bond_alb.c 48 KB

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  1. /*
  2. * Copyright(c) 1999 - 2004 Intel Corporation. All rights reserved.
  3. *
  4. * This program is free software; you can redistribute it and/or modify it
  5. * under the terms of the GNU General Public License as published by the
  6. * Free Software Foundation; either version 2 of the License, or
  7. * (at your option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful, but
  10. * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
  11. * or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
  12. * for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License along
  15. * with this program; if not, write to the Free Software Foundation, Inc.,
  16. * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  17. *
  18. * The full GNU General Public License is included in this distribution in the
  19. * file called LICENSE.
  20. *
  21. */
  22. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  23. #include <linux/skbuff.h>
  24. #include <linux/netdevice.h>
  25. #include <linux/etherdevice.h>
  26. #include <linux/pkt_sched.h>
  27. #include <linux/spinlock.h>
  28. #include <linux/slab.h>
  29. #include <linux/timer.h>
  30. #include <linux/ip.h>
  31. #include <linux/ipv6.h>
  32. #include <linux/if_arp.h>
  33. #include <linux/if_ether.h>
  34. #include <linux/if_bonding.h>
  35. #include <linux/if_vlan.h>
  36. #include <linux/in.h>
  37. #include <net/ipx.h>
  38. #include <net/arp.h>
  39. #include <net/ipv6.h>
  40. #include <asm/byteorder.h>
  41. #include "bonding.h"
  42. #include "bond_alb.h"
  43. #ifndef __long_aligned
  44. #define __long_aligned __attribute__((aligned((sizeof(long)))))
  45. #endif
  46. static const u8 mac_bcast[ETH_ALEN] __long_aligned = {
  47. 0xff, 0xff, 0xff, 0xff, 0xff, 0xff
  48. };
  49. static const u8 mac_v6_allmcast[ETH_ALEN] __long_aligned = {
  50. 0x33, 0x33, 0x00, 0x00, 0x00, 0x01
  51. };
  52. static const int alb_delta_in_ticks = HZ / ALB_TIMER_TICKS_PER_SEC;
  53. #pragma pack(1)
  54. struct learning_pkt {
  55. u8 mac_dst[ETH_ALEN];
  56. u8 mac_src[ETH_ALEN];
  57. __be16 type;
  58. u8 padding[ETH_ZLEN - ETH_HLEN];
  59. };
  60. struct arp_pkt {
  61. __be16 hw_addr_space;
  62. __be16 prot_addr_space;
  63. u8 hw_addr_len;
  64. u8 prot_addr_len;
  65. __be16 op_code;
  66. u8 mac_src[ETH_ALEN]; /* sender hardware address */
  67. __be32 ip_src; /* sender IP address */
  68. u8 mac_dst[ETH_ALEN]; /* target hardware address */
  69. __be32 ip_dst; /* target IP address */
  70. };
  71. #pragma pack()
  72. static inline struct arp_pkt *arp_pkt(const struct sk_buff *skb)
  73. {
  74. return (struct arp_pkt *)skb_network_header(skb);
  75. }
  76. /* Forward declaration */
  77. static void alb_send_learning_packets(struct slave *slave, u8 mac_addr[]);
  78. static void rlb_purge_src_ip(struct bonding *bond, struct arp_pkt *arp);
  79. static void rlb_src_unlink(struct bonding *bond, u32 index);
  80. static void rlb_src_link(struct bonding *bond, u32 ip_src_hash,
  81. u32 ip_dst_hash);
  82. static inline u8 _simple_hash(const u8 *hash_start, int hash_size)
  83. {
  84. int i;
  85. u8 hash = 0;
  86. for (i = 0; i < hash_size; i++) {
  87. hash ^= hash_start[i];
  88. }
  89. return hash;
  90. }
  91. /*********************** tlb specific functions ***************************/
  92. static inline void _lock_tx_hashtbl_bh(struct bonding *bond)
  93. {
  94. spin_lock_bh(&(BOND_ALB_INFO(bond).tx_hashtbl_lock));
  95. }
  96. static inline void _unlock_tx_hashtbl_bh(struct bonding *bond)
  97. {
  98. spin_unlock_bh(&(BOND_ALB_INFO(bond).tx_hashtbl_lock));
  99. }
  100. static inline void _lock_tx_hashtbl(struct bonding *bond)
  101. {
  102. spin_lock(&(BOND_ALB_INFO(bond).tx_hashtbl_lock));
  103. }
  104. static inline void _unlock_tx_hashtbl(struct bonding *bond)
  105. {
  106. spin_unlock(&(BOND_ALB_INFO(bond).tx_hashtbl_lock));
  107. }
  108. /* Caller must hold tx_hashtbl lock */
  109. static inline void tlb_init_table_entry(struct tlb_client_info *entry, int save_load)
  110. {
  111. if (save_load) {
  112. entry->load_history = 1 + entry->tx_bytes /
  113. BOND_TLB_REBALANCE_INTERVAL;
  114. entry->tx_bytes = 0;
  115. }
  116. entry->tx_slave = NULL;
  117. entry->next = TLB_NULL_INDEX;
  118. entry->prev = TLB_NULL_INDEX;
  119. }
  120. static inline void tlb_init_slave(struct slave *slave)
  121. {
  122. SLAVE_TLB_INFO(slave).load = 0;
  123. SLAVE_TLB_INFO(slave).head = TLB_NULL_INDEX;
  124. }
  125. /* Caller must hold bond lock for read, BH disabled */
  126. static void __tlb_clear_slave(struct bonding *bond, struct slave *slave,
  127. int save_load)
  128. {
  129. struct tlb_client_info *tx_hash_table;
  130. u32 index;
  131. /* clear slave from tx_hashtbl */
  132. tx_hash_table = BOND_ALB_INFO(bond).tx_hashtbl;
  133. /* skip this if we've already freed the tx hash table */
  134. if (tx_hash_table) {
  135. index = SLAVE_TLB_INFO(slave).head;
  136. while (index != TLB_NULL_INDEX) {
  137. u32 next_index = tx_hash_table[index].next;
  138. tlb_init_table_entry(&tx_hash_table[index], save_load);
  139. index = next_index;
  140. }
  141. }
  142. tlb_init_slave(slave);
  143. }
  144. /* Caller must hold bond lock for read */
  145. static void tlb_clear_slave(struct bonding *bond, struct slave *slave,
  146. int save_load)
  147. {
  148. _lock_tx_hashtbl_bh(bond);
  149. __tlb_clear_slave(bond, slave, save_load);
  150. _unlock_tx_hashtbl_bh(bond);
  151. }
  152. /* Must be called before starting the monitor timer */
  153. static int tlb_initialize(struct bonding *bond)
  154. {
  155. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  156. int size = TLB_HASH_TABLE_SIZE * sizeof(struct tlb_client_info);
  157. struct tlb_client_info *new_hashtbl;
  158. int i;
  159. new_hashtbl = kzalloc(size, GFP_KERNEL);
  160. if (!new_hashtbl)
  161. return -1;
  162. _lock_tx_hashtbl_bh(bond);
  163. bond_info->tx_hashtbl = new_hashtbl;
  164. for (i = 0; i < TLB_HASH_TABLE_SIZE; i++) {
  165. tlb_init_table_entry(&bond_info->tx_hashtbl[i], 0);
  166. }
  167. _unlock_tx_hashtbl_bh(bond);
  168. return 0;
  169. }
  170. /* Must be called only after all slaves have been released */
  171. static void tlb_deinitialize(struct bonding *bond)
  172. {
  173. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  174. _lock_tx_hashtbl_bh(bond);
  175. kfree(bond_info->tx_hashtbl);
  176. bond_info->tx_hashtbl = NULL;
  177. _unlock_tx_hashtbl_bh(bond);
  178. }
  179. static long long compute_gap(struct slave *slave)
  180. {
  181. return (s64) (slave->speed << 20) - /* Convert to Megabit per sec */
  182. (s64) (SLAVE_TLB_INFO(slave).load << 3); /* Bytes to bits */
  183. }
  184. /* Caller must hold bond lock for read */
  185. static struct slave *tlb_get_least_loaded_slave(struct bonding *bond)
  186. {
  187. struct slave *slave, *least_loaded;
  188. long long max_gap;
  189. int i;
  190. least_loaded = NULL;
  191. max_gap = LLONG_MIN;
  192. /* Find the slave with the largest gap */
  193. bond_for_each_slave(bond, slave, i) {
  194. if (SLAVE_IS_OK(slave)) {
  195. long long gap = compute_gap(slave);
  196. if (max_gap < gap) {
  197. least_loaded = slave;
  198. max_gap = gap;
  199. }
  200. }
  201. }
  202. return least_loaded;
  203. }
  204. static struct slave *__tlb_choose_channel(struct bonding *bond, u32 hash_index,
  205. u32 skb_len)
  206. {
  207. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  208. struct tlb_client_info *hash_table;
  209. struct slave *assigned_slave;
  210. hash_table = bond_info->tx_hashtbl;
  211. assigned_slave = hash_table[hash_index].tx_slave;
  212. if (!assigned_slave) {
  213. assigned_slave = tlb_get_least_loaded_slave(bond);
  214. if (assigned_slave) {
  215. struct tlb_slave_info *slave_info =
  216. &(SLAVE_TLB_INFO(assigned_slave));
  217. u32 next_index = slave_info->head;
  218. hash_table[hash_index].tx_slave = assigned_slave;
  219. hash_table[hash_index].next = next_index;
  220. hash_table[hash_index].prev = TLB_NULL_INDEX;
  221. if (next_index != TLB_NULL_INDEX) {
  222. hash_table[next_index].prev = hash_index;
  223. }
  224. slave_info->head = hash_index;
  225. slave_info->load +=
  226. hash_table[hash_index].load_history;
  227. }
  228. }
  229. if (assigned_slave) {
  230. hash_table[hash_index].tx_bytes += skb_len;
  231. }
  232. return assigned_slave;
  233. }
  234. /* Caller must hold bond lock for read */
  235. static struct slave *tlb_choose_channel(struct bonding *bond, u32 hash_index,
  236. u32 skb_len)
  237. {
  238. struct slave *tx_slave;
  239. /*
  240. * We don't need to disable softirq here, becase
  241. * tlb_choose_channel() is only called by bond_alb_xmit()
  242. * which already has softirq disabled.
