_do_arp_validate(bond, slave))
  2178. goto out_unlock;
  2179. alen = arp_hdr_len(bond->dev);
  2180. pr_debug("bond_arp_rcv: bond %s skb->dev %s\n",
  2181. bond->dev->name, skb->dev->name);
  2182. if (alen > skb_headlen(skb)) {
  2183. arp = kmalloc(alen, GFP_ATOMIC);
  2184. if (!arp)
  2185. goto out_unlock;
  2186. if (skb_copy_bits(skb, 0, arp, alen) < 0)
  2187. goto out_unlock;
  2188. }
  2189. if (arp->ar_hln != bond->dev->addr_len ||
  2190. skb->pkt_type == PACKET_OTHERHOST ||
  2191. skb->pkt_type == PACKET_LOOPBACK ||
  2192. arp->ar_hrd != htons(ARPHRD_ETHER) ||
  2193. arp->ar_pro != htons(ETH_P_IP) ||
  2194. arp->ar_pln != 4)
  2195. goto out_unlock;
  2196. arp_ptr = (unsigned char *)(arp + 1);
  2197. arp_ptr += bond->dev->addr_len;
  2198. memcpy(&sip, arp_ptr, 4);
  2199. arp_ptr += 4 + bond->dev->addr_len;
  2200. memcpy(&tip, arp_ptr, 4);
  2201. pr_debug("bond_arp_rcv: %s %s/%d av %d sv %d sip %pI4 tip %pI4\n",
  2202. bond->dev->name, slave->dev->name, bond_slave_state(slave),
  2203. bond->params.arp_validate, slave_do_arp_validate(bond, slave),
  2204. &sip, &tip);
  2205. /*
  2206. * Backup slaves won't see the ARP reply, but do come through
  2207. * here for each ARP probe (so we swap the sip/tip to validate
  2208. * the probe). In a "redundant switch, common router" type of
  2209. * configuration, the ARP probe will (hopefully) travel from
  2210. * the active, through one switch, the router, then the other
  2211. * switch before reaching the backup.
  2212. *
  2213. * We 'trust' the arp requests if there is an active slave and
  2214. * it received valid arp reply(s) after it became active. This
  2215. * is done to avoid endless looping when we can't reach the
  2216. * arp_ip_target and fool ourselves with our own arp requests.
  2217. */
  2218. if (bond_is_active_slave(slave))
  2219. bond_validate_arp(bond, slave, sip, tip);
  2220. else if (bond->curr_active_slave &&
  2221. time_after(slave_last_rx(bond, bond->curr_active_slave),
  2222. bond->curr_active_slave->jiffies))
  2223. bond_validate_arp(bond, slave, tip, sip);
  2224. out_unlock:
  2225. read_unlock(&bond->lock);
  2226. if (arp != (struct arphdr *)skb->data)
  2227. kfree(arp);
  2228. return RX_HANDLER_ANOTHER;
  2229. }
  2230. /*
  2231. * this function is called regularly to monitor each slave's link
  2232. * ensuring that traffic is being sent and received when arp monitoring
  2233. * is used in load-balancing mode. if the adapter has been dormant, then an
  2234. * arp is transmitted to generate traffic. see activebackup_arp_monitor for
  2235. * arp monitoring in active backup mode.
  2236. */
  2237. void bond_loadbalance_arp_mon(struct work_struct *work)
  2238. {
  2239. struct bonding *bond = container_of(work, struct bonding,
  2240. arp_work.work);
  2241. struct slave *slave, *oldcurrent;
  2242. int do_failover = 0;
  2243. int delta_in_ticks, extra_ticks;
  2244. read_lock(&bond->lock);
  2245. delta_in_ticks = msecs_to_jiffies(bond->params.arp_interval);
  2246. extra_ticks = delta_in_ticks / 2;
  2247. if (list_empty(&bond->slave_list))
  2248. goto re_arm;
  2249. oldcurrent = bond->curr_active_slave;
  2250. /* see if any of the previous devices are up now (i.e. they have
  2251. * xmt and rcv traffic). the curr_active_slave does not come into
  2252. * the picture unless it is null. also, slave->jiffies is not needed
  2253. * here because we send an arp on each slave and give a slave as
  2254. * long as it needs to get the tx/rx within the delta.
  2255. * TODO: what about up/down delay in arp mode? it wasn't here before
  2256. * so it can wait
  2257. */
  2258. bond_for_each_slave(bond, slave) {
  2259. unsigned long trans_start = dev_trans_start(slave->dev);
  2260. if (slave->link != BOND_LINK_UP) {
  2261. if (time_in_range(jiffies,
  2262. trans_start - delta_in_ticks,
  2263. trans_start + delta_in_ticks + extra_ticks) &&
  2264. time_in_range(jiffies,
  2265. slave->dev->last_rx - delta_in_ticks,
  2266. slave->dev->last_rx + delta_in_ticks + extra_ticks)) {
  2267. slave->link = BOND_LINK_UP;
  2268. bond_set_active_slave(slave);
  2269. /* primary_slave has no meaning in round-robin
  2270. * mode. the window of a slave being up and
  2271. * curr_active_slave being null after enslaving
  2272. * is closed.
  2273. */
  2274. if (!oldcurrent) {
  2275. pr_info("%s: link status definitely up for interface %s, ",
  2276. bond->dev->name,
  2277. slave->dev->name);
  2278. do_failover = 1;
  2279. } else {
  2280. pr_info("%s: interface %s is now up\n",
  2281. bond->dev->name,
  2282. slave->dev->name);
  2283. }
  2284. }
  2285. } else {
  2286. /* slave->link == BOND_LINK_UP */
  2287. /* not all switches will respond to an arp request
  2288. * when the source ip is 0, so don't take the link down
  2289. * if we don't know our ip yet
  2290. */
  2291. if (!time_in_range(jiffies,
  2292. trans_start - delta_in_ticks,
  2293. trans_start + 2 * delta_in_ticks + extra_ticks) ||
  2294. !time_in_range(jiffies,
  2295. slave->dev->last_rx - delta_in_ticks,
  2296. slave->dev->last_rx + 2 * delta_in_ticks + extra_ticks)) {
  2297. slave->link = BOND_LINK_DOWN;
  2298. bond_set_backup_slave(slave);
  2299. if (slave->link_failure_count < UINT_MAX)
  2300. slave->link_failure_count++;
  2301. pr_info("%s: interface %s is now down.\n",
  2302. bond->dev->name,
  2303. slave->dev->name);
  2304. if (slave == oldcurrent)
  2305. do_failover = 1;
  2306. }
  2307. }
  2308. /* note: if switch is in round-robin mode, all links
  2309. * must tx arp to ensure all links rx an arp - otherwise
  2310. * links may oscillate or not come up at all; if switch is
  2311. * in something like xor mode, there is nothing we can
  2312. * do - all replies will be rx'ed on same link causing slaves
  2313. * to be unstable during low/no traffic periods
  2314. */
  2315. if (IS_UP(slave->dev))
  2316. bond_arp_send_all(bond, slave);
  2317. }
  2318. if (do_failover) {
  2319. block_netpoll_tx();
  2320. write_lock_bh(&bond->curr_slave_lock);
  2321. bond_select_active_slave(bond);
  2322. write_unlock_bh(&bond->curr_slave_lock);
  2323. unblock_netpoll_tx();
  2324. }
  2325. re_arm:
  2326. if (bond->params.arp_interval)
  2327. queue_delayed_work(bond->wq, &bond->arp_work, delta_in_ticks);
  2328. read_unlock(&bond->lock);
  2329. }
  2330. /*
  2331. * Called to inspect slaves for active-backup mode ARP monitor link state
  2332. * changes. Sets new_link in slaves to specify what action should take
  2333. * place for the slave. Returns 0 if no changes are found, >0 if changes
  2334. * to link states must be committed.
  2335. *
  2336. * Called with bond->lock held for read.
  2337. */
  2338. static int bond_ab_arp_inspect(struct bonding *bond, int delta_in_ticks)
  2339. {
  2340. unsigned long trans_start;
  2341. struct slave *slave;
  2342. int extra_ticks;
  2343. int commit = 0;
  2344. /* All the time comparisons below need some extra time. Otherwise, on
  2345. * fast networks the ARP probe/reply may arrive within the same jiffy
  2346. * as it was sent. Then, the next time the ARP monitor is run, one
  2347. * arp_interval will already have passed in the comparisons.
  2348. */
  2349. extra_ticks = delta_in_ticks / 2;
  2350. bond_for_each_slave(bond, slave) {
  2351. slave->new_link = BOND_LINK_NOCHANGE;
  2352. if (slave->link != BOND_LINK_UP) {
  2353. if (time_in_range(jiffies,
  2354. slave_last_rx(bond, slave) - delta_in_ticks,
  2355. slave_last_rx(bond, slave) + delta_in_ticks + extra_ticks)) {
  2356. slave->new_link = BOND_LINK_UP;
  2357. commit++;
  2358. }
  2359. continue;
  2360. }
  2361. /*
  2362. * Give slaves 2*delta after being enslaved or made
  2363. * active. This avoids bouncing, as the last receive
  2364. * times need a full ARP monitor cycle to be updated.
  2365. */
  2366. if (time_in_range(jiffies,
  2367. slave->jiffies - delta_in_ticks,
  2368. slave->jiffies + 2 * delta_in_ticks + extra_ticks))
  2369. continue;
  2370. /*
  2371. * Backup slave is down if:
  2372. * - No current_arp_slave AND
  2373. * - more than 3*delta since last receive AND
  2374. * - the bond has an IP address
  2375. *
  2376. * Note: a non-null current_arp_slave indicates
  2377. * the curr_active_slave went down and we are
  2378. * searching for a new one; under this condition
  2379. * we only take the curr_active_slave down - this
  2380. * gives each slave a chance to tx/rx traffic
  2381. * before being taken out
  2382. */
  2383. if (!bond_is_active_slave(slave) &&
  2384. !bond->current_arp_slave &&
  2385. !time_in_range(jiffies,
  2386. slave_last_rx(bond, slave) - delta_in_ticks,
  2387. slave_last_rx(bond, slave) + 3 * delta_in_ticks + extra_ticks)) {
  2388. slave->new_link = BOND_LINK_DOWN;
  2389. commit++;
  2390. }
  2391. /*
  2392. * Active slave is down if:
  2393. * - more than 2*delta since transmitting OR
  2394. * - (more than 2*delta since receive AND
  2395. * the bond has an IP address)
  2396. */
  2397. trans_start = dev_trans_start(slave->dev);
  2398. if (bond_is_active_slave(slave) &&
  2399. (!time_in_range(jiffies,
  2400. trans_start - delta_in_ticks,
  2401. trans_start + 2 * delta_in_ticks + extra_ticks) ||
  2402. !time_in_range(jiffies,
  2403. slave_last_rx(bond, slave) - delta_in_ticks,
  2404. slave_last_rx(bond, slave) + 2 * delta_in_ticks + extra_ticks))) {
  2405. slave->new_link = BOND_LINK_DOWN;
  2406. commit++;
  2407. }
  2408. }
  2409. return commit;
  2410. }
  2411. /*
  2412. * Called to commit link state changes noted by inspection step of
  2413. * active-backup mode ARP monitor.
