datapath.c 45 KB

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  1. /*
  2. * Copyright (c) 2007-2012 Nicira, Inc.
  3. *
  4. * This program is free software; you can redistribute it and/or
  5. * modify it under the terms of version 2 of the GNU General Public
  6. * License as published by the Free Software Foundation.
  7. *
  8. * This program is distributed in the hope that it will be useful, but
  9. * WITHOUT ANY WARRANTY; without even the implied warranty of
  10. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  11. * General Public License for more details.
  12. *
  13. * You should have received a copy of the GNU General Public License
  14. * along with this program; if not, write to the Free Software
  15. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
  16. * 02110-1301, USA
  17. */
  18. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  19. #include <linux/init.h>
  20. #include <linux/module.h>
  21. #include <linux/if_arp.h>
  22. #include <linux/if_vlan.h>
  23. #include <linux/in.h>
  24. #include <linux/ip.h>
  25. #include <linux/jhash.h>
  26. #include <linux/delay.h>
  27. #include <linux/time.h>
  28. #include <linux/etherdevice.h>
  29. #include <linux/genetlink.h>
  30. #include <linux/kernel.h>
  31. #include <linux/kthread.h>
  32. #include <linux/mutex.h>
  33. #include <linux/percpu.h>
  34. #include <linux/rcupdate.h>
  35. #include <linux/tcp.h>
  36. #include <linux/udp.h>
  37. #include <linux/ethtool.h>
  38. #include <linux/wait.h>
  39. #include <asm/div64.h>
  40. #include <linux/highmem.h>
  41. #include <linux/netfilter_bridge.h>
  42. #include <linux/netfilter_ipv4.h>
  43. #include <linux/inetdevice.h>
  44. #include <linux/list.h>
  45. #include <linux/openvswitch.h>
  46. #include <linux/rculist.h>
  47. #include <linux/dmi.h>
  48. #include <linux/workqueue.h>
  49. #include <net/genetlink.h>
  50. #include "datapath.h"
  51. #include "flow.h"
  52. #include "vport-internal_dev.h"
  53. /**
  54. * DOC: Locking:
  55. *
  56. * Writes to device state (add/remove datapath, port, set operations on vports,
  57. * etc.) are protected by RTNL.
  58. *
  59. * Writes to other state (flow table modifications, set miscellaneous datapath
  60. * parameters, etc.) are protected by genl_mutex. The RTNL lock nests inside
  61. * genl_mutex.
  62. *
  63. * Reads are protected by RCU.
  64. *
  65. * There are a few special cases (mostly stats) that have their own
  66. * synchronization but they nest under all of above and don't interact with
  67. * each other.
  68. */
  69. /* Global list of datapaths to enable dumping them all out.
  70. * Protected by genl_mutex.
  71. */
  72. static LIST_HEAD(dps);
  73. #define REHASH_FLOW_INTERVAL (10 * 60 * HZ)
  74. static void rehash_flow_table(struct work_struct *work);
  75. static DECLARE_DELAYED_WORK(rehash_flow_wq, rehash_flow_table);
  76. static struct vport *new_vport(const struct vport_parms *);
  77. static int queue_gso_packets(int dp_ifindex, struct sk_buff *,
  78. const struct dp_upcall_info *);
  79. static int queue_userspace_packet(int dp_ifindex, struct sk_buff *,
  80. const struct dp_upcall_info *);
  81. /* Must be called with rcu_read_lock, genl_mutex, or RTNL lock. */
  82. static struct datapath *get_dp(int dp_ifindex)
  83. {
  84. struct datapath *dp = NULL;
  85. struct net_device *dev;
  86. rcu_read_lock();
  87. dev = dev_get_by_index_rcu(&init_net, dp_ifindex);
  88. if (dev) {
  89. struct vport *vport = ovs_internal_dev_get_vport(dev);
  90. if (vport)
  91. dp = vport->dp;
  92. }
  93. rcu_read_unlock();
  94. return dp;
  95. }
  96. /* Must be called with rcu_read_lock or RTNL lock. */
  97. const char *ovs_dp_name(const struct datapath *dp)
  98. {
  99. struct vport *vport = rcu_dereference_rtnl(dp->ports[OVSP_LOCAL]);
  100. return vport->ops->get_name(vport);
  101. }
  102. static int get_dpifindex(struct datapath *dp)
  103. {
  104. struct vport *local;
  105. int ifindex;
  106. rcu_read_lock();
  107. local = rcu_dereference(dp->ports[OVSP_LOCAL]);
  108. if (local)
  109. ifindex = local->ops->get_ifindex(local);
  110. else
  111. ifindex = 0;
  112. rcu_read_unlock();
  113. return ifindex;
  114. }
  115. static void destroy_dp_rcu(struct rcu_head *rcu)
  116. {
  117. struct datapath *dp = container_of(rcu, struct datapath, rcu);
  118. ovs_flow_tbl_destroy((__force struct flow_table *)dp->table);
  119. free_percpu(dp->stats_percpu);
  120. kfree(dp);
  121. }
  122. /* Called with RTNL lock and genl_lock. */
  123. static struct vport *new_vport(const struct vport_parms *parms)
  124. {
  125. struct vport *vport;
  126. vport = ovs_vport_add(parms);
  127. if (!IS_ERR(vport)) {
  128. struct datapath *dp = parms->dp;
  129. rcu_assign_pointer(dp->ports[parms->port_no], vport);
  130. list_add(&vport->node, &dp->port_list);
  131. }
  132. return vport;
  133. }
  134. /* Called with RTNL lock. */
  135. void ovs_dp_detach_port(struct vport *p)
  136. {
  137. ASSERT_RTNL();
  138. /* First drop references to device. */
  139. list_del(&p->node);
  140. rcu_assign_pointer(p->dp->ports[p->port_no], NULL);
  141. /* Then destroy it. */
  142. ovs_vport_del(p);
  143. }
  144. /* Must be called with rcu_read_lock. */
  145. void ovs_dp_process_received_packet(struct vport *p, struct sk_buff *skb)
  146. {
  147. struct datapath *dp = p->dp;
  148. struct sw_flow *flow;
  149. struct dp_stats_percpu *stats;
  150. struct sw_flow_key key;
  151. u64 *stats_counter;
  152. int error;
  153. int key_len;
  154. stats = per_cpu_ptr(dp->stats_percpu, smp_processor_id());
  155. /* Extract flow from 'skb' into 'key'. */
  156. error = ovs_flow_extract(skb, p->port_no, &key, &key_len);
  157. if (unlikely(error)) {
  158. kfree_skb(skb);
  159. return;
  160. }
  161. /* Look up flow. */
  162. flow = ovs_flow_tbl_lookup(rcu_dereference(dp->table), &key, key_len);
  163. if (unlikely(!flow)) {
  164. struct dp_upcall_info upcall;
  165. upcall.cmd = OVS_PACKET_CMD_MISS;
  166. upcall.key = &key;
  167. upcall.userdata = NULL;
  168. upcall.pid = p->upcall_pid;
  169. ovs_dp_upcall(dp, skb, &upcall);
  170. consume_skb(skb);
  171. stats_counter = &stats->n_missed;
  172. goto out;
  173. }
  174. OVS_CB(skb)->flow = flow;
  175. stats_counter = &stats->n_hit;
  176. ovs_flow_used(OVS_CB(skb)->flow, skb);
  177. ovs_execute_actions(dp, skb);
  178. out:
  179. /* Update datapath statistics. */
  180. u64_stats_update_begin(&stats->sync);
  181. (*stats_counter)++;
  182. u64_stats_update_end(&stats->sync);
  183. }
  184. static struct genl_family dp_packet_genl_family = {
  185. .id = GENL_ID_GENERATE,
  186. .hdrsize = sizeof(struct ovs_header),
  187. .name = OVS_PACKET_FAMILY,
  188. .version = OVS_PACKET_VERSION,
  189. .maxattr = OVS_PACKET_ATTR_MAX
  190. };
  191. int ovs_dp_upcall(struct datapath *dp, struct sk_buff *skb,
  192. const struct dp_upcall_info *upcall_info)
  193. {
  194. struct dp_stats_percpu *stats;
  195. int dp_ifindex;
  196. int err;
  197. if (upcall_info->pid == 0) {
  198. err = -ENOTCONN;
  199. goto err;
  200. }
  201. dp_ifindex = get_dpifindex(dp);
  202. if (!dp_ifindex) {
  203. err = -ENODEV;
  204. goto err;
  205. }
  206. if (!skb_is_gso(skb))
  207. err = queue_userspace_packet(dp_ifindex, skb, upcall_info);
  208. else
  209. err = queue_gso_packets(dp_ifindex, skb, upcall_info);
  210. if (err)
  211. goto err;
  212. return 0;
  213. err:
  214. stats = per_cpu_ptr(dp->stats_percpu, smp_processor_id());
  215. u64_stats_update_begin(&stats->sync);
  216. stats->n_lost++;
  217. u64_stats_update_end(&stats->sync);
  218. return err;
  219. }
  220. static int queue_gso_packets(int dp_ifindex, struct sk_buff *skb,
  221. const struct dp_upcall_info *upcall_info)
  222. {
  223. unsigned short gso_type = skb_shinfo(skb)->gso_type;
  224. struct dp_upcall_info later_info;
  225. struct sw_flow_key later_key;
  226. struct sk_buff *segs, *nskb;
  227. int err;
  228. segs = skb_gso_segment(skb, NETIF_F_SG | NETIF_F_HW_CSUM);
  229. if (IS_ERR(segs))
  230. return PTR_ERR(segs);
  231. /* Queue all of the segments. */
  232. skb = segs;
  233. do {
  234. err = queue_userspace_packet(dp_ifindex, skb, upcall_info);
  235. if (err)
  236. break;
  237. if (skb == segs && gso_type & SKB_GSO_UDP) {
  238. /* The initial flow key extracted by ovs_flow_extract()
  239. * in this case is for a first fragment, so we need to
  240. * properly mark later fragments.