  243. */
  244. _lock_tx_hashtbl(bond);
  245. tx_slave = __tlb_choose_channel(bond, hash_index, skb_len);
  246. _unlock_tx_hashtbl(bond);
  247. return tx_slave;
  248. }
  249. /*********************** rlb specific functions ***************************/
  250. static inline void _lock_rx_hashtbl_bh(struct bonding *bond)
  251. {
  252. spin_lock_bh(&(BOND_ALB_INFO(bond).rx_hashtbl_lock));
  253. }
  254. static inline void _unlock_rx_hashtbl_bh(struct bonding *bond)
  255. {
  256. spin_unlock_bh(&(BOND_ALB_INFO(bond).rx_hashtbl_lock));
  257. }
  258. static inline void _lock_rx_hashtbl(struct bonding *bond)
  259. {
  260. spin_lock(&(BOND_ALB_INFO(bond).rx_hashtbl_lock));
  261. }
  262. static inline void _unlock_rx_hashtbl(struct bonding *bond)
  263. {
  264. spin_unlock(&(BOND_ALB_INFO(bond).rx_hashtbl_lock));
  265. }
  266. /* when an ARP REPLY is received from a client update its info
  267. * in the rx_hashtbl
  268. */
  269. static void rlb_update_entry_from_arp(struct bonding *bond, struct arp_pkt *arp)
  270. {
  271. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  272. struct rlb_client_info *client_info;
  273. u32 hash_index;
  274. _lock_rx_hashtbl_bh(bond);
  275. hash_index = _simple_hash((u8*)&(arp->ip_src), sizeof(arp->ip_src));
  276. client_info = &(bond_info->rx_hashtbl[hash_index]);
  277. if ((client_info->assigned) &&
  278. (client_info->ip_src == arp->ip_dst) &&
  279. (client_info->ip_dst == arp->ip_src) &&
  280. (!ether_addr_equal_64bits(client_info->mac_dst, arp->mac_src))) {
  281. /* update the clients MAC address */
  282. memcpy(client_info->mac_dst, arp->mac_src, ETH_ALEN);
  283. client_info->ntt = 1;
  284. bond_info->rx_ntt = 1;
  285. }
  286. _unlock_rx_hashtbl_bh(bond);
  287. }
  288. static int rlb_arp_recv(const struct sk_buff *skb, struct bonding *bond,
  289. struct slave *slave)
  290. {
  291. struct arp_pkt *arp, _arp;
  292. if (skb->protocol != cpu_to_be16(ETH_P_ARP))
  293. goto out;
  294. arp = skb_header_pointer(skb, 0, sizeof(_arp), &_arp);
  295. if (!arp)
  296. goto out;
  297. /* We received an ARP from arp->ip_src.
  298. * We might have used this IP address previously (on the bonding host
  299. * itself or on a system that is bridged together with the bond).
  300. * However, if arp->mac_src is different than what is stored in
  301. * rx_hashtbl, some other host is now using the IP and we must prevent
  302. * sending out client updates with this IP address and the old MAC
  303. * address.
  304. * Clean up all hash table entries that have this address as ip_src but
  305. * have a different mac_src.
  306. */
  307. rlb_purge_src_ip(bond, arp);
  308. if (arp->op_code == htons(ARPOP_REPLY)) {
  309. /* update rx hash table for this ARP */
  310. rlb_update_entry_from_arp(bond, arp);
  311. pr_debug("Server received an ARP Reply from client\n");
  312. }
  313. out:
  314. return RX_HANDLER_ANOTHER;
  315. }
  316. /* Caller must hold bond lock for read */
  317. static struct slave *rlb_next_rx_slave(struct bonding *bond)
  318. {
  319. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  320. struct slave *rx_slave, *slave, *start_at;
  321. int i = 0;
  322. if (bond_info->next_rx_slave) {
  323. start_at = bond_info->next_rx_slave;
  324. } else {
  325. start_at = bond->first_slave;
  326. }
  327. rx_slave = NULL;
  328. bond_for_each_slave_from(bond, slave, i, start_at) {
  329. if (SLAVE_IS_OK(slave)) {
  330. if (!rx_slave) {
  331. rx_slave = slave;
  332. } else if (slave->speed > rx_slave->speed) {
  333. rx_slave = slave;
  334. }
  335. }
  336. }
  337. if (rx_slave) {
  338. bond_info->next_rx_slave = rx_slave->next;
  339. }
  340. return rx_slave;
  341. }
  342. /* teach the switch the mac of a disabled slave
  343. * on the primary for fault tolerance
  344. *
  345. * Caller must hold bond->curr_slave_lock for write or bond lock for write
  346. */
  347. static void rlb_teach_disabled_mac_on_primary(struct bonding *bond, u8 addr[])
  348. {
  349. if (!bond->curr_active_slave) {
  350. return;
  351. }
  352. if (!bond->alb_info.primary_is_promisc) {
  353. if (!dev_set_promiscuity(bond->curr_active_slave->dev, 1))
  354. bond->alb_info.primary_is_promisc = 1;
  355. else
  356. bond->alb_info.primary_is_promisc = 0;
  357. }
  358. bond->alb_info.rlb_promisc_timeout_counter = 0;
  359. alb_send_learning_packets(bond->curr_active_slave, addr);
  360. }
  361. /* slave being removed should not be active at this point
  362. *
  363. * Caller must hold bond lock for read
  364. */
  365. static void rlb_clear_slave(struct bonding *bond, struct slave *slave)
  366. {
  367. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  368. struct rlb_client_info *rx_hash_table;
  369. u32 index, next_index;
  370. /* clear slave from rx_hashtbl */
  371. _lock_rx_hashtbl_bh(bond);
  372. rx_hash_table = bond_info->rx_hashtbl;
  373. index = bond_info->rx_hashtbl_used_head;
  374. for (; index != RLB_NULL_INDEX; index = next_index) {
  375. next_index = rx_hash_table[index].used_next;
  376. if (rx_hash_table[index].slave == slave) {
  377. struct slave *assigned_slave = rlb_next_rx_slave(bond);
  378. if (assigned_slave) {
  379. rx_hash_table[index].slave = assigned_slave;
  380. if (!ether_addr_equal_64bits(rx_hash_table[index].mac_dst,
  381. mac_bcast)) {
  382. bond_info->rx_hashtbl[index].ntt = 1;
  383. bond_info->rx_ntt = 1;
  384. /* A slave has been removed from the
  385. * table because it is either disabled
  386. * or being released. We must retry the
  387. * update to avoid clients from not
  388. * being updated & disconnecting when
  389. * there is stress
  390. */
  391. bond_info->rlb_update_retry_counter =
  392. RLB_UPDATE_RETRY;
  393. }
  394. } else { /* there is no active slave */
  395. rx_hash_table[index].slave = NULL;
  396. }
  397. }
  398. }
  399. _unlock_rx_hashtbl_bh(bond);
  400. write_lock_bh(&bond->curr_slave_lock);
  401. if (slave != bond->curr_active_slave) {
  402. rlb_teach_disabled_mac_on_primary(bond, slave->dev->dev_addr);
  403. }
  404. write_unlock_bh(&bond->curr_slave_lock);
  405. }
  406. static void rlb_update_client(struct rlb_client_info *client_info)
