switchdev.c 28 KB

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  1. /*
  2. * net/switchdev/switchdev.c - Switch device API
  3. * Copyright (c) 2014 Jiri Pirko <jiri@resnulli.us>
  4. * Copyright (c) 2014-2015 Scott Feldman <sfeldma@gmail.com>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. */
  11. #include <linux/kernel.h>
  12. #include <linux/types.h>
  13. #include <linux/init.h>
  14. #include <linux/mutex.h>
  15. #include <linux/notifier.h>
  16. #include <linux/netdevice.h>
  17. #include <linux/if_bridge.h>
  18. #include <linux/if_vlan.h>
  19. #include <net/ip_fib.h>
  20. #include <net/switchdev.h>
  21. /**
  22. * switchdev_port_attr_get - Get port attribute
  23. *
  24. * @dev: port device
  25. * @attr: attribute to get
  26. */
  27. int switchdev_port_attr_get(struct net_device *dev, struct switchdev_attr *attr)
  28. {
  29. const struct switchdev_ops *ops = dev->switchdev_ops;
  30. struct net_device *lower_dev;
  31. struct list_head *iter;
  32. struct switchdev_attr first = {
  33. .id = SWITCHDEV_ATTR_UNDEFINED
  34. };
  35. int err = -EOPNOTSUPP;
  36. if (ops && ops->switchdev_port_attr_get)
  37. return ops->switchdev_port_attr_get(dev, attr);
  38. if (attr->flags & SWITCHDEV_F_NO_RECURSE)
  39. return err;
  40. /* Switch device port(s) may be stacked under
  41. * bond/team/vlan dev, so recurse down to get attr on
  42. * each port. Return -ENODATA if attr values don't
  43. * compare across ports.
  44. */
  45. netdev_for_each_lower_dev(dev, lower_dev, iter) {
  46. err = switchdev_port_attr_get(lower_dev, attr);
  47. if (err)
  48. break;
  49. if (first.id == SWITCHDEV_ATTR_UNDEFINED)
  50. first = *attr;
  51. else if (memcmp(&first, attr, sizeof(*attr)))
  52. return -ENODATA;
  53. }
  54. return err;
  55. }
  56. EXPORT_SYMBOL_GPL(switchdev_port_attr_get);
  57. static int __switchdev_port_attr_set(struct net_device *dev,
  58. struct switchdev_attr *attr)
  59. {
  60. const struct switchdev_ops *ops = dev->switchdev_ops;
  61. struct net_device *lower_dev;
  62. struct list_head *iter;
  63. int err = -EOPNOTSUPP;
  64. if (ops && ops->switchdev_port_attr_set)
  65. return ops->switchdev_port_attr_set(dev, attr);
  66. if (attr->flags & SWITCHDEV_F_NO_RECURSE)
  67. return err;
  68. /* Switch device port(s) may be stacked under
  69. * bond/team/vlan dev, so recurse down to set attr on
  70. * each port.
  71. */
  72. netdev_for_each_lower_dev(dev, lower_dev, iter) {
  73. err = __switchdev_port_attr_set(lower_dev, attr);
  74. if (err)
  75. break;
  76. }
  77. return err;
  78. }
  79. struct switchdev_attr_set_work {
  80. struct work_struct work;
  81. struct net_device *dev;
  82. struct switchdev_attr attr;
  83. };
  84. static void switchdev_port_attr_set_work(struct work_struct *work)
  85. {
  86. struct switchdev_attr_set_work *asw =
  87. container_of(work, struct switchdev_attr_set_work, work);
  88. int err;
  89. rtnl_lock();
  90. err = switchdev_port_attr_set(asw->dev, &asw->attr);
  91. if (err && err != -EOPNOTSUPP)
  92. netdev_err(asw->dev, "failed (err=%d) to set attribute (id=%d)\n",
  93. err, asw->attr.id);
  94. rtnl_unlock();
  95. dev_put(asw->dev);
  96. kfree(work);
  97. }
  98. static int switchdev_port_attr_set_defer(struct net_device *dev,
  99. struct switchdev_attr *attr)
  100. {
  101. struct switchdev_attr_set_work *asw;
  102. asw = kmalloc(sizeof(*asw), GFP_ATOMIC);
  103. if (!asw)
  104. return -ENOMEM;
  105. INIT_WORK(&asw->work, switchdev_port_attr_set_work);
  106. dev_hold(dev);
  107. asw->dev = dev;
  108. memcpy(&asw->attr, attr, sizeof(asw->attr));
  109. schedule_work(&asw->work);
  110. return 0;
  111. }
  112. /**
  113. * switchdev_port_attr_set - Set port attribute
  114. *
  115. * @dev: port device
  116. * @attr: attribute to set
  117. *
  118. * Use a 2-phase prepare-commit transaction model to ensure
  119. * system is not left in a partially updated state due to
  120. * failure from driver/device.
  121. */
  122. int switchdev_port_attr_set(struct net_device *dev, struct switchdev_attr *attr)
  123. {
  124. int err;
  125. if (!rtnl_is_locked()) {
  126. /* Running prepare-commit transaction across stacked
  127. * devices requires nothing moves, so if rtnl_lock is
  128. * not held, schedule a worker thread to hold rtnl_lock
  129. * while setting attr.