  2414. *
  2415. * Called with RTNL and bond->lock for read.
  2416. */
  2417. static void bond_ab_arp_commit(struct bonding *bond, int delta_in_ticks)
  2418. {
  2419. unsigned long trans_start;
  2420. struct slave *slave;
  2421. bond_for_each_slave(bond, slave) {
  2422. switch (slave->new_link) {
  2423. case BOND_LINK_NOCHANGE:
  2424. continue;
  2425. case BOND_LINK_UP:
  2426. trans_start = dev_trans_start(slave->dev);
  2427. if ((!bond->curr_active_slave &&
  2428. time_in_range(jiffies,
  2429. trans_start - delta_in_ticks,
  2430. trans_start + delta_in_ticks + delta_in_ticks / 2)) ||
  2431. bond->curr_active_slave != slave) {
  2432. slave->link = BOND_LINK_UP;
  2433. if (bond->current_arp_slave) {
  2434. bond_set_slave_inactive_flags(
  2435. bond->current_arp_slave);
  2436. bond->current_arp_slave = NULL;
  2437. }
  2438. pr_info("%s: link status definitely up for interface %s.\n",
  2439. bond->dev->name, slave->dev->name);
  2440. if (!bond->curr_active_slave ||
  2441. (slave == bond->primary_slave))
  2442. goto do_failover;
  2443. }
  2444. continue;
  2445. case BOND_LINK_DOWN:
  2446. if (slave->link_failure_count < UINT_MAX)
  2447. slave->link_failure_count++;
  2448. slave->link = BOND_LINK_DOWN;
  2449. bond_set_slave_inactive_flags(slave);
  2450. pr_info("%s: link status definitely down for interface %s, disabling it\n",
  2451. bond->dev->name, slave->dev->name);
  2452. if (slave == bond->curr_active_slave) {
  2453. bond->current_arp_slave = NULL;
  2454. goto do_failover;
  2455. }
  2456. continue;
  2457. default:
  2458. pr_err("%s: impossible: new_link %d on slave %s\n",
  2459. bond->dev->name, slave->new_link,
  2460. slave->dev->name);
  2461. continue;
  2462. }
  2463. do_failover:
  2464. ASSERT_RTNL();
  2465. block_netpoll_tx();
  2466. write_lock_bh(&bond->curr_slave_lock);
  2467. bond_select_active_slave(bond);
  2468. write_unlock_bh(&bond->curr_slave_lock);
  2469. unblock_netpoll_tx();
  2470. }
  2471. bond_set_carrier(bond);
  2472. }
  2473. /*
  2474. * Send ARP probes for active-backup mode ARP monitor.
  2475. *
  2476. * Called with bond->lock held for read.
  2477. */
  2478. static void bond_ab_arp_probe(struct bonding *bond)
  2479. {
  2480. struct slave *slave, *next_slave;
  2481. int i;
  2482. read_lock(&bond->curr_slave_lock);
  2483. if (bond->current_arp_slave && bond->curr_active_slave)
  2484. pr_info("PROBE: c_arp %s && cas %s BAD\n",
  2485. bond->current_arp_slave->dev->name,
  2486. bond->curr_active_slave->dev->name);
  2487. if (bond->curr_active_slave) {
  2488. bond_arp_send_all(bond, bond->curr_active_slave);
  2489. read_unlock(&bond->curr_slave_lock);
  2490. return;
  2491. }
  2492. read_unlock(&bond->curr_slave_lock);
  2493. /* if we don't have a curr_active_slave, search for the next available
  2494. * backup slave from the current_arp_slave and make it the candidate
  2495. * for becoming the curr_active_slave
  2496. */
  2497. if (!bond->current_arp_slave) {
  2498. bond->current_arp_slave = bond_first_slave(bond);
  2499. if (!bond->current_arp_slave)
  2500. return;
  2501. }
  2502. bond_set_slave_inactive_flags(bond->current_arp_slave);
  2503. /* search for next candidate */
  2504. next_slave = bond_next_slave(bond, bond->current_arp_slave);
  2505. bond_for_each_slave_from(bond, slave, i, next_slave) {
  2506. if (IS_UP(slave->dev)) {
  2507. slave->link = BOND_LINK_BACK;
  2508. bond_set_slave_active_flags(slave);
  2509. bond_arp_send_all(bond, slave);
  2510. slave->jiffies = jiffies;
  2511. bond->current_arp_slave = slave;
  2512. break;
  2513. }
  2514. /* if the link state is up at this point, we
  2515. * mark it down - this can happen if we have
  2516. * simultaneous link failures and
  2517. * reselect_active_interface doesn't make this
  2518. * one the current slave so it is still marked
  2519. * up when it is actually down
  2520. */
  2521. if (slave->link == BOND_LINK_UP) {
  2522. slave->link = BOND_LINK_DOWN;
  2523. if (slave->link_failure_count < UINT_MAX)
  2524. slave->link_failure_count++;
  2525. bond_set_slave_inactive_flags(slave);
  2526. pr_info("%s: backup interface %s is now down.\n",
  2527. bond->dev->name, slave->dev->name);
  2528. }
  2529. }
  2530. }
  2531. void bond_activebackup_arp_mon(struct work_struct *work)
  2532. {
  2533. struct bonding *bond = container_of(work, struct bonding,
  2534. arp_work.work);
  2535. bool should_notify_peers = false;
  2536. int delta_in_ticks;
  2537. read_lock(&bond->lock);
  2538. delta_in_ticks = msecs_to_jiffies(bond->params.arp_interval);
  2539. if (list_empty(&bond->slave_list))
  2540. goto re_arm;
  2541. should_notify_peers = bond_should_notify_peers(bond);
  2542. if (bond_ab_arp_inspect(bond, delta_in_ticks)) {
  2543. read_unlock(&bond->lock);
  2544. /* Race avoidance with bond_close flush of workqueue */
  2545. if (!rtnl_trylock()) {
  2546. read_lock(&bond->lock);
  2547. delta_in_ticks = 1;
  2548. should_notify_peers = false;
  2549. goto re_arm;
  2550. }
  2551. read_lock(&bond->lock);
  2552. bond_ab_arp_commit(bond, delta_in_ticks);
  2553. read_unlock(&bond->lock);
  2554. rtnl_unlock();
  2555. read_lock(&bond->lock);
  2556. }
  2557. bond_ab_arp_probe(bond);
  2558. re_arm:
  2559. if (bond->params.arp_interval)
  2560. queue_delayed_work(bond->wq, &bond->arp_work, delta_in_ticks);
  2561. read_unlock(&bond->lock);
  2562. if (should_notify_peers) {
  2563. if (!rtnl_trylock()) {
  2564. read_lock(&bond->lock);
  2565. bond->send_peer_notif++;
  2566. read_unlock(&bond->lock);
  2567. return;
  2568. }
  2569. call_netdevice_notifiers(NETDEV_NOTIFY_PEERS, bond->dev);
  2570. rtnl_unlock();
  2571. }
  2572. }
  2573. /*-------------------------- netdev event handling --------------------------*/
  2574. /*
  2575. * Change device name
  2576. */
  2577. static int bond_event_changename(struct bonding *bond)
  2578. {
  2579. bond_remove_proc_entry(bond);
  2580. bond_create_proc_entry(bond);
  2581. bond_debug_reregister(bond);
  2582. return NOTIFY_DONE;
  2583. }
  2584. static int bond_master_netdev_event(unsigned long event,
  2585. struct net_device *bond_dev)
  2586. {
  2587. struct bonding *event_bond = netdev_priv(bond_dev);
  2588. switch (event) {
  2589. case NETDEV_CHANGENAME:
  2590. return bond_event_changename(event_bond);
  2591. case NETDEV_UNREGISTER:
  2592. bond_remove_proc_entry(event_bond);
  2593. break;
  2594. case NETDEV_REGISTER:
  2595. bond_create_proc_entry(event_bond);
  2596. break;
  2597. default:
  2598. break;
  2599. }
  2600. return NOTIFY_DONE;
  2601. }
  2602. static int bond_slave_netdev_event(unsigned long event,
  2603. struct net_device *slave_dev)
  2604. {
  2605. struct slave *slave = bond_slave_get_rtnl(slave_dev);
  2606. struct bonding *bond;
  2607. struct net_device *bond_dev;
  2608. u32 old_speed;
  2609. u8 old_duplex;
  2610. /* A netdev event can be generated while enslaving a device
  2611. * before netdev_rx_handler_register is called in which case
  2612. * slave will be NULL
  2613. */
  2614. if (!slave)
  2615. return NOTIFY_DONE;
  2616. bond_dev = slave->bond->dev;
  2617. bond = slave->bond;
  2618. switch (event) {
  2619. case NETDEV_UNREGISTER:
  2620. if (bond_dev->type != ARPHRD_ETHER)
  2621. bond_release_and_destroy(bond_dev, slave_dev);
  2622. else
  2623. bond_release(bond_dev, slave_dev);
  2624. break;
  2625. case NETDEV_UP:
  2626. case NETDEV_CHANGE:
  2627. old_speed = slave->speed;
  2628. old_duplex = slave->duplex;
  2629. bond_update_speed_duplex(slave);
  2630. if (bond->params.mode == BOND_MODE_8023AD) {
  2631. if (old_speed != slave->speed)
  2632. bond_3ad_adapter_speed_changed(slave);
  2633. if (old_duplex != slave->duplex)
  2634. bond_3ad_adapter_duplex_changed(slave);
  2635. }
  2636. break;
  2637. case NETDEV_DOWN:
  2638. /*
  2639. * ... Or is it this?
  2640. */
  2641. break;
  2642. case NETDEV_CHANGEMTU:
  2643. /*
  2644. * TODO: Should slaves be allowed to
  2645. * independently alter their MTU? For
  2646. * an active-backup bond, slaves need
  2647. * not be the same type of device, so
  2648. * MTUs may vary. For other modes,
  2649. * slaves arguably should have the
  2650. * same MTUs. To do this, we'd need to
  2651. * take over the slave's change_mtu
  2652. * function for the duration of their
  2653. * servitude.
  2654. */
  2655. break;
  2656. case NETDEV_CHANGENAME:
  2657. /*
  2658. * TODO: handle changing the primary's name
  2659. */
  2660. break;
  2661. case NETDEV_FEAT_CHANGE:
  2662. bond_compute_features(bond);
  2663. break;
  2664. case NETDEV_RESEND_IGMP:
  2665. /* Propagate to master device */
  2666. call_netdevice_notifiers(event, slave->bond->dev);
  2667. break;
  2668. default:
  2669. break;
  2670. }
  2671. return NOTIFY_DONE;
  2672. }
  2673. /*
  2674. * bond_netdev_event: handle netdev notifier chain events.
  2675. *
  2676. * This function receives events for the netdev chain. The caller (an
  2677. * ioctl handler calling blocking_notifier_call_chain) holds the necessary
  2678. * locks for us to safely manipulate the slave devices (RTNL lock,
  2679. * dev_probe_lock).