  241. */
  242. later_key = *upcall_info->key;
  243. later_key.ip.frag = OVS_FRAG_TYPE_LATER;
  244. later_info = *upcall_info;
  245. later_info.key = &later_key;
  246. upcall_info = &later_info;
  247. }
  248. } while ((skb = skb->next));
  249. /* Free all of the segments. */
  250. skb = segs;
  251. do {
  252. nskb = skb->next;
  253. if (err)
  254. kfree_skb(skb);
  255. else
  256. consume_skb(skb);
  257. } while ((skb = nskb));
  258. return err;
  259. }
  260. static int queue_userspace_packet(int dp_ifindex, struct sk_buff *skb,
  261. const struct dp_upcall_info *upcall_info)
  262. {
  263. struct ovs_header *upcall;
  264. struct sk_buff *nskb = NULL;
  265. struct sk_buff *user_skb; /* to be queued to userspace */
  266. struct nlattr *nla;
  267. unsigned int len;
  268. int err;
  269. if (vlan_tx_tag_present(skb)) {
  270. nskb = skb_clone(skb, GFP_ATOMIC);
  271. if (!nskb)
  272. return -ENOMEM;
  273. nskb = __vlan_put_tag(nskb, vlan_tx_tag_get(nskb));
  274. if (!skb)
  275. return -ENOMEM;
  276. nskb->vlan_tci = 0;
  277. skb = nskb;
  278. }
  279. if (nla_attr_size(skb->len) > USHRT_MAX) {
  280. err = -EFBIG;
  281. goto out;
  282. }
  283. len = sizeof(struct ovs_header);
  284. len += nla_total_size(skb->len);
  285. len += nla_total_size(FLOW_BUFSIZE);
  286. if (upcall_info->cmd == OVS_PACKET_CMD_ACTION)
  287. len += nla_total_size(8);
  288. user_skb = genlmsg_new(len, GFP_ATOMIC);
  289. if (!user_skb) {
  290. err = -ENOMEM;
  291. goto out;
  292. }
  293. upcall = genlmsg_put(user_skb, 0, 0, &dp_packet_genl_family,
  294. 0, upcall_info->cmd);
  295. upcall->dp_ifindex = dp_ifindex;
  296. nla = nla_nest_start(user_skb, OVS_PACKET_ATTR_KEY);
  297. ovs_flow_to_nlattrs(upcall_info->key, user_skb);
  298. nla_nest_end(user_skb, nla);
  299. if (upcall_info->userdata)
  300. nla_put_u64(user_skb, OVS_PACKET_ATTR_USERDATA,
  301. nla_get_u64(upcall_info->userdata));
  302. nla = __nla_reserve(user_skb, OVS_PACKET_ATTR_PACKET, skb->len);
  303. skb_copy_and_csum_dev(skb, nla_data(nla));
  304. err = genlmsg_unicast(&init_net, user_skb, upcall_info->pid);
  305. out:
  306. kfree_skb(nskb);
  307. return err;
  308. }
  309. /* Called with genl_mutex. */
  310. static int flush_flows(int dp_ifindex)
  311. {
  312. struct flow_table *old_table;
  313. struct flow_table *new_table;
  314. struct datapath *dp;
  315. dp = get_dp(dp_ifindex);
  316. if (!dp)
  317. return -ENODEV;
  318. old_table = genl_dereference(dp->table);
  319. new_table = ovs_flow_tbl_alloc(TBL_MIN_BUCKETS);
  320. if (!new_table)
  321. return -ENOMEM;
  322. rcu_assign_pointer(dp->table, new_table);
  323. ovs_flow_tbl_deferred_destroy(old_table);
  324. return 0;
  325. }
  326. static int validate_actions(const struct nlattr *attr,
  327. const struct sw_flow_key *key, int depth);
  328. static int validate_sample(const struct nlattr *attr,
  329. const struct sw_flow_key *key, int depth)
  330. {
  331. const struct nlattr *attrs[OVS_SAMPLE_ATTR_MAX + 1];
  332. const struct nlattr *probability, *actions;
  333. const struct nlattr *a;
  334. int rem;
  335. memset(attrs, 0, sizeof(attrs));
  336. nla_for_each_nested(a, attr, rem) {
  337. int type = nla_type(a);
  338. if (!type || type > OVS_SAMPLE_ATTR_MAX || attrs[type])
  339. return -EINVAL;
  340. attrs[type] = a;
  341. }
  342. if (rem)
  343. return -EINVAL;
  344. probability = attrs[OVS_SAMPLE_ATTR_PROBABILITY];
  345. if (!probability || nla_len(probability) != sizeof(u32))
  346. return -EINVAL;
  347. actions = attrs[OVS_SAMPLE_ATTR_ACTIONS];
  348. if (!actions || (nla_len(actions) && nla_len(actions) < NLA_HDRLEN))
  349. return -EINVAL;
  350. return validate_actions(actions, key, depth + 1);
  351. }
  352. static int validate_set(const struct nlattr *a,
  353. const struct sw_flow_key *flow_key)
  354. {
  355. const struct nlattr *ovs_key = nla_data(a);
  356. int key_type = nla_type(ovs_key);
  357. /* There can be only one key in a action */
  358. if (nla_total_size(nla_len(ovs_key)) != nla_len(a))
  359. return -EINVAL;
  360. if (key_type > OVS_KEY_ATTR_MAX ||
  361. nla_len(ovs_key) != ovs_key_lens[key_type])
  362. return -EINVAL;
  363. switch (key_type) {
  364. const struct ovs_key_ipv4 *ipv4_key;
  365. case OVS_KEY_ATTR_PRIORITY:
  366. case OVS_KEY_ATTR_ETHERNET:
  367. break;
  368. case OVS_KEY_ATTR_IPV4:
  369. if (flow_key->eth.type != htons(ETH_P_IP))
  370. return -EINVAL;
  371. if (!flow_key->ipv4.addr.src || !flow_key->ipv4.addr.dst)
  372. return -EINVAL;
  373. ipv4_key = nla_data(ovs_key);
  374. if (ipv4_key->ipv4_proto != flow_key->ip.proto)
  375. return -EINVAL;
  376. if (ipv4_key->ipv4_frag != flow_key->ip.frag)
  377. return -EINVAL;
  378. break;
  379. case OVS_KEY_ATTR_TCP:
  380. if (flow_key->ip.proto != IPPROTO_TCP)
  381. return -EINVAL;
  382. if (!flow_key->ipv4.tp.src || !flow_key->ipv4.tp.dst)
  383. return -EINVAL;
  384. break;
  385. case OVS_KEY_ATTR_UDP:
  386. if (flow_key->ip.proto != IPPROTO_UDP)
  387. return -EINVAL;
  388. if (!flow_key->ipv4.tp.src || !flow_key->ipv4.tp.dst)
  389. return -EINVAL;
  390. break;
  391. default:
  392. return -EINVAL;
  393. }
  394. return 0;
  395. }
  396. static int validate_userspace(const struct nlattr *attr)
  397. {
  398. static const struct nla_policy userspace_policy[OVS_USERSPACE_ATTR_MAX + 1] = {
  399. [OVS_USERSPACE_ATTR_PID] = {.type = NLA_U32 },
  400. [OVS_USERSPACE_ATTR_USERDATA] = {.type = NLA_U64 },
  401. };
  402. struct nlattr *a[OVS_USERSPACE_ATTR_MAX + 1];
  403. int error;
  404. error = nla_parse_nested(a, OVS_USERSPACE_ATTR_MAX,
  405. attr, userspace_policy);
  406. if (error)
  407. return error;
  408. if (!a[OVS_USERSPACE_ATTR_PID] ||
  409. !nla_get_u32(a[OVS_USERSPACE_ATTR_PID]))
  410. return -EINVAL;
  411. return 0;
  412. }
  413. static int validate_actions(const struct nlattr *attr,
  414. const struct sw_flow_key *key, int depth)
  415. {
  416. const struct nlattr *a;
  417. int rem, err;
  418. if (depth >= SAMPLE_ACTION_DEPTH)
  419. return -EOVERFLOW;
  420. nla_for_each_nested(a, attr, rem) {
  421. /* Expected argument lengths, (u32)-1 for variable length. */
  422. static const u32 action_lens[OVS_ACTION_ATTR_MAX + 1] = {
  423. [OVS_ACTION_ATTR_OUTPUT] = sizeof(u32),
  424. [OVS_ACTION_ATTR_USERSPACE] = (u32)-1,
  425. [OVS_ACTION_ATTR_PUSH_VLAN] = sizeof(struct ovs_action_push_vlan),
  426. [OVS_ACTION_ATTR_POP_VLAN] = 0,
  427. [OVS_ACTION_ATTR_SET] = (u32)-1,
  428. [OVS_ACTION_ATTR_SAMPLE] = (u32)-1
  429. };
  430. const struct ovs_action_push_vlan *vlan;
  431. int type = nla_type(a);
  432. if (type > OVS_ACTION_ATTR_MAX ||
  433. (action_lens[type] != nla_len(a) &&
  434. action_lens[type] != (u32)-1))
  435. return -EINVAL;
  436. switch (type) {
  437. case OVS_ACTION_ATTR_UNSPEC:
  438. return -EINVAL;
  439. case OVS_ACTION_ATTR_USERSPACE:
  440. err = validate_userspace(a);
  441. if (err)
  442. return err;
  443. break;
  444. case OVS_ACTION_ATTR_OUTPUT:
  445. if (nla_get_u32(a) >= DP_MAX_PORTS)
  446. return -EINVAL;
  447. break;
  448. case OVS_ACTION_ATTR_POP_VLAN:
  449. break;
  450. case OVS_ACTION_ATTR_PUSH_VLAN:
  451. vlan = nla_data(a);
  452. if (vlan->vlan_tpid != htons(ETH_P_8021Q))
  453. return -EINVAL;
  454. if (!(vlan->vlan_tci & htons(VLAN_TAG_PRESENT)))
  455. return -EINVAL;
  456. break;
  457. case OVS_ACTION_ATTR_SET:
  458. err = validate_set(a, key);
  459. if (err)
  460. return err;
  461. break;
  462. case OVS_ACTION_ATTR_SAMPLE:
  463. err = validate_sample(a, key, depth);
  464. if (err)
  465. return err;
  466. break;
  467. default:
  468. return -EINVAL;
  469. }
  470. }
  471. if (rem > 0)
  472. return -EINVAL;
  473. return 0;
  474. }
  475. static void clear_stats(struct sw_flow *flow)
  476. {
  477. flow->used = 0;
  478. flow->tcp_flags = 0;
  479. flow->packet_count = 0;
  480. flow->byte_count = 0;
  481. }
  482. static int ovs_packet_cmd_execute(struct sk_buff *skb, struct genl_info *info)
  483. {
  484. struct ovs_header *ovs_header = info->userhdr;
  485. struct nlattr **a = info->attrs;
  486. struct sw_flow_actions *acts;
  487. struct sk_buff *packet;
  488. struct sw_flow *flow;
  489. struct datapath *dp;
  490. struct ethhdr *eth;
  491. int len;
  492. int err;
  493. int key_len;
  494. err = -EINVAL;
  495. if (!a[OVS_PACKET_ATTR_PACKET] || !a[OVS_PACKET_ATTR_KEY] ||
  496. !a[OVS_PACKET_ATTR_ACTIONS] ||
  497. nla_len(a[OVS_PACKET_ATTR_PACKET]) < ETH_HLEN)
  498. goto err;
  499. len = nla_len(a[OVS_PACKET_ATTR_PACKET]);
  500. packet = __dev_alloc_skb(NET_IP_ALIGN + len, GFP_KERNEL);
  501. err = -ENOMEM;
  502. if (!packet)
  503. goto err;
  504. skb_reserve(packet, NET_IP_ALIGN);
  505. memcpy(__skb_put(packet, len), nla_data(a[OVS_PACKET_ATTR_PACKET]), len);
  506. skb_reset_mac_header(packet);
  507. eth = eth_hdr(packet);
  508. /* Normally, setting the skb 'protocol' field would be handled by a
  509. * call to eth_type_trans(), but it assumes there's a sending
  510. * device, which we may not have. */
  511. if (ntohs(eth->h_proto) >= 1536)
  512. packet->protocol = eth->h_proto;
  513. else
  514. packet->protocol = htons(ETH_P_802_2);
  515. /* Build an sw_flow for sending this packet. */
  516. flow = ovs_flow_alloc();
  517. err = PTR_ERR(flow);
  518. if (IS_ERR(flow))
  519. goto err_kfree_skb;
  520. err = ovs_flow_extract(packet, -1, &flow->key, &key_len);
  521. if (err)
  522. goto err_flow_free;
  523. err = ovs_flow_metadata_from_nlattrs(&flow->key.phy.priority,
  524. &flow->key.phy.in_port,
  525. a[OVS_PACKET_ATTR_KEY]);
  526. if (err)
  527. goto err_flow_free;
  528. err = validate_actions(a[OVS_PACKET_ATTR_ACTIONS], &flow->key, 0);
  529. if (err)
  530. goto err_flow_free;
  531. flow->hash = ovs_flow_hash(&flow->key, key_len);
  532. acts = ovs_flow_actions_alloc(a[OVS_PACKET_ATTR_ACTIONS]);
  533. err = PTR_ERR(acts);
  534. if (IS_ERR(acts))
  535. goto err_flow_free;
  536. rcu_assign_pointer(flow->sf_acts, acts);
  537. OVS_CB(packet)->flow = flow;
  538. packet->priority = flow->key.phy.priority;
  539. rcu_read_lock();
  540. dp = get_dp(ovs_header->dp_ifindex);
  541. err = -ENODEV;
  542. if (!dp)
  543. goto err_unlock;
  544. local_bh_disable();
  545. err = ovs_execute_actions(dp, packet);
  546. local_bh_enable();
  547. rcu_read_unlock();
  548. ovs_flow_free(flow);
  549. return err;
  550. err_unlock:
  551. rcu_read_unlock();
  552. err_flow_free:
  553. ovs_flow_free(flow);
  554. err_kfree_skb:
  555. kfree_skb(packet);
  556. err:
  557. return err;
  558. }
  559. static const struct nla_policy packet_policy[OVS_PACKET_ATTR_MAX + 1] = {
  560. [OVS_PACKET_ATTR_PACKET] = { .type = NLA_UNSPEC },
  561. [OVS_PACKET_ATTR_KEY] = { .type = NLA_NESTED },
  562. [OVS_PACKET_ATTR_ACTIONS] = { .type = NLA_NESTED },
  563. };
  564. static struct genl_ops dp_packet_genl_ops[] = {
  565. { .cmd = OVS_PACKET_CMD_EXECUTE,
  566. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  567. .policy = packet_policy,
  568. .doit = ovs_packet_cmd_execute
  569. }
  570. };
  571. static void get_dp_stats(struct datapath *dp, struct ovs_dp_stats *stats)
  572. {
  573. int i;
  574. struct flow_table *table = genl_dereference(dp->table);
  575. stats->n_flows = ovs_flow_tbl_count(table);
  576. stats->n_hit = stats->n_missed = stats->n_lost = 0;
  577. for_each_possible_cpu(i) {
  578. const struct dp_stats_percpu *percpu_stats;
  579. struct dp_stats_percpu local_stats;
  580. unsigned int start;
  581. percpu_stats = per_cpu_ptr(dp->stats_percpu, i);
  582. do {
  583. start = u64_stats_fetch_begin_bh(&percpu_stats->sync);
  584. local_stats = *percpu_stats;
  585. } while (u64_stats_fetch_retry_bh(&percpu_stats->sync, start));
  586. stats->n_hit += local_stats.n_hit;
  587. stats->n_missed += local_stats.n_missed;
  588. stats->n_lost += local_stats.n_lost;
  589. }
  590. }
  591. static const struct nla_policy flow_policy[OVS_FLOW_ATTR_MAX + 1] = {
  592. [OVS_FLOW_ATTR_KEY] = { .type = NLA_NESTED },
  593. [OVS_FLOW_ATTR_ACTIONS] = { .type = NLA_NESTED },
  594. [OVS_FLOW_ATTR_CLEAR] = { .type = NLA_FLAG },
  595. };
  596. static struct genl_family dp_flow_genl_family = {
  597. .id = GENL_ID_GENERATE,
  598. .hdrsize = sizeof(struct ovs_header),
  599. .name = OVS_FLOW_FAMILY,
  600. .version = OVS_FLOW_VERSION,
  601. .maxattr = OVS_FLOW_ATTR_MAX
  602. };
  603. static struct genl_multicast_group ovs_dp_flow_multicast_group = {
  604. .name = OVS_FLOW_MCGROUP
  605. };
  606. /* Called with genl_lock. */
  607. static int ovs_flow_cmd_fill_info(struct sw_flow *flow, struct datapath *dp,
  608. struct sk_buff *skb, u32 pid,
  609. u32 seq, u32 flags, u8 cmd)
  610. {
  611. const int skb_orig_len = skb->len;
  612. const struct sw_flow_actions *sf_acts;
  613. struct ovs_flow_stats stats;
  614. struct ovs_header *ovs_header;
  615. struct nlattr *nla;
  616. unsigned long used;
  617. u8 tcp_flags;
  618. int err;
  619. sf_acts = rcu_dereference_protected(flow->sf_acts,
  620. lockdep_genl_is_held());
  621. ovs_header = genlmsg_put(skb, pid, seq, &dp_flow_genl_family, flags, cmd);
  622. if (!ovs_header)
  623. return -EMSGSIZE;
  624. ovs_header->dp_ifindex = get_dpifindex(dp);
  625. nla = nla_nest_start(skb, OVS_FLOW_ATTR_KEY);
  626. if (!nla)
  627. goto nla_put_failure;
  628. err = ovs_flow_to_nlattrs(&flow->key, skb);
  629. if (err)
  630. goto error;
  631. nla_nest_end(skb, nla);
  632. spin_lock_bh(&flow->lock);
  633. used = flow->used;
  634. stats.n_packets = flow->packet_count;
  635. stats.n_bytes = flow->byte_count;
  636. tcp_flags = flow->tcp_flags;
  637. spin_unlock_bh(&flow->lock);
  638. if (used)
  639. NLA_PUT_U64(skb, OVS_FLOW_ATTR_USED, ovs_flow_used_time(used));
  640. if (stats.n_packets)
  641. NLA_PUT(skb, OVS_FLOW_ATTR_STATS,
  642. sizeof(struct ovs_flow_stats), &stats);
  643. if (tcp_flags)
  644. NLA_PUT_U8(skb, OVS_FLOW_ATTR_TCP_FLAGS, tcp_flags);
  645. /* If OVS_FLOW_ATTR_ACTIONS doesn't fit, skip dumping the actions if
  646. * this is the first flow to be dumped into 'skb'. This is unusual for
  647. * Netlink but individual action lists can be longer than
  648. * NLMSG_GOODSIZE and thus entirely undumpable if we didn't do this.