  130. */
  131. return switchdev_port_attr_set_defer(dev, attr);
  132. }
  133. /* Phase I: prepare for attr set. Driver/device should fail
  134. * here if there are going to be issues in the commit phase,
  135. * such as lack of resources or support. The driver/device
  136. * should reserve resources needed for the commit phase here,
  137. * but should not commit the attr.
  138. */
  139. attr->trans = SWITCHDEV_TRANS_PREPARE;
  140. err = __switchdev_port_attr_set(dev, attr);
  141. if (err) {
  142. /* Prepare phase failed: abort the transaction. Any
  143. * resources reserved in the prepare phase are
  144. * released.
  145. */
  146. if (err != -EOPNOTSUPP) {
  147. attr->trans = SWITCHDEV_TRANS_ABORT;
  148. __switchdev_port_attr_set(dev, attr);
  149. }
  150. return err;
  151. }
  152. /* Phase II: commit attr set. This cannot fail as a fault
  153. * of driver/device. If it does, it's a bug in the driver/device
  154. * because the driver said everythings was OK in phase I.
  155. */
  156. attr->trans = SWITCHDEV_TRANS_COMMIT;
  157. err = __switchdev_port_attr_set(dev, attr);
  158. WARN(err, "%s: Commit of attribute (id=%d) failed.\n",
  159. dev->name, attr->id);
  160. return err;
  161. }
  162. EXPORT_SYMBOL_GPL(switchdev_port_attr_set);
  163. static int __switchdev_port_obj_add(struct net_device *dev,
  164. struct switchdev_obj *obj)
  165. {
  166. const struct switchdev_ops *ops = dev->switchdev_ops;
  167. struct net_device *lower_dev;
  168. struct list_head *iter;
  169. int err = -EOPNOTSUPP;
  170. if (ops && ops->switchdev_port_obj_add)
  171. return ops->switchdev_port_obj_add(dev, obj);
  172. /* Switch device port(s) may be stacked under
  173. * bond/team/vlan dev, so recurse down to add object on
  174. * each port.
  175. */
  176. netdev_for_each_lower_dev(dev, lower_dev, iter) {
  177. err = __switchdev_port_obj_add(lower_dev, obj);
  178. if (err)
  179. break;
  180. }
  181. return err;
  182. }
  183. /**
  184. * switchdev_port_obj_add - Add port object
  185. *
  186. * @dev: port device
  187. * @obj: object to add
  188. *
  189. * Use a 2-phase prepare-commit transaction model to ensure
  190. * system is not left in a partially updated state due to
  191. * failure from driver/device.
  192. *
  193. * rtnl_lock must be held.
  194. */
  195. int switchdev_port_obj_add(struct net_device *dev, struct switchdev_obj *obj)
  196. {
  197. int err;
  198. ASSERT_RTNL();
  199. /* Phase I: prepare for obj add. Driver/device should fail
  200. * here if there are going to be issues in the commit phase,
  201. * such as lack of resources or support. The driver/device
  202. * should reserve resources needed for the commit phase here,
  203. * but should not commit the obj.
  204. */
  205. obj->trans = SWITCHDEV_TRANS_PREPARE;
  206. err = __switchdev_port_obj_add(dev, obj);
  207. if (err) {
  208. /* Prepare phase failed: abort the transaction. Any
  209. * resources reserved in the prepare phase are
  210. * released.
  211. */
  212. if (err != -EOPNOTSUPP) {
  213. obj->trans = SWITCHDEV_TRANS_ABORT;
  214. __switchdev_port_obj_add(dev, obj);
  215. }
  216. return err;
  217. }
  218. /* Phase II: commit obj add. This cannot fail as a fault
  219. * of driver/device. If it does, it's a bug in the driver/device
  220. * because the driver said everythings was OK in phase I.
  221. */
  222. obj->trans = SWITCHDEV_TRANS_COMMIT;
  223. err = __switchdev_port_obj_add(dev, obj);
  224. WARN(err, "%s: Commit of object (id=%d) failed.\n", dev->name, obj->id);
  225. return err;
  226. }
  227. EXPORT_SYMBOL_GPL(switchdev_port_obj_add);
  228. /**
  229. * switchdev_port_obj_del - Delete port object
  230. *
  231. * @dev: port device
  232. * @obj: object to delete
  233. */
  234. int switchdev_port_obj_del(struct net_device *dev, struct switchdev_obj *obj)
  235. {
  236. const struct switchdev_ops *ops = dev->switchdev_ops;
  237. struct net_device *lower_dev;
  238. struct list_head *iter;
  239. int err = -EOPNOTSUPP;
  240. if (ops && ops->switchdev_port_obj_del)
  241. return ops->switchdev_port_obj_del(dev, obj);
  242. /* Switch device port(s) may be stacked under
  243. * bond/team/vlan dev, so recurse down to delete object on
  244. * each port.