  2680. */
  2681. static int bond_netdev_event(struct notifier_block *this,
  2682. unsigned long event, void *ptr)
  2683. {
  2684. struct net_device *event_dev = netdev_notifier_info_to_dev(ptr);
  2685. pr_debug("event_dev: %s, event: %lx\n",
  2686. event_dev ? event_dev->name : "None",
  2687. event);
  2688. if (!(event_dev->priv_flags & IFF_BONDING))
  2689. return NOTIFY_DONE;
  2690. if (event_dev->flags & IFF_MASTER) {
  2691. pr_debug("IFF_MASTER\n");
  2692. return bond_master_netdev_event(event, event_dev);
  2693. }
  2694. if (event_dev->flags & IFF_SLAVE) {
  2695. pr_debug("IFF_SLAVE\n");
  2696. return bond_slave_netdev_event(event, event_dev);
  2697. }
  2698. return NOTIFY_DONE;
  2699. }
  2700. static struct notifier_block bond_netdev_notifier = {
  2701. .notifier_call = bond_netdev_event,
  2702. };
  2703. /*---------------------------- Hashing Policies -----------------------------*/
  2704. /*
  2705. * Hash for the output device based upon layer 2 data
  2706. */
  2707. static int bond_xmit_hash_policy_l2(struct sk_buff *skb, int count)
  2708. {
  2709. struct ethhdr *data = (struct ethhdr *)skb->data;
  2710. if (skb_headlen(skb) >= offsetof(struct ethhdr, h_proto))
  2711. return (data->h_dest[5] ^ data->h_source[5]) % count;
  2712. return 0;
  2713. }
  2714. /*
  2715. * Hash for the output device based upon layer 2 and layer 3 data. If
  2716. * the packet is not IP, fall back on bond_xmit_hash_policy_l2()
  2717. */
  2718. static int bond_xmit_hash_policy_l23(struct sk_buff *skb, int count)
  2719. {
  2720. const struct ethhdr *data;
  2721. const struct iphdr *iph;
  2722. const struct ipv6hdr *ipv6h;
  2723. u32 v6hash;
  2724. const __be32 *s, *d;
  2725. if (skb->protocol == htons(ETH_P_IP) &&
  2726. pskb_network_may_pull(skb, sizeof(*iph))) {
  2727. iph = ip_hdr(skb);
  2728. data = (struct ethhdr *)skb->data;
  2729. return ((ntohl(iph->saddr ^ iph->daddr) & 0xffff) ^
  2730. (data->h_dest[5] ^ data->h_source[5])) % count;
  2731. } else if (skb->protocol == htons(ETH_P_IPV6) &&
  2732. pskb_network_may_pull(skb, sizeof(*ipv6h))) {
  2733. ipv6h = ipv6_hdr(skb);
  2734. data = (struct ethhdr *)skb->data;
  2735. s = &ipv6h->saddr.s6_addr32[0];
  2736. d = &ipv6h->daddr.s6_addr32[0];
  2737. v6hash = (s[1] ^ d[1]) ^ (s[2] ^ d[2]) ^ (s[3] ^ d[3]);
  2738. v6hash ^= (v6hash >> 24) ^ (v6hash >> 16) ^ (v6hash >> 8);
  2739. return (v6hash ^ data->h_dest[5] ^ data->h_source[5]) % count;
  2740. }
  2741. return bond_xmit_hash_policy_l2(skb, count);
  2742. }
  2743. /*
  2744. * Hash for the output device based upon layer 3 and layer 4 data. If
  2745. * the packet is a frag or not TCP or UDP, just use layer 3 data. If it is
  2746. * altogether not IP, fall back on bond_xmit_hash_policy_l2()
  2747. */
  2748. static int bond_xmit_hash_policy_l34(struct sk_buff *skb, int count)
  2749. {
  2750. u32 layer4_xor = 0;
  2751. const struct iphdr *iph;
  2752. const struct ipv6hdr *ipv6h;
  2753. const __be32 *s, *d;
  2754. const __be16 *l4 = NULL;
  2755. __be16 _l4[2];
  2756. int noff = skb_network_offset(skb);
  2757. int poff;
  2758. if (skb->protocol == htons(ETH_P_IP) &&
  2759. pskb_may_pull(skb, noff + sizeof(*iph))) {
  2760. iph = ip_hdr(skb);
  2761. poff = proto_ports_offset(iph->protocol);
  2762. if (!ip_is_fragment(iph) && poff >= 0) {
  2763. l4 = skb_header_pointer(skb, noff + (iph->ihl << 2) + poff,
  2764. sizeof(_l4), &_l4);
  2765. if (l4)
  2766. layer4_xor = ntohs(l4[0] ^ l4[1]);
  2767. }
  2768. return (layer4_xor ^
  2769. ((ntohl(iph->saddr ^ iph->daddr)) & 0xffff)) % count;
  2770. } else if (skb->protocol == htons(ETH_P_IPV6) &&
  2771. pskb_may_pull(skb, noff + sizeof(*ipv6h))) {
  2772. ipv6h = ipv6_hdr(skb);
  2773. poff = proto_ports_offset(ipv6h->nexthdr);
  2774. if (poff >= 0) {
  2775. l4 = skb_header_pointer(skb, noff + sizeof(*ipv6h) + poff,
  2776. sizeof(_l4), &_l4);
  2777. if (l4)
  2778. layer4_xor = ntohs(l4[0] ^ l4[1]);
  2779. }
  2780. s = &ipv6h->saddr.s6_addr32[0];
  2781. d = &ipv6h->daddr.s6_addr32[0];
  2782. layer4_xor ^= (s[1] ^ d[1]) ^ (s[2] ^ d[2]) ^ (s[3] ^ d[3]);
  2783. layer4_xor ^= (layer4_xor >> 24) ^ (layer4_xor >> 16) ^
  2784. (layer4_xor >> 8);
  2785. return layer4_xor % count;
  2786. }
  2787. return bond_xmit_hash_policy_l2(skb, count);
  2788. }
  2789. /*-------------------------- Device entry points ----------------------------*/
  2790. static void bond_work_init_all(struct bonding *bond)
  2791. {
  2792. INIT_DELAYED_WORK(&bond->mcast_work,
  2793. bond_resend_igmp_join_requests_delayed);
  2794. INIT_DELAYED_WORK(&bond->alb_work, bond_alb_monitor);
  2795. INIT_DELAYED_WORK(&bond->mii_work, bond_mii_monitor);
  2796. if (bond->params.mode == BOND_MODE_ACTIVEBACKUP)
  2797. INIT_DELAYED_WORK(&bond->arp_work, bond_activebackup_arp_mon);
  2798. else
  2799. INIT_DELAYED_WORK(&bond->arp_work, bond_loadbalance_arp_mon);
  2800. INIT_DELAYED_WORK(&bond->ad_work, bond_3ad_state_machine_handler);
  2801. }
  2802. static void bond_work_cancel_all(struct bonding *bond)
  2803. {
  2804. cancel_delayed_work_sync(&bond->mii_work);
  2805. cancel_delayed_work_sync(&bond->arp_work);
  2806. cancel_delayed_work_sync(&bond->alb_work);
  2807. cancel_delayed_work_sync(&bond->ad_work);
  2808. cancel_delayed_work_sync(&bond->mcast_work);
  2809. }
  2810. static int bond_open(struct net_device *bond_dev)
  2811. {
  2812. struct bonding *bond = netdev_priv(bond_dev);
  2813. struct slave *slave;
  2814. /* reset slave->backup and slave->inactive */
  2815. read_lock(&bond->lock);
  2816. if (!list_empty(&bond->slave_list)) {
  2817. read_lock(&bond->curr_slave_lock);
  2818. bond_for_each_slave(bond, slave) {
  2819. if ((bond->params.mode == BOND_MODE_ACTIVEBACKUP)
  2820. && (slave != bond->curr_active_slave)) {
  2821. bond_set_slave_inactive_flags(slave);
  2822. } else {
  2823. bond_set_slave_active_flags(slave);
  2824. }
  2825. }
  2826. read_unlock(&bond->curr_slave_lock);
  2827. }
  2828. read_unlock(&bond->lock);
  2829. bond_work_init_all(bond);
  2830. if (bond_is_lb(bond)) {
  2831. /* bond_alb_initialize must be called before the timer
  2832. * is started.
  2833. */
  2834. if (bond_alb_initialize(bond, (bond->params.mode == BOND_MODE_ALB)))
  2835. return -ENOMEM;
  2836. queue_delayed_work(bond->wq, &bond->alb_work, 0);
  2837. }
  2838. if (bond->params.miimon) /* link check interval, in milliseconds. */
  2839. queue_delayed_work(bond->wq, &bond->mii_work, 0);
  2840. if (bond->params.arp_interval) { /* arp interval, in milliseconds. */
  2841. queue_delayed_work(bond->wq, &bond->arp_work, 0);
  2842. if (bond->params.arp_validate)
  2843. bond->recv_probe = bond_arp_rcv;
  2844. }
  2845. if (bond->params.mode == BOND_MODE_8023AD) {
  2846. queue_delayed_work(bond->wq, &bond->ad_work, 0);
  2847. /* register to receive LACPDUs */
  2848. bond->recv_probe = bond_3ad_lacpdu_recv;
  2849. bond_3ad_initiate_agg_selection(bond, 1);
  2850. }
  2851. return 0;
  2852. }
  2853. static int bond_close(struct net_device *bond_dev)
  2854. {
  2855. struct bonding *bond = netdev_priv(bond_dev);
  2856. write_lock_bh(&bond->lock);
  2857. bond->send_peer_notif = 0;
  2858. write_unlock_bh(&bond->lock);
  2859. bond_work_cancel_all(bond);
  2860. if (bond_is_lb(bond)) {
  2861. /* Must be called only after all
  2862. * slaves have been released
  2863. */
  2864. bond_alb_deinitialize(bond);
  2865. }
  2866. bond->recv_probe = NULL;
  2867. return 0;
  2868. }
  2869. static struct rtnl_link_stats64 *bond_get_stats(struct net_device *bond_dev,
  2870. struct rtnl_link_stats64 *stats)
  2871. {
  2872. struct bonding *bond = netdev_priv(bond_dev);
  2873. struct rtnl_link_stats64 temp;
  2874. struct slave *slave;
  2875. memset(stats, 0, sizeof(*stats));
  2876. read_lock_bh(&bond->lock);
  2877. bond_for_each_slave(bond, slave) {
  2878. const struct rtnl_link_stats64 *sstats =
  2879. dev_get_stats(slave->dev, &temp);
  2880. stats->rx_packets += sstats->rx_packets;
  2881. stats->rx_bytes += sstats->rx_bytes;
  2882. stats->rx_errors += sstats->rx_errors;
  2883. stats->rx_dropped += sstats->rx_dropped;
  2884. stats->tx_packets += sstats->tx_packets;
  2885. stats->tx_bytes += sstats->tx_bytes;
  2886. stats->tx_errors += sstats->tx_errors;
  2887. stats->tx_dropped += sstats->tx_dropped;
  2888. stats->multicast += sstats->multicast;
  2889. stats->collisions += sstats->collisions;
  2890. stats->rx_length_errors += sstats->rx_length_errors;
  2891. stats->rx_over_errors += sstats->rx_over_errors;
  2892. stats->rx_crc_errors += sstats->rx_crc_errors;
  2893. stats->rx_frame_errors += sstats->rx_frame_errors;
  2894. stats->rx_fifo_errors += sstats->rx_fifo_errors;
  2895. stats->rx_missed_errors += sstats->rx_missed_errors;
  2896. stats->tx_aborted_errors += sstats->tx_aborted_errors;
  2897. stats->tx_carrier_errors += sstats->tx_carrier_errors;
  2898. stats->tx_fifo_errors += sstats->tx_fifo_errors;
  2899. stats->tx_heartbeat_errors += sstats->tx_heartbeat_errors;
  2900. stats->tx_window_errors += sstats->tx_window_errors;
  2901. }
  2902. read_unlock_bh(&bond->lock);
  2903. return stats;
  2904. }
  2905. static int bond_do_ioctl(struct net_device *bond_dev, struct ifreq *ifr, int cmd)
  2906. {
  2907. struct net_device *slave_dev = NULL;
  2908. struct ifbond k_binfo;
  2909. struct ifbond __user *u_binfo = NULL;
  2910. struct ifslave k_sinfo;
  2911. struct ifslave __user *u_sinfo = NULL;
  2912. struct mii_ioctl_data *mii = NULL;
  2913. struct net *net;
  2914. int res = 0;
  2915. pr_debug("bond_ioctl: master=%s, cmd=%d\n", bond_dev->name, cmd);
  2916. switch (cmd) {
  2917. case SIOCGMIIPHY:
  2918. mii = if_mii(ifr);
  2919. if (!mii)
  2920. return -EINVAL;
  2921. mii->phy_id = 0;
  2922. /* Fall Through */
  2923. case SIOCGMIIREG:
  2924. /*
  2925. * We do this again just in case we were called by SIOCGMIIREG
  2926. * instead of SIOCGMIIPHY.