  649. * The userspace caller can always fetch the actions separately if it
  650. * really wants them. (Most userspace callers in fact don't care.)
  651. *
  652. * This can only fail for dump operations because the skb is always
  653. * properly sized for single flows.
  654. */
  655. err = nla_put(skb, OVS_FLOW_ATTR_ACTIONS, sf_acts->actions_len,
  656. sf_acts->actions);
  657. if (err < 0 && skb_orig_len)
  658. goto error;
  659. return genlmsg_end(skb, ovs_header);
  660. nla_put_failure:
  661. err = -EMSGSIZE;
  662. error:
  663. genlmsg_cancel(skb, ovs_header);
  664. return err;
  665. }
  666. static struct sk_buff *ovs_flow_cmd_alloc_info(struct sw_flow *flow)
  667. {
  668. const struct sw_flow_actions *sf_acts;
  669. int len;
  670. sf_acts = rcu_dereference_protected(flow->sf_acts,
  671. lockdep_genl_is_held());
  672. /* OVS_FLOW_ATTR_KEY */
  673. len = nla_total_size(FLOW_BUFSIZE);
  674. /* OVS_FLOW_ATTR_ACTIONS */
  675. len += nla_total_size(sf_acts->actions_len);
  676. /* OVS_FLOW_ATTR_STATS */
  677. len += nla_total_size(sizeof(struct ovs_flow_stats));
  678. /* OVS_FLOW_ATTR_TCP_FLAGS */
  679. len += nla_total_size(1);
  680. /* OVS_FLOW_ATTR_USED */
  681. len += nla_total_size(8);
  682. len += NLMSG_ALIGN(sizeof(struct ovs_header));
  683. return genlmsg_new(len, GFP_KERNEL);
  684. }
  685. static struct sk_buff *ovs_flow_cmd_build_info(struct sw_flow *flow,
  686. struct datapath *dp,
  687. u32 pid, u32 seq, u8 cmd)
  688. {
  689. struct sk_buff *skb;
  690. int retval;
  691. skb = ovs_flow_cmd_alloc_info(flow);
  692. if (!skb)
  693. return ERR_PTR(-ENOMEM);
  694. retval = ovs_flow_cmd_fill_info(flow, dp, skb, pid, seq, 0, cmd);
  695. BUG_ON(retval < 0);
  696. return skb;
  697. }
  698. static int ovs_flow_cmd_new_or_set(struct sk_buff *skb, struct genl_info *info)
  699. {
  700. struct nlattr **a = info->attrs;
  701. struct ovs_header *ovs_header = info->userhdr;
  702. struct sw_flow_key key;
  703. struct sw_flow *flow;
  704. struct sk_buff *reply;
  705. struct datapath *dp;
  706. struct flow_table *table;
  707. int error;
  708. int key_len;
  709. /* Extract key. */
  710. error = -EINVAL;
  711. if (!a[OVS_FLOW_ATTR_KEY])
  712. goto error;
  713. error = ovs_flow_from_nlattrs(&key, &key_len, a[OVS_FLOW_ATTR_KEY]);
  714. if (error)
  715. goto error;
  716. /* Validate actions. */
  717. if (a[OVS_FLOW_ATTR_ACTIONS]) {
  718. error = validate_actions(a[OVS_FLOW_ATTR_ACTIONS], &key, 0);
  719. if (error)
  720. goto error;
  721. } else if (info->genlhdr->cmd == OVS_FLOW_CMD_NEW) {
  722. error = -EINVAL;
  723. goto error;
  724. }
  725. dp = get_dp(ovs_header->dp_ifindex);
  726. error = -ENODEV;
  727. if (!dp)
  728. goto error;
  729. table = genl_dereference(dp->table);
  730. flow = ovs_flow_tbl_lookup(table, &key, key_len);
  731. if (!flow) {
  732. struct sw_flow_actions *acts;
  733. /* Bail out if we're not allowed to create a new flow. */
  734. error = -ENOENT;
  735. if (info->genlhdr->cmd == OVS_FLOW_CMD_SET)
  736. goto error;
  737. /* Expand table, if necessary, to make room. */
  738. if (ovs_flow_tbl_need_to_expand(table)) {
  739. struct flow_table *new_table;
  740. new_table = ovs_flow_tbl_expand(table);
  741. if (!IS_ERR(new_table)) {
  742. rcu_assign_pointer(dp->table, new_table);
  743. ovs_flow_tbl_deferred_destroy(table);
  744. table = genl_dereference(dp->table);
  745. }
  746. }
  747. /* Allocate flow. */
  748. flow = ovs_flow_alloc();
  749. if (IS_ERR(flow)) {
  750. error = PTR_ERR(flow);
  751. goto error;
  752. }
  753. flow->key = key;
  754. clear_stats(flow);
  755. /* Obtain actions. */
  756. acts = ovs_flow_actions_alloc(a[OVS_FLOW_ATTR_ACTIONS]);
  757. error = PTR_ERR(acts);
  758. if (IS_ERR(acts))
  759. goto error_free_flow;
  760. rcu_assign_pointer(flow->sf_acts, acts);
  761. /* Put flow in bucket. */
  762. flow->hash = ovs_flow_hash(&key, key_len);
  763. ovs_flow_tbl_insert(table, flow);
  764. reply = ovs_flow_cmd_build_info(flow, dp, info->snd_pid,
  765. info->snd_seq,
  766. OVS_FLOW_CMD_NEW);
  767. } else {
  768. /* We found a matching flow. */
  769. struct sw_flow_actions *old_acts;
  770. struct nlattr *acts_attrs;
  771. /* Bail out if we're not allowed to modify an existing flow.
  772. * We accept NLM_F_CREATE in place of the intended NLM_F_EXCL
  773. * because Generic Netlink treats the latter as a dump
  774. * request. We also accept NLM_F_EXCL in case that bug ever
  775. * gets fixed.