  245. */
  246. netdev_for_each_lower_dev(dev, lower_dev, iter) {
  247. err = switchdev_port_obj_del(lower_dev, obj);
  248. if (err)
  249. break;
  250. }
  251. return err;
  252. }
  253. EXPORT_SYMBOL_GPL(switchdev_port_obj_del);
  254. /**
  255. * switchdev_port_obj_dump - Dump port objects
  256. *
  257. * @dev: port device
  258. * @obj: object to dump
  259. */
  260. int switchdev_port_obj_dump(struct net_device *dev, struct switchdev_obj *obj)
  261. {
  262. const struct switchdev_ops *ops = dev->switchdev_ops;
  263. struct net_device *lower_dev;
  264. struct list_head *iter;
  265. int err = -EOPNOTSUPP;
  266. if (ops && ops->switchdev_port_obj_dump)
  267. return ops->switchdev_port_obj_dump(dev, obj);
  268. /* Switch device port(s) may be stacked under
  269. * bond/team/vlan dev, so recurse down to dump objects on
  270. * first port at bottom of stack.
  271. */
  272. netdev_for_each_lower_dev(dev, lower_dev, iter) {
  273. err = switchdev_port_obj_dump(lower_dev, obj);
  274. break;
  275. }
  276. return err;
  277. }
  278. EXPORT_SYMBOL_GPL(switchdev_port_obj_dump);
  279. static DEFINE_MUTEX(switchdev_mutex);
  280. static RAW_NOTIFIER_HEAD(switchdev_notif_chain);
  281. /**
  282. * register_switchdev_notifier - Register notifier
  283. * @nb: notifier_block
  284. *
  285. * Register switch device notifier. This should be used by code
  286. * which needs to monitor events happening in particular device.
  287. * Return values are same as for atomic_notifier_chain_register().
  288. */
  289. int register_switchdev_notifier(struct notifier_block *nb)
  290. {
  291. int err;
  292. mutex_lock(&switchdev_mutex);
  293. err = raw_notifier_chain_register(&switchdev_notif_chain, nb);
  294. mutex_unlock(&switchdev_mutex);
  295. return err;
  296. }
  297. EXPORT_SYMBOL_GPL(register_switchdev_notifier);
  298. /**
  299. * unregister_switchdev_notifier - Unregister notifier
  300. * @nb: notifier_block
  301. *
  302. * Unregister switch device notifier.
  303. * Return values are same as for atomic_notifier_chain_unregister().
  304. */
  305. int unregister_switchdev_notifier(struct notifier_block *nb)
  306. {
  307. int err;
  308. mutex_lock(&switchdev_mutex);
  309. err = raw_notifier_chain_unregister(&switchdev_notif_chain, nb);
  310. mutex_unlock(&switchdev_mutex);
  311. return err;
  312. }
  313. EXPORT_SYMBOL_GPL(unregister_switchdev_notifier);
  314. /**
  315. * call_switchdev_notifiers - Call notifiers
  316. * @val: value passed unmodified to notifier function
  317. * @dev: port device
  318. * @info: notifier information data
  319. *
  320. * Call all network notifier blocks. This should be called by driver
  321. * when it needs to propagate hardware event.
  322. * Return values are same as for atomic_notifier_call_chain().
  323. */
  324. int call_switchdev_notifiers(unsigned long val, struct net_device *dev,
  325. struct switchdev_notifier_info *info)
  326. {
  327. int err;
  328. info->dev = dev;
  329. mutex_lock(&switchdev_mutex);
  330. err = raw_notifier_call_chain(&switchdev_notif_chain, val, info);
  331. mutex_unlock(&switchdev_mutex);
  332. return err;
  333. }
  334. EXPORT_SYMBOL_GPL(call_switchdev_notifiers);
  335. struct switchdev_vlan_dump {
  336. struct switchdev_obj obj;
  337. struct sk_buff *skb;
  338. u32 filter_mask;
  339. u16 flags;
  340. u16 begin;
  341. u16 end;
  342. };
  343. static int switchdev_port_vlan_dump_put(struct net_device *dev,
  344. struct switchdev_vlan_dump *dump)
  345. {
  346. struct bridge_vlan_info vinfo;
  347. vinfo.flags = dump->flags;
  348. if (dump->begin == 0 && dump->end == 0) {
  349. return 0;
  350. } else if (dump->begin == dump->end) {
  351. vinfo.vid = dump->begin;
  352. if (nla_put(dump->skb, IFLA_BRIDGE_VLAN_INFO,
  353. sizeof(vinfo), &vinfo))
  354. return -EMSGSIZE;
  355. } else {
  356. vinfo.vid = dump->begin;
  357. vinfo.flags |= BRIDGE_VLAN_INFO_RANGE_BEGIN;
  358. if (nla_put(dump->skb, IFLA_BRIDGE_VLAN_INFO,
  359. sizeof(vinfo), &vinfo))
  360. return -EMSGSIZE;
  361. vinfo.vid = dump->end;