  2927. */
  2928. mii = if_mii(ifr);
  2929. if (!mii)
  2930. return -EINVAL;
  2931. if (mii->reg_num == 1) {
  2932. struct bonding *bond = netdev_priv(bond_dev);
  2933. mii->val_out = 0;
  2934. read_lock(&bond->lock);
  2935. read_lock(&bond->curr_slave_lock);
  2936. if (netif_carrier_ok(bond->dev))
  2937. mii->val_out = BMSR_LSTATUS;
  2938. read_unlock(&bond->curr_slave_lock);
  2939. read_unlock(&bond->lock);
  2940. }
  2941. return 0;
  2942. case BOND_INFO_QUERY_OLD:
  2943. case SIOCBONDINFOQUERY:
  2944. u_binfo = (struct ifbond __user *)ifr->ifr_data;
  2945. if (copy_from_user(&k_binfo, u_binfo, sizeof(ifbond)))
  2946. return -EFAULT;
  2947. res = bond_info_query(bond_dev, &k_binfo);
  2948. if (res == 0 &&
  2949. copy_to_user(u_binfo, &k_binfo, sizeof(ifbond)))
  2950. return -EFAULT;
  2951. return res;
  2952. case BOND_SLAVE_INFO_QUERY_OLD:
  2953. case SIOCBONDSLAVEINFOQUERY:
  2954. u_sinfo = (struct ifslave __user *)ifr->ifr_data;
  2955. if (copy_from_user(&k_sinfo, u_sinfo, sizeof(ifslave)))
  2956. return -EFAULT;
  2957. res = bond_slave_info_query(bond_dev, &k_sinfo);
  2958. if (res == 0 &&
  2959. copy_to_user(u_sinfo, &k_sinfo, sizeof(ifslave)))
  2960. return -EFAULT;
  2961. return res;
  2962. default:
  2963. /* Go on */
  2964. break;
  2965. }
  2966. net = dev_net(bond_dev);
  2967. if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
  2968. return -EPERM;
  2969. slave_dev = dev_get_by_name(net, ifr->ifr_slave);
  2970. pr_debug("slave_dev=%p:\n", slave_dev);
  2971. if (!slave_dev)
  2972. res = -ENODEV;
  2973. else {
  2974. pr_debug("slave_dev->name=%s:\n", slave_dev->name);
  2975. switch (cmd) {
  2976. case BOND_ENSLAVE_OLD:
  2977. case SIOCBONDENSLAVE:
  2978. res = bond_enslave(bond_dev, slave_dev);
  2979. break;
  2980. case BOND_RELEASE_OLD:
  2981. case SIOCBONDRELEASE:
  2982. res = bond_release(bond_dev, slave_dev);
  2983. break;
  2984. case BOND_SETHWADDR_OLD:
  2985. case SIOCBONDSETHWADDR:
  2986. bond_set_dev_addr(bond_dev, slave_dev);
  2987. res = 0;
  2988. break;
  2989. case BOND_CHANGE_ACTIVE_OLD:
  2990. case SIOCBONDCHANGEACTIVE:
  2991. res = bond_ioctl_change_active(bond_dev, slave_dev);
  2992. break;
  2993. default:
  2994. res = -EOPNOTSUPP;
  2995. }
  2996. dev_put(slave_dev);
  2997. }
  2998. return res;
  2999. }
  3000. static void bond_change_rx_flags(struct net_device *bond_dev, int change)
  3001. {
  3002. struct bonding *bond = netdev_priv(bond_dev);
  3003. if (change & IFF_PROMISC)
  3004. bond_set_promiscuity(bond,
  3005. bond_dev->flags & IFF_PROMISC ? 1 : -1);
  3006. if (change & IFF_ALLMULTI)
  3007. bond_set_allmulti(bond,
  3008. bond_dev->flags & IFF_ALLMULTI ? 1 : -1);
  3009. }
  3010. static void bond_set_rx_mode(struct net_device *bond_dev)
  3011. {
  3012. struct bonding *bond = netdev_priv(bond_dev);
  3013. struct slave *slave;
  3014. read_lock(&bond->lock);
  3015. if (USES_PRIMARY(bond->params.mode)) {
  3016. read_lock(&bond->curr_slave_lock);
  3017. slave = bond->curr_active_slave;
  3018. if (slave) {
  3019. dev_uc_sync(slave->dev, bond_dev);
  3020. dev_mc_sync(slave->dev, bond_dev);
  3021. }
  3022. read_unlock(&bond->curr_slave_lock);
  3023. } else {
  3024. bond_for_each_slave(bond, slave) {
  3025. dev_uc_sync_multiple(slave->dev, bond_dev);
  3026. dev_mc_sync_multiple(slave->dev, bond_dev);
  3027. }
  3028. }
  3029. read_unlock(&bond->lock);
  3030. }
  3031. static int bond_neigh_init(struct neighbour *n)
  3032. {
  3033. struct bonding *bond = netdev_priv(n->dev);
  3034. const struct net_device_ops *slave_ops;
  3035. struct neigh_parms parms;
  3036. struct slave *slave;
  3037. int ret;
  3038. slave = bond_first_slave(bond);
  3039. if (!slave)
  3040. return 0;
  3041. slave_ops = slave->dev->netdev_ops;
  3042. if (!slave_ops->ndo_neigh_setup)
  3043. return 0;
  3044. parms.neigh_setup = NULL;
  3045. parms.neigh_cleanup = NULL;
  3046. ret = slave_ops->ndo_neigh_setup(slave->dev, &parms);
  3047. if (ret)
  3048. return ret;
  3049. /*
  3050. * Assign slave's neigh_cleanup to neighbour in case cleanup is called
  3051. * after the last slave has been detached. Assumes that all slaves
  3052. * utilize the same neigh_cleanup (true at this writing as only user
  3053. * is ipoib).
  3054. */
  3055. n->parms->neigh_cleanup = parms.neigh_cleanup;
  3056. if (!parms.neigh_setup)
  3057. return 0;
  3058. return parms.neigh_setup(n);
  3059. }
  3060. /*
  3061. * The bonding ndo_neigh_setup is called at init time beofre any
  3062. * slave exists. So we must declare proxy setup function which will
  3063. * be used at run time to resolve the actual slave neigh param setup.
  3064. */
  3065. static int bond_neigh_setup(struct net_device *dev,
  3066. struct neigh_parms *parms)
  3067. {
  3068. parms->neigh_setup = bond_neigh_init;
  3069. return 0;
  3070. }
  3071. /*
  3072. * Change the MTU of all of a master's slaves to match the master
  3073. */
  3074. static int bond_change_mtu(struct net_device *bond_dev, int new_mtu)
  3075. {
  3076. struct bonding *bond = netdev_priv(bond_dev);
  3077. struct slave *slave;
  3078. int res = 0;
  3079. pr_debug("bond=%p, name=%s, new_mtu=%d\n", bond,
  3080. (bond_dev ? bond_dev->name : "None"), new_mtu);
  3081. /* Can't hold bond->lock with bh disabled here since
  3082. * some base drivers panic. On the other hand we can't
  3083. * hold bond->lock without bh disabled because we'll
  3084. * deadlock. The only solution is to rely on the fact
  3085. * that we're under rtnl_lock here, and the slaves
  3086. * list won't change. This doesn't solve the problem
  3087. * of setting the slave's MTU while it is
  3088. * transmitting, but the assumption is that the base
  3089. * driver can handle that.
  3090. *
  3091. * TODO: figure out a way to safely iterate the slaves
  3092. * list, but without holding a lock around the actual
  3093. * call to the base driver.
  3094. */
  3095. bond_for_each_slave(bond, slave) {
  3096. pr_debug("s %p s->p %p c_m %p\n",
  3097. slave,
  3098. bond_prev_slave(bond, slave),
  3099. slave->dev->netdev_ops->ndo_change_mtu);
  3100. res = dev_set_mtu(slave->dev, new_mtu);
  3101. if (res) {
  3102. /* If we failed to set the slave's mtu to the new value
  3103. * we must abort the operation even in ACTIVE_BACKUP
  3104. * mode, because if we allow the backup slaves to have
  3105. * different mtu values than the active slave we'll
  3106. * need to change their mtu when doing a failover. That
  3107. * means changing their mtu from timer context, which
  3108. * is probably not a good idea.
  3109. */
  3110. pr_debug("err %d %s\n", res, slave->dev->name);
  3111. goto unwind;
  3112. }
  3113. }
  3114. bond_dev->mtu = new_mtu;
  3115. return 0;
  3116. unwind:
  3117. /* unwind from head to the slave that failed */
  3118. bond_for_each_slave_continue_reverse(bond, slave) {
  3119. int tmp_res;
  3120. tmp_res = dev_set_mtu(slave->dev, bond_dev->mtu);
  3121. if (tmp_res) {
  3122. pr_debug("unwind err %d dev %s\n",
  3123. tmp_res, slave->dev->name);
  3124. }
  3125. }
  3126. return res;
  3127. }
  3128. /*
  3129. * Change HW address
  3130. *
  3131. * Note that many devices must be down to change the HW address, and
  3132. * downing the master releases all slaves. We can make bonds full of
  3133. * bonding devices to test this, however.
  3134. */
  3135. static int bond_set_mac_address(struct net_device *bond_dev, void *addr)
  3136. {
  3137. struct bonding *bond = netdev_priv(bond_dev);
  3138. struct sockaddr *sa = addr, tmp_sa;
  3139. struct slave *slave;
  3140. int res = 0;
  3141. if (bond->params.mode == BOND_MODE_ALB)
  3142. return bond_alb_set_mac_address(bond_dev, addr);
  3143. pr_debug("bond=%p, name=%s\n",
  3144. bond, bond_dev ? bond_dev->name : "None");
  3145. /* If fail_over_mac is enabled, do nothing and return success.
