mcast.c 62 KB

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  1. /*
  2. * Multicast support for IPv6
  3. * Linux INET6 implementation
  4. *
  5. * Authors:
  6. * Pedro Roque <roque@di.fc.ul.pt>
  7. *
  8. * Based on linux/ipv4/igmp.c and linux/ipv4/ip_sockglue.c
  9. *
  10. * This program is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU General Public License
  12. * as published by the Free Software Foundation; either version
  13. * 2 of the License, or (at your option) any later version.
  14. */
  15. /* Changes:
  16. *
  17. * yoshfuji : fix format of router-alert option
  18. * YOSHIFUJI Hideaki @USAGI:
  19. * Fixed source address for MLD message based on
  20. * <draft-ietf-magma-mld-source-05.txt>.
  21. * YOSHIFUJI Hideaki @USAGI:
  22. * - Ignore Queries for invalid addresses.
  23. * - MLD for link-local addresses.
  24. * David L Stevens <dlstevens@us.ibm.com>:
  25. * - MLDv2 support
  26. */
  27. #include <linux/module.h>
  28. #include <linux/errno.h>
  29. #include <linux/types.h>
  30. #include <linux/string.h>
  31. #include <linux/socket.h>
  32. #include <linux/sockios.h>
  33. #include <linux/jiffies.h>
  34. #include <linux/times.h>
  35. #include <linux/net.h>
  36. #include <linux/in.h>
  37. #include <linux/in6.h>
  38. #include <linux/netdevice.h>
  39. #include <linux/if_arp.h>
  40. #include <linux/route.h>
  41. #include <linux/init.h>
  42. #include <linux/proc_fs.h>
  43. #include <linux/seq_file.h>
  44. #include <linux/slab.h>
  45. #include <net/mld.h>
  46. #include <linux/netfilter.h>
  47. #include <linux/netfilter_ipv6.h>
  48. #include <net/net_namespace.h>
  49. #include <net/sock.h>
  50. #include <net/snmp.h>
  51. #include <net/ipv6.h>
  52. #include <net/protocol.h>
  53. #include <net/if_inet6.h>
  54. #include <net/ndisc.h>
  55. #include <net/addrconf.h>
  56. #include <net/ip6_route.h>
  57. #include <net/inet_common.h>
  58. #include <net/ip6_checksum.h>
  59. /* Set to 3 to get tracing... */
  60. #define MCAST_DEBUG 2
  61. #if MCAST_DEBUG >= 3
  62. #define MDBG(x) printk x
  63. #else
  64. #define MDBG(x)
  65. #endif
  66. /* Ensure that we have struct in6_addr aligned on 32bit word. */
  67. static void *__mld2_query_bugs[] __attribute__((__unused__)) = {
  68. BUILD_BUG_ON_NULL(offsetof(struct mld2_query, mld2q_srcs) % 4),
  69. BUILD_BUG_ON_NULL(offsetof(struct mld2_report, mld2r_grec) % 4),
  70. BUILD_BUG_ON_NULL(offsetof(struct mld2_grec, grec_mca) % 4)
  71. };
  72. static struct in6_addr mld2_all_mcr = MLD2_ALL_MCR_INIT;
  73. /* Big mc list lock for all the sockets */
  74. static DEFINE_RWLOCK(ipv6_sk_mc_lock);
  75. static void igmp6_join_group(struct ifmcaddr6 *ma);
  76. static void igmp6_leave_group(struct ifmcaddr6 *ma);
  77. static void igmp6_timer_handler(unsigned long data);
  78. static void mld_gq_timer_expire(unsigned long data);
  79. static void mld_ifc_timer_expire(unsigned long data);
  80. static void mld_ifc_event(struct inet6_dev *idev);
  81. static void mld_add_delrec(struct inet6_dev *idev, struct ifmcaddr6 *pmc);
  82. static void mld_del_delrec(struct inet6_dev *idev, struct in6_addr *addr);
  83. static void mld_clear_delrec(struct inet6_dev *idev);
  84. static int sf_setstate(struct ifmcaddr6 *pmc);
  85. static void sf_markstate(struct ifmcaddr6 *pmc);
  86. static void ip6_mc_clear_src(struct ifmcaddr6 *pmc);
  87. static int ip6_mc_del_src(struct inet6_dev *idev, struct in6_addr *pmca,
  88. int sfmode, int sfcount, struct in6_addr *psfsrc,
  89. int delta);
  90. static int ip6_mc_add_src(struct inet6_dev *idev, struct in6_addr *pmca,
  91. int sfmode, int sfcount, struct in6_addr *psfsrc,
  92. int delta);
  93. static int ip6_mc_leave_src(struct sock *sk, struct ipv6_mc_socklist *iml,
  94. struct inet6_dev *idev);
  95. #define IGMP6_UNSOLICITED_IVAL (10*HZ)
  96. #define MLD_QRV_DEFAULT 2
  97. #define MLD_V1_SEEN(idev) (dev_net((idev)->dev)->ipv6.devconf_all->force_mld_version == 1 || \
  98. (idev)->cnf.force_mld_version == 1 || \
  99. ((idev)->mc_v1_seen && \
  100. time_before(jiffies, (idev)->mc_v1_seen)))
  101. #define IPV6_MLD_MAX_MSF 64
  102. int sysctl_mld_max_msf __read_mostly = IPV6_MLD_MAX_MSF;
  103. /*
  104. * socket join on multicast group
  105. */
  106. int ipv6_sock_mc_join(struct sock *sk, int ifindex, const struct in6_addr *addr)
  107. {
  108. struct net_device *dev = NULL;
  109. struct ipv6_mc_socklist *mc_lst;
  110. struct ipv6_pinfo *np = inet6_sk(sk);
  111. struct net *net = sock_net(sk);
  112. int err;
  113. if (!ipv6_addr_is_multicast(addr))
  114. return -EINVAL;
  115. read_lock_bh(&ipv6_sk_mc_lock);
  116. for (mc_lst=np->ipv6_mc_list; mc_lst; mc_lst=mc_lst->next) {
  117. if ((ifindex == 0 || mc_lst->ifindex == ifindex) &&
  118. ipv6_addr_equal(&mc_lst->addr, addr)) {
  119. read_unlock_bh(&ipv6_sk_mc_lock);