  407. {
  408. int i;
  409. if (!client_info->slave) {
  410. return;
  411. }
  412. for (i = 0; i < RLB_ARP_BURST_SIZE; i++) {
  413. struct sk_buff *skb;
  414. skb = arp_create(ARPOP_REPLY, ETH_P_ARP,
  415. client_info->ip_dst,
  416. client_info->slave->dev,
  417. client_info->ip_src,
  418. client_info->mac_dst,
  419. client_info->slave->dev->dev_addr,
  420. client_info->mac_dst);
  421. if (!skb) {
  422. pr_err("%s: Error: failed to create an ARP packet\n",
  423. client_info->slave->bond->dev->name);
  424. continue;
  425. }
  426. skb->dev = client_info->slave->dev;
  427. if (client_info->tag) {
  428. skb = vlan_put_tag(skb, client_info->vlan_id);
  429. if (!skb) {
  430. pr_err("%s: Error: failed to insert VLAN tag\n",
  431. client_info->slave->bond->dev->name);
  432. continue;
  433. }
  434. }
  435. arp_xmit(skb);
  436. }
  437. }
  438. /* sends ARP REPLIES that update the clients that need updating */
  439. static void rlb_update_rx_clients(struct bonding *bond)
  440. {
  441. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  442. struct rlb_client_info *client_info;
  443. u32 hash_index;
  444. _lock_rx_hashtbl_bh(bond);
  445. hash_index = bond_info->rx_hashtbl_used_head;
  446. for (; hash_index != RLB_NULL_INDEX;
  447. hash_index = client_info->used_next) {
  448. client_info = &(bond_info->rx_hashtbl[hash_index]);
  449. if (client_info->ntt) {
  450. rlb_update_client(client_info);
  451. if (bond_info->rlb_update_retry_counter == 0) {
  452. client_info->ntt = 0;
  453. }
  454. }
  455. }
  456. /* do not update the entries again until this counter is zero so that
  457. * not to confuse the clients.
  458. */
  459. bond_info->rlb_update_delay_counter = RLB_UPDATE_DELAY;
  460. _unlock_rx_hashtbl_bh(bond);
  461. }
  462. /* The slave was assigned a new mac address - update the clients */
  463. static void rlb_req_update_slave_clients(struct bonding *bond, struct slave *slave)
  464. {
  465. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  466. struct rlb_client_info *client_info;
  467. int ntt = 0;
  468. u32 hash_index;
  469. _lock_rx_hashtbl_bh(bond);
  470. hash_index = bond_info->rx_hashtbl_used_head;
  471. for (; hash_index != RLB_NULL_INDEX;
  472. hash_index = client_info->used_next) {
  473. client_info = &(bond_info->rx_hashtbl[hash_index]);
  474. if ((client_info->slave == slave) &&
  475. !ether_addr_equal_64bits(client_info->mac_dst, mac_bcast)) {
  476. client_info->ntt = 1;
  477. ntt = 1;
  478. }
  479. }
  480. // update the team's flag only after the whole iteration
  481. if (ntt) {
  482. bond_info->rx_ntt = 1;
  483. //fasten the change
  484. bond_info->rlb_update_retry_counter = RLB_UPDATE_RETRY;
  485. }
  486. _unlock_rx_hashtbl_bh(bond);
  487. }
  488. /* mark all clients using src_ip to be updated */
  489. static void rlb_req_update_subnet_clients(struct bonding *bond, __be32 src_ip)
  490. {
  491. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  492. struct rlb_client_info *client_info;
  493. u32 hash_index;
  494. _lock_rx_hashtbl(bond);
  495. hash_index = bond_info->rx_hashtbl_used_head;
  496. for (; hash_index != RLB_NULL_INDEX;
  497. hash_index = client_info->used_next) {
  498. client_info = &(bond_info->rx_hashtbl[hash_index]);
  499. if (!client_info->slave) {
  500. pr_err("%s: Error: found a client with no channel in the client's hash table\n",
  501. bond->dev->name);
  502. continue;
  503. }
  504. /*update all clients using this src_ip, that are not assigned
  505. * to the team's address (curr_active_slave) and have a known
  506. * unicast mac address.
  507. */
  508. if ((client_info->ip_src == src_ip) &&
  509. !ether_addr_equal_64bits(client_info->slave->dev->dev_addr,
  510. bond->dev->dev_addr) &&
  511. !ether_addr_equal_64bits(client_info->mac_dst, mac_bcast)) {
  512. client_info->ntt = 1;
  513. bond_info->rx_ntt = 1;
  514. }
  515. }
  516. _unlock_rx_hashtbl(bond);
  517. }
  518. /* Caller must hold both bond and ptr locks for read */
  519. static struct slave *rlb_choose_channel(struct sk_buff *skb, struct bonding *bond)
  520. {
  521. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  522. struct arp_pkt *arp = arp_pkt(skb);
  523. struct slave *assigned_slave;
  524. struct rlb_client_info *client_info;
  525. u32 hash_index = 0;
  526. _lock_rx_hashtbl(bond);
  527. hash_index = _simple_hash((u8 *)&arp->ip_dst, sizeof(arp->ip_dst));
  528. client_info = &(bond_info->rx_hashtbl[hash_index]);
  529. if (client_info->assigned) {
  530. if ((client_info->ip_src == arp->ip_src) &&
  531. (client_info->ip_dst == arp->ip_dst)) {
  532. /* the entry is already assigned to this client */
  533. if (!ether_addr_equal_64bits(arp->mac_dst, mac_bcast)) {
  534. /* update mac address from arp */
  535. memcpy(client_info->mac_dst, arp->mac_dst, ETH_ALEN);
  536. }
  537. memcpy(client_info->mac_src, arp->mac_src, ETH_ALEN);
  538. assigned_slave = client_info->slave;
  539. if (assigned_slave) {
  540. _unlock_rx_hashtbl(bond);
  541. return assigned_slave;
  542. }
  543. } else {
  544. /* the entry is already assigned to some other client,
  545. * move the old client to primary (curr_active_slave) so
  546. * that the new client can be assigned to this entry.
  547. */
  548. if (bond->curr_active_slave &&
  549. client_info->slave != bond->curr_active_slave) {
  550. client_info->slave = bond->curr_active_slave;
  551. rlb_update_client(client_info);
  552. }
  553. }
  554. }
  555. /* assign a new slave */
  556. assigned_slave = rlb_next_rx_slave(bond);
  557. if (assigned_slave) {
  558. if (!(client_info->assigned &&
  559. client_info->ip_src == arp->ip_src)) {
  560. /* ip_src is going to be updated,
  561. * fix the src hash list
  562. */
  563. u32 hash_src = _simple_hash((u8 *)&arp->ip_src,
  564. sizeof(arp->ip_src));
  565. rlb_src_unlink(bond, hash_index);
  566. rlb_src_link(bond, hash_src, hash_index);
  567. }
  568. client_info->ip_src = arp->ip_src;
  569. client_info->ip_dst = arp->ip_dst;
  570. /* arp->mac_dst is broadcast for arp reqeusts.
  571. * will be updated with clients actual unicast mac address
  572. * upon receiving an arp reply.