  3146. * Returning an error causes ifenslave to fail.
  3147. */
  3148. if (bond->params.fail_over_mac)
  3149. return 0;
  3150. if (!is_valid_ether_addr(sa->sa_data))
  3151. return -EADDRNOTAVAIL;
  3152. /* Can't hold bond->lock with bh disabled here since
  3153. * some base drivers panic. On the other hand we can't
  3154. * hold bond->lock without bh disabled because we'll
  3155. * deadlock. The only solution is to rely on the fact
  3156. * that we're under rtnl_lock here, and the slaves
  3157. * list won't change. This doesn't solve the problem
  3158. * of setting the slave's hw address while it is
  3159. * transmitting, but the assumption is that the base
  3160. * driver can handle that.
  3161. *
  3162. * TODO: figure out a way to safely iterate the slaves
  3163. * list, but without holding a lock around the actual
  3164. * call to the base driver.
  3165. */
  3166. bond_for_each_slave(bond, slave) {
  3167. const struct net_device_ops *slave_ops = slave->dev->netdev_ops;
  3168. pr_debug("slave %p %s\n", slave, slave->dev->name);
  3169. if (slave_ops->ndo_set_mac_address == NULL) {
  3170. res = -EOPNOTSUPP;
  3171. pr_debug("EOPNOTSUPP %s\n", slave->dev->name);
  3172. goto unwind;
  3173. }
  3174. res = dev_set_mac_address(slave->dev, addr);
  3175. if (res) {
  3176. /* TODO: consider downing the slave
  3177. * and retry ?
  3178. * User should expect communications
  3179. * breakage anyway until ARP finish
  3180. * updating, so...
  3181. */
  3182. pr_debug("err %d %s\n", res, slave->dev->name);
  3183. goto unwind;
  3184. }
  3185. }
  3186. /* success */
  3187. memcpy(bond_dev->dev_addr, sa->sa_data, bond_dev->addr_len);
  3188. return 0;
  3189. unwind:
  3190. memcpy(tmp_sa.sa_data, bond_dev->dev_addr, bond_dev->addr_len);
  3191. tmp_sa.sa_family = bond_dev->type;
  3192. /* unwind from head to the slave that failed */
  3193. bond_for_each_slave_continue_reverse(bond, slave) {
  3194. int tmp_res;
  3195. tmp_res = dev_set_mac_address(slave->dev, &tmp_sa);
  3196. if (tmp_res) {
  3197. pr_debug("unwind err %d dev %s\n",
  3198. tmp_res, slave->dev->name);
  3199. }
  3200. }
  3201. return res;
  3202. }
  3203. /**
  3204. * bond_xmit_slave_id - transmit skb through slave with slave_id
  3205. * @bond: bonding device that is transmitting
  3206. * @skb: buffer to transmit
  3207. * @slave_id: slave id up to slave_cnt-1 through which to transmit
  3208. *
  3209. * This function tries to transmit through slave with slave_id but in case
  3210. * it fails, it tries to find the first available slave for transmission.
  3211. * The skb is consumed in all cases, thus the function is void.
  3212. */
  3213. void bond_xmit_slave_id(struct bonding *bond, struct sk_buff *skb, int slave_id)
  3214. {
  3215. struct slave *slave;
  3216. int i = slave_id;
  3217. /* Here we start from the slave with slave_id */
  3218. bond_for_each_slave(bond, slave) {
  3219. if (--i < 0) {
  3220. if (slave_can_tx(slave)) {
  3221. bond_dev_queue_xmit(bond, skb, slave->dev);
  3222. return;
  3223. }
  3224. }
  3225. }
  3226. /* Here we start from the first slave up to slave_id */
  3227. i = slave_id;
  3228. bond_for_each_slave(bond, slave) {
  3229. if (--i < 0)
  3230. break;
  3231. if (slave_can_tx(slave)) {
  3232. bond_dev_queue_xmit(bond, skb, slave->dev);
  3233. return;
  3234. }
  3235. }
  3236. /* no slave that can tx has been found */
  3237. kfree_skb(skb);
  3238. }
  3239. static int bond_xmit_roundrobin(struct sk_buff *skb, struct net_device *bond_dev)
  3240. {
  3241. struct bonding *bond = netdev_priv(bond_dev);
  3242. struct iphdr *iph = ip_hdr(skb);
  3243. struct slave *slave;
  3244. /*
  3245. * Start with the curr_active_slave that joined the bond as the
  3246. * default for sending IGMP traffic. For failover purposes one
  3247. * needs to maintain some consistency for the interface that will
  3248. * send the join/membership reports. The curr_active_slave found
  3249. * will send all of this type of traffic.
  3250. */
  3251. if (iph->protocol == IPPROTO_IGMP && skb->protocol == htons(ETH_P_IP)) {
  3252. slave = bond->curr_active_slave;
  3253. if (slave && slave_can_tx(slave))
  3254. bond_dev_queue_xmit(bond, skb, slave->dev);
  3255. else
  3256. bond_xmit_slave_id(bond, skb, 0);
  3257. } else {
  3258. bond_xmit_slave_id(bond, skb,
  3259. bond->rr_tx_counter++ % bond->slave_cnt);
  3260. }
  3261. return NETDEV_TX_OK;
  3262. }
  3263. /*
  3264. * in active-backup mode, we know that bond->curr_active_slave is always valid if
  3265. * the bond has a usable interface.
  3266. */
  3267. static int bond_xmit_activebackup(struct sk_buff *skb, struct net_device *bond_dev)
  3268. {
  3269. struct bonding *bond = netdev_priv(bond_dev);
  3270. struct slave *slave;
  3271. slave = bond->curr_active_slave;
  3272. if (slave)
  3273. bond_dev_queue_xmit(bond, skb, slave->dev);
  3274. else
  3275. kfree_skb(skb);
  3276. return NETDEV_TX_OK;
  3277. }
  3278. /*
  3279. * In bond_xmit_xor() , we determine the output device by using a pre-
  3280. * determined xmit_hash_policy(), If the selected device is not enabled,
  3281. * find the next active slave.
  3282. */
  3283. static int bond_xmit_xor(struct sk_buff *skb, struct net_device *bond_dev)
  3284. {
  3285. struct bonding *bond = netdev_priv(bond_dev);
  3286. bond_xmit_slave_id(bond, skb,
  3287. bond->xmit_hash_policy(skb, bond->slave_cnt));
  3288. return NETDEV_TX_OK;
  3289. }
  3290. /* in broadcast mode, we send everything to all usable interfaces. */
  3291. static int bond_xmit_broadcast(struct sk_buff *skb, struct net_device *bond_dev)
  3292. {
  3293. struct bonding *bond = netdev_priv(bond_dev);
  3294. struct slave *slave = NULL;
  3295. bond_for_each_slave(bond, slave) {
  3296. if (bond_is_last_slave(bond, slave))
  3297. break;
  3298. if (IS_UP(slave->dev) && slave->link == BOND_LINK_UP) {
  3299. struct sk_buff *skb2 = skb_clone(skb, GFP_ATOMIC);
  3300. if (!skb2) {
  3301. pr_err("%s: Error: bond_xmit_broadcast(): skb_clone() failed\n",
  3302. bond_dev->name);
  3303. continue;
  3304. }
  3305. /* bond_dev_queue_xmit always returns 0 */
  3306. bond_dev_queue_xmit(bond, skb2, slave->dev);
  3307. }
  3308. }
  3309. if (slave && IS_UP(slave->dev) && slave->link == BOND_LINK_UP)
  3310. bond_dev_queue_xmit(bond, skb, slave->dev);
  3311. else
  3312. kfree_skb(skb);
  3313. return NETDEV_TX_OK;
  3314. }
  3315. /*------------------------- Device initialization ---------------------------*/
  3316. static void bond_set_xmit_hash_policy(struct bonding *bond)
  3317. {
  3318. switch (bond->params.xmit_policy) {
  3319. case BOND_XMIT_POLICY_LAYER23:
  3320. bond->xmit_hash_policy = bond_xmit_hash_policy_l23;
  3321. break;
  3322. case BOND_XMIT_POLICY_LAYER34:
  3323. bond->xmit_hash_policy = bond_xmit_hash_policy_l34;
  3324. break;
  3325. case BOND_XMIT_POLICY_LAYER2:
  3326. default:
  3327. bond->xmit_hash_policy = bond_xmit_hash_policy_l2;
  3328. break;
  3329. }
  3330. }
  3331. /*
  3332. * Lookup the slave that corresponds to a qid
  3333. */
  3334. static inline int bond_slave_override(struct bonding *bond,
  3335. struct sk_buff *skb)
  3336. {
  3337. struct slave *slave = NULL;
  3338. struct slave *check_slave;
  3339. int res = 1;
  3340. if (!skb->queue_mapping)
  3341. return 1;
  3342. /* Find out if any slaves have the same mapping as this skb. */
  3343. bond_for_each_slave(bond, check_slave) {
  3344. if (check_slave->queue_id == skb->queue_mapping) {
  3345. slave = check_slave;
  3346. break;
  3347. }
  3348. }
  3349. /* If the slave isn't UP, use default transmit policy. */
  3350. if (slave && slave->queue_id && IS_UP(slave->dev) &&
  3351. (slave->link == BOND_LINK_UP)) {
  3352. res = bond_dev_queue_xmit(bond, skb, slave->dev);
  3353. }
  3354. return res;
  3355. }
  3356. static u16 bond_select_queue(struct net_device *dev, struct sk_buff *skb)
  3357. {
  3358. /*
  3359. * This helper function exists to help dev_pick_tx get the correct
  3360. * destination queue. Using a helper function skips a call to
  3361. * skb_tx_hash and will put the skbs in the queue we expect on their
  3362. * way down to the bonding driver.