  120. return -EADDRINUSE;
  121. }
  122. }
  123. read_unlock_bh(&ipv6_sk_mc_lock);
  124. mc_lst = sock_kmalloc(sk, sizeof(struct ipv6_mc_socklist), GFP_KERNEL);
  125. if (mc_lst == NULL)
  126. return -ENOMEM;
  127. mc_lst->next = NULL;
  128. ipv6_addr_copy(&mc_lst->addr, addr);
  129. if (ifindex == 0) {
  130. struct rt6_info *rt;
  131. rt = rt6_lookup(net, addr, NULL, 0, 0);
  132. if (rt) {
  133. dev = rt->rt6i_dev;
  134. dev_hold(dev);
  135. dst_release(&rt->u.dst);
  136. }
  137. } else
  138. dev = dev_get_by_index(net, ifindex);
  139. if (dev == NULL) {
  140. sock_kfree_s(sk, mc_lst, sizeof(*mc_lst));
  141. return -ENODEV;
  142. }
  143. mc_lst->ifindex = dev->ifindex;
  144. mc_lst->sfmode = MCAST_EXCLUDE;
  145. rwlock_init(&mc_lst->sflock);
  146. mc_lst->sflist = NULL;
  147. /*
  148. * now add/increase the group membership on the device
  149. */
  150. err = ipv6_dev_mc_inc(dev, addr);
  151. if (err) {
  152. sock_kfree_s(sk, mc_lst, sizeof(*mc_lst));
  153. dev_put(dev);
  154. return err;
  155. }
  156. write_lock_bh(&ipv6_sk_mc_lock);
  157. mc_lst->next = np->ipv6_mc_list;
  158. np->ipv6_mc_list = mc_lst;
  159. write_unlock_bh(&ipv6_sk_mc_lock);
  160. dev_put(dev);
  161. return 0;
  162. }
  163. /*
  164. * socket leave on multicast group
  165. */
  166. int ipv6_sock_mc_drop(struct sock *sk, int ifindex, const struct in6_addr *addr)
  167. {
  168. struct ipv6_pinfo *np = inet6_sk(sk);
  169. struct ipv6_mc_socklist *mc_lst, **lnk;
  170. struct net *net = sock_net(sk);
  171. write_lock_bh(&ipv6_sk_mc_lock);
  172. for (lnk = &np->ipv6_mc_list; (mc_lst = *lnk) !=NULL ; lnk = &mc_lst->next) {
  173. if ((ifindex == 0 || mc_lst->ifindex == ifindex) &&
  174. ipv6_addr_equal(&mc_lst->addr, addr)) {
  175. struct net_device *dev;
  176. *lnk = mc_lst->next;
  177. write_unlock_bh(&ipv6_sk_mc_lock);
  178. dev = dev_get_by_index(net, mc_lst->ifindex);
  179. if (dev != NULL) {
  180. struct inet6_dev *idev = in6_dev_get(dev);
  181. (void) ip6_mc_leave_src(sk, mc_lst, idev);
  182. if (idev) {
  183. __ipv6_dev_mc_dec(idev, &mc_lst->addr);
  184. in6_dev_put(idev);
  185. }
  186. dev_put(dev);
  187. } else
  188. (void) ip6_mc_leave_src(sk, mc_lst, NULL);
  189. sock_kfree_s(sk, mc_lst, sizeof(*mc_lst));
  190. return 0;
  191. }
  192. }
  193. write_unlock_bh(&ipv6_sk_mc_lock);
  194. return -EADDRNOTAVAIL;
  195. }
  196. static struct inet6_dev *ip6_mc_find_dev(struct net *net,
  197. struct in6_addr *group,
  198. int ifindex)
  199. {
  200. struct net_device *dev = NULL;
  201. struct inet6_dev *idev = NULL;
  202. if (ifindex == 0) {
  203. struct rt6_info *rt;
  204. rt = rt6_lookup(net, group, NULL, 0, 0);
  205. if (rt) {
  206. dev = rt->rt6i_dev;
  207. dev_hold(dev);
  208. dst_release(&rt->u.dst);
  209. }
  210. } else
  211. dev = dev_get_by_index(net, ifindex);
  212. if (!dev)
  213. goto nodev;
  214. idev = in6_dev_get(dev);
  215. if (!idev)
  216. goto release;
  217. read_lock_bh(&idev->lock);
  218. if (idev->dead)
  219. goto unlock_release;
  220. return idev;
  221. unlock_release:
  222. read_unlock_bh(&idev->lock);
  223. in6_dev_put(idev);
  224. release:
  225. dev_put(dev);
  226. nodev:
  227. return NULL;
  228. }
  229. void ipv6_sock_mc_close(struct sock *sk)
  230. {
  231. struct ipv6_pinfo *np = inet6_sk(sk);
  232. struct ipv6_mc_socklist *mc_lst;
  233. struct net *net = sock_net(sk);
  234. write_lock_bh(&ipv6_sk_mc_lock);
  235. while ((mc_lst = np->ipv6_mc_list) != NULL) {
  236. struct net_device *dev;
  237. np->ipv6_mc_list = mc_lst->next;
  238. write_unlock_bh(&ipv6_sk_mc_lock);
  239. dev = dev_get_by_index(net, mc_lst->ifindex);
  240. if (dev) {
  241. struct inet6_dev *idev = in6_dev_get(dev);
  242. (void) ip6_mc_leave_src(sk, mc_lst, idev);
  243. if (idev) {
  244. __ipv6_dev_mc_dec(idev, &mc_lst->addr);
  245. in6_dev_put(idev);
  246. }
  247. dev_put(dev);
  248. } else
  249. (void) ip6_mc_leave_src(sk, mc_lst, NULL);
  250. sock_kfree_s(sk, mc_lst, sizeof(*mc_lst));
  251. write_lock_bh(&ipv6_sk_mc_lock);
  252. }
  253. write_unlock_bh(&ipv6_sk_mc_lock);
  254. }
  255. int ip6_mc_source(int add, int omode, struct sock *sk,
  256. struct group_source_req *pgsr)
  257. {
  258. struct in6_addr *source, *group;
  259. struct ipv6_mc_socklist *pmc;
  260. struct net_device *dev;
  261. struct inet6_dev *idev;
  262. struct ipv6_pinfo *inet6 = inet6_sk(sk);
  263. struct ip6_sf_socklist *psl;
  264. struct net *net = sock_net(sk);
  265. int i, j, rv;
  266. int leavegroup = 0;
  267. int pmclocked = 0;
  268. int err;
  269. source = &((struct sockaddr_in6 *)&pgsr->gsr_source)->sin6_addr;
  270. group = &((struct sockaddr_in6 *)&pgsr->gsr_group)->sin6_addr;
  271. if (!ipv6_addr_is_multicast(group))
  272. return -EINVAL;
  273. idev = ip6_mc_find_dev(net, group, pgsr->gsr_interface);
  274. if (!idev)