  573. */
  574. memcpy(client_info->mac_dst, arp->mac_dst, ETH_ALEN);
  575. memcpy(client_info->mac_src, arp->mac_src, ETH_ALEN);
  576. client_info->slave = assigned_slave;
  577. if (!ether_addr_equal_64bits(client_info->mac_dst, mac_bcast)) {
  578. client_info->ntt = 1;
  579. bond->alb_info.rx_ntt = 1;
  580. } else {
  581. client_info->ntt = 0;
  582. }
  583. if (bond_vlan_used(bond)) {
  584. if (!vlan_get_tag(skb, &client_info->vlan_id))
  585. client_info->tag = 1;
  586. }
  587. if (!client_info->assigned) {
  588. u32 prev_tbl_head = bond_info->rx_hashtbl_used_head;
  589. bond_info->rx_hashtbl_used_head = hash_index;
  590. client_info->used_next = prev_tbl_head;
  591. if (prev_tbl_head != RLB_NULL_INDEX) {
  592. bond_info->rx_hashtbl[prev_tbl_head].used_prev =
  593. hash_index;
  594. }
  595. client_info->assigned = 1;
  596. }
  597. }
  598. _unlock_rx_hashtbl(bond);
  599. return assigned_slave;
  600. }
  601. /* chooses (and returns) transmit channel for arp reply
  602. * does not choose channel for other arp types since they are
  603. * sent on the curr_active_slave
  604. */
  605. static struct slave *rlb_arp_xmit(struct sk_buff *skb, struct bonding *bond)
  606. {
  607. struct arp_pkt *arp = arp_pkt(skb);
  608. struct slave *tx_slave = NULL;
  609. /* Don't modify or load balance ARPs that do not originate locally
  610. * (e.g.,arrive via a bridge).
  611. */
  612. if (!bond_slave_has_mac(bond, arp->mac_src))
  613. return NULL;
  614. if (arp->op_code == htons(ARPOP_REPLY)) {
  615. /* the arp must be sent on the selected
  616. * rx channel
  617. */
  618. tx_slave = rlb_choose_channel(skb, bond);
  619. if (tx_slave) {
  620. memcpy(arp->mac_src,tx_slave->dev->dev_addr, ETH_ALEN);
  621. }
  622. pr_debug("Server sent ARP Reply packet\n");
  623. } else if (arp->op_code == htons(ARPOP_REQUEST)) {
  624. /* Create an entry in the rx_hashtbl for this client as a
  625. * place holder.
  626. * When the arp reply is received the entry will be updated
  627. * with the correct unicast address of the client.
  628. */
  629. rlb_choose_channel(skb, bond);
  630. /* The ARP reply packets must be delayed so that
  631. * they can cancel out the influence of the ARP request.
  632. */
  633. bond->alb_info.rlb_update_delay_counter = RLB_UPDATE_DELAY;
  634. /* arp requests are broadcast and are sent on the primary
  635. * the arp request will collapse all clients on the subnet to
  636. * the primary slave. We must register these clients to be
  637. * updated with their assigned mac.
  638. */
  639. rlb_req_update_subnet_clients(bond, arp->ip_src);
  640. pr_debug("Server sent ARP Request packet\n");
  641. }
  642. return tx_slave;
  643. }
  644. /* Caller must hold bond lock for read */
  645. static void rlb_rebalance(struct bonding *bond)
  646. {
  647. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  648. struct slave *assigned_slave;
  649. struct rlb_client_info *client_info;
  650. int ntt;
  651. u32 hash_index;
  652. _lock_rx_hashtbl_bh(bond);
  653. ntt = 0;
  654. hash_index = bond_info->rx_hashtbl_used_head;
  655. for (; hash_index != RLB_NULL_INDEX;
  656. hash_index = client_info->used_next) {
  657. client_info = &(bond_info->rx_hashtbl[hash_index]);
  658. assigned_slave = rlb_next_rx_slave(bond);
  659. if (assigned_slave && (client_info->slave != assigned_slave)) {
  660. client_info->slave = assigned_slave;
  661. client_info->ntt = 1;
  662. ntt = 1;
  663. }
  664. }
  665. /* update the team's flag only after the whole iteration */
  666. if (ntt) {
  667. bond_info->rx_ntt = 1;
  668. }
  669. _unlock_rx_hashtbl_bh(bond);
  670. }
  671. /* Caller must hold rx_hashtbl lock */
  672. static void rlb_init_table_entry_dst(struct rlb_client_info *entry)
  673. {
  674. entry->used_next = RLB_NULL_INDEX;
  675. entry->used_prev = RLB_NULL_INDEX;
  676. entry->assigned = 0;
  677. entry->slave = NULL;
  678. entry->tag = 0;
  679. }
  680. static void rlb_init_table_entry_src(struct rlb_client_info *entry)
  681. {
  682. entry->src_first = RLB_NULL_INDEX;
  683. entry->src_prev = RLB_NULL_INDEX;
  684. entry->src_next = RLB_NULL_INDEX;
  685. }
  686. static void rlb_init_table_entry(struct rlb_client_info *entry)
  687. {
  688. memset(entry, 0, sizeof(struct rlb_client_info));
  689. rlb_init_table_entry_dst(entry);
  690. rlb_init_table_entry_src(entry);
  691. }
  692. static void rlb_delete_table_entry_dst(struct bonding *bond, u32 index)
  693. {
  694. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  695. u32 next_index = bond_info->rx_hashtbl[index].used_next;
  696. u32 prev_index = bond_info->rx_hashtbl[index].used_prev;
  697. if (index == bond_info->rx_hashtbl_used_head)
  698. bond_info->rx_hashtbl_used_head = next_index;
  699. if (prev_index != RLB_NULL_INDEX)
  700. bond_info->rx_hashtbl[prev_index].used_next = next_index;
  701. if (next_index != RLB_NULL_INDEX)
  702. bond_info->rx_hashtbl[next_index].used_prev = prev_index;
  703. }
  704. /* unlink a rlb hash table entry from the src list */
  705. static void rlb_src_unlink(struct bonding *bond, u32 index)
  706. {
  707. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  708. u32 next_index = bond_info->rx_hashtbl[index].src_next;
  709. u32 prev_index = bond_info->rx_hashtbl[index].src_prev;
  710. bond_info->rx_hashtbl[index].src_next = RLB_NULL_INDEX;
  711. bond_info->rx_hashtbl[index].src_prev = RLB_NULL_INDEX;
  712. if (next_index != RLB_NULL_INDEX)
  713. bond_info->rx_hashtbl[next_index].src_prev = prev_index;
  714. if (prev_index == RLB_NULL_INDEX)
  715. return;
  716. /* is prev_index pointing to the head of this list? */
  717. if (bond_info->rx_hashtbl[prev_index].src_first == index)
  718. bond_info->rx_hashtbl[prev_index].src_first = next_index;
  719. else
  720. bond_info->rx_hashtbl[prev_index].src_next = next_index;
  721. }
  722. static void rlb_delete_table_entry(struct bonding *bond, u32 index)
  723. {
  724. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  725. struct rlb_client_info *entry = &(bond_info->rx_hashtbl[index]);
  726. rlb_delete_table_entry_dst(bond, index);
  727. rlb_init_table_entry_dst(entry);
  728. rlb_src_unlink(bond, index);
  729. }
  730. /* add the rx_hashtbl[ip_dst_hash] entry to the list
  731. * of entries with identical ip_src_hash
  732. */
  733. static void rlb_src_link(struct bonding *bond, u32 ip_src_hash, u32 ip_dst_hash)
  734. {
  735. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  736. u32 next;
  737. bond_info->rx_hashtbl[ip_dst_hash].src_prev = ip_src_hash;
  738. next = bond_info->rx_hashtbl[ip_src_hash].src_first;
  739. bond_info->rx_hashtbl[ip_dst_hash].src_next = next;
  740. if (next != RLB_NULL_INDEX)
  741. bond_info->rx_hashtbl[next].src_prev = ip_dst_hash;
  742. bond_info->rx_hashtbl[ip_src_hash].src_first = ip_dst_hash;
  743. }
  744. /* deletes all rx_hashtbl entries with arp->ip_src if their mac_src does
  745. * not match arp->mac_src */
  746. static void rlb_purge_src_ip(struct bonding *bond, struct arp_pkt *arp)
  747. {
  748. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  749. u32 ip_src_hash = _simple_hash((u8*)&(arp->ip_src), sizeof(arp->ip_src));
  750. u32 index;
  751. _lock_rx_hashtbl_bh(bond);
  752. index = bond_info->rx_hashtbl[ip_src_hash].src_first;
  753. while (index != RLB_NULL_INDEX) {
  754. struct rlb_client_info *entry = &(bond_info->rx_hashtbl[index]);
  755. u32 next_index = entry->src_next;
  756. if (entry->ip_src == arp->ip_src &&
  757. !ether_addr_equal_64bits(arp->mac_src, entry->mac_src))
  758. rlb_delete_table_entry(bond, index);