  3363. */
  3364. u16 txq = skb_rx_queue_recorded(skb) ? skb_get_rx_queue(skb) : 0;
  3365. /*
  3366. * Save the original txq to restore before passing to the driver
  3367. */
  3368. qdisc_skb_cb(skb)->slave_dev_queue_mapping = skb->queue_mapping;
  3369. if (unlikely(txq >= dev->real_num_tx_queues)) {
  3370. do {
  3371. txq -= dev->real_num_tx_queues;
  3372. } while (txq >= dev->real_num_tx_queues);
  3373. }
  3374. return txq;
  3375. }
  3376. static netdev_tx_t __bond_start_xmit(struct sk_buff *skb, struct net_device *dev)
  3377. {
  3378. struct bonding *bond = netdev_priv(dev);
  3379. if (TX_QUEUE_OVERRIDE(bond->params.mode)) {
  3380. if (!bond_slave_override(bond, skb))
  3381. return NETDEV_TX_OK;
  3382. }
  3383. switch (bond->params.mode) {
  3384. case BOND_MODE_ROUNDROBIN:
  3385. return bond_xmit_roundrobin(skb, dev);
  3386. case BOND_MODE_ACTIVEBACKUP:
  3387. return bond_xmit_activebackup(skb, dev);
  3388. case BOND_MODE_XOR:
  3389. return bond_xmit_xor(skb, dev);
  3390. case BOND_MODE_BROADCAST:
  3391. return bond_xmit_broadcast(skb, dev);
  3392. case BOND_MODE_8023AD:
  3393. return bond_3ad_xmit_xor(skb, dev);
  3394. case BOND_MODE_ALB:
  3395. case BOND_MODE_TLB:
  3396. return bond_alb_xmit(skb, dev);
  3397. default:
  3398. /* Should never happen, mode already checked */
  3399. pr_err("%s: Error: Unknown bonding mode %d\n",
  3400. dev->name, bond->params.mode);
  3401. WARN_ON_ONCE(1);
  3402. kfree_skb(skb);
  3403. return NETDEV_TX_OK;
  3404. }
  3405. }
  3406. static netdev_tx_t bond_start_xmit(struct sk_buff *skb, struct net_device *dev)
  3407. {
  3408. struct bonding *bond = netdev_priv(dev);
  3409. netdev_tx_t ret = NETDEV_TX_OK;
  3410. /*
  3411. * If we risk deadlock from transmitting this in the
  3412. * netpoll path, tell netpoll to queue the frame for later tx
  3413. */
  3414. if (is_netpoll_tx_blocked(dev))
  3415. return NETDEV_TX_BUSY;
  3416. read_lock(&bond->lock);
  3417. if (!list_empty(&bond->slave_list))
  3418. ret = __bond_start_xmit(skb, dev);
  3419. else
  3420. kfree_skb(skb);
  3421. read_unlock(&bond->lock);
  3422. return ret;
  3423. }
  3424. /*
  3425. * set bond mode specific net device operations
  3426. */
  3427. void bond_set_mode_ops(struct bonding *bond, int mode)
  3428. {
  3429. struct net_device *bond_dev = bond->dev;
  3430. switch (mode) {
  3431. case BOND_MODE_ROUNDROBIN:
  3432. break;
  3433. case BOND_MODE_ACTIVEBACKUP:
  3434. break;
  3435. case BOND_MODE_XOR:
  3436. bond_set_xmit_hash_policy(bond);
  3437. break;
  3438. case BOND_MODE_BROADCAST:
  3439. break;
  3440. case BOND_MODE_8023AD:
  3441. bond_set_xmit_hash_policy(bond);
  3442. break;
  3443. case BOND_MODE_ALB:
  3444. /* FALLTHRU */
  3445. case BOND_MODE_TLB:
  3446. break;
  3447. default:
  3448. /* Should never happen, mode already checked */
  3449. pr_err("%s: Error: Unknown bonding mode %d\n",
  3450. bond_dev->name, mode);
  3451. break;
  3452. }
  3453. }
  3454. static int bond_ethtool_get_settings(struct net_device *bond_dev,
  3455. struct ethtool_cmd *ecmd)
  3456. {
  3457. struct bonding *bond = netdev_priv(bond_dev);
  3458. unsigned long speed = 0;
  3459. struct slave *slave;
  3460. ecmd->duplex = DUPLEX_UNKNOWN;
  3461. ecmd->port = PORT_OTHER;
  3462. /* Since SLAVE_IS_OK returns false for all inactive or down slaves, we
  3463. * do not need to check mode. Though link speed might not represent
  3464. * the true receive or transmit bandwidth (not all modes are symmetric)
  3465. * this is an accurate maximum.
  3466. */
  3467. read_lock(&bond->lock);
  3468. bond_for_each_slave(bond, slave) {
  3469. if (SLAVE_IS_OK(slave)) {
  3470. if (slave->speed != SPEED_UNKNOWN)
  3471. speed += slave->speed;
  3472. if (ecmd->duplex == DUPLEX_UNKNOWN &&
  3473. slave->duplex != DUPLEX_UNKNOWN)
  3474. ecmd->duplex = slave->duplex;
  3475. }
  3476. }
  3477. ethtool_cmd_speed_set(ecmd, speed ? : SPEED_UNKNOWN);
  3478. read_unlock(&bond->lock);
  3479. return 0;
  3480. }
  3481. static void bond_ethtool_get_drvinfo(struct net_device *bond_dev,
  3482. struct ethtool_drvinfo *drvinfo)
  3483. {
  3484. strlcpy(drvinfo->driver, DRV_NAME, sizeof(drvinfo->driver));
  3485. strlcpy(drvinfo->version, DRV_VERSION, sizeof(drvinfo->version));
  3486. snprintf(drvinfo->fw_version, sizeof(drvinfo->fw_version), "%d",
  3487. BOND_ABI_VERSION);
  3488. }
  3489. static const struct ethtool_ops bond_ethtool_ops = {
  3490. .get_drvinfo = bond_ethtool_get_drvinfo,
  3491. .get_settings = bond_ethtool_get_settings,
  3492. .get_link = ethtool_op_get_link,
  3493. };
  3494. static const struct net_device_ops bond_netdev_ops = {
  3495. .ndo_init = bond_init,
  3496. .ndo_uninit = bond_uninit,
  3497. .ndo_open = bond_open,
  3498. .ndo_stop = bond_close,
  3499. .ndo_start_xmit = bond_start_xmit,
  3500. .ndo_select_queue = bond_select_queue,
  3501. .ndo_get_stats64 = bond_get_stats,
  3502. .ndo_do_ioctl = bond_do_ioctl,
  3503. .ndo_change_rx_flags = bond_change_rx_flags,
  3504. .ndo_set_rx_mode = bond_set_rx_mode,
  3505. .ndo_change_mtu = bond_change_mtu,
  3506. .ndo_set_mac_address = bond_set_mac_address,
  3507. .ndo_neigh_setup = bond_neigh_setup,
  3508. .ndo_vlan_rx_add_vid = bond_vlan_rx_add_vid,
  3509. .ndo_vlan_rx_kill_vid = bond_vlan_rx_kill_vid,
  3510. #ifdef CONFIG_NET_POLL_CONTROLLER
  3511. .ndo_netpoll_setup = bond_netpoll_setup,
  3512. .ndo_netpoll_cleanup = bond_netpoll_cleanup,
  3513. .ndo_poll_controller = bond_poll_controller,
  3514. #endif
  3515. .ndo_add_slave = bond_enslave,
  3516. .ndo_del_slave = bond_release,
  3517. .ndo_fix_features = bond_fix_features,
  3518. };
  3519. static const struct device_type bond_type = {
  3520. .name = "bond",
  3521. };
  3522. static void bond_destructor(struct net_device *bond_dev)
  3523. {
  3524. struct bonding *bond = netdev_priv(bond_dev);
  3525. if (bond->wq)
  3526. destroy_workqueue(bond->wq);
  3527. free_netdev(bond_dev);
  3528. }
  3529. static void bond_setup(struct net_device *bond_dev)
  3530. {
  3531. struct bonding *bond = netdev_priv(bond_dev);
  3532. /* initialize rwlocks */
  3533. rwlock_init(&bond->lock);
  3534. rwlock_init(&bond->curr_slave_lock);
  3535. INIT_LIST_HEAD(&bond->slave_list);
  3536. bond->params = bonding_defaults;
  3537. /* Initialize pointers */
  3538. bond->dev = bond_dev;
  3539. INIT_LIST_HEAD(&bond->vlan_list);
  3540. /* Initialize the device entry points */
  3541. ether_setup(bond_dev);
  3542. bond_dev->netdev_ops = &bond_netdev_ops;
  3543. bond_dev->ethtool_ops = &bond_ethtool_ops;
  3544. bond_set_mode_ops(bond, bond->params.mode);
  3545. bond_dev->destructor = bond_destructor;
  3546. SET_NETDEV_DEVTYPE(bond_dev, &bond_type);
  3547. /* Initialize the device options */
  3548. bond_dev->tx_queue_len = 0;
  3549. bond_dev->flags |= IFF_MASTER|IFF_MULTICAST;
  3550. bond_dev->priv_flags |= IFF_BONDING;
  3551. bond_dev->priv_flags &= ~(IFF_XMIT_DST_RELEASE | IFF_TX_SKB_SHARING);
  3552. /* At first, we block adding VLANs. That's the only way to
  3553. * prevent problems that occur when adding VLANs over an
  3554. * empty bond. The block will be removed once non-challenged
  3555. * slaves are enslaved.
  3556. */
  3557. bond_dev->features |= NETIF_F_VLAN_CHALLENGED;
  3558. /* don't acquire bond device's netif_tx_lock when
  3559. * transmitting */
  3560. bond_dev->features |= NETIF_F_LLTX;
  3561. /* By default, we declare the bond to be fully
  3562. * VLAN hardware accelerated capable. Special
  3563. * care is taken in the various xmit functions
  3564. * when there are slaves that are not hw accel
  3565. * capable
  3566. */
  3567. bond_dev->hw_features = BOND_VLAN_FEATURES |
  3568. NETIF_F_HW_VLAN_CTAG_TX |
  3569. NETIF_F_HW_VLAN_CTAG_RX |
  3570. NETIF_F_HW_VLAN_CTAG_FILTER;
  3571. bond_dev->hw_features &= ~(NETIF_F_ALL_CSUM & ~NETIF_F_HW_CSUM);
  3572. bond_dev->features |= bond_dev->hw_features;
  3573. }
  3574. /*
  3575. * Destroy a bonding device.
  3576. * Must be under rtnl_lock when this function is called.
  3577. */
  3578. static void bond_uninit(struct net_device *bond_dev)
  3579. {
  3580. struct bonding *bond = netdev_priv(bond_dev);
  3581. struct slave *slave, *tmp_slave;
  3582. struct vlan_entry *vlan, *tmp;
  3583. bond_netpoll_cleanup(bond_dev);
  3584. /* Release the bonded slaves */
  3585. list_for_each_entry_safe(slave, tmp_slave, &bond->slave_list, list)
  3586. __bond_release_one(bond_dev, slave->dev, true);
  3587. pr_info("%s: released all slaves\n", bond_dev->name);
  3588. list_del(&bond->bond_list);
  3589. bond_debug_unregister(bond);
  3590. list_for_each_entry_safe(vlan, tmp, &bond->vlan_list, vlan_list) {
  3591. list_del(&vlan->vlan_list);
  3592. kfree(vlan);
  3593. }
  3594. }
  3595. /*------------------------- Module initialization ---------------------------*/
  3596. /*
  3597. * Convert string input module parms. Accept either the
  3598. * number of the mode or its string name. A bit complicated because
  3599. * some mode names are substrings of other names, and calls from sysfs
  3600. * may have whitespace in the name (trailing newlines, for example).
  3601. */
  3602. int bond_parse_parm(const char *buf, const struct bond_parm_tbl *tbl)
  3603. {
  3604. int modeint = -1, i, rv;
  3605. char *p, modestr[BOND_MAX_MODENAME_LEN + 1] = { 0, };
  3606. for (p = (char *)buf; *p; p++)
  3607. if (!(isdigit(*p) || isspace(*p)))
  3608. break;
  3609. if (*p)
  3610. rv = sscanf(buf, "%20s", modestr);
  3611. else
  3612. rv = sscanf(buf, "%d", &modeint);
  3613. if (!rv)
  3614. return -1;
  3615. for (i = 0; tbl[i].modename; i++) {
  3616. if (modeint == tbl[i].mode)
  3617. return tbl[i].mode;
  3618. if (strcmp(modestr, tbl[i].modename) == 0)
  3619. return tbl[i].mode;
  3620. }
  3621. return -1;
  3622. }
  3623. static int bond_check_params(struct bond_params *params)
  3624. {
  3625. int arp_validate_value, fail_over_mac_value, primary_reselect_value, i;
  3626. int arp_all_targets_value;
  3627. /*
  3628. * Convert string parameters.