  275. return -ENODEV;
  276. dev = idev->dev;
  277. err = -EADDRNOTAVAIL;
  278. read_lock_bh(&ipv6_sk_mc_lock);
  279. for (pmc=inet6->ipv6_mc_list; pmc; pmc=pmc->next) {
  280. if (pgsr->gsr_interface && pmc->ifindex != pgsr->gsr_interface)
  281. continue;
  282. if (ipv6_addr_equal(&pmc->addr, group))
  283. break;
  284. }
  285. if (!pmc) { /* must have a prior join */
  286. err = -EINVAL;
  287. goto done;
  288. }
  289. /* if a source filter was set, must be the same mode as before */
  290. if (pmc->sflist) {
  291. if (pmc->sfmode != omode) {
  292. err = -EINVAL;
  293. goto done;
  294. }
  295. } else if (pmc->sfmode != omode) {
  296. /* allow mode switches for empty-set filters */
  297. ip6_mc_add_src(idev, group, omode, 0, NULL, 0);
  298. ip6_mc_del_src(idev, group, pmc->sfmode, 0, NULL, 0);
  299. pmc->sfmode = omode;
  300. }
  301. write_lock_bh(&pmc->sflock);
  302. pmclocked = 1;
  303. psl = pmc->sflist;
  304. if (!add) {
  305. if (!psl)
  306. goto done; /* err = -EADDRNOTAVAIL */
  307. rv = !0;
  308. for (i=0; i<psl->sl_count; i++) {
  309. rv = memcmp(&psl->sl_addr[i], source,
  310. sizeof(struct in6_addr));
  311. if (rv == 0)
  312. break;
  313. }
  314. if (rv) /* source not found */
  315. goto done; /* err = -EADDRNOTAVAIL */
  316. /* special case - (INCLUDE, empty) == LEAVE_GROUP */
  317. if (psl->sl_count == 1 && omode == MCAST_INCLUDE) {
  318. leavegroup = 1;
  319. goto done;
  320. }
  321. /* update the interface filter */
  322. ip6_mc_del_src(idev, group, omode, 1, source, 1);
  323. for (j=i+1; j<psl->sl_count; j++)
  324. psl->sl_addr[j-1] = psl->sl_addr[j];
  325. psl->sl_count--;
  326. err = 0;
  327. goto done;
  328. }
  329. /* else, add a new source to the filter */
  330. if (psl && psl->sl_count >= sysctl_mld_max_msf) {
  331. err = -ENOBUFS;
  332. goto done;
  333. }
  334. if (!psl || psl->sl_count == psl->sl_max) {
  335. struct ip6_sf_socklist *newpsl;
  336. int count = IP6_SFBLOCK;
  337. if (psl)
  338. count += psl->sl_max;
  339. newpsl = sock_kmalloc(sk, IP6_SFLSIZE(count), GFP_ATOMIC);
  340. if (!newpsl) {
  341. err = -ENOBUFS;
  342. goto done;
  343. }
  344. newpsl->sl_max = count;
  345. newpsl->sl_count = count - IP6_SFBLOCK;
  346. if (psl) {
  347. for (i=0; i<psl->sl_count; i++)
  348. newpsl->sl_addr[i] = psl->sl_addr[i];
  349. sock_kfree_s(sk, psl, IP6_SFLSIZE(psl->sl_max));
  350. }
  351. pmc->sflist = psl = newpsl;
  352. }
  353. rv = 1; /* > 0 for insert logic below if sl_count is 0 */
  354. for (i=0; i<psl->sl_count; i++) {
  355. rv = memcmp(&psl->sl_addr[i], source, sizeof(struct in6_addr));
  356. if (rv == 0)
  357. break;
  358. }
  359. if (rv == 0) /* address already there is an error */
  360. goto done;
  361. for (j=psl->sl_count-1; j>=i; j--)
  362. psl->sl_addr[j+1] = psl->sl_addr[j];
  363. psl->sl_addr[i] = *source;
  364. psl->sl_count++;
  365. err = 0;
  366. /* update the interface list */
  367. ip6_mc_add_src(idev, group, omode, 1, source, 1);
  368. done:
  369. if (pmclocked)
  370. write_unlock_bh(&pmc->sflock);
  371. read_unlock_bh(&ipv6_sk_mc_lock);
  372. read_unlock_bh(&idev->lock);
  373. in6_dev_put(idev);
  374. dev_put(dev);
  375. if (leavegroup)
  376. return ipv6_sock_mc_drop(sk, pgsr->gsr_interface, group);
  377. return err;
  378. }
  379. int ip6_mc_msfilter(struct sock *sk, struct group_filter *gsf)
  380. {
  381. struct in6_addr *group;
  382. struct ipv6_mc_socklist *pmc;
  383. struct net_device *dev;
  384. struct inet6_dev *idev;
  385. struct ipv6_pinfo *inet6 = inet6_sk(sk);
  386. struct ip6_sf_socklist *newpsl, *psl;
  387. struct net *net = sock_net(sk);
  388. int leavegroup = 0;
  389. int i, err;
  390. group = &((struct sockaddr_in6 *)&gsf->gf_group)->sin6_addr;
  391. if (!ipv6_addr_is_multicast(group))
  392. return -EINVAL;
  393. if (gsf->gf_fmode != MCAST_INCLUDE &&
  394. gsf->gf_fmode != MCAST_EXCLUDE)
  395. return -EINVAL;
  396. idev = ip6_mc_find_dev(net, group, gsf->gf_interface);
  397. if (!idev)
  398. return -ENODEV;
  399. dev = idev->dev;
  400. err = 0;
  401. read_lock_bh(&ipv6_sk_mc_lock);
  402. if (gsf->gf_fmode == MCAST_INCLUDE && gsf->gf_numsrc == 0) {
  403. leavegroup = 1;
  404. goto done;
  405. }
  406. for (pmc=inet6->ipv6_mc_list; pmc; pmc=pmc->next) {
  407. if (pmc->ifindex != gsf->gf_interface)
  408. continue;
  409. if (ipv6_addr_equal(&pmc->addr, group))
  410. break;
  411. }
  412. if (!pmc) { /* must have a prior join */
  413. err = -EINVAL;
  414. goto done;
  415. }
  416. if (gsf->gf_numsrc) {
  417. newpsl = sock_kmalloc(sk, IP6_SFLSIZE(gsf->gf_numsrc),
  418. GFP_ATOMIC);
  419. if (!newpsl) {
  420. err = -ENOBUFS;
  421. goto done;
  422. }
  423. newpsl->sl_max = newpsl->sl_count = gsf->gf_numsrc;
  424. for (i=0; i<newpsl->sl_count; ++i) {
  425. struct sockaddr_in6 *psin6;