  759. index = next_index;
  760. }
  761. _unlock_rx_hashtbl_bh(bond);
  762. }
  763. static int rlb_initialize(struct bonding *bond)
  764. {
  765. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  766. struct rlb_client_info *new_hashtbl;
  767. int size = RLB_HASH_TABLE_SIZE * sizeof(struct rlb_client_info);
  768. int i;
  769. new_hashtbl = kmalloc(size, GFP_KERNEL);
  770. if (!new_hashtbl)
  771. return -1;
  772. _lock_rx_hashtbl_bh(bond);
  773. bond_info->rx_hashtbl = new_hashtbl;
  774. bond_info->rx_hashtbl_used_head = RLB_NULL_INDEX;
  775. for (i = 0; i < RLB_HASH_TABLE_SIZE; i++) {
  776. rlb_init_table_entry(bond_info->rx_hashtbl + i);
  777. }
  778. _unlock_rx_hashtbl_bh(bond);
  779. /* register to receive ARPs */
  780. bond->recv_probe = rlb_arp_recv;
  781. return 0;
  782. }
  783. static void rlb_deinitialize(struct bonding *bond)
  784. {
  785. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  786. _lock_rx_hashtbl_bh(bond);
  787. kfree(bond_info->rx_hashtbl);
  788. bond_info->rx_hashtbl = NULL;
  789. bond_info->rx_hashtbl_used_head = RLB_NULL_INDEX;
  790. _unlock_rx_hashtbl_bh(bond);
  791. }
  792. static void rlb_clear_vlan(struct bonding *bond, unsigned short vlan_id)
  793. {
  794. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  795. u32 curr_index;
  796. _lock_rx_hashtbl_bh(bond);
  797. curr_index = bond_info->rx_hashtbl_used_head;
  798. while (curr_index != RLB_NULL_INDEX) {
  799. struct rlb_client_info *curr = &(bond_info->rx_hashtbl[curr_index]);
  800. u32 next_index = bond_info->rx_hashtbl[curr_index].used_next;
  801. if (curr->tag && (curr->vlan_id == vlan_id))
  802. rlb_delete_table_entry(bond, curr_index);
  803. curr_index = next_index;
  804. }
  805. _unlock_rx_hashtbl_bh(bond);
  806. }
  807. /*********************** tlb/rlb shared functions *********************/
  808. static void alb_send_learning_packets(struct slave *slave, u8 mac_addr[])
  809. {
  810. struct bonding *bond = bond_get_bond_by_slave(slave);
  811. struct learning_pkt pkt;
  812. int size = sizeof(struct learning_pkt);
  813. int i;
  814. memset(&pkt, 0, size);
  815. memcpy(pkt.mac_dst, mac_addr, ETH_ALEN);
  816. memcpy(pkt.mac_src, mac_addr, ETH_ALEN);
  817. pkt.type = cpu_to_be16(ETH_P_LOOP);
  818. for (i = 0; i < MAX_LP_BURST; i++) {
  819. struct sk_buff *skb;
  820. char *data;
  821. skb = dev_alloc_skb(size);
  822. if (!skb) {
  823. return;
  824. }
  825. data = skb_put(skb, size);
  826. memcpy(data, &pkt, size);
  827. skb_reset_mac_header(skb);
  828. skb->network_header = skb->mac_header + ETH_HLEN;
  829. skb->protocol = pkt.type;
  830. skb->priority = TC_PRIO_CONTROL;
  831. skb->dev = slave->dev;
  832. if (bond_vlan_used(bond)) {
  833. struct vlan_entry *vlan;
  834. vlan = bond_next_vlan(bond,
  835. bond->alb_info.current_alb_vlan);
  836. bond->alb_info.current_alb_vlan = vlan;
  837. if (!vlan) {
  838. kfree_skb(skb);
  839. continue;
  840. }
  841. skb = vlan_put_tag(skb, vlan->vlan_id);
  842. if (!skb) {
  843. pr_err("%s: Error: failed to insert VLAN tag\n",
  844. bond->dev->name);
  845. continue;
  846. }
  847. }
  848. dev_queue_xmit(skb);
  849. }
  850. }
  851. static int alb_set_slave_mac_addr(struct slave *slave, u8 addr[])
  852. {
  853. struct net_device *dev = slave->dev;
  854. struct sockaddr s_addr;
  855. if (slave->bond->params.mode == BOND_MODE_TLB) {
  856. memcpy(dev->dev_addr, addr, dev->addr_len);
  857. return 0;
  858. }
  859. /* for rlb each slave must have a unique hw mac addresses so that */
  860. /* each slave will receive packets destined to a different mac */
  861. memcpy(s_addr.sa_data, addr, dev->addr_len);
  862. s_addr.sa_family = dev->type;
  863. if (dev_set_mac_address(dev, &s_addr)) {
  864. pr_err("%s: Error: dev_set_mac_address of dev %s failed!\n"
  865. "ALB mode requires that the base driver support setting the hw address also when the network device's interface is open\n",
  866. slave->bond->dev->name, dev->name);
  867. return -EOPNOTSUPP;
  868. }
  869. return 0;
  870. }
  871. /*
  872. * Swap MAC addresses between two slaves.
  873. *
  874. * Called with RTNL held, and no other locks.
  875. *
  876. */
  877. static void alb_swap_mac_addr(struct bonding *bond, struct slave *slave1, struct slave *slave2)
  878. {
  879. u8 tmp_mac_addr[ETH_ALEN];
  880. memcpy(tmp_mac_addr, slave1->dev->dev_addr, ETH_ALEN);
  881. alb_set_slave_mac_addr(slave1, slave2->dev->dev_addr);
  882. alb_set_slave_mac_addr(slave2, tmp_mac_addr);
  883. }
  884. /*
  885. * Send learning packets after MAC address swap.
  886. *
  887. * Called with RTNL and no other locks
  888. */
  889. static void alb_fasten_mac_swap(struct bonding *bond, struct slave *slave1,
  890. struct slave *slave2)
  891. {
  892. int slaves_state_differ = (SLAVE_IS_OK(slave1) != SLAVE_IS_OK(slave2));
  893. struct slave *disabled_slave = NULL;
  894. ASSERT_RTNL();
  895. /* fasten the change in the switch */
  896. if (SLAVE_IS_OK(slave1)) {
  897. alb_send_learning_packets(slave1, slave1->dev->dev_addr);
  898. if (bond->alb_info.rlb_enabled) {
  899. /* inform the clients that the mac address
  900. * has changed
  901. */
  902. rlb_req_update_slave_clients(bond, slave1);
  903. }
  904. } else {
  905. disabled_slave = slave1;
  906. }
  907. if (SLAVE_IS_OK(slave2)) {
  908. alb_send_learning_packets(slave2, slave2->dev->dev_addr);
  909. if (bond->alb_info.rlb_enabled) {
  910. /* inform the clients that the mac address
  911. * has changed
  912. */
  913. rlb_req_update_slave_clients(bond, slave2);
  914. }
  915. } else {
  916. disabled_slave = slave2;
  917. }
  918. if (bond->alb_info.rlb_enabled && slaves_state_differ) {
  919. /* A disabled slave was assigned an active mac addr */
  920. rlb_teach_disabled_mac_on_primary(bond,
  921. disabled_slave->dev->dev_addr);
  922. }
  923. }
  924. /**
  925. * alb_change_hw_addr_on_detach
  926. * @bond: bonding we're working on
  927. * @slave: the slave that was just detached
  928. *
  929. * We assume that @slave was already detached from the slave list.
  930. *
  931. * If @slave's permanent hw address is different both from its current
  932. * address and from @bond's address, then somewhere in the bond there's
  933. * a slave that has @slave's permanet address as its current address.
  934. * We'll make sure that that slave no longer uses @slave's permanent address.
  935. *
  936. * Caller must hold RTNL and no other locks
  937. */
  938. static void alb_change_hw_addr_on_detach(struct bonding *bond, struct slave *slave)
  939. {
  940. int perm_curr_diff;
  941. int perm_bond_diff;
  942. perm_curr_diff = !ether_addr_equal_64bits(slave->perm_hwaddr,
  943. slave->dev->dev_addr);
  944. perm_bond_diff = !ether_addr_equal_64bits(slave->perm_hwaddr,
  945. bond->dev->dev_addr);
  946. if (perm_curr_diff && perm_bond_diff) {
  947. struct slave *tmp_slave;
  948. int i, found = 0;
  949. bond_for_each_slave(bond, tmp_slave, i) {
  950. if (ether_addr_equal_64bits(slave->perm_hwaddr,
  951. tmp_slave->dev->dev_addr)) {
  952. found = 1;
  953. break;
  954. }
  955. }
  956. if (found) {
  957. /* locking: needs RTNL and nothing else */
  958. alb_swap_mac_addr(bond, slave, tmp_slave);
  959. alb_fasten_mac_swap(bond, slave, tmp_slave);
  960. }
  961. }
  962. }
  963. /**
  964. * alb_handle_addr_collision_on_attach
  965. * @bond: bonding we're working on
  966. * @slave: the slave that was just attached
  967. *
  968. * checks uniqueness of slave's mac address and handles the case the
  969. * new slave uses the bonds mac address.