  776. */
  777. error = -EEXIST;
  778. if (info->genlhdr->cmd == OVS_FLOW_CMD_NEW &&
  779. info->nlhdr->nlmsg_flags & (NLM_F_CREATE | NLM_F_EXCL))
  780. goto error;
  781. /* Update actions. */
  782. old_acts = rcu_dereference_protected(flow->sf_acts,
  783. lockdep_genl_is_held());
  784. acts_attrs = a[OVS_FLOW_ATTR_ACTIONS];
  785. if (acts_attrs &&
  786. (old_acts->actions_len != nla_len(acts_attrs) ||
  787. memcmp(old_acts->actions, nla_data(acts_attrs),
  788. old_acts->actions_len))) {
  789. struct sw_flow_actions *new_acts;
  790. new_acts = ovs_flow_actions_alloc(acts_attrs);
  791. error = PTR_ERR(new_acts);
  792. if (IS_ERR(new_acts))
  793. goto error;
  794. rcu_assign_pointer(flow->sf_acts, new_acts);
  795. ovs_flow_deferred_free_acts(old_acts);
  796. }
  797. reply = ovs_flow_cmd_build_info(flow, dp, info->snd_pid,
  798. info->snd_seq, OVS_FLOW_CMD_NEW);
  799. /* Clear stats. */
  800. if (a[OVS_FLOW_ATTR_CLEAR]) {
  801. spin_lock_bh(&flow->lock);
  802. clear_stats(flow);
  803. spin_unlock_bh(&flow->lock);
  804. }
  805. }
  806. if (!IS_ERR(reply))
  807. genl_notify(reply, genl_info_net(info), info->snd_pid,
  808. ovs_dp_flow_multicast_group.id, info->nlhdr,
  809. GFP_KERNEL);
  810. else
  811. netlink_set_err(init_net.genl_sock, 0,
  812. ovs_dp_flow_multicast_group.id, PTR_ERR(reply));
  813. return 0;
  814. error_free_flow:
  815. ovs_flow_free(flow);
  816. error:
  817. return error;
  818. }
  819. static int ovs_flow_cmd_get(struct sk_buff *skb, struct genl_info *info)
  820. {
  821. struct nlattr **a = info->attrs;
  822. struct ovs_header *ovs_header = info->userhdr;
  823. struct sw_flow_key key;
  824. struct sk_buff *reply;
  825. struct sw_flow *flow;
  826. struct datapath *dp;
  827. struct flow_table *table;
  828. int err;
  829. int key_len;
  830. if (!a[OVS_FLOW_ATTR_KEY])
  831. return -EINVAL;
  832. err = ovs_flow_from_nlattrs(&key, &key_len, a[OVS_FLOW_ATTR_KEY]);
  833. if (err)
  834. return err;
  835. dp = get_dp(ovs_header->dp_ifindex);
  836. if (!dp)
  837. return -ENODEV;
  838. table = genl_dereference(dp->table);
  839. flow = ovs_flow_tbl_lookup(table, &key, key_len);
  840. if (!flow)
  841. return -ENOENT;
  842. reply = ovs_flow_cmd_build_info(flow, dp, info->snd_pid,
  843. info->snd_seq, OVS_FLOW_CMD_NEW);
  844. if (IS_ERR(reply))
  845. return PTR_ERR(reply);
  846. return genlmsg_reply(reply, info);
  847. }
  848. static int ovs_flow_cmd_del(struct sk_buff *skb, struct genl_info *info)
  849. {
  850. struct nlattr **a = info->attrs;
  851. struct ovs_header *ovs_header = info->userhdr;
  852. struct sw_flow_key key;
  853. struct sk_buff *reply;
  854. struct sw_flow *flow;
  855. struct datapath *dp;
  856. struct flow_table *table;
  857. int err;
  858. int key_len;
  859. if (!a[OVS_FLOW_ATTR_KEY])
  860. return flush_flows(ovs_header->dp_ifindex);
  861. err = ovs_flow_from_nlattrs(&key, &key_len, a[OVS_FLOW_ATTR_KEY]);
  862. if (err)
  863. return err;
  864. dp = get_dp(ovs_header->dp_ifindex);
  865. if (!dp)
  866. return -ENODEV;
  867. table = genl_dereference(dp->table);
  868. flow = ovs_flow_tbl_lookup(table, &key, key_len);
  869. if (!flow)
  870. return -ENOENT;
  871. reply = ovs_flow_cmd_alloc_info(flow);
  872. if (!reply)
  873. return -ENOMEM;
  874. ovs_flow_tbl_remove(table, flow);
  875. err = ovs_flow_cmd_fill_info(flow, dp, reply, info->snd_pid,
  876. info->snd_seq, 0, OVS_FLOW_CMD_DEL);
  877. BUG_ON(err < 0);
  878. ovs_flow_deferred_free(flow);
  879. genl_notify(reply, genl_info_net(info), info->snd_pid,
  880. ovs_dp_flow_multicast_group.id, info->nlhdr, GFP_KERNEL);
  881. return 0;
  882. }
  883. static int ovs_flow_cmd_dump(struct sk_buff *skb, struct netlink_callback *cb)
  884. {
  885. struct ovs_header *ovs_header = genlmsg_data(nlmsg_data(cb->nlh));
  886. struct datapath *dp;
  887. struct flow_table *table;
  888. dp = get_dp(ovs_header->dp_ifindex);
  889. if (!dp)
  890. return -ENODEV;
  891. table = genl_dereference(dp->table);
  892. for (;;) {
  893. struct sw_flow *flow;
  894. u32 bucket, obj;
  895. bucket = cb->args[0];
  896. obj = cb->args[1];
  897. flow = ovs_flow_tbl_next(table, &bucket, &obj);
  898. if (!flow)
  899. break;
  900. if (ovs_flow_cmd_fill_info(flow, dp, skb,
  901. NETLINK_CB(cb->skb).pid,
  902. cb->nlh->nlmsg_seq, NLM_F_MULTI,
  903. OVS_FLOW_CMD_NEW) < 0)
  904. break;
  905. cb->args[0] = bucket;
  906. cb->args[1] = obj;
  907. }
  908. return skb->len;
  909. }
  910. static struct genl_ops dp_flow_genl_ops[] = {
  911. { .cmd = OVS_FLOW_CMD_NEW,
  912. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  913. .policy = flow_policy,
  914. .doit = ovs_flow_cmd_new_or_set
  915. },
  916. { .cmd = OVS_FLOW_CMD_DEL,
  917. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  918. .policy = flow_policy,
  919. .doit = ovs_flow_cmd_del
  920. },
  921. { .cmd = OVS_FLOW_CMD_GET,
  922. .flags = 0, /* OK for unprivileged users. */
  923. .policy = flow_policy,
  924. .doit = ovs_flow_cmd_get,
  925. .dumpit = ovs_flow_cmd_dump
  926. },
  927. { .cmd = OVS_FLOW_CMD_SET,
  928. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  929. .policy = flow_policy,
  930. .doit = ovs_flow_cmd_new_or_set,
  931. },
  932. };
  933. static const struct nla_policy datapath_policy[OVS_DP_ATTR_MAX + 1] = {
  934. [OVS_DP_ATTR_NAME] = { .type = NLA_NUL_STRING, .len = IFNAMSIZ - 1 },
  935. [OVS_DP_ATTR_UPCALL_PID] = { .type = NLA_U32 },
  936. };
  937. static struct genl_family dp_datapath_genl_family = {
  938. .id = GENL_ID_GENERATE,
  939. .hdrsize = sizeof(struct ovs_header),
  940. .name = OVS_DATAPATH_FAMILY,
  941. .version = OVS_DATAPATH_VERSION,
  942. .maxattr = OVS_DP_ATTR_MAX
  943. };
  944. static struct genl_multicast_group ovs_dp_datapath_multicast_group = {
  945. .name = OVS_DATAPATH_MCGROUP
  946. };
  947. static int ovs_dp_cmd_fill_info(struct datapath *dp, struct sk_buff *skb,
  948. u32 pid, u32 seq, u32 flags, u8 cmd)
  949. {
  950. struct ovs_header *ovs_header;
  951. struct ovs_dp_stats dp_stats;
  952. int err;
  953. ovs_header = genlmsg_put(skb, pid, seq, &dp_datapath_genl_family,
  954. flags, cmd);
  955. if (!ovs_header)
  956. goto error;
  957. ovs_header->dp_ifindex = get_dpifindex(dp);
  958. rcu_read_lock();
  959. err = nla_put_string(skb, OVS_DP_ATTR_NAME, ovs_dp_name(dp));
  960. rcu_read_unlock();
  961. if (err)
  962. goto nla_put_failure;
  963. get_dp_stats(dp, &dp_stats);
  964. NLA_PUT(skb, OVS_DP_ATTR_STATS, sizeof(struct ovs_dp_stats), &dp_stats);
  965. return genlmsg_end(skb, ovs_header);
  966. nla_put_failure:
  967. genlmsg_cancel(skb, ovs_header);
  968. error:
  969. return -EMSGSIZE;
  970. }
  971. static struct sk_buff *ovs_dp_cmd_build_info(struct datapath *dp, u32 pid,
  972. u32 seq, u8 cmd)
  973. {
  974. struct sk_buff *skb;
  975. int retval;
  976. skb = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  977. if (!skb)