  426. psin6 = (struct sockaddr_in6 *)&gsf->gf_slist[i];
  427. newpsl->sl_addr[i] = psin6->sin6_addr;
  428. }
  429. err = ip6_mc_add_src(idev, group, gsf->gf_fmode,
  430. newpsl->sl_count, newpsl->sl_addr, 0);
  431. if (err) {
  432. sock_kfree_s(sk, newpsl, IP6_SFLSIZE(newpsl->sl_max));
  433. goto done;
  434. }
  435. } else {
  436. newpsl = NULL;
  437. (void) ip6_mc_add_src(idev, group, gsf->gf_fmode, 0, NULL, 0);
  438. }
  439. write_lock_bh(&pmc->sflock);
  440. psl = pmc->sflist;
  441. if (psl) {
  442. (void) ip6_mc_del_src(idev, group, pmc->sfmode,
  443. psl->sl_count, psl->sl_addr, 0);
  444. sock_kfree_s(sk, psl, IP6_SFLSIZE(psl->sl_max));
  445. } else
  446. (void) ip6_mc_del_src(idev, group, pmc->sfmode, 0, NULL, 0);
  447. pmc->sflist = newpsl;
  448. pmc->sfmode = gsf->gf_fmode;
  449. write_unlock_bh(&pmc->sflock);
  450. err = 0;
  451. done:
  452. read_unlock_bh(&ipv6_sk_mc_lock);
  453. read_unlock_bh(&idev->lock);
  454. in6_dev_put(idev);
  455. dev_put(dev);
  456. if (leavegroup)
  457. err = ipv6_sock_mc_drop(sk, gsf->gf_interface, group);
  458. return err;
  459. }
  460. int ip6_mc_msfget(struct sock *sk, struct group_filter *gsf,
  461. struct group_filter __user *optval, int __user *optlen)
  462. {
  463. int err, i, count, copycount;
  464. struct in6_addr *group;
  465. struct ipv6_mc_socklist *pmc;
  466. struct inet6_dev *idev;
  467. struct net_device *dev;
  468. struct ipv6_pinfo *inet6 = inet6_sk(sk);
  469. struct ip6_sf_socklist *psl;
  470. struct net *net = sock_net(sk);
  471. group = &((struct sockaddr_in6 *)&gsf->gf_group)->sin6_addr;
  472. if (!ipv6_addr_is_multicast(group))
  473. return -EINVAL;
  474. idev = ip6_mc_find_dev(net, group, gsf->gf_interface);
  475. if (!idev)
  476. return -ENODEV;
  477. dev = idev->dev;
  478. err = -EADDRNOTAVAIL;
  479. /*
  480. * changes to the ipv6_mc_list require the socket lock and
  481. * a read lock on ip6_sk_mc_lock. We have the socket lock,
  482. * so reading the list is safe.
  483. */
  484. for (pmc=inet6->ipv6_mc_list; pmc; pmc=pmc->next) {
  485. if (pmc->ifindex != gsf->gf_interface)
  486. continue;
  487. if (ipv6_addr_equal(group, &pmc->addr))
  488. break;
  489. }
  490. if (!pmc) /* must have a prior join */
  491. goto done;
  492. gsf->gf_fmode = pmc->sfmode;
  493. psl = pmc->sflist;
  494. count = psl ? psl->sl_count : 0;
  495. read_unlock_bh(&idev->lock);
  496. in6_dev_put(idev);
  497. dev_put(dev);
  498. copycount = count < gsf->gf_numsrc ? count : gsf->gf_numsrc;
  499. gsf->gf_numsrc = count;
  500. if (put_user(GROUP_FILTER_SIZE(copycount), optlen) ||
  501. copy_to_user(optval, gsf, GROUP_FILTER_SIZE(0))) {
  502. return -EFAULT;
  503. }
  504. /* changes to psl require the socket lock, a read lock on
  505. * on ipv6_sk_mc_lock and a write lock on pmc->sflock. We
  506. * have the socket lock, so reading here is safe.
  507. */
  508. for (i=0; i<copycount; i++) {
  509. struct sockaddr_in6 *psin6;
  510. struct sockaddr_storage ss;
  511. psin6 = (struct sockaddr_in6 *)&ss;
  512. memset(&ss, 0, sizeof(ss));
  513. psin6->sin6_family = AF_INET6;
  514. psin6->sin6_addr = psl->sl_addr[i];
  515. if (copy_to_user(&optval->gf_slist[i], &ss, sizeof(ss)))
  516. return -EFAULT;
  517. }
  518. return 0;
  519. done:
  520. read_unlock_bh(&idev->lock);
  521. in6_dev_put(idev);
  522. dev_put(dev);
  523. return err;
  524. }
  525. int inet6_mc_check(struct sock *sk, const struct in6_addr *mc_addr,
  526. const struct in6_addr *src_addr)
  527. {
  528. struct ipv6_pinfo *np = inet6_sk(sk);
  529. struct ipv6_mc_socklist *mc;
  530. struct ip6_sf_socklist *psl;
  531. int rv = 1;
  532. read_lock(&ipv6_sk_mc_lock);
  533. for (mc = np->ipv6_mc_list; mc; mc = mc->next) {
  534. if (ipv6_addr_equal(&mc->addr, mc_addr))
  535. break;
  536. }
  537. if (!mc) {
  538. read_unlock(&ipv6_sk_mc_lock);
  539. return 1;
  540. }
  541. read_lock(&mc->sflock);
  542. psl = mc->sflist;
  543. if (!psl) {
  544. rv = mc->sfmode == MCAST_EXCLUDE;
  545. } else {
  546. int i;
  547. for (i=0; i<psl->sl_count; i++) {
  548. if (ipv6_addr_equal(&psl->sl_addr[i], src_addr))
  549. break;
  550. }
  551. if (mc->sfmode == MCAST_INCLUDE && i >= psl->sl_count)
  552. rv = 0;
  553. if (mc->sfmode == MCAST_EXCLUDE && i < psl->sl_count)
  554. rv = 0;
  555. }
  556. read_unlock(&mc->sflock);
  557. read_unlock(&ipv6_sk_mc_lock);
  558. return rv;
  559. }
  560. static void ma_put(struct ifmcaddr6 *mc)
  561. {
  562. if (atomic_dec_and_test(&mc->mca_refcnt)) {
  563. in6_dev_put(mc->idev);
  564. kfree(mc);
  565. }
  566. }
  567. static void igmp6_group_added(struct ifmcaddr6 *mc)
  568. {
  569. struct net_device *dev = mc->idev->dev;
  570. char buf[MAX_ADDR_LEN];
  571. spin_lock_bh(&mc->mca_lock);
  572. if (!(mc->mca_flags&MAF_LOADED)) {
  573. mc->mca_flags |= MAF_LOADED;