  970. *
  971. * If the permanent hw address of @slave is @bond's hw address, we need to
  972. * find a different hw address to give @slave, that isn't in use by any other
  973. * slave in the bond. This address must be, of course, one of the permanent
  974. * addresses of the other slaves.
  975. *
  976. * We go over the slave list, and for each slave there we compare its
  977. * permanent hw address with the current address of all the other slaves.
  978. * If no match was found, then we've found a slave with a permanent address
  979. * that isn't used by any other slave in the bond, so we can assign it to
  980. * @slave.
  981. *
  982. * assumption: this function is called before @slave is attached to the
  983. * bond slave list.
  984. *
  985. * caller must hold the bond lock for write since the mac addresses are compared
  986. * and may be swapped.
  987. */
  988. static int alb_handle_addr_collision_on_attach(struct bonding *bond, struct slave *slave)
  989. {
  990. struct slave *tmp_slave1, *tmp_slave2, *free_mac_slave;
  991. struct slave *has_bond_addr = bond->curr_active_slave;
  992. int i, j, found = 0;
  993. if (bond->slave_cnt == 0) {
  994. /* this is the first slave */
  995. return 0;
  996. }
  997. /* if slave's mac address differs from bond's mac address
  998. * check uniqueness of slave's mac address against the other
  999. * slaves in the bond.
  1000. */
  1001. if (!ether_addr_equal_64bits(slave->perm_hwaddr, bond->dev->dev_addr)) {
  1002. bond_for_each_slave(bond, tmp_slave1, i) {
  1003. if (ether_addr_equal_64bits(tmp_slave1->dev->dev_addr,
  1004. slave->dev->dev_addr)) {
  1005. found = 1;
  1006. break;
  1007. }
  1008. }
  1009. if (!found)
  1010. return 0;
  1011. /* Try setting slave mac to bond address and fall-through
  1012. to code handling that situation below... */
  1013. alb_set_slave_mac_addr(slave, bond->dev->dev_addr);
  1014. }
  1015. /* The slave's address is equal to the address of the bond.
  1016. * Search for a spare address in the bond for this slave.
  1017. */
  1018. free_mac_slave = NULL;
  1019. bond_for_each_slave(bond, tmp_slave1, i) {
  1020. found = 0;
  1021. bond_for_each_slave(bond, tmp_slave2, j) {
  1022. if (ether_addr_equal_64bits(tmp_slave1->perm_hwaddr,
  1023. tmp_slave2->dev->dev_addr)) {
  1024. found = 1;
  1025. break;
  1026. }
  1027. }
  1028. if (!found) {
  1029. /* no slave has tmp_slave1's perm addr
  1030. * as its curr addr
  1031. */
  1032. free_mac_slave = tmp_slave1;
  1033. break;
  1034. }
  1035. if (!has_bond_addr) {
  1036. if (ether_addr_equal_64bits(tmp_slave1->dev->dev_addr,
  1037. bond->dev->dev_addr)) {
  1038. has_bond_addr = tmp_slave1;
  1039. }
  1040. }
  1041. }
  1042. if (free_mac_slave) {
  1043. alb_set_slave_mac_addr(slave, free_mac_slave->perm_hwaddr);
  1044. pr_warning("%s: Warning: the hw address of slave %s is in use by the bond; giving it the hw address of %s\n",
  1045. bond->dev->name, slave->dev->name,
  1046. free_mac_slave->dev->name);
  1047. } else if (has_bond_addr) {
  1048. pr_err("%s: Error: the hw address of slave %s is in use by the bond; couldn't find a slave with a free hw address to give it (this should not have happened)\n",
  1049. bond->dev->name, slave->dev->name);
  1050. return -EFAULT;
  1051. }
  1052. return 0;
  1053. }
  1054. /**
  1055. * alb_set_mac_address
  1056. * @bond:
  1057. * @addr:
  1058. *
  1059. * In TLB mode all slaves are configured to the bond's hw address, but set
  1060. * their dev_addr field to different addresses (based on their permanent hw
  1061. * addresses).
  1062. *
  1063. * For each slave, this function sets the interface to the new address and then
  1064. * changes its dev_addr field to its previous value.
  1065. *
  1066. * Unwinding assumes bond's mac address has not yet changed.
  1067. */
  1068. static int alb_set_mac_address(struct bonding *bond, void *addr)
  1069. {
  1070. struct sockaddr sa;
  1071. struct slave *slave, *stop_at;
  1072. char tmp_addr[ETH_ALEN];
  1073. int res;
  1074. int i;
  1075. if (bond->alb_info.rlb_enabled) {
  1076. return 0;
  1077. }
  1078. bond_for_each_slave(bond, slave, i) {
  1079. /* save net_device's current hw address */
  1080. memcpy(tmp_addr, slave->dev->dev_addr, ETH_ALEN);
  1081. res = dev_set_mac_address(slave->dev, addr);
  1082. /* restore net_device's hw address */
  1083. memcpy(slave->dev->dev_addr, tmp_addr, ETH_ALEN);
  1084. if (res)
  1085. goto unwind;
  1086. }
  1087. return 0;
  1088. unwind:
  1089. memcpy(sa.sa_data, bond->dev->dev_addr, bond->dev->addr_len);
  1090. sa.sa_family = bond->dev->type;
  1091. /* unwind from head to the slave that failed */
  1092. stop_at = slave;
  1093. bond_for_each_slave_from_to(bond, slave, i, bond->first_slave, stop_at) {
  1094. memcpy(tmp_addr, slave->dev->dev_addr, ETH_ALEN);
  1095. dev_set_mac_address(slave->dev, &sa);
  1096. memcpy(slave->dev->dev_addr, tmp_addr, ETH_ALEN);
  1097. }
  1098. return res;
  1099. }
  1100. /************************ exported alb funcions ************************/
  1101. int bond_alb_initialize(struct bonding *bond, int rlb_enabled)
  1102. {
  1103. int res;
  1104. res = tlb_initialize(bond);
  1105. if (res) {
  1106. return res;
  1107. }
  1108. if (rlb_enabled) {
  1109. bond->alb_info.rlb_enabled = 1;
  1110. /* initialize rlb */
  1111. res = rlb_initialize(bond);
  1112. if (res) {
  1113. tlb_deinitialize(bond);
  1114. return res;
  1115. }
  1116. } else {
  1117. bond->alb_info.rlb_enabled = 0;
  1118. }
  1119. return 0;
  1120. }
  1121. void bond_alb_deinitialize(struct bonding *bond)
  1122. {
  1123. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  1124. tlb_deinitialize(bond);
  1125. if (bond_info->rlb_enabled) {
  1126. rlb_deinitialize(bond);
  1127. }
  1128. }
  1129. int bond_alb_xmit(struct sk_buff *skb, struct net_device *bond_dev)
  1130. {
  1131. struct bonding *bond = netdev_priv(bond_dev);
  1132. struct ethhdr *eth_data;
  1133. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  1134. struct slave *tx_slave = NULL;
  1135. static const __be32 ip_bcast = htonl(0xffffffff);
  1136. int hash_size = 0;
  1137. int do_tx_balance = 1;
  1138. u32 hash_index = 0;
  1139. const u8 *hash_start = NULL;
  1140. int res = 1;
  1141. struct ipv6hdr *ip6hdr;
  1142. skb_reset_mac_header(skb);
  1143. eth_data = eth_hdr(skb);
  1144. /* make sure that the curr_active_slave do not change during tx
  1145. */
  1146. read_lock(&bond->curr_slave_lock);
  1147. switch (ntohs(skb->protocol)) {
  1148. case ETH_P_IP: {
  1149. const struct iphdr *iph = ip_hdr(skb);
  1150. if (ether_addr_equal_64bits(eth_data->h_dest, mac_bcast) ||
  1151. (iph->daddr == ip_bcast) ||
  1152. (iph->protocol == IPPROTO_IGMP)) {
  1153. do_tx_balance = 0;
  1154. break;
  1155. }
  1156. hash_start = (char *)&(iph->daddr);
  1157. hash_size = sizeof(iph->daddr);
  1158. }
  1159. break;
  1160. case ETH_P_IPV6:
  1161. /* IPv6 doesn't really use broadcast mac address, but leave
  1162. * that here just in case.