  3629. */
  3630. if (mode) {
  3631. bond_mode = bond_parse_parm(mode, bond_mode_tbl);
  3632. if (bond_mode == -1) {
  3633. pr_err("Error: Invalid bonding mode \"%s\"\n",
  3634. mode == NULL ? "NULL" : mode);
  3635. return -EINVAL;
  3636. }
  3637. }
  3638. if (xmit_hash_policy) {
  3639. if ((bond_mode != BOND_MODE_XOR) &&
  3640. (bond_mode != BOND_MODE_8023AD)) {
  3641. pr_info("xmit_hash_policy param is irrelevant in mode %s\n",
  3642. bond_mode_name(bond_mode));
  3643. } else {
  3644. xmit_hashtype = bond_parse_parm(xmit_hash_policy,
  3645. xmit_hashtype_tbl);
  3646. if (xmit_hashtype == -1) {
  3647. pr_err("Error: Invalid xmit_hash_policy \"%s\"\n",
  3648. xmit_hash_policy == NULL ? "NULL" :
  3649. xmit_hash_policy);
  3650. return -EINVAL;
  3651. }
  3652. }
  3653. }
  3654. if (lacp_rate) {
  3655. if (bond_mode != BOND_MODE_8023AD) {
  3656. pr_info("lacp_rate param is irrelevant in mode %s\n",
  3657. bond_mode_name(bond_mode));
  3658. } else {
  3659. lacp_fast = bond_parse_parm(lacp_rate, bond_lacp_tbl);
  3660. if (lacp_fast == -1) {
  3661. pr_err("Error: Invalid lacp rate \"%s\"\n",
  3662. lacp_rate == NULL ? "NULL" : lacp_rate);
  3663. return -EINVAL;
  3664. }
  3665. }
  3666. }
  3667. if (ad_select) {
  3668. params->ad_select = bond_parse_parm(ad_select, ad_select_tbl);
  3669. if (params->ad_select == -1) {
  3670. pr_err("Error: Invalid ad_select \"%s\"\n",
  3671. ad_select == NULL ? "NULL" : ad_select);
  3672. return -EINVAL;
  3673. }
  3674. if (bond_mode != BOND_MODE_8023AD) {
  3675. pr_warning("ad_select param only affects 802.3ad mode\n");
  3676. }
  3677. } else {
  3678. params->ad_select = BOND_AD_STABLE;
  3679. }
  3680. if (max_bonds < 0) {
  3681. pr_warning("Warning: max_bonds (%d) not in range %d-%d, so it was reset to BOND_DEFAULT_MAX_BONDS (%d)\n",
  3682. max_bonds, 0, INT_MAX, BOND_DEFAULT_MAX_BONDS);
  3683. max_bonds = BOND_DEFAULT_MAX_BONDS;
  3684. }
  3685. if (miimon < 0) {
  3686. pr_warning("Warning: miimon module parameter (%d), not in range 0-%d, so it was reset to %d\n",
  3687. miimon, INT_MAX, BOND_LINK_MON_INTERV);
  3688. miimon = BOND_LINK_MON_INTERV;
  3689. }
  3690. if (updelay < 0) {
  3691. pr_warning("Warning: updelay module parameter (%d), not in range 0-%d, so it was reset to 0\n",
  3692. updelay, INT_MAX);
  3693. updelay = 0;
  3694. }
  3695. if (downdelay < 0) {
  3696. pr_warning("Warning: downdelay module parameter (%d), not in range 0-%d, so it was reset to 0\n",
  3697. downdelay, INT_MAX);
  3698. downdelay = 0;
  3699. }
  3700. if ((use_carrier != 0) && (use_carrier != 1)) {
  3701. pr_warning("Warning: use_carrier module parameter (%d), not of valid value (0/1), so it was set to 1\n",
  3702. use_carrier);
  3703. use_carrier = 1;
  3704. }
  3705. if (num_peer_notif < 0 || num_peer_notif > 255) {
  3706. pr_warning("Warning: num_grat_arp/num_unsol_na (%d) not in range 0-255 so it was reset to 1\n",
  3707. num_peer_notif);
  3708. num_peer_notif = 1;
  3709. }
  3710. /* reset values for 802.3ad */
  3711. if (bond_mode == BOND_MODE_8023AD) {
  3712. if (!miimon) {
  3713. pr_warning("Warning: miimon must be specified, otherwise bonding will not detect link failure, speed and duplex which are essential for 802.3ad operation\n");
  3714. pr_warning("Forcing miimon to 100msec\n");
  3715. miimon = 100;
  3716. }
  3717. }
  3718. if (tx_queues < 1 || tx_queues > 255) {
  3719. pr_warning("Warning: tx_queues (%d) should be between "
  3720. "1 and 255, resetting to %d\n",
  3721. tx_queues, BOND_DEFAULT_TX_QUEUES);
  3722. tx_queues = BOND_DEFAULT_TX_QUEUES;
  3723. }
  3724. if ((all_slaves_active != 0) && (all_slaves_active != 1)) {
  3725. pr_warning("Warning: all_slaves_active module parameter (%d), "
  3726. "not of valid value (0/1), so it was set to "
  3727. "0\n", all_slaves_active);
  3728. all_slaves_active = 0;
  3729. }
  3730. if (resend_igmp < 0 || resend_igmp > 255) {
  3731. pr_warning("Warning: resend_igmp (%d) should be between "
  3732. "0 and 255, resetting to %d\n",
  3733. resend_igmp, BOND_DEFAULT_RESEND_IGMP);
  3734. resend_igmp = BOND_DEFAULT_RESEND_IGMP;
  3735. }
  3736. /* reset values for TLB/ALB */
  3737. if ((bond_mode == BOND_MODE_TLB) ||
  3738. (bond_mode == BOND_MODE_ALB)) {
  3739. if (!miimon) {
  3740. pr_warning("Warning: miimon must be specified, otherwise bonding will not detect link failure and link speed which are essential for TLB/ALB load balancing\n");
  3741. pr_warning("Forcing miimon to 100msec\n");
  3742. miimon = 100;
  3743. }
  3744. }
  3745. if (bond_mode == BOND_MODE_ALB) {
  3746. pr_notice("In ALB mode you might experience client disconnections upon reconnection of a link if the bonding module updelay parameter (%d msec) is incompatible with the forwarding delay time of the switch\n",
  3747. updelay);
  3748. }
  3749. if (!miimon) {
  3750. if (updelay || downdelay) {
  3751. /* just warn the user the up/down delay will have
  3752. * no effect since miimon is zero...
  3753. */
  3754. pr_warning("Warning: miimon module parameter not set and updelay (%d) or downdelay (%d) module parameter is set; updelay and downdelay have no effect unless miimon is set\n",
  3755. updelay, downdelay);
  3756. }
  3757. } else {
  3758. /* don't allow arp monitoring */
  3759. if (arp_interval) {
  3760. pr_warning("Warning: miimon (%d) and arp_interval (%d) can't be used simultaneously, disabling ARP monitoring\n",
  3761. miimon, arp_interval);
  3762. arp_interval = 0;
  3763. }
  3764. if ((updelay % miimon) != 0) {
  3765. pr_warning("Warning: updelay (%d) is not a multiple of miimon (%d), updelay rounded to %d ms\n",
  3766. updelay, miimon,
  3767. (updelay / miimon) * miimon);
  3768. }
  3769. updelay /= miimon;
  3770. if ((downdelay % miimon) != 0) {
  3771. pr_warning("Warning: downdelay (%d) is not a multiple of miimon (%d), downdelay rounded to %d ms\n",
  3772. downdelay, miimon,
  3773. (downdelay / miimon) * miimon);
  3774. }
  3775. downdelay /= miimon;
  3776. }
  3777. if (arp_interval < 0) {
  3778. pr_warning("Warning: arp_interval module parameter (%d) , not in range 0-%d, so it was reset to %d\n",
  3779. arp_interval, INT_MAX, BOND_LINK_ARP_INTERV);
  3780. arp_interval = BOND_LINK_ARP_INTERV;
  3781. }
  3782. for (arp_ip_count = 0, i = 0;
  3783. (arp_ip_count < BOND_MAX_ARP_TARGETS) && arp_ip_target[i]; i++) {
  3784. /* not complete check, but should be good enough to
  3785. catch mistakes */
  3786. __be32 ip = in_aton(arp_ip_target[i]);
  3787. if (!isdigit(arp_ip_target[i][0]) || ip == 0 ||
  3788. ip == htonl(INADDR_BROADCAST)) {
  3789. pr_warning("Warning: bad arp_ip_target module parameter (%s), ARP monitoring will not be performed\n",
  3790. arp_ip_target[i]);
  3791. arp_interval = 0;
  3792. } else {
  3793. if (bond_get_targets_ip(arp_target, ip) == -1)
  3794. arp_target[arp_ip_count++] = ip;
  3795. else
  3796. pr_warning("Warning: duplicate address %pI4 in arp_ip_target, skipping\n",
  3797. &ip);
  3798. }
  3799. }
  3800. if (arp_interval && !arp_ip_count) {
  3801. /* don't allow arping if no arp_ip_target given... */
  3802. pr_warning("Warning: arp_interval module parameter (%d) specified without providing an arp_ip_target parameter, arp_interval was reset to 0\n",
  3803. arp_interval);
  3804. arp_interval = 0;
  3805. }
  3806. if (arp_validate) {
  3807. if (bond_mode != BOND_MODE_ACTIVEBACKUP) {
  3808. pr_err("arp_validate only supported in active-backup mode\n");
  3809. return -EINVAL;
  3810. }
  3811. if (!arp_interval) {
  3812. pr_err("arp_validate requires arp_interval\n");
  3813. return -EINVAL;
  3814. }
  3815. arp_validate_value = bond_parse_parm(arp_validate,
  3816. arp_validate_tbl);
  3817. if (arp_validate_value == -1) {
  3818. pr_err("Error: invalid arp_validate \"%s\"\n",
  3819. arp_validate == NULL ? "NULL" : arp_validate);
  3820. return -EINVAL;
  3821. }
  3822. } else
  3823. arp_validate_value = 0;
  3824. arp_all_targets_value = 0;
  3825. if (arp_all_targets) {
  3826. arp_all_targets_value = bond_parse_parm(arp_all_targets,
  3827. arp_all_targets_tbl);
  3828. if (arp_all_targets_value == -1) {
  3829. pr_err("Error: invalid arp_all_targets_value \"%s\"\n",
  3830. arp_all_targets);
  3831. arp_all_targets_value = 0;
  3832. }
  3833. }
  3834. if (miimon) {
  3835. pr_info("MII link monitoring set to %d ms\n", miimon);
  3836. } else if (arp_interval) {
  3837. pr_info("ARP monitoring set to %d ms, validate %s, with %d target(s):",
  3838. arp_interval,
  3839. arp_validate_tbl[arp_validate_value].modename,
  3840. arp_ip_count);
  3841. for (i = 0; i < arp_ip_count; i++)
  3842. pr_info(" %s", arp_ip_target[i]);
  3843. pr_info("\n");
  3844. } else if (max_bonds) {
  3845. /* miimon and arp_interval not set, we need one so things
  3846. * work as expected, see bonding.txt for details