  574. if (ndisc_mc_map(&mc->mca_addr, buf, dev, 0) == 0)
  575. dev_mc_add(dev, buf);
  576. }
  577. spin_unlock_bh(&mc->mca_lock);
  578. if (!(dev->flags & IFF_UP) || (mc->mca_flags & MAF_NOREPORT))
  579. return;
  580. if (MLD_V1_SEEN(mc->idev)) {
  581. igmp6_join_group(mc);
  582. return;
  583. }
  584. /* else v2 */
  585. mc->mca_crcount = mc->idev->mc_qrv;
  586. mld_ifc_event(mc->idev);
  587. }
  588. static void igmp6_group_dropped(struct ifmcaddr6 *mc)
  589. {
  590. struct net_device *dev = mc->idev->dev;
  591. char buf[MAX_ADDR_LEN];
  592. spin_lock_bh(&mc->mca_lock);
  593. if (mc->mca_flags&MAF_LOADED) {
  594. mc->mca_flags &= ~MAF_LOADED;
  595. if (ndisc_mc_map(&mc->mca_addr, buf, dev, 0) == 0)
  596. dev_mc_del(dev, buf);
  597. }
  598. if (mc->mca_flags & MAF_NOREPORT)
  599. goto done;
  600. spin_unlock_bh(&mc->mca_lock);
  601. if (!mc->idev->dead)
  602. igmp6_leave_group(mc);
  603. spin_lock_bh(&mc->mca_lock);
  604. if (del_timer(&mc->mca_timer))
  605. atomic_dec(&mc->mca_refcnt);
  606. done:
  607. ip6_mc_clear_src(mc);
  608. spin_unlock_bh(&mc->mca_lock);
  609. }
  610. /*
  611. * deleted ifmcaddr6 manipulation
  612. */
  613. static void mld_add_delrec(struct inet6_dev *idev, struct ifmcaddr6 *im)
  614. {
  615. struct ifmcaddr6 *pmc;
  616. /* this is an "ifmcaddr6" for convenience; only the fields below
  617. * are actually used. In particular, the refcnt and users are not
  618. * used for management of the delete list. Using the same structure
  619. * for deleted items allows change reports to use common code with
  620. * non-deleted or query-response MCA's.
  621. */
  622. pmc = kzalloc(sizeof(*pmc), GFP_ATOMIC);
  623. if (!pmc)
  624. return;
  625. spin_lock_bh(&im->mca_lock);
  626. spin_lock_init(&pmc->mca_lock);
  627. pmc->idev = im->idev;
  628. in6_dev_hold(idev);
  629. pmc->mca_addr = im->mca_addr;
  630. pmc->mca_crcount = idev->mc_qrv;
  631. pmc->mca_sfmode = im->mca_sfmode;
  632. if (pmc->mca_sfmode == MCAST_INCLUDE) {
  633. struct ip6_sf_list *psf;
  634. pmc->mca_tomb = im->mca_tomb;
  635. pmc->mca_sources = im->mca_sources;
  636. im->mca_tomb = im->mca_sources = NULL;
  637. for (psf=pmc->mca_sources; psf; psf=psf->sf_next)
  638. psf->sf_crcount = pmc->mca_crcount;
  639. }
  640. spin_unlock_bh(&im->mca_lock);
  641. spin_lock_bh(&idev->mc_lock);
  642. pmc->next = idev->mc_tomb;
  643. idev->mc_tomb = pmc;
  644. spin_unlock_bh(&idev->mc_lock);
  645. }
  646. static void mld_del_delrec(struct inet6_dev *idev, struct in6_addr *pmca)
  647. {
  648. struct ifmcaddr6 *pmc, *pmc_prev;
  649. struct ip6_sf_list *psf, *psf_next;
  650. spin_lock_bh(&idev->mc_lock);
  651. pmc_prev = NULL;
  652. for (pmc=idev->mc_tomb; pmc; pmc=pmc->next) {
  653. if (ipv6_addr_equal(&pmc->mca_addr, pmca))
  654. break;
  655. pmc_prev = pmc;
  656. }
  657. if (pmc) {
  658. if (pmc_prev)
  659. pmc_prev->next = pmc->next;
  660. else
  661. idev->mc_tomb = pmc->next;
  662. }
  663. spin_unlock_bh(&idev->mc_lock);
  664. if (pmc) {
  665. for (psf=pmc->mca_tomb; psf; psf=psf_next) {
  666. psf_next = psf->sf_next;
  667. kfree(psf);
  668. }
  669. in6_dev_put(pmc->idev);
  670. kfree(pmc);
  671. }
  672. }
  673. static void mld_clear_delrec(struct inet6_dev *idev)
  674. {
  675. struct ifmcaddr6 *pmc, *nextpmc;
  676. spin_lock_bh(&idev->mc_lock);
  677. pmc = idev->mc_tomb;
  678. idev->mc_tomb = NULL;
  679. spin_unlock_bh(&idev->mc_lock);
  680. for (; pmc; pmc = nextpmc) {
  681. nextpmc = pmc->next;
  682. ip6_mc_clear_src(pmc);
  683. in6_dev_put(pmc->idev);
  684. kfree(pmc);
  685. }
  686. /* clear dead sources, too */
  687. read_lock_bh(&idev->lock);
  688. for (pmc=idev->mc_list; pmc; pmc=pmc->next) {
  689. struct ip6_sf_list *psf, *psf_next;
  690. spin_lock_bh(&pmc->mca_lock);
  691. psf = pmc->mca_tomb;
  692. pmc->mca_tomb = NULL;
  693. spin_unlock_bh(&pmc->mca_lock);
  694. for (; psf; psf=psf_next) {
  695. psf_next = psf->sf_next;
  696. kfree(psf);
  697. }
  698. }
  699. read_unlock_bh(&idev->lock);
  700. }
  701. /*
  702. * device multicast group inc (add if not found)
  703. */
  704. int ipv6_dev_mc_inc(struct net_device *dev, const struct in6_addr *addr)
  705. {
  706. struct ifmcaddr6 *mc;
  707. struct inet6_dev *idev;
  708. idev = in6_dev_get(dev);
  709. if (idev == NULL)
  710. return -EINVAL;
  711. write_lock_bh(&idev->lock);
  712. if (idev->dead) {
  713. write_unlock_bh(&idev->lock);
  714. in6_dev_put(idev);
  715. return -ENODEV;
  716. }
  717. for (mc = idev->mc_list; mc; mc = mc->next) {
  718. if (ipv6_addr_equal(&mc->mca_addr, addr)) {
  719. mc->mca_users++;
  720. write_unlock_bh(&idev->lock);
  721. ip6_mc_add_src(idev, &mc->mca_addr, MCAST_EXCLUDE, 0,
  722. NULL, 0);
  723. in6_dev_put(idev);
  724. return 0;
  725. }
  726. }
  727. /*
  728. * not found: create a new one.