  1163. */
  1164. if (ether_addr_equal_64bits(eth_data->h_dest, mac_bcast)) {
  1165. do_tx_balance = 0;
  1166. break;
  1167. }
  1168. /* IPv6 uses all-nodes multicast as an equivalent to
  1169. * broadcasts in IPv4.
  1170. */
  1171. if (ether_addr_equal_64bits(eth_data->h_dest, mac_v6_allmcast)) {
  1172. do_tx_balance = 0;
  1173. break;
  1174. }
  1175. /* Additianally, DAD probes should not be tx-balanced as that
  1176. * will lead to false positives for duplicate addresses and
  1177. * prevent address configuration from working.
  1178. */
  1179. ip6hdr = ipv6_hdr(skb);
  1180. if (ipv6_addr_any(&ip6hdr->saddr)) {
  1181. do_tx_balance = 0;
  1182. break;
  1183. }
  1184. hash_start = (char *)&(ipv6_hdr(skb)->daddr);
  1185. hash_size = sizeof(ipv6_hdr(skb)->daddr);
  1186. break;
  1187. case ETH_P_IPX:
  1188. if (ipx_hdr(skb)->ipx_checksum != IPX_NO_CHECKSUM) {
  1189. /* something is wrong with this packet */
  1190. do_tx_balance = 0;
  1191. break;
  1192. }
  1193. if (ipx_hdr(skb)->ipx_type != IPX_TYPE_NCP) {
  1194. /* The only protocol worth balancing in
  1195. * this family since it has an "ARP" like
  1196. * mechanism
  1197. */
  1198. do_tx_balance = 0;
  1199. break;
  1200. }
  1201. hash_start = (char*)eth_data->h_dest;
  1202. hash_size = ETH_ALEN;
  1203. break;
  1204. case ETH_P_ARP:
  1205. do_tx_balance = 0;
  1206. if (bond_info->rlb_enabled) {
  1207. tx_slave = rlb_arp_xmit(skb, bond);
  1208. }
  1209. break;
  1210. default:
  1211. do_tx_balance = 0;
  1212. break;
  1213. }
  1214. if (do_tx_balance) {
  1215. hash_index = _simple_hash(hash_start, hash_size);
  1216. tx_slave = tlb_choose_channel(bond, hash_index, skb->len);
  1217. }
  1218. if (!tx_slave) {
  1219. /* unbalanced or unassigned, send through primary */
  1220. tx_slave = bond->curr_active_slave;
  1221. bond_info->unbalanced_load += skb->len;
  1222. }
  1223. if (tx_slave && SLAVE_IS_OK(tx_slave)) {
  1224. if (tx_slave != bond->curr_active_slave) {
  1225. memcpy(eth_data->h_source,
  1226. tx_slave->dev->dev_addr,
  1227. ETH_ALEN);
  1228. }
  1229. res = bond_dev_queue_xmit(bond, skb, tx_slave->dev);
  1230. } else {
  1231. if (tx_slave) {
  1232. _lock_tx_hashtbl(bond);
  1233. __tlb_clear_slave(bond, tx_slave, 0);
  1234. _unlock_tx_hashtbl(bond);
  1235. }
  1236. }
  1237. read_unlock(&bond->curr_slave_lock);
  1238. if (res) {
  1239. /* no suitable interface, frame not sent */
  1240. kfree_skb(skb);
  1241. }
  1242. return NETDEV_TX_OK;
  1243. }
  1244. void bond_alb_monitor(struct work_struct *work)
  1245. {
  1246. struct bonding *bond = container_of(work, struct bonding,
  1247. alb_work.work);
  1248. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  1249. struct slave *slave;
  1250. int i;
  1251. read_lock(&bond->lock);
  1252. if (bond->slave_cnt == 0) {
  1253. bond_info->tx_rebalance_counter = 0;
  1254. bond_info->lp_counter = 0;
  1255. goto re_arm;
  1256. }
  1257. bond_info->tx_rebalance_counter++;
  1258. bond_info->lp_counter++;
  1259. /* send learning packets */
  1260. if (bond_info->lp_counter >= BOND_ALB_LP_TICKS) {
  1261. /* change of curr_active_slave involves swapping of mac addresses.
  1262. * in order to avoid this swapping from happening while
  1263. * sending the learning packets, the curr_slave_lock must be held for
  1264. * read.
  1265. */
  1266. read_lock(&bond->curr_slave_lock);
  1267. bond_for_each_slave(bond, slave, i) {
  1268. alb_send_learning_packets(slave, slave->dev->dev_addr);
  1269. }
  1270. read_unlock(&bond->curr_slave_lock);
  1271. bond_info->lp_counter = 0;
  1272. }
  1273. /* rebalance tx traffic */
  1274. if (bond_info->tx_rebalance_counter >= BOND_TLB_REBALANCE_TICKS) {
  1275. read_lock(&bond->curr_slave_lock);
  1276. bond_for_each_slave(bond, slave, i) {
  1277. tlb_clear_slave(bond, slave, 1);
  1278. if (slave == bond->curr_active_slave) {
  1279. SLAVE_TLB_INFO(slave).load =
  1280. bond_info->unbalanced_load /
  1281. BOND_TLB_REBALANCE_INTERVAL;
  1282. bond_info->unbalanced_load = 0;
  1283. }
  1284. }
  1285. read_unlock(&bond->curr_slave_lock);
  1286. bond_info->tx_rebalance_counter = 0;
  1287. }
  1288. /* handle rlb stuff */
  1289. if (bond_info->rlb_enabled) {
  1290. if (bond_info->primary_is_promisc &&
  1291. (++bond_info->rlb_promisc_timeout_counter >= RLB_PROMISC_TIMEOUT)) {
  1292. /*
  1293. * dev_set_promiscuity requires rtnl and
  1294. * nothing else. Avoid race with bond_close.
  1295. */
  1296. read_unlock(&bond->lock);
  1297. if (!rtnl_trylock()) {
  1298. read_lock(&bond->lock);
  1299. goto re_arm;
  1300. }
  1301. bond_info->rlb_promisc_timeout_counter = 0;
  1302. /* If the primary was set to promiscuous mode
  1303. * because a slave was disabled then
  1304. * it can now leave promiscuous mode.
  1305. */
  1306. dev_set_promiscuity(bond->curr_active_slave->dev, -1);
  1307. bond_info->primary_is_promisc = 0;
  1308. rtnl_unlock();
  1309. read_lock(&bond->lock);
  1310. }
  1311. if (bond_info->rlb_rebalance) {
  1312. bond_info->rlb_rebalance = 0;
  1313. rlb_rebalance(bond);
  1314. }
  1315. /* check if clients need updating */
  1316. if (bond_info->rx_ntt) {
  1317. if (bond_info->rlb_update_delay_counter) {
  1318. --bond_info->rlb_update_delay_counter;
  1319. } else {
  1320. rlb_update_rx_clients(bond);
  1321. if (bond_info->rlb_update_retry_counter) {
  1322. --bond_info->rlb_update_retry_counter;
  1323. } else {
  1324. bond_info->rx_ntt = 0;
  1325. }
  1326. }
  1327. }
  1328. }
  1329. re_arm:
  1330. queue_delayed_work(bond->wq, &bond->alb_work, alb_delta_in_ticks);
  1331. read_unlock(&bond->lock);
  1332. }
  1333. /* assumption: called before the slave is attached to the bond
  1334. * and not locked by the bond lock
  1335. */
  1336. int bond_alb_init_slave(struct bonding *bond, struct slave *slave)
  1337. {
  1338. int res;
  1339. res = alb_set_slave_mac_addr(slave, slave->perm_hwaddr);
  1340. if (res) {
  1341. return res;
  1342. }
  1343. /* caller must hold the bond lock for write since the mac addresses
  1344. * are compared and may be swapped.