  978. return ERR_PTR(-ENOMEM);
  979. retval = ovs_dp_cmd_fill_info(dp, skb, pid, seq, 0, cmd);
  980. if (retval < 0) {
  981. kfree_skb(skb);
  982. return ERR_PTR(retval);
  983. }
  984. return skb;
  985. }
  986. /* Called with genl_mutex and optionally with RTNL lock also. */
  987. static struct datapath *lookup_datapath(struct ovs_header *ovs_header,
  988. struct nlattr *a[OVS_DP_ATTR_MAX + 1])
  989. {
  990. struct datapath *dp;
  991. if (!a[OVS_DP_ATTR_NAME])
  992. dp = get_dp(ovs_header->dp_ifindex);
  993. else {
  994. struct vport *vport;
  995. rcu_read_lock();
  996. vport = ovs_vport_locate(nla_data(a[OVS_DP_ATTR_NAME]));
  997. dp = vport && vport->port_no == OVSP_LOCAL ? vport->dp : NULL;
  998. rcu_read_unlock();
  999. }
  1000. return dp ? dp : ERR_PTR(-ENODEV);
  1001. }
  1002. static int ovs_dp_cmd_new(struct sk_buff *skb, struct genl_info *info)
  1003. {
  1004. struct nlattr **a = info->attrs;
  1005. struct vport_parms parms;
  1006. struct sk_buff *reply;
  1007. struct datapath *dp;
  1008. struct vport *vport;
  1009. int err;
  1010. err = -EINVAL;
  1011. if (!a[OVS_DP_ATTR_NAME] || !a[OVS_DP_ATTR_UPCALL_PID])
  1012. goto err;
  1013. rtnl_lock();
  1014. err = -ENODEV;
  1015. if (!try_module_get(THIS_MODULE))
  1016. goto err_unlock_rtnl;
  1017. err = -ENOMEM;
  1018. dp = kzalloc(sizeof(*dp), GFP_KERNEL);
  1019. if (dp == NULL)
  1020. goto err_put_module;
  1021. INIT_LIST_HEAD(&dp->port_list);
  1022. /* Allocate table. */
  1023. err = -ENOMEM;
  1024. rcu_assign_pointer(dp->table, ovs_flow_tbl_alloc(TBL_MIN_BUCKETS));
  1025. if (!dp->table)
  1026. goto err_free_dp;
  1027. dp->stats_percpu = alloc_percpu(struct dp_stats_percpu);
  1028. if (!dp->stats_percpu) {
  1029. err = -ENOMEM;
  1030. goto err_destroy_table;
  1031. }
  1032. /* Set up our datapath device. */
  1033. parms.name = nla_data(a[OVS_DP_ATTR_NAME]);
  1034. parms.type = OVS_VPORT_TYPE_INTERNAL;
  1035. parms.options = NULL;
  1036. parms.dp = dp;
  1037. parms.port_no = OVSP_LOCAL;
  1038. parms.upcall_pid = nla_get_u32(a[OVS_DP_ATTR_UPCALL_PID]);
  1039. vport = new_vport(&parms);
  1040. if (IS_ERR(vport)) {
  1041. err = PTR_ERR(vport);
  1042. if (err == -EBUSY)
  1043. err = -EEXIST;
  1044. goto err_destroy_percpu;
  1045. }
  1046. reply = ovs_dp_cmd_build_info(dp, info->snd_pid,
  1047. info->snd_seq, OVS_DP_CMD_NEW);
  1048. err = PTR_ERR(reply);
  1049. if (IS_ERR(reply))
  1050. goto err_destroy_local_port;
  1051. list_add_tail(&dp->list_node, &dps);
  1052. rtnl_unlock();
  1053. genl_notify(reply, genl_info_net(info), info->snd_pid,
  1054. ovs_dp_datapath_multicast_group.id, info->nlhdr,
  1055. GFP_KERNEL);
  1056. return 0;
  1057. err_destroy_local_port:
  1058. ovs_dp_detach_port(rtnl_dereference(dp->ports[OVSP_LOCAL]));
  1059. err_destroy_percpu:
  1060. free_percpu(dp->stats_percpu);
  1061. err_destroy_table:
  1062. ovs_flow_tbl_destroy(genl_dereference(dp->table));
  1063. err_free_dp:
  1064. kfree(dp);
  1065. err_put_module:
  1066. module_put(THIS_MODULE);
  1067. err_unlock_rtnl:
  1068. rtnl_unlock();
  1069. err:
  1070. return err;
  1071. }
  1072. static int ovs_dp_cmd_del(struct sk_buff *skb, struct genl_info *info)
  1073. {
  1074. struct vport *vport, *next_vport;
  1075. struct sk_buff *reply;
  1076. struct datapath *dp;
  1077. int err;
  1078. rtnl_lock();
  1079. dp = lookup_datapath(info->userhdr, info->attrs);
  1080. err = PTR_ERR(dp);
  1081. if (IS_ERR(dp))
  1082. goto exit_unlock;
  1083. reply = ovs_dp_cmd_build_info(dp, info->snd_pid,
  1084. info->snd_seq, OVS_DP_CMD_DEL);
  1085. err = PTR_ERR(reply);
  1086. if (IS_ERR(reply))
  1087. goto exit_unlock;
  1088. list_for_each_entry_safe(vport, next_vport, &dp->port_list, node)
  1089. if (vport->port_no != OVSP_LOCAL)
  1090. ovs_dp_detach_port(vport);
  1091. list_del(&dp->list_node);
  1092. ovs_dp_detach_port(rtnl_dereference(dp->ports[OVSP_LOCAL]));
  1093. /* rtnl_unlock() will wait until all the references to devices that
  1094. * are pending unregistration have been dropped. We do it here to
  1095. * ensure that any internal devices (which contain DP pointers) are
  1096. * fully destroyed before freeing the datapath.
  1097. */
  1098. rtnl_unlock();
  1099. call_rcu(&dp->rcu, destroy_dp_rcu);
  1100. module_put(THIS_MODULE);
  1101. genl_notify(reply, genl_info_net(info), info->snd_pid,
  1102. ovs_dp_datapath_multicast_group.id, info->nlhdr,
  1103. GFP_KERNEL);
  1104. return 0;
  1105. exit_unlock:
  1106. rtnl_unlock();
  1107. return err;
  1108. }
  1109. static int ovs_dp_cmd_set(struct sk_buff *skb, struct genl_info *info)
  1110. {
  1111. struct sk_buff *reply;
  1112. struct datapath *dp;
  1113. int err;
  1114. dp = lookup_datapath(info->userhdr, info->attrs);
  1115. if (IS_ERR(dp))
  1116. return PTR_ERR(dp);
  1117. reply = ovs_dp_cmd_build_info(dp, info->snd_pid,
  1118. info->snd_seq, OVS_DP_CMD_NEW);
  1119. if (IS_ERR(reply)) {
  1120. err = PTR_ERR(reply);
  1121. netlink_set_err(init_net.genl_sock, 0,
  1122. ovs_dp_datapath_multicast_group.id, err);
  1123. return 0;
  1124. }
  1125. genl_notify(reply, genl_info_net(info), info->snd_pid,
  1126. ovs_dp_datapath_multicast_group.id, info->nlhdr,
  1127. GFP_KERNEL);
  1128. return 0;
  1129. }
  1130. static int ovs_dp_cmd_get(struct sk_buff *skb, struct genl_info *info)
  1131. {
  1132. struct sk_buff *reply;
  1133. struct datapath *dp;
  1134. dp = lookup_datapath(info->userhdr, info->attrs);
  1135. if (IS_ERR(dp))
  1136. return PTR_ERR(dp);
  1137. reply = ovs_dp_cmd_build_info(dp, info->snd_pid,
  1138. info->snd_seq, OVS_DP_CMD_NEW);
  1139. if (IS_ERR(reply))
  1140. return PTR_ERR(reply);
  1141. return genlmsg_reply(reply, info);
  1142. }
  1143. static int ovs_dp_cmd_dump(struct sk_buff *skb, struct netlink_callback *cb)
  1144. {
  1145. struct datapath *dp;
  1146. int skip = cb->args[0];
  1147. int i = 0;
  1148. list_for_each_entry(dp, &dps, list_node) {
  1149. if (i >= skip &&
  1150. ovs_dp_cmd_fill_info(dp, skb, NETLINK_CB(cb->skb).pid,
  1151. cb->nlh->nlmsg_seq, NLM_F_MULTI,
  1152. OVS_DP_CMD_NEW) < 0)
  1153. break;
  1154. i++;
  1155. }
  1156. cb->args[0] = i;
  1157. return skb->len;
  1158. }
  1159. static struct genl_ops dp_datapath_genl_ops[] = {
  1160. { .cmd = OVS_DP_CMD_NEW,
  1161. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  1162. .policy = datapath_policy,
  1163. .doit = ovs_dp_cmd_new
  1164. },
  1165. { .cmd = OVS_DP_CMD_DEL,
  1166. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  1167. .policy = datapath_policy,
  1168. .doit = ovs_dp_cmd_del
  1169. },
  1170. { .cmd = OVS_DP_CMD_GET,
  1171. .flags = 0, /* OK for unprivileged users. */
  1172. .policy = datapath_policy,
  1173. .doit = ovs_dp_cmd_get,
  1174. .dumpit = ovs_dp_cmd_dump
  1175. },
  1176. { .cmd = OVS_DP_CMD_SET,
  1177. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  1178. .policy = datapath_policy,