  3847. */
  3848. pr_debug("Warning: either miimon or arp_interval and arp_ip_target module parameters must be specified, otherwise bonding will not detect link failures! see bonding.txt for details.\n");
  3849. }
  3850. if (primary && !USES_PRIMARY(bond_mode)) {
  3851. /* currently, using a primary only makes sense
  3852. * in active backup, TLB or ALB modes
  3853. */
  3854. pr_warning("Warning: %s primary device specified but has no effect in %s mode\n",
  3855. primary, bond_mode_name(bond_mode));
  3856. primary = NULL;
  3857. }
  3858. if (primary && primary_reselect) {
  3859. primary_reselect_value = bond_parse_parm(primary_reselect,
  3860. pri_reselect_tbl);
  3861. if (primary_reselect_value == -1) {
  3862. pr_err("Error: Invalid primary_reselect \"%s\"\n",
  3863. primary_reselect ==
  3864. NULL ? "NULL" : primary_reselect);
  3865. return -EINVAL;
  3866. }
  3867. } else {
  3868. primary_reselect_value = BOND_PRI_RESELECT_ALWAYS;
  3869. }
  3870. if (fail_over_mac) {
  3871. fail_over_mac_value = bond_parse_parm(fail_over_mac,
  3872. fail_over_mac_tbl);
  3873. if (fail_over_mac_value == -1) {
  3874. pr_err("Error: invalid fail_over_mac \"%s\"\n",
  3875. arp_validate == NULL ? "NULL" : arp_validate);
  3876. return -EINVAL;
  3877. }
  3878. if (bond_mode != BOND_MODE_ACTIVEBACKUP)
  3879. pr_warning("Warning: fail_over_mac only affects active-backup mode.\n");
  3880. } else {
  3881. fail_over_mac_value = BOND_FOM_NONE;
  3882. }
  3883. /* fill params struct with the proper values */
  3884. params->mode = bond_mode;
  3885. params->xmit_policy = xmit_hashtype;
  3886. params->miimon = miimon;
  3887. params->num_peer_notif = num_peer_notif;
  3888. params->arp_interval = arp_interval;
  3889. params->arp_validate = arp_validate_value;
  3890. params->arp_all_targets = arp_all_targets_value;
  3891. params->updelay = updelay;
  3892. params->downdelay = downdelay;
  3893. params->use_carrier = use_carrier;
  3894. params->lacp_fast = lacp_fast;
  3895. params->primary[0] = 0;
  3896. params->primary_reselect = primary_reselect_value;
  3897. params->fail_over_mac = fail_over_mac_value;
  3898. params->tx_queues = tx_queues;
  3899. params->all_slaves_active = all_slaves_active;
  3900. params->resend_igmp = resend_igmp;
  3901. params->min_links = min_links;
  3902. if (primary) {
  3903. strncpy(params->primary, primary, IFNAMSIZ);
  3904. params->primary[IFNAMSIZ - 1] = 0;
  3905. }
  3906. memcpy(params->arp_targets, arp_target, sizeof(arp_target));
  3907. return 0;
  3908. }
  3909. static struct lock_class_key bonding_netdev_xmit_lock_key;
  3910. static struct lock_class_key bonding_netdev_addr_lock_key;
  3911. static struct lock_class_key bonding_tx_busylock_key;
  3912. static void bond_set_lockdep_class_one(struct net_device *dev,
  3913. struct netdev_queue *txq,
  3914. void *_unused)
  3915. {
  3916. lockdep_set_class(&txq->_xmit_lock,
  3917. &bonding_netdev_xmit_lock_key);
  3918. }
  3919. static void bond_set_lockdep_class(struct net_device *dev)
  3920. {
  3921. lockdep_set_class(&dev->addr_list_lock,
  3922. &bonding_netdev_addr_lock_key);
  3923. netdev_for_each_tx_queue(dev, bond_set_lockdep_class_one, NULL);
  3924. dev->qdisc_tx_busylock = &bonding_tx_busylock_key;
  3925. }
  3926. /*
  3927. * Called from registration process
  3928. */
  3929. static int bond_init(struct net_device *bond_dev)
  3930. {
  3931. struct bonding *bond = netdev_priv(bond_dev);
  3932. struct bond_net *bn = net_generic(dev_net(bond_dev), bond_net_id);
  3933. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  3934. pr_debug("Begin bond_init for %s\n", bond_dev->name);
  3935. /*
  3936. * Initialize locks that may be required during
  3937. * en/deslave operations. All of the bond_open work
  3938. * (of which this is part) should really be moved to
  3939. * a phase prior to dev_open
  3940. */
  3941. spin_lock_init(&(bond_info->tx_hashtbl_lock));
  3942. spin_lock_init(&(bond_info->rx_hashtbl_lock));
  3943. bond->wq = create_singlethread_workqueue(bond_dev->name);
  3944. if (!bond->wq)
  3945. return -ENOMEM;
  3946. bond_set_lockdep_class(bond_dev);
  3947. list_add_tail(&bond->bond_list, &bn->dev_list);
  3948. bond_prepare_sysfs_group(bond);
  3949. bond_debug_register(bond);
  3950. /* Ensure valid dev_addr */
  3951. if (is_zero_ether_addr(bond_dev->dev_addr) &&
  3952. bond_dev->addr_assign_type == NET_ADDR_PERM)
  3953. eth_hw_addr_random(bond_dev);
  3954. return 0;
  3955. }
  3956. static int bond_validate(struct nlattr *tb[], struct nlattr *data[])
  3957. {
  3958. if (tb[IFLA_ADDRESS]) {
  3959. if (nla_len(tb[IFLA_ADDRESS]) != ETH_ALEN)
  3960. return -EINVAL;
  3961. if (!is_valid_ether_addr(nla_data(tb[IFLA_ADDRESS])))
  3962. return -EADDRNOTAVAIL;
  3963. }
  3964. return 0;
  3965. }
  3966. static unsigned int bond_get_num_tx_queues(void)
  3967. {
  3968. return tx_queues;
  3969. }
  3970. static struct rtnl_link_ops bond_link_ops __read_mostly = {
  3971. .kind = "bond",
  3972. .priv_size = sizeof(struct bonding),
  3973. .setup = bond_setup,
  3974. .validate = bond_validate,
  3975. .get_num_tx_queues = bond_get_num_tx_queues,
  3976. .get_num_rx_queues = bond_get_num_tx_queues, /* Use the same number
  3977. as for TX queues */
  3978. };
  3979. /* Create a new bond based on the specified name and bonding parameters.
  3980. * If name is NULL, obtain a suitable "bond%d" name for us.
  3981. * Caller must NOT hold rtnl_lock; we need to release it here before we
  3982. * set up our sysfs entries.
  3983. */
  3984. int bond_create(struct net *net, const char *name)
  3985. {
  3986. struct net_device *bond_dev;
  3987. int res;
  3988. rtnl_lock();
  3989. bond_dev = alloc_netdev_mq(sizeof(struct bonding),
  3990. name ? name : "bond%d",
  3991. bond_setup, tx_queues);
  3992. if (!bond_dev) {
  3993. pr_err("%s: eek! can't alloc netdev!\n", name);
  3994. rtnl_unlock();
  3995. return -ENOMEM;
  3996. }
  3997. dev_net_set(bond_dev, net);
  3998. bond_dev->rtnl_link_ops = &bond_link_ops;
  3999. res = register_netdevice(bond_dev);
  4000. netif_carrier_off(bond_dev);
  4001. rtnl_unlock();
  4002. if (res < 0)
  4003. bond_destructor(bond_dev);
  4004. return res;
  4005. }
  4006. static int __net_init bond_net_init(struct net *net)
  4007. {
  4008. struct bond_net *bn = net_generic(net, bond_net_id);
  4009. bn->net = net;
  4010. INIT_LIST_HEAD(&bn->dev_list);
  4011. bond_create_proc_dir(bn);
  4012. bond_create_sysfs(bn);
  4013. return 0;
  4014. }
  4015. static void __net_exit bond_net_exit(struct net *net)
  4016. {
  4017. struct bond_net *bn = net_generic(net, bond_net_id);
  4018. struct bonding *bond, *tmp_bond;
  4019. LIST_HEAD(list);
  4020. bond_destroy_sysfs(bn);
  4021. bond_destroy_proc_dir(bn);
  4022. /* Kill off any bonds created after unregistering bond rtnl ops */
  4023. rtnl_lock();
  4024. list_for_each_entry_safe(bond, tmp_bond, &bn->dev_list, bond_list)
  4025. unregister_netdevice_queue(bond->dev, &list);
  4026. unregister_netdevice_many(&list);
  4027. rtnl_unlock();
  4028. }
  4029. static struct pernet_operations bond_net_ops = {
  4030. .init = bond_net_init,
  4031. .exit = bond_net_exit,
  4032. .id = &bond_net_id,
  4033. .size = sizeof(struct bond_net),
  4034. };
  4035. static int __init bonding_init(void)
  4036. {
  4037. int i;
  4038. int res;
  4039. pr_info("%s", bond_version);
  4040. res = bond_check_params(&bonding_defaults);
  4041. if (res)
  4042. goto out;
  4043. res = register_pernet_subsys(&bond_net_ops);
  4044. if (res)
  4045. goto out;
  4046. res = rtnl_link_register(&bond_link_ops);
  4047. if (res)
  4048. goto err_link;
  4049. bond_create_debugfs();
  4050. for (i = 0; i < max_bonds; i++) {
  4051. res = bond_create(&init_net, NULL);
  4052. if (res)
  4053. goto err;
  4054. }
  4055. register_netdevice_notifier(&bond_netdev_notifier);
  4056. out:
  4057. return res;
  4058. err:
  4059. rtnl_link_unregister(&bond_link_ops);
  4060. err_link:
  4061. unregister_pernet_subsys(&bond_net_ops);
  4062. goto out;
  4063. }
  4064. static void __exit bonding_exit(void)
  4065. {
  4066. unregister_netdevice_notifier(&bond_netdev_notifier);
  4067. bond_destroy_debugfs();
  4068. rtnl_link_unregister(&bond_link_ops);
  4069. unregister_pernet_subsys(&bond_net_ops);
  4070. #ifdef CONFIG_NET_POLL_CONTROLLER
  4071. /*
  4072. * Make sure we don't have an imbalance on our netpoll blocking
  4073. */
  4074. WARN_ON(atomic_read(&netpoll_block_tx));
  4075. #endif
  4076. }
  4077. module_init(bonding_init);
  4078. module_exit(bonding_exit);
  4079. MODULE_LICENSE("GPL");
  4080. MODULE_VERSION(DRV_VERSION);
  4081. MODULE_DESCRIPTION(DRV_DESCRIPTION ", v" DRV_VERSION);
  4082. MODULE_AUTHOR("Thomas Davis, tadavis@lbl.gov and many others");
  4083. MODULE_ALIAS_RTNL_LINK("bond");