  1345. */
  1346. read_lock(&bond->lock);
  1347. res = alb_handle_addr_collision_on_attach(bond, slave);
  1348. read_unlock(&bond->lock);
  1349. if (res) {
  1350. return res;
  1351. }
  1352. tlb_init_slave(slave);
  1353. /* order a rebalance ASAP */
  1354. bond->alb_info.tx_rebalance_counter = BOND_TLB_REBALANCE_TICKS;
  1355. if (bond->alb_info.rlb_enabled) {
  1356. bond->alb_info.rlb_rebalance = 1;
  1357. }
  1358. return 0;
  1359. }
  1360. /*
  1361. * Remove slave from tlb and rlb hash tables, and fix up MAC addresses
  1362. * if necessary.
  1363. *
  1364. * Caller must hold RTNL and no other locks
  1365. */
  1366. void bond_alb_deinit_slave(struct bonding *bond, struct slave *slave)
  1367. {
  1368. if (bond->slave_cnt > 1) {
  1369. alb_change_hw_addr_on_detach(bond, slave);
  1370. }
  1371. tlb_clear_slave(bond, slave, 0);
  1372. if (bond->alb_info.rlb_enabled) {
  1373. bond->alb_info.next_rx_slave = NULL;
  1374. rlb_clear_slave(bond, slave);
  1375. }
  1376. }
  1377. /* Caller must hold bond lock for read */
  1378. void bond_alb_handle_link_change(struct bonding *bond, struct slave *slave, char link)
  1379. {
  1380. struct alb_bond_info *bond_info = &(BOND_ALB_INFO(bond));
  1381. if (link == BOND_LINK_DOWN) {
  1382. tlb_clear_slave(bond, slave, 0);
  1383. if (bond->alb_info.rlb_enabled) {
  1384. rlb_clear_slave(bond, slave);
  1385. }
  1386. } else if (link == BOND_LINK_UP) {
  1387. /* order a rebalance ASAP */
  1388. bond_info->tx_rebalance_counter = BOND_TLB_REBALANCE_TICKS;
  1389. if (bond->alb_info.rlb_enabled) {
  1390. bond->alb_info.rlb_rebalance = 1;
  1391. /* If the updelay module parameter is smaller than the
  1392. * forwarding delay of the switch the rebalance will
  1393. * not work because the rebalance arp replies will
  1394. * not be forwarded to the clients..
  1395. */
  1396. }
  1397. }
  1398. }
  1399. /**
  1400. * bond_alb_handle_active_change - assign new curr_active_slave
  1401. * @bond: our bonding struct
  1402. * @new_slave: new slave to assign
  1403. *
  1404. * Set the bond->curr_active_slave to @new_slave and handle
  1405. * mac address swapping and promiscuity changes as needed.
  1406. *
  1407. * If new_slave is NULL, caller must hold curr_slave_lock or
  1408. * bond->lock for write.
  1409. *
  1410. * If new_slave is not NULL, caller must hold RTNL, bond->lock for
  1411. * read and curr_slave_lock for write. Processing here may sleep, so
  1412. * no other locks may be held.
  1413. */
  1414. void bond_alb_handle_active_change(struct bonding *bond, struct slave *new_slave)
  1415. __releases(&bond->curr_slave_lock)
  1416. __releases(&bond->lock)
  1417. __acquires(&bond->lock)
  1418. __acquires(&bond->curr_slave_lock)
  1419. {
  1420. struct slave *swap_slave;
  1421. int i;
  1422. if (bond->curr_active_slave == new_slave) {
  1423. return;
  1424. }
  1425. if (bond->curr_active_slave && bond->alb_info.primary_is_promisc) {
  1426. dev_set_promiscuity(bond->curr_active_slave->dev, -1);
  1427. bond->alb_info.primary_is_promisc = 0;
  1428. bond->alb_info.rlb_promisc_timeout_counter = 0;
  1429. }
  1430. swap_slave = bond->curr_active_slave;
  1431. bond->curr_active_slave = new_slave;
  1432. if (!new_slave || (bond->slave_cnt == 0)) {
  1433. return;
  1434. }
  1435. /* set the new curr_active_slave to the bonds mac address
  1436. * i.e. swap mac addresses of old curr_active_slave and new curr_active_slave
  1437. */
  1438. if (!swap_slave) {
  1439. struct slave *tmp_slave;
  1440. /* find slave that is holding the bond's mac address */
  1441. bond_for_each_slave(bond, tmp_slave, i) {
  1442. if (ether_addr_equal_64bits(tmp_slave->dev->dev_addr,
  1443. bond->dev->dev_addr)) {
  1444. swap_slave = tmp_slave;
  1445. break;
  1446. }
  1447. }
  1448. }
  1449. /*
  1450. * Arrange for swap_slave and new_slave to temporarily be
  1451. * ignored so we can mess with their MAC addresses without
  1452. * fear of interference from transmit activity.
  1453. */
  1454. if (swap_slave) {
  1455. tlb_clear_slave(bond, swap_slave, 1);
  1456. }
  1457. tlb_clear_slave(bond, new_slave, 1);
  1458. write_unlock_bh(&bond->curr_slave_lock);
  1459. read_unlock(&bond->lock);
  1460. ASSERT_RTNL();
  1461. /* curr_active_slave must be set before calling alb_swap_mac_addr */
  1462. if (swap_slave) {
  1463. /* swap mac address */
  1464. alb_swap_mac_addr(bond, swap_slave, new_slave);
  1465. } else {
  1466. /* set the new_slave to the bond mac address */
  1467. alb_set_slave_mac_addr(new_slave, bond->dev->dev_addr);
  1468. }
  1469. if (swap_slave) {
  1470. alb_fasten_mac_swap(bond, swap_slave, new_slave);
  1471. read_lock(&bond->lock);
  1472. } else {
  1473. read_lock(&bond->lock);
  1474. alb_send_learning_packets(new_slave, bond->dev->dev_addr);
  1475. }
  1476. write_lock_bh(&bond->curr_slave_lock);
  1477. }
  1478. /*
  1479. * Called with RTNL
  1480. */
  1481. int bond_alb_set_mac_address(struct net_device *bond_dev, void *addr)
  1482. __acquires(&bond->lock)
  1483. __releases(&bond->lock)
  1484. {
  1485. struct bonding *bond = netdev_priv(bond_dev);
  1486. struct sockaddr *sa = addr;
  1487. struct slave *slave, *swap_slave;
  1488. int res;
  1489. int i;
  1490. if (!is_valid_ether_addr(sa->sa_data)) {
  1491. return -EADDRNOTAVAIL;
  1492. }
  1493. res = alb_set_mac_address(bond, addr);
  1494. if (res) {
  1495. return res;
  1496. }
  1497. memcpy(bond_dev->dev_addr, sa->sa_data, bond_dev->addr_len);
  1498. /* If there is no curr_active_slave there is nothing else to do.
  1499. * Otherwise we'll need to pass the new address to it and handle
  1500. * duplications.
  1501. */
  1502. if (!bond->curr_active_slave) {
  1503. return 0;
  1504. }
  1505. swap_slave = NULL;
  1506. bond_for_each_slave(bond, slave, i) {
  1507. if (ether_addr_equal_64bits(slave->dev->dev_addr,
  1508. bond_dev->dev_addr)) {
  1509. swap_slave = slave;
  1510. break;
  1511. }
  1512. }
  1513. if (swap_slave) {
  1514. alb_swap_mac_addr(bond, swap_slave, bond->curr_active_slave);
  1515. alb_fasten_mac_swap(bond, swap_slave, bond->curr_active_slave);
  1516. } else {
  1517. alb_set_slave_mac_addr(bond->curr_active_slave, bond_dev->dev_addr);
  1518. read_lock(&bond->lock);
  1519. alb_send_learning_packets(bond->curr_active_slave, bond_dev->dev_addr);
  1520. if (bond->alb_info.rlb_enabled) {
  1521. /* inform clients mac address has changed */
  1522. rlb_req_update_slave_clients(bond, bond->curr_active_slave);
  1523. }
  1524. read_unlock(&bond->lock);
  1525. }
  1526. return 0;
  1527. }
  1528. void bond_alb_clear_vlan(struct bonding *bond, unsigned short vlan_id)
  1529. {
  1530. if (bond->alb_info.current_alb_vlan &&
  1531. (bond->alb_info.current_alb_vlan->vlan_id == vlan_id)) {
  1532. bond->alb_info.current_alb_vlan = NULL;
  1533. }
  1534. if (bond->alb_info.rlb_enabled) {
  1535. rlb_clear_vlan(bond, vlan_id);
  1536. }
  1537. }