  362. vinfo.flags &= ~BRIDGE_VLAN_INFO_RANGE_BEGIN;
  363. vinfo.flags |= BRIDGE_VLAN_INFO_RANGE_END;
  364. if (nla_put(dump->skb, IFLA_BRIDGE_VLAN_INFO,
  365. sizeof(vinfo), &vinfo))
  366. return -EMSGSIZE;
  367. }
  368. return 0;
  369. }
  370. static int switchdev_port_vlan_dump_cb(struct net_device *dev,
  371. struct switchdev_obj *obj)
  372. {
  373. struct switchdev_vlan_dump *dump =
  374. container_of(obj, struct switchdev_vlan_dump, obj);
  375. struct switchdev_obj_vlan *vlan = &dump->obj.u.vlan;
  376. int err = 0;
  377. if (vlan->vid_begin > vlan->vid_end)
  378. return -EINVAL;
  379. if (dump->filter_mask & RTEXT_FILTER_BRVLAN) {
  380. dump->flags = vlan->flags;
  381. for (dump->begin = dump->end = vlan->vid_begin;
  382. dump->begin <= vlan->vid_end;
  383. dump->begin++, dump->end++) {
  384. err = switchdev_port_vlan_dump_put(dev, dump);
  385. if (err)
  386. return err;
  387. }
  388. } else if (dump->filter_mask & RTEXT_FILTER_BRVLAN_COMPRESSED) {
  389. if (dump->begin > vlan->vid_begin &&
  390. dump->begin >= vlan->vid_end) {
  391. if ((dump->begin - 1) == vlan->vid_end &&
  392. dump->flags == vlan->flags) {
  393. /* prepend */
  394. dump->begin = vlan->vid_begin;
  395. } else {
  396. err = switchdev_port_vlan_dump_put(dev, dump);
  397. dump->flags = vlan->flags;
  398. dump->begin = vlan->vid_begin;
  399. dump->end = vlan->vid_end;
  400. }
  401. } else if (dump->end <= vlan->vid_begin &&
  402. dump->end < vlan->vid_end) {
  403. if ((dump->end + 1) == vlan->vid_begin &&
  404. dump->flags == vlan->flags) {
  405. /* append */
  406. dump->end = vlan->vid_end;
  407. } else {
  408. err = switchdev_port_vlan_dump_put(dev, dump);
  409. dump->flags = vlan->flags;
  410. dump->begin = vlan->vid_begin;
  411. dump->end = vlan->vid_end;
  412. }
  413. } else {
  414. err = -EINVAL;
  415. }
  416. }
  417. return err;
  418. }
  419. static int switchdev_port_vlan_fill(struct sk_buff *skb, struct net_device *dev,
  420. u32 filter_mask)
  421. {
  422. struct switchdev_vlan_dump dump = {
  423. .obj = {
  424. .id = SWITCHDEV_OBJ_PORT_VLAN,
  425. .cb = switchdev_port_vlan_dump_cb,
  426. },
  427. .skb = skb,
  428. .filter_mask = filter_mask,
  429. };
  430. int err = 0;
  431. if ((filter_mask & RTEXT_FILTER_BRVLAN) ||
  432. (filter_mask & RTEXT_FILTER_BRVLAN_COMPRESSED)) {
  433. err = switchdev_port_obj_dump(dev, &dump.obj);
  434. if (err)
  435. goto err_out;
  436. if (filter_mask & RTEXT_FILTER_BRVLAN_COMPRESSED)
  437. /* last one */
  438. err = switchdev_port_vlan_dump_put(dev, &dump);
  439. }
  440. err_out:
  441. return err == -EOPNOTSUPP ? 0 : err;
  442. }
  443. /**
  444. * switchdev_port_bridge_getlink - Get bridge port attributes
  445. *
  446. * @dev: port device
  447. *
  448. * Called for SELF on rtnl_bridge_getlink to get bridge port
  449. * attributes.
  450. */
  451. int switchdev_port_bridge_getlink(struct sk_buff *skb, u32 pid, u32 seq,
  452. struct net_device *dev, u32 filter_mask,
  453. int nlflags)
  454. {
  455. struct switchdev_attr attr = {
  456. .id = SWITCHDEV_ATTR_PORT_BRIDGE_FLAGS,
  457. };
  458. u16 mode = BRIDGE_MODE_UNDEF;
  459. u32 mask = BR_LEARNING | BR_LEARNING_SYNC;
  460. int err;
  461. err = switchdev_port_attr_get(dev, &attr);
  462. if (err && err != -EOPNOTSUPP)
  463. return err;
  464. return ndo_dflt_bridge_getlink(skb, pid, seq, dev, mode,
  465. attr.u.brport_flags, mask, nlflags,
  466. filter_mask, switchdev_port_vlan_fill);
  467. }
  468. EXPORT_SYMBOL_GPL(switchdev_port_bridge_getlink);
  469. static int switchdev_port_br_setflag(struct net_device *dev,
  470. struct nlattr *nlattr,
  471. unsigned long brport_flag)
  472. {
  473. struct switchdev_attr attr = {
  474. .id = SWITCHDEV_ATTR_PORT_BRIDGE_FLAGS,
  475. };
  476. u8 flag = nla_get_u8(nlattr);
  477. int err;
  478. err = switchdev_port_attr_get(dev, &attr);
  479. if (err)
  480. return err;
  481. if (flag)
  482. attr.u.brport_flags |= brport_flag;
  483. else
  484. attr.u.brport_flags &= ~brport_flag;
  485. return switchdev_port_attr_set(dev, &attr);
  486. }
  487. static const struct nla_policy
  488. switchdev_port_bridge_policy[IFLA_BRPORT_MAX + 1] = {
  489. [IFLA_BRPORT_STATE] = { .type = NLA_U8 },
  490. [IFLA_BRPORT_COST] = { .type = NLA_U32 },
  491. [IFLA_BRPORT_PRIORITY] = { .type = NLA_U16 },
  492. [IFLA_BRPORT_MODE] = { .type = NLA_U8 },
  493. [IFLA_BRPORT_GUARD] = { .type = NLA_U8 },
  494. [IFLA_BRPORT_PROTECT] = { .type = NLA_U8 },
  495. [IFLA_BRPORT_FAST_LEAVE] = { .type = NLA_U8 },
  496. [IFLA_BRPORT_LEARNING] = { .type = NLA_U8 },
  497. [IFLA_BRPORT_LEARNING_SYNC] = { .type = NLA_U8 },
  498. [IFLA_BRPORT_UNICAST_FLOOD] = { .type = NLA_U8 },
  499. };
  500. static int switchdev_port_br_setlink_protinfo(struct net_device *dev,
  501. struct nlattr *protinfo)
  502. {
  503. struct nlattr *attr;
  504. int rem;
  505. int err;
  506. err = nla_validate_nested(protinfo, IFLA_BRPORT_MAX,
  507. switchdev_port_bridge_policy);
  508. if (err)
  509. return err;
  510. nla_for_each_nested(attr, protinfo, rem) {
  511. switch (nla_type(attr)) {
  512. case IFLA_BRPORT_LEARNING:
  513. err = switchdev_port_br_setflag(dev, attr,
  514. BR_LEARNING);
  515. break;
  516. case IFLA_BRPORT_LEARNING_SYNC:
  517. err = switchdev_port_br_setflag(dev, attr,
  518. BR_LEARNING_SYNC);
  519. break;
  520. default:
  521. err = -EOPNOTSUPP;
  522. break;
  523. }
  524. if (err)
  525. return err;
  526. }
  527. return 0;
  528. }
  529. static int switchdev_port_br_afspec(struct net_device *dev,
  530. struct nlattr *afspec,
  531. int (*f)(struct net_device *dev,
  532. struct switchdev_obj *obj))
  533. {
  534. struct nlattr *attr;
  535. struct bridge_vlan_info *vinfo;
  536. struct switchdev_obj obj = {
  537. .id = SWITCHDEV_OBJ_PORT_VLAN,
  538. };
  539. struct switchdev_obj_vlan *vlan = &obj.u.vlan;
  540. int rem;
  541. int err;
  542. nla_for_each_nested(attr, afspec, rem) {
  543. if (nla_type(attr) != IFLA_BRIDGE_VLAN_INFO)
  544. continue;
  545. if (nla_len(attr) != sizeof(struct bridge_vlan_info))
  546. return -EINVAL;
  547. vinfo = nla_data(attr);
  548. if (!vinfo->vid || vinfo->vid >= VLAN_VID_MASK)
  549. return -EINVAL;
  550. vlan->flags = vinfo->flags;
  551. if (vinfo->flags & BRIDGE_VLAN_INFO_RANGE_BEGIN) {
  552. if (vlan->vid_begin)
  553. return -EINVAL;
  554. vlan->vid_begin = vinfo->vid;
  555. } else if (vinfo->flags & BRIDGE_VLAN_INFO_RANGE_END) {
  556. if (!vlan->vid_begin)
  557. return -EINVAL;
  558. vlan->vid_end = vinfo->vid;
  559. if (vlan->vid_end <= vlan->vid_begin)
  560. return -EINVAL;
  561. err = f(dev, &obj);
  562. if (err)
  563. return err;
  564. memset(vlan, 0, sizeof(*vlan));
  565. } else {
  566. if (vlan->vid_begin)
  567. return -EINVAL;
  568. vlan->vid_begin = vinfo->vid;
  569. vlan->vid_end = vinfo->vid;
  570. err = f(dev, &obj);
  571. if (err)
  572. return err;
  573. memset(vlan, 0, sizeof(*vlan));
  574. }
  575. }
  576. return 0;
  577. }
  578. /**
  579. * switchdev_port_bridge_setlink - Set bridge port attributes
  580. *
  581. * @dev: port device
  582. * @nlh: netlink header
  583. * @flags: netlink flags
  584. *
  585. * Called for SELF on rtnl_bridge_setlink to set bridge port
  586. * attributes.
  587. */
  588. int switchdev_port_bridge_setlink(struct net_device *dev,
  589. struct nlmsghdr *nlh, u16 flags)
  590. {
  591. struct nlattr *protinfo;
  592. struct nlattr *afspec;
  593. int err = 0;
  594. protinfo = nlmsg_find_attr(nlh, sizeof(struct ifinfomsg),
  595. IFLA_PROTINFO);
  596. if (protinfo) {
  597. err = switchdev_port_br_setlink_protinfo(dev, protinfo);
  598. if (err)
  599. return err;
  600. }
  601. afspec = nlmsg_find_attr(nlh, sizeof(struct ifinfomsg),
  602. IFLA_AF_SPEC);
  603. if (afspec)
  604. err = switchdev_port_br_afspec(dev, afspec,
  605. switchdev_port_obj_add);
  606. return err;
  607. }
  608. EXPORT_SYMBOL_GPL(switchdev_port_bridge_setlink);
  609. /**
  610. * switchdev_port_bridge_dellink - Set bridge port attributes
  611. *
  612. * @dev: port device
  613. * @nlh: netlink header
  614. * @flags: netlink flags
  615. *
  616. * Called for SELF on rtnl_bridge_dellink to set bridge port
  617. * attributes.
  618. */
  619. int switchdev_port_bridge_dellink(struct net_device *dev,
  620. struct nlmsghdr *nlh, u16 flags)
  621. {
  622. struct nlattr *afspec;
  623. afspec = nlmsg_find_attr(nlh, sizeof(struct ifinfomsg),
  624. IFLA_AF_SPEC);
  625. if (afspec)
  626. return switchdev_port_br_afspec(dev, afspec,
  627. switchdev_port_obj_del);
  628. return 0;
  629. }
  630. EXPORT_SYMBOL_GPL(switchdev_port_bridge_dellink);
  631. /**
  632. * switchdev_port_fdb_add - Add FDB (MAC/VLAN) entry to port
  633. *
  634. * @ndmsg: netlink hdr
  635. * @nlattr: netlink attributes
  636. * @dev: port device
  637. * @addr: MAC address to add
  638. * @vid: VLAN to add
  639. *
  640. * Add FDB entry to switch device.
  641. */
  642. int switchdev_port_fdb_add(struct ndmsg *ndm, struct nlattr *tb[],
  643. struct net_device *dev, const unsigned char *addr,
  644. u16 vid, u16 nlm_flags)
  645. {
  646. struct switchdev_obj obj = {
  647. .id = SWITCHDEV_OBJ_PORT_FDB,
  648. .u.fdb = {
  649. .addr = addr,
  650. .vid = vid,
  651. },
  652. };
  653. return switchdev_port_obj_add(dev, &obj);
  654. }
  655. EXPORT_SYMBOL_GPL(switchdev_port_fdb_add);
  656. /**
  657. * switchdev_port_fdb_del - Delete FDB (MAC/VLAN) entry from port
  658. *
  659. * @ndmsg: netlink hdr
  660. * @nlattr: netlink attributes
  661. * @dev: port device
  662. * @addr: MAC address to delete
  663. * @vid: VLAN to delete
  664. *
  665. * Delete FDB entry from switch device.
  666. */
  667. int switchdev_port_fdb_del(struct ndmsg *ndm, struct nlattr *tb[],
  668. struct net_device *dev, const unsigned char *addr,
  669. u16 vid)
  670. {
  671. struct switchdev_obj obj = {
  672. .id = SWITCHDEV_OBJ_PORT_FDB,
  673. .u.fdb = {
  674. .addr = addr,
  675. .vid = vid,
  676. },
  677. };
  678. return switchdev_port_obj_del(dev, &obj);
  679. }
  680. EXPORT_SYMBOL_GPL(switchdev_port_fdb_del);
  681. struct switchdev_fdb_dump {
  682. struct switchdev_obj obj;
  683. struct sk_buff *skb;
  684. struct netlink_callback *cb;
  685. int idx;
  686. };
  687. static int switchdev_port_fdb_dump_cb(struct net_device *dev,
  688. struct switchdev_obj *obj)
  689. {
  690. struct switchdev_fdb_dump *dump =
  691. container_of(obj, struct switchdev_fdb_dump, obj);
  692. u32 portid = NETLINK_CB(dump->cb->skb).portid;
  693. u32 seq = dump->cb->nlh->nlmsg_seq;
  694. struct nlmsghdr *nlh;
  695. struct ndmsg *ndm;
  696. if (dump->idx < dump->cb->args[0])
  697. goto skip;
  698. nlh = nlmsg_put(dump->skb, portid, seq, RTM_NEWNEIGH,
  699. sizeof(*ndm), NLM_F_MULTI);
  700. if (!nlh)
  701. return -EMSGSIZE;
  702. ndm = nlmsg_data(nlh);
  703. ndm->ndm_family = AF_BRIDGE;
  704. ndm->ndm_pad1 = 0;
  705. ndm->ndm_pad2 = 0;
  706. ndm->ndm_flags = NTF_SELF;
  707. ndm->ndm_type = 0;
  708. ndm->ndm_ifindex = dev->ifindex;
  709. ndm->ndm_state = obj->u.fdb.ndm_state;
  710. if (nla_put(dump->skb, NDA_LLADDR, ETH_ALEN, obj->u.fdb.addr))
  711. goto nla_put_failure;
  712. if (obj->u.fdb.vid && nla_put_u16(dump->skb, NDA_VLAN, obj->u.fdb.vid))
  713. goto nla_put_failure;
  714. nlmsg_end(dump->skb, nlh);
  715. skip:
  716. dump->idx++;
  717. return 0;
  718. nla_put_failure:
  719. nlmsg_cancel(dump->skb, nlh);
  720. return -EMSGSIZE;
  721. }
  722. /**
  723. * switchdev_port_fdb_dump - Dump port FDB (MAC/VLAN) entries
  724. *
  725. * @skb: netlink skb
  726. * @cb: netlink callback
  727. * @dev: port device
  728. * @filter_dev: filter device
  729. * @idx:
  730. *
  731. * Delete FDB entry from switch device.
  732. */
  733. int switchdev_port_fdb_dump(struct sk_buff *skb, struct netlink_callback *cb,
  734. struct net_device *dev,
  735. struct net_device *filter_dev, int idx)
  736. {
  737. struct switchdev_fdb_dump dump = {
  738. .obj = {
  739. .id = SWITCHDEV_OBJ_PORT_FDB,
  740. .cb = switchdev_port_fdb_dump_cb,
  741. },
  742. .skb = skb,
  743. .cb = cb,
  744. .idx = idx,
  745. };
  746. switchdev_port_obj_dump(dev, &dump.obj);
  747. return dump.idx;
  748. }
  749. EXPORT_SYMBOL_GPL(switchdev_port_fdb_dump);
  750. static struct net_device *switchdev_get_lowest_dev(struct net_device *dev)
  751. {
  752. const struct switchdev_ops *ops = dev->switchdev_ops;
  753. struct net_device *lower_dev;
  754. struct net_device *port_dev;
  755. struct list_head *iter;
  756. /* Recusively search down until we find a sw port dev.
  757. * (A sw port dev supports switchdev_port_attr_get).
  758. */
  759. if (ops && ops->switchdev_port_attr_get)
  760. return dev;
  761. netdev_for_each_lower_dev(dev, lower_dev, iter) {
  762. port_dev = switchdev_get_lowest_dev(lower_dev);
  763. if (port_dev)
  764. return port_dev;
  765. }
  766. return NULL;
  767. }
  768. static struct net_device *switchdev_get_dev_by_nhs(struct fib_info *fi)
  769. {
  770. struct switchdev_attr attr = {
  771. .id = SWITCHDEV_ATTR_PORT_PARENT_ID,
  772. };
  773. struct switchdev_attr prev_attr;
  774. struct net_device *dev = NULL;
  775. int nhsel;
  776. /* For this route, all nexthop devs must be on the same switch. */
  777. for (nhsel = 0; nhsel < fi->fib_nhs; nhsel++) {
  778. const struct fib_nh *nh = &fi->fib_nh[nhsel];
  779. if (!nh->nh_dev)
  780. return NULL;
  781. dev = switchdev_get_lowest_dev(nh->nh_dev);
  782. if (!dev)
  783. return NULL;
  784. if (switchdev_port_attr_get(dev, &attr))
  785. return NULL;
  786. if (nhsel > 0 &&
  787. !netdev_phys_item_id_same(&prev_attr.u.ppid, &attr.u.ppid))
  788. return NULL;
  789. prev_attr = attr;
  790. }
  791. return dev;
  792. }
  793. /**
  794. * switchdev_fib_ipv4_add - Add/modify switch IPv4 route entry
  795. *
  796. * @dst: route's IPv4 destination address
  797. * @dst_len: destination address length (prefix length)
  798. * @fi: route FIB info structure
  799. * @tos: route TOS
  800. * @type: route type
  801. * @nlflags: netlink flags passed in (NLM_F_*)
  802. * @tb_id: route table ID
  803. *
  804. * Add/modify switch IPv4 route entry.
  805. */
  806. int switchdev_fib_ipv4_add(u32 dst, int dst_len, struct fib_info *fi,
  807. u8 tos, u8 type, u32 nlflags, u32 tb_id)
  808. {
  809. struct switchdev_obj fib_obj = {
  810. .id = SWITCHDEV_OBJ_IPV4_FIB,
  811. .u.ipv4_fib = {
  812. .dst = dst,
  813. .dst_len = dst_len,
  814. .fi = fi,
  815. .tos = tos,
  816. .type = type,
  817. .nlflags = nlflags,
  818. .tb_id = tb_id,
  819. },
  820. };
  821. struct net_device *dev;
  822. int err = 0;
  823. /* Don't offload route if using custom ip rules or if
  824. * IPv4 FIB offloading has been disabled completely.
  825. */
  826. #ifdef CONFIG_IP_MULTIPLE_TABLES
  827. if (fi->fib_net->ipv4.fib_has_custom_rules)
  828. return 0;
  829. #endif
  830. if (fi->fib_net->ipv4.fib_offload_disabled)
  831. return 0;
  832. dev = switchdev_get_dev_by_nhs(fi);
  833. if (!dev)
  834. return 0;
  835. err = switchdev_port_obj_add(dev, &fib_obj);
  836. if (!err)
  837. fi->fib_flags |= RTNH_F_OFFLOAD;
  838. return err == -EOPNOTSUPP ? 0 : err;
  839. }
  840. EXPORT_SYMBOL_GPL(switchdev_fib_ipv4_add);
  841. /**
  842. * switchdev_fib_ipv4_del - Delete IPv4 route entry from switch
  843. *
  844. * @dst: route's IPv4 destination address
  845. * @dst_len: destination address length (prefix length)
  846. * @fi: route FIB info structure
  847. * @tos: route TOS
  848. * @type: route type
  849. * @tb_id: route table ID
  850. *
  851. * Delete IPv4 route entry from switch device.
  852. */
  853. int switchdev_fib_ipv4_del(u32 dst, int dst_len, struct fib_info *fi,
  854. u8 tos, u8 type, u32 tb_id)
  855. {
  856. struct switchdev_obj fib_obj = {
  857. .id = SWITCHDEV_OBJ_IPV4_FIB,
  858. .u.ipv4_fib = {
  859. .dst = dst,
  860. .dst_len = dst_len,
  861. .fi = fi,
  862. .tos = tos,
  863. .type = type,
  864. .nlflags = 0,
  865. .tb_id = tb_id,
  866. },
  867. };
  868. struct net_device *dev;
  869. int err = 0;
  870. if (!(fi->fib_flags & RTNH_F_OFFLOAD))
  871. return 0;
  872. dev = switchdev_get_dev_by_nhs(fi);
  873. if (!dev)
  874. return 0;
  875. err = switchdev_port_obj_del(dev, &fib_obj);
  876. if (!err)
  877. fi->fib_flags &= ~RTNH_F_OFFLOAD;
  878. return err == -EOPNOTSUPP ? 0 : err;
  879. }
  880. EXPORT_SYMBOL_GPL(switchdev_fib_ipv4_del);
  881. /**
  882. * switchdev_fib_ipv4_abort - Abort an IPv4 FIB operation
  883. *
  884. * @fi: route FIB info structure
  885. */
  886. void switchdev_fib_ipv4_abort(struct fib_info *fi)
  887. {
  888. /* There was a problem installing this route to the offload
  889. * device. For now, until we come up with more refined
  890. * policy handling, abruptly end IPv4 fib offloading for
  891. * for entire net by flushing offload device(s) of all
  892. * IPv4 routes, and mark IPv4 fib offloading broken from
  893. * this point forward.
  894. */
  895. fib_flush_external(fi->fib_net);
  896. fi->fib_net->ipv4.fib_offload_disabled = true;
  897. }
  898. EXPORT_SYMBOL_GPL(switchdev_fib_ipv4_abort);
  899. static bool switchdev_port_same_parent_id(struct net_device *a,
  900. struct net_device *b)
  901. {
  902. struct switchdev_attr a_attr = {
  903. .id = SWITCHDEV_ATTR_PORT_PARENT_ID,
  904. .flags = SWITCHDEV_F_NO_RECURSE,
  905. };
  906. struct switchdev_attr b_attr = {
  907. .id = SWITCHDEV_ATTR_PORT_PARENT_ID,
  908. .flags = SWITCHDEV_F_NO_RECURSE,
  909. };
  910. if (switchdev_port_attr_get(a, &a_attr) ||
  911. switchdev_port_attr_get(b, &b_attr))
  912. return false;
  913. return netdev_phys_item_id_same(&a_attr.u.ppid, &b_attr.u.ppid);
  914. }
  915. static u32 switchdev_port_fwd_mark_get(struct net_device *dev,
  916. struct net_device *group_dev)
  917. {
  918. struct net_device *lower_dev;
  919. struct list_head *iter;
  920. netdev_for_each_lower_dev(group_dev, lower_dev, iter) {
  921. if (lower_dev == dev)
  922. continue;
  923. if (switchdev_port_same_parent_id(dev, lower_dev))
  924. return lower_dev->offload_fwd_mark;
  925. return switchdev_port_fwd_mark_get(dev, lower_dev);
  926. }
  927. return dev->ifindex;
  928. }
  929. static void switchdev_port_fwd_mark_reset(struct net_device *group_dev,
  930. u32 old_mark, u32 *reset_mark)
  931. {
  932. struct net_device *lower_dev;
  933. struct list_head *iter;
  934. netdev_for_each_lower_dev(group_dev, lower_dev, iter) {
  935. if (lower_dev->offload_fwd_mark == old_mark) {
  936. if (!*reset_mark)
  937. *reset_mark = lower_dev->ifindex;
  938. lower_dev->offload_fwd_mark = *reset_mark;
  939. }
  940. switchdev_port_fwd_mark_reset(lower_dev, old_mark, reset_mark);
  941. }
  942. }
  943. /**
  944. * switchdev_port_fwd_mark_set - Set port offload forwarding mark
  945. *
  946. * @dev: port device
  947. * @group_dev: containing device
  948. * @joining: true if dev is joining group; false if leaving group
  949. *
  950. * An ungrouped port's offload mark is just its ifindex. A grouped
  951. * port's (member of a bridge, for example) offload mark is the ifindex
  952. * of one of the ports in the group with the same parent (switch) ID.
  953. * Ports on the same device in the same group will have the same mark.
  954. *
  955. * Example:
  956. *
  957. * br0 ifindex=9
  958. * sw1p1 ifindex=2 mark=2
  959. * sw1p2 ifindex=3 mark=2
  960. * sw2p1 ifindex=4 mark=5
  961. * sw2p2 ifindex=5 mark=5
  962. *
  963. * If sw2p2 leaves the bridge, we'll have:
  964. *
  965. * br0 ifindex=9
  966. * sw1p1 ifindex=2 mark=2
  967. * sw1p2 ifindex=3 mark=2
  968. * sw2p1 ifindex=4 mark=4
  969. * sw2p2 ifindex=5 mark=5
  970. */
  971. void switchdev_port_fwd_mark_set(struct net_device *dev,
  972. struct net_device *group_dev,
  973. bool joining)
  974. {
  975. u32 mark = dev->ifindex;
  976. u32 reset_mark = 0;
  977. if (group_dev && joining) {
  978. mark = switchdev_port_fwd_mark_get(dev, group_dev);
  979. } else if (group_dev && !joining) {
  980. if (dev->offload_fwd_mark == mark)
  981. /* Ohoh, this port was the mark reference port,
  982. * but it's leaving the group, so reset the
  983. * mark for the remaining ports in the group.
  984. */
  985. switchdev_port_fwd_mark_reset(group_dev, mark,
  986. &reset_mark);
  987. }
  988. dev->offload_fwd_mark = mark;
  989. }
  990. EXPORT_SYMBOL_GPL(switchdev_port_fwd_mark_set);