  729. */
  730. mc = kzalloc(sizeof(struct ifmcaddr6), GFP_ATOMIC);
  731. if (mc == NULL) {
  732. write_unlock_bh(&idev->lock);
  733. in6_dev_put(idev);
  734. return -ENOMEM;
  735. }
  736. setup_timer(&mc->mca_timer, igmp6_timer_handler, (unsigned long)mc);
  737. ipv6_addr_copy(&mc->mca_addr, addr);
  738. mc->idev = idev;
  739. mc->mca_users = 1;
  740. /* mca_stamp should be updated upon changes */
  741. mc->mca_cstamp = mc->mca_tstamp = jiffies;
  742. atomic_set(&mc->mca_refcnt, 2);
  743. spin_lock_init(&mc->mca_lock);
  744. /* initial mode is (EX, empty) */
  745. mc->mca_sfmode = MCAST_EXCLUDE;
  746. mc->mca_sfcount[MCAST_EXCLUDE] = 1;
  747. if (ipv6_addr_is_ll_all_nodes(&mc->mca_addr) ||
  748. IPV6_ADDR_MC_SCOPE(&mc->mca_addr) < IPV6_ADDR_SCOPE_LINKLOCAL)
  749. mc->mca_flags |= MAF_NOREPORT;
  750. mc->next = idev->mc_list;
  751. idev->mc_list = mc;
  752. write_unlock_bh(&idev->lock);
  753. mld_del_delrec(idev, &mc->mca_addr);
  754. igmp6_group_added(mc);
  755. ma_put(mc);
  756. return 0;
  757. }
  758. /*
  759. * device multicast group del
  760. */
  761. int __ipv6_dev_mc_dec(struct inet6_dev *idev, const struct in6_addr *addr)
  762. {
  763. struct ifmcaddr6 *ma, **map;
  764. write_lock_bh(&idev->lock);
  765. for (map = &idev->mc_list; (ma=*map) != NULL; map = &ma->next) {
  766. if (ipv6_addr_equal(&ma->mca_addr, addr)) {
  767. if (--ma->mca_users == 0) {
  768. *map = ma->next;
  769. write_unlock_bh(&idev->lock);
  770. igmp6_group_dropped(ma);
  771. ma_put(ma);
  772. return 0;
  773. }
  774. write_unlock_bh(&idev->lock);
  775. return 0;
  776. }
  777. }
  778. write_unlock_bh(&idev->lock);
  779. return -ENOENT;
  780. }
  781. int ipv6_dev_mc_dec(struct net_device *dev, const struct in6_addr *addr)
  782. {
  783. struct inet6_dev *idev = in6_dev_get(dev);
  784. int err;
  785. if (!idev)
  786. return -ENODEV;
  787. err = __ipv6_dev_mc_dec(idev, addr);
  788. in6_dev_put(idev);
  789. return err;
  790. }
  791. /*
  792. * identify MLD packets for MLD filter exceptions
  793. */
  794. int ipv6_is_mld(struct sk_buff *skb, int nexthdr)
  795. {
  796. struct icmp6hdr *pic;
  797. if (nexthdr != IPPROTO_ICMPV6)
  798. return 0;
  799. if (!pskb_may_pull(skb, sizeof(struct icmp6hdr)))
  800. return 0;
  801. pic = icmp6_hdr(skb);
  802. switch (pic->icmp6_type) {
  803. case ICMPV6_MGM_QUERY:
  804. case ICMPV6_MGM_REPORT:
  805. case ICMPV6_MGM_REDUCTION:
  806. case ICMPV6_MLD2_REPORT:
  807. return 1;
  808. default:
  809. break;
  810. }
  811. return 0;
  812. }
  813. /*
  814. * check if the interface/address pair is valid
  815. */
  816. int ipv6_chk_mcast_addr(struct net_device *dev, const struct in6_addr *group,
  817. const struct in6_addr *src_addr)
  818. {
  819. struct inet6_dev *idev;
  820. struct ifmcaddr6 *mc;
  821. int rv = 0;
  822. idev = in6_dev_get(dev);
  823. if (idev) {
  824. read_lock_bh(&idev->lock);
  825. for (mc = idev->mc_list; mc; mc=mc->next) {
  826. if (ipv6_addr_equal(&mc->mca_addr, group))
  827. break;
  828. }
  829. if (mc) {
  830. if (src_addr && !ipv6_addr_any(src_addr)) {
  831. struct ip6_sf_list *psf;
  832. spin_lock_bh(&mc->mca_lock);
  833. for (psf=mc->mca_sources;psf;psf=psf->sf_next) {
  834. if (ipv6_addr_equal(&psf->sf_addr, src_addr))
  835. break;
  836. }
  837. if (psf)
  838. rv = psf->sf_count[MCAST_INCLUDE] ||
  839. psf->sf_count[MCAST_EXCLUDE] !=
  840. mc->mca_sfcount[MCAST_EXCLUDE];
  841. else
  842. rv = mc->mca_sfcount[MCAST_EXCLUDE] !=0;
  843. spin_unlock_bh(&mc->mca_lock);
  844. } else
  845. rv = 1; /* don't filter unspecified source */
  846. }
  847. read_unlock_bh(&idev->lock);
  848. in6_dev_put(idev);
  849. }
  850. return rv;
  851. }
  852. static void mld_gq_start_timer(struct inet6_dev *idev)
  853. {
  854. int tv = net_random() % idev->mc_maxdelay;
  855. idev->mc_gq_running = 1;
  856. if (!mod_timer(&idev->mc_gq_timer, jiffies+tv+2))
  857. in6_dev_hold(idev);
  858. }
  859. static void mld_ifc_start_timer(struct inet6_dev *idev, int delay)
  860. {
  861. int tv = net_random() % delay;
  862. if (!mod_timer(&idev->mc_ifc_timer, jiffies+tv+2))
  863. in6_dev_hold(idev);
  864. }
  865. /*
  866. * IGMP handling (alias multicast ICMPv6 messages)
  867. */
  868. static void igmp6_group_queried(struct ifmcaddr6 *ma, unsigned long resptime)
  869. {
  870. unsigned long delay = resptime;
  871. /* Do not start timer for these addresses */
  872. if (ipv6_addr_is_ll_all_nodes(&ma->mca_addr) ||
  873. IPV6_ADDR_MC_SCOPE(&ma->mca_addr) < IPV6_ADDR_SCOPE_LINKLOCAL)
  874. return;
  875. if (del_timer(&ma->mca_timer)) {
  876. atomic_dec(&ma->mca_refcnt);
  877. delay = ma->mca_timer.expires - jiffies;
  878. }
  879. if (delay >= resptime) {
  880. if (resptime)
  881. delay = net_random() % resptime;
  882. else
  883. delay = 1;
  884. }
  885. ma->mca_timer.expires = jiffies + delay;
  886. if (!mod_timer(&ma->mca_timer, jiffies + delay))
  887. atomic_inc(&ma->mca_refcnt);
  888. ma->mca_flags |= MAF_TIMER_RUNNING;
  889. }
  890. /* mark EXCLUDE-mode sources */
  891. static int mld_xmarksources(struct ifmcaddr6 *pmc, int nsrcs,
  892. struct in6_addr *srcs)
  893. {
  894. struct ip6_sf_list *psf;
  895. int i, scount;
  896. scount = 0;
  897. for (psf=pmc->mca_sources; psf; psf=psf->sf_next) {
  898. if (scount == nsrcs)
  899. break;
  900. for (i=0; i<nsrcs; i++) {
  901. /* skip inactive filters */
  902. if (pmc->mca_sfcount[MCAST_INCLUDE] ||
  903. pmc->mca_sfcount[MCAST_EXCLUDE] !=
  904. psf->sf_count[MCAST_EXCLUDE])
  905. continue;
  906. if (ipv6_addr_equal(&srcs[i], &psf->sf_addr)) {
  907. scount++;
  908. break;
  909. }
  910. }
  911. }
  912. pmc->mca_flags &= ~MAF_GSQUERY;
  913. if (scount == nsrcs) /* all sources excluded */
  914. return 0;
  915. return 1;
  916. }
  917. static int mld_marksources(struct ifmcaddr6 *pmc, int nsrcs,
  918. struct in6_addr *srcs)
  919. {
  920. struct ip6_sf_list *psf;
  921. int i, scount;
  922. if (pmc->mca_sfmode == MCAST_EXCLUDE)
  923. return mld_xmarksources(pmc, nsrcs, srcs);
  924. /* mark INCLUDE-mode sources */
  925. scount = 0;
  926. for (psf=pmc->mca_sources; psf; psf=psf->sf_next) {
  927. if (scount == nsrcs)
  928. break;
  929. for (i=0; i<nsrcs; i++) {
  930. if (ipv6_addr_equal(&srcs[i], &psf->sf_addr)) {
  931. psf->sf_gsresp = 1;
  932. scount++;
  933. break;
  934. }
  935. }
  936. }
  937. if (!scount) {
  938. pmc->mca_flags &= ~MAF_GSQUERY;
  939. return 0;
  940. }
  941. pmc->mca_flags |= MAF_GSQUERY;
  942. return 1;
  943. }
  944. int igmp6_event_query(struct sk_buff *skb)
  945. {
  946. struct mld2_query *mlh2 = NULL;
  947. struct ifmcaddr6 *ma;
  948. struct in6_addr *group;
  949. unsigned long max_delay;
  950. struct inet6_dev *idev;
  951. struct mld_msg *mld;
  952. int group_type;
  953. int mark = 0;
  954. int len;
  955. if (!pskb_may_pull(skb, sizeof(struct in6_addr)))
  956. return -EINVAL;
  957. /* compute payload length excluding extension headers */
  958. len = ntohs(ipv6_hdr(skb)->payload_len) + sizeof(struct ipv6hdr);
  959. len -= skb_network_header_len(skb);
  960. /* Drop queries with not link local source */
  961. if (!(ipv6_addr_type(&ipv6_hdr(skb)->saddr) & IPV6_ADDR_LINKLOCAL))
  962. return -EINVAL;
  963. idev = in6_dev_get(skb->dev);
  964. if (idev == NULL)
  965. return 0;
  966. mld = (struct mld_msg *)icmp6_hdr(skb);
  967. group = &mld->mld_mca;
  968. group_type = ipv6_addr_type(group);
  969. if (group_type != IPV6_ADDR_ANY &&
  970. !(group_type&IPV6_ADDR_MULTICAST)) {
  971. in6_dev_put(idev);
  972. return -EINVAL;
  973. }
  974. if (len == 24) {
  975. int switchback;
  976. /* MLDv1 router present */
  977. /* Translate milliseconds to jiffies */
  978. max_delay = (ntohs(mld->mld_maxdelay)*HZ)/1000;
  979. switchback = (idev->mc_qrv + 1) * max_delay;
  980. idev->mc_v1_seen = jiffies + switchback;
  981. /* cancel the interface change timer */
  982. idev->mc_ifc_count = 0;
  983. if (del_timer(&idev->mc_ifc_timer))
  984. __in6_dev_put(idev);
  985. /* clear deleted report items */
  986. mld_clear_delrec(idev);
  987. } else if (len >= 28) {
  988. int srcs_offset = sizeof(struct mld2_query) -
  989. sizeof(struct icmp6hdr);
  990. if (!pskb_may_pull(skb, srcs_offset)) {
  991. in6_dev_put(idev);
  992. return -EINVAL;
  993. }
  994. mlh2 = (struct mld2_query *)skb_transport_header(skb);
  995. max_delay = (MLDV2_MRC(ntohs(mlh2->mld2q_mrc))*HZ)/1000;
  996. if (!max_delay)
  997. max_delay = 1;
  998. idev->mc_maxdelay = max_delay;
  999. if (mlh2->mld2q_qrv)
  1000. idev->mc_qrv = mlh2->mld2q_qrv;
  1001. if (group_type == IPV6_ADDR_ANY) { /* general query */
  1002. if (mlh2->mld2q_nsrcs) {
  1003. in6_dev_put(idev);
  1004. return -EINVAL; /* no sources allowed */
  1005. }
  1006. mld_gq_start_timer(idev);
  1007. in6_dev_put(idev);
  1008. return 0;
  1009. }
  1010. /* mark sources to include, if group & source-specific */
  1011. if (mlh2->mld2q_nsrcs != 0) {
  1012. if (!pskb_may_pull(skb, srcs_offset +
  1013. ntohs(mlh2->mld2q_nsrcs) * sizeof(struct in6_addr))) {
  1014. in6_dev_put(idev);
  1015. return -EINVAL;
  1016. }
  1017. mlh2 = (struct mld2_query *)skb_transport_header(skb);
  1018. mark = 1;
  1019. }
  1020. } else {
  1021. in6_dev_put(idev);
  1022. return -EINVAL;
  1023. }
  1024. read_lock_bh(&idev->lock);
  1025. if (group_type == IPV6_ADDR_ANY) {
  1026. for (ma = idev->mc_list; ma; ma=ma->next) {
  1027. spin_lock_bh(&ma->mca_lock);
  1028. igmp6_group_queried(ma, max_delay);
  1029. spin_unlock_bh(&ma->mca_lock);
  1030. }
  1031. } else {
  1032. for (ma = idev->mc_list; ma; ma=ma->next) {
  1033. if (!ipv6_addr_equal(group, &ma->mca_addr))
  1034. continue;
  1035. spin_lock_bh(&ma->mca_lock);
  1036. if (ma->mca_flags & MAF_TIMER_RUNNING) {
  1037. /* gsquery <- gsquery && mark */
  1038. if (!mark)
  1039. ma->mca_flags &= ~MAF_GSQUERY;
  1040. } else {
  1041. /* gsquery <- mark */
  1042. if (mark)
  1043. ma->mca_flags |= MAF_GSQUERY;
  1044. else
  1045. ma->mca_flags &= ~MAF_GSQUERY;
  1046. }
  1047. if (!(ma->mca_flags & MAF_GSQUERY) ||
  1048. mld_marksources(ma, ntohs(mlh2->mld2q_nsrcs), mlh2->mld2q_srcs))
  1049. igmp6_group_queried(ma, max_delay);
  1050. spin_unlock_bh(&ma->mca_lock);
  1051. break;
  1052. }
  1053. }
  1054. read_unlock_bh(&idev->lock);
  1055. in6_dev_put(idev);
  1056. return 0;
  1057. }
  1058. int igmp6_event_report(struct sk_buff *skb)
  1059. {
  1060. struct ifmcaddr6 *ma;
  1061. struct inet6_dev *idev;
  1062. struct mld_msg *mld;
  1063. int addr_type;
  1064. /* Our own report looped back. Ignore it. */
  1065. if (skb->pkt_type == PACKET_LOOPBACK)
  1066. return 0;
  1067. /* send our report if the MC router may not have heard this report */
  1068. if (skb->pkt_type != PACKET_MULTICAST &&
  1069. skb->pkt_type != PACKET_BROADCAST)
  1070. return 0;
  1071. if (!pskb_may_pull(skb, sizeof(*mld) - sizeof(struct icmp6hdr)))
  1072. return -EINVAL;
  1073. mld = (struct mld_msg *)icmp6_hdr(skb);
  1074. /* Drop reports with not link local source */
  1075. addr_type = ipv6_addr_type(&ipv6_hdr(skb)->saddr);
  1076. if (addr_type != IPV6_ADDR_ANY &&
  1077. !(addr_type&IPV6_ADDR_LINKLOCAL))
  1078. return -EINVAL;
  1079. idev = in6_dev_get(skb->dev);
  1080. if (idev == NULL)
  1081. return -ENODEV;
  1082. /*
  1083. * Cancel the timer for this group
  1084. */
  1085. read_lock_bh(&idev->lock);
  1086. for (ma = idev->mc_list; ma; ma=ma->next) {
  1087. if (ipv6_addr_equal(&ma->mca_addr, &mld->mld_mca)) {
  1088. spin_lock(&ma->mca_lock);
  1089. if (del_timer(&ma->mca_timer))
  1090. atomic_dec(&ma->mca_refcnt);
  1091. ma->mca_flags &= ~(MAF_LAST_REPORTER|MAF_TIMER_RUNNING);
  1092. spin_unlock(&ma->mca_lock);
  1093. break;
  1094. }
  1095. }
  1096. read_unlock_bh(&idev->lock);
  1097. in6_dev_put(idev);
  1098. return 0;
  1099. }
  1100. static int is_in(struct ifmcaddr6 *pmc, struct ip6_sf_list *psf, int type,
  1101. int gdeleted, int sdeleted)
  1102. {
  1103. switch (type) {
  1104. case MLD2_MODE_IS_INCLUDE:
  1105. case MLD2_MODE_IS_EXCLUDE:
  1106. if (gdeleted || sdeleted)
  1107. return 0;
  1108. if (!((pmc->mca_flags & MAF_GSQUERY) && !psf->sf_gsresp)) {
  1109. if (pmc->mca_sfmode == MCAST_INCLUDE)
  1110. return 1;
  1111. /* don't include if this source is excluded
  1112. * in all filters
  1113. */
  1114. if (psf->sf_count[MCAST_INCLUDE])
  1115. return type == MLD2_MODE_IS_INCLUDE;
  1116. return pmc->mca_sfcount[MCAST_EXCLUDE] ==
  1117. psf->sf_count[MCAST_EXCLUDE];
  1118. }
  1119. return 0;
  1120. case MLD2_CHANGE_TO_INCLUDE:
  1121. if (gdeleted || sdeleted)
  1122. return 0;
  1123. return psf->sf_count[MCAST_INCLUDE] != 0;
  1124. case MLD2_CHANGE_TO_EXCLUDE:
  1125. if (gdeleted || sdeleted)
  1126. return 0;
  1127. if (pmc->mca_sfcount[MCAST_EXCLUDE] == 0 ||
  1128. psf->sf_count[MCAST_INCLUDE])
  1129. return 0;
  1130. return pmc->mca_sfcount[MCAST_EXCLUDE] ==
  1131. psf->sf_count[MCAST_EXCLUDE];
  1132. case MLD2_ALLOW_NEW_SOURCES:
  1133. if (gdeleted || !psf->sf_crcount)
  1134. return 0;
  1135. return (pmc->mca_sfmode == MCAST_INCLUDE) ^ sdeleted;
  1136. case MLD2_BLOCK_OLD_SOURCES:
  1137. if (pmc->mca_sfmode == MCAST_INCLUDE)
  