  1179. .doit = ovs_dp_cmd_set,
  1180. },
  1181. };
  1182. static const struct nla_policy vport_policy[OVS_VPORT_ATTR_MAX + 1] = {
  1183. [OVS_VPORT_ATTR_NAME] = { .type = NLA_NUL_STRING, .len = IFNAMSIZ - 1 },
  1184. [OVS_VPORT_ATTR_STATS] = { .len = sizeof(struct ovs_vport_stats) },
  1185. [OVS_VPORT_ATTR_PORT_NO] = { .type = NLA_U32 },
  1186. [OVS_VPORT_ATTR_TYPE] = { .type = NLA_U32 },
  1187. [OVS_VPORT_ATTR_UPCALL_PID] = { .type = NLA_U32 },
  1188. [OVS_VPORT_ATTR_OPTIONS] = { .type = NLA_NESTED },
  1189. };
  1190. static struct genl_family dp_vport_genl_family = {
  1191. .id = GENL_ID_GENERATE,
  1192. .hdrsize = sizeof(struct ovs_header),
  1193. .name = OVS_VPORT_FAMILY,
  1194. .version = OVS_VPORT_VERSION,
  1195. .maxattr = OVS_VPORT_ATTR_MAX
  1196. };
  1197. struct genl_multicast_group ovs_dp_vport_multicast_group = {
  1198. .name = OVS_VPORT_MCGROUP
  1199. };
  1200. /* Called with RTNL lock or RCU read lock. */
  1201. static int ovs_vport_cmd_fill_info(struct vport *vport, struct sk_buff *skb,
  1202. u32 pid, u32 seq, u32 flags, u8 cmd)
  1203. {
  1204. struct ovs_header *ovs_header;
  1205. struct ovs_vport_stats vport_stats;
  1206. int err;
  1207. ovs_header = genlmsg_put(skb, pid, seq, &dp_vport_genl_family,
  1208. flags, cmd);
  1209. if (!ovs_header)
  1210. return -EMSGSIZE;
  1211. ovs_header->dp_ifindex = get_dpifindex(vport->dp);
  1212. NLA_PUT_U32(skb, OVS_VPORT_ATTR_PORT_NO, vport->port_no);
  1213. NLA_PUT_U32(skb, OVS_VPORT_ATTR_TYPE, vport->ops->type);
  1214. NLA_PUT_STRING(skb, OVS_VPORT_ATTR_NAME, vport->ops->get_name(vport));
  1215. NLA_PUT_U32(skb, OVS_VPORT_ATTR_UPCALL_PID, vport->upcall_pid);
  1216. ovs_vport_get_stats(vport, &vport_stats);
  1217. NLA_PUT(skb, OVS_VPORT_ATTR_STATS, sizeof(struct ovs_vport_stats),
  1218. &vport_stats);
  1219. err = ovs_vport_get_options(vport, skb);
  1220. if (err == -EMSGSIZE)
  1221. goto error;
  1222. return genlmsg_end(skb, ovs_header);
  1223. nla_put_failure:
  1224. err = -EMSGSIZE;
  1225. error:
  1226. genlmsg_cancel(skb, ovs_header);
  1227. return err;
  1228. }
  1229. /* Called with RTNL lock or RCU read lock. */
  1230. struct sk_buff *ovs_vport_cmd_build_info(struct vport *vport, u32 pid,
  1231. u32 seq, u8 cmd)
  1232. {
  1233. struct sk_buff *skb;
  1234. int retval;
  1235. skb = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_ATOMIC);
  1236. if (!skb)
  1237. return ERR_PTR(-ENOMEM);
  1238. retval = ovs_vport_cmd_fill_info(vport, skb, pid, seq, 0, cmd);
  1239. if (retval < 0) {
  1240. kfree_skb(skb);
  1241. return ERR_PTR(retval);
  1242. }
  1243. return skb;
  1244. }
  1245. /* Called with RTNL lock or RCU read lock. */
  1246. static struct vport *lookup_vport(struct ovs_header *ovs_header,
  1247. struct nlattr *a[OVS_VPORT_ATTR_MAX + 1])
  1248. {
  1249. struct datapath *dp;
  1250. struct vport *vport;
  1251. if (a[OVS_VPORT_ATTR_NAME]) {
  1252. vport = ovs_vport_locate(nla_data(a[OVS_VPORT_ATTR_NAME]));
  1253. if (!vport)
  1254. return ERR_PTR(-ENODEV);
  1255. if (ovs_header->dp_ifindex &&
  1256. ovs_header->dp_ifindex != get_dpifindex(vport->dp))
  1257. return ERR_PTR(-ENODEV);
  1258. return vport;
  1259. } else if (a[OVS_VPORT_ATTR_PORT_NO]) {
  1260. u32 port_no = nla_get_u32(a[OVS_VPORT_ATTR_PORT_NO]);
  1261. if (port_no >= DP_MAX_PORTS)
  1262. return ERR_PTR(-EFBIG);
  1263. dp = get_dp(ovs_header->dp_ifindex);
  1264. if (!dp)
  1265. return ERR_PTR(-ENODEV);
  1266. vport = rcu_dereference_rtnl(dp->ports[port_no]);
  1267. if (!vport)
  1268. return ERR_PTR(-ENOENT);
  1269. return vport;
  1270. } else
  1271. return ERR_PTR(-EINVAL);
  1272. }
  1273. static int ovs_vport_cmd_new(struct sk_buff *skb, struct genl_info *info)
  1274. {
  1275. struct nlattr **a = info->attrs;
  1276. struct ovs_header *ovs_header = info->userhdr;
  1277. struct vport_parms parms;
  1278. struct sk_buff *reply;
  1279. struct vport *vport;
  1280. struct datapath *dp;
  1281. u32 port_no;
  1282. int err;
  1283. err = -EINVAL;
  1284. if (!a[OVS_VPORT_ATTR_NAME] || !a[OVS_VPORT_ATTR_TYPE] ||
  1285. !a[OVS_VPORT_ATTR_UPCALL_PID])
  1286. goto exit;
  1287. rtnl_lock();
  1288. dp = get_dp(ovs_header->dp_ifindex);
  1289. err = -ENODEV;
  1290. if (!dp)
  1291. goto exit_unlock;
  1292. if (a[OVS_VPORT_ATTR_PORT_NO]) {
  1293. port_no = nla_get_u32(a[OVS_VPORT_ATTR_PORT_NO]);
  1294. err = -EFBIG;
  1295. if (port_no >= DP_MAX_PORTS)
  1296. goto exit_unlock;
  1297. vport = rtnl_dereference(dp->ports[port_no]);
  1298. err = -EBUSY;
  1299. if (vport)
  1300. goto exit_unlock;
  1301. } else {
  1302. for (port_no = 1; ; port_no++) {
  1303. if (port_no >= DP_MAX_PORTS) {
  1304. err = -EFBIG;
  1305. goto exit_unlock;
  1306. }
  1307. vport = rtnl_dereference(dp->ports[port_no]);
  1308. if (!vport)
  1309. break;
  1310. }
  1311. }
  1312. parms.name = nla_data(a[OVS_VPORT_ATTR_NAME]);
  1313. parms.type = nla_get_u32(a[OVS_VPORT_ATTR_TYPE]);
  1314. parms.options = a[OVS_VPORT_ATTR_OPTIONS];
  1315. parms.dp = dp;
  1316. parms.port_no = port_no;
  1317. parms.upcall_pid = nla_get_u32(a[OVS_VPORT_ATTR_UPCALL_PID]);
  1318. vport = new_vport(&parms);
  1319. err = PTR_ERR(vport);
  1320. if (IS_ERR(vport))
  1321. goto exit_unlock;
  1322. reply = ovs_vport_cmd_build_info(vport, info->snd_pid, info->snd_seq,
  1323. OVS_VPORT_CMD_NEW);
  1324. if (IS_ERR(reply)) {
  1325. err = PTR_ERR(reply);
  1326. ovs_dp_detach_port(vport);
  1327. goto exit_unlock;
  1328. }
  1329. genl_notify(reply, genl_info_net(info), info->snd_pid,
  1330. ovs_dp_vport_multicast_group.id, info->nlhdr, GFP_KERNEL);
  1331. exit_unlock:
  1332. rtnl_unlock();
  1333. exit:
  1334. return err;
  1335. }
  1336. static int ovs_vport_cmd_set(struct sk_buff *skb, struct genl_info *info)
  1337. {
  1338. struct nlattr **a = info->attrs;
  1339. struct sk_buff *reply;
  1340. struct vport *vport;
  1341. int err;
  1342. rtnl_lock();
  1343. vport = lookup_vport(info->userhdr, a);
  1344. err = PTR_ERR(vport);
  1345. if (IS_ERR(vport))
  1346. goto exit_unlock;
  1347. err = 0;
  1348. if (a[OVS_VPORT_ATTR_TYPE] &&
  1349. nla_get_u32(a[OVS_VPORT_ATTR_TYPE]) != vport->ops->type)
  1350. err = -EINVAL;
  1351. if (!err && a[OVS_VPORT_ATTR_OPTIONS])
  1352. err = ovs_vport_set_options(vport, a[OVS_VPORT_ATTR_OPTIONS]);
  1353. if (err)
  1354. goto exit_unlock;
  1355. if (a[OVS_VPORT_ATTR_UPCALL_PID])
  1356. vport->upcall_pid = nla_get_u32(a[OVS_VPORT_ATTR_UPCALL_PID]);
  1357. reply = ovs_vport_cmd_build_info(vport, info->snd_pid, info->snd_seq,
  1358. OVS_VPORT_CMD_NEW);
  1359. if (IS_ERR(reply)) {
  1360. err = PTR_ERR(reply);
  1361. netlink_set_err(init_net.genl_sock, 0,
  1362. ovs_dp_vport_multicast_group.id, err);
  1363. return 0;
  1364. }
  1365. genl_notify(reply, genl_info_net(info), info->snd_pid,
  1366. ovs_dp_vport_multicast_group.id, info->nlhdr, GFP_KERNEL);
  1367. exit_unlock:
  1368. rtnl_unlock();
  1369. return err;
  1370. }
  1371. static int ovs_vport_cmd_del(struct sk_buff *skb, struct genl_info *info)
  1372. {
  1373. struct nlattr **a = info->attrs;
  1374. struct sk_buff *reply;
  1375. struct vport *vport;
  1376. int err;
  1377. rtnl_lock();
  1378. vport = lookup_vport(info->userhdr, a);
  1379. err = PTR_ERR(vport);
  1380. if (IS_ERR(vport))
  1381. goto exit_unlock;
  1382. if (vport->port_no == OVSP_LOCAL) {
  1383. err = -EINVAL;
  1384. goto exit_unlock;
  1385. }
  1386. reply = ovs_vport_cmd_build_info(vport, info->snd_pid, info->snd_seq,
  1387. OVS_VPORT_CMD_DEL);
  1388. err = PTR_ERR(reply);
  1389. if (IS_ERR(reply))
  1390. goto exit_unlock;
  1391. ovs_dp_detach_port(vport);
  1392. genl_notify(reply, genl_info_net(info), info->snd_pid,
  1393. ovs_dp_vport_multicast_group.id, info->nlhdr, GFP_KERNEL);
  1394. exit_unlock:
  1395. rtnl_unlock();
  1396. return err;
  1397. }
  1398. static int ovs_vport_cmd_get(struct sk_buff *skb, struct genl_info *info)
  1399. {
  1400. struct nlattr **a = info->attrs;
  1401. struct ovs_header *ovs_header = info->userhdr;
  1402. struct sk_buff *reply;
  1403. struct vport *vport;
  1404. int err;
  1405. rcu_read_lock();
  1406. vport = lookup_vport(ovs_header, a);
  1407. err = PTR_ERR(vport);
  1408. if (IS_ERR(vport))
  1409. goto exit_unlock;
  1410. reply = ovs_vport_cmd_build_info(vport, info->snd_pid, info->snd_seq,
  1411. OVS_VPORT_CMD_NEW);
  1412. err = PTR_ERR(reply);
  1413. if (IS_ERR(reply))
  1414. goto exit_unlock;
  1415. rcu_read_unlock();
  1416. return genlmsg_reply(reply, info);
  1417. exit_unlock:
  1418. rcu_read_unlock();
  1419. return err;
  1420. }
  1421. static int ovs_vport_cmd_dump(struct sk_buff *skb, struct netlink_callback *cb)
  1422. {
  1423. struct ovs_header *ovs_header = genlmsg_data(nlmsg_data(cb->nlh));
  1424. struct datapath *dp;
  1425. u32 port_no;
  1426. int retval;
  1427. dp = get_dp(ovs_header->dp_ifindex);
  1428. if (!dp)
  1429. return -ENODEV;
  1430. rcu_read_lock();
  1431. for (port_no = cb->args[0]; port_no < DP_MAX_PORTS; port_no++) {
  1432. struct vport *vport;
  1433. vport = rcu_dereference(dp->ports[port_no]);
  1434. if (!vport)
  1435. continue;
  1436. if (ovs_vport_cmd_fill_info(vport, skb, NETLINK_CB(cb->skb).pid,
  1437. cb->nlh->nlmsg_seq, NLM_F_MULTI,
  1438. OVS_VPORT_CMD_NEW) < 0)
  1439. break;
  1440. }
  1441. rcu_read_unlock();
  1442. cb->args[0] = port_no;
  1443. retval = skb->len;
  1444. return retval;
  1445. }
  1446. static void rehash_flow_table(struct work_struct *work)
  1447. {
  1448. struct datapath *dp;
  1449. genl_lock();
  1450. list_for_each_entry(dp, &dps, list_node) {
  1451. struct flow_table *old_table = genl_dereference(dp->table);
  1452. struct flow_table *new_table;
  1453. new_table = ovs_flow_tbl_rehash(old_table);
  1454. if (!IS_ERR(new_table)) {
  1455. rcu_assign_pointer(dp->table, new_table);
  1456. ovs_flow_tbl_deferred_destroy(old_table);
  1457. }
  1458. }
  1459. genl_unlock();
  1460. schedule_delayed_work(&rehash_flow_wq, REHASH_FLOW_INTERVAL);
  1461. }
  1462. static struct genl_ops dp_vport_genl_ops[] = {
  1463. { .cmd = OVS_VPORT_CMD_NEW,
  1464. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  1465. .policy = vport_policy,
  1466. .doit = ovs_vport_cmd_new
  1467. },
  1468. { .cmd = OVS_VPORT_CMD_DEL,
  1469. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  1470. .policy = vport_policy,
  1471. .doit = ovs_vport_cmd_del
  1472. },
  1473. { .cmd = OVS_VPORT_CMD_GET,
  1474. .flags = 0, /* OK for unprivileged users. */
  1475. .policy = vport_policy,
  1476. .doit = ovs_vport_cmd_get,
  1477. .dumpit = ovs_vport_cmd_dump
  1478. },
  1479. { .cmd = OVS_VPORT_CMD_SET,
  1480. .flags = GENL_ADMIN_PERM, /* Requires CAP_NET_ADMIN privilege. */
  1481. .policy = vport_policy,
  1482. .doit = ovs_vport_cmd_set,
  1483. },
  1484. };
  1485. struct genl_family_and_ops {
  1486. struct genl_family *family;
  1487. struct genl_ops *ops;
  1488. int n_ops;
  1489. struct genl_multicast_group *group;
  1490. };
  1491. static const struct genl_family_and_ops dp_genl_families[] = {
  1492. { &dp_datapath_genl_family,
  1493. dp_datapath_genl_ops, ARRAY_SIZE(dp_datapath_genl_ops),
  1494. &ovs_dp_datapath_multicast_group },
  1495. { &dp_vport_genl_family,
  1496. dp_vport_genl_ops, ARRAY_SIZE(dp_vport_genl_ops),
  1497. &ovs_dp_vport_multicast_group },
  1498. { &dp_flow_genl_family,
  1499. dp_flow_genl_ops, ARRAY_SIZE(dp_flow_genl_ops),
  1500. &ovs_dp_flow_multicast_group },
  1501. { &dp_packet_genl_family,
  1502. dp_packet_genl_ops, ARRAY_SIZE(dp_packet_genl_ops),
  1503. NULL },
  1504. };
  1505. static void dp_unregister_genl(int n_families)
  1506. {
  1507. int i;
  1508. for (i = 0; i < n_families; i++)
  1509. genl_unregister_family(dp_genl_families[i].family);
  1510. }
  1511. static int dp_register_genl(void)
  1512. {
  1513. int n_registered;
  1514. int err;
  1515. int i;
  1516. n_registered = 0;
  1517. for (i = 0; i < ARRAY_SIZE(dp_genl_families); i++) {
  1518. const struct genl_family_and_ops *f = &dp_genl_families[i];
  1519. err = genl_register_family_with_ops(f->family, f->ops,
  1520. f->n_ops);
  1521. if (err)
  1522. goto error;
  1523. n_registered++;
  1524. if (f->group) {
  1525. err = genl_register_mc_group(f->family, f->group);
  1526. if (err)
  1527. goto error;
  1528. }
  1529. }
  1530. return 0;
  1531. error:
  1532. dp_unregister_genl(n_registered);
  1533. return err;
  1534. }
  1535. static int __init dp_init(void)
  1536. {
  1537. struct sk_buff *dummy_skb;
  1538. int err;
  1539. BUILD_BUG_ON(sizeof(struct ovs_skb_cb) > sizeof(dummy_skb->cb));
  1540. pr_info("Open vSwitch switching datapath\n");
  1541. err = ovs_flow_init();
  1542. if (err)
  1543. goto error;
  1544. err = ovs_vport_init();
  1545. if (err)
  1546. goto error_flow_exit;
  1547. err = register_netdevice_notifier(&ovs_dp_device_notifier);
  1548. if (err)
  1549. goto error_vport_exit;
  1550. err = dp_register_genl();
  1551. if (err < 0)
  1552. goto error_unreg_notifier;
  1553. schedule_delayed_work(&rehash_flow_wq, REHASH_FLOW_INTERVAL);
  1554. return 0;
  1555. error_unreg_notifier:
  1556. unregister_netdevice_notifier(&ovs_dp_device_notifier);
  1557. error_vport_exit:
  1558. ovs_vport_exit();
  1559. error_flow_exit:
  1560. ovs_flow_exit();
  1561. error:
  1562. return err;
  1563. }
  1564. static void dp_cleanup(void)
  1565. {
  1566. cancel_delayed_work_sync(&rehash_flow_wq);
  1567. rcu_barrier();
  1568. dp_unregister_genl(ARRAY_SIZE(dp_genl_families));
  1569. unregister_netdevice_notifier(&ovs_dp_device_notifier);
  1570. ovs_vport_exit();
  1571. ovs_flow_exit();
  1572. }
  1573. module_init(dp_init);
  1574. module_exit(dp_cleanup);
  1575. MODULE_DESCRIPTION("Open vSwitch switching datapath");
  1576. MODULE_LICENSE("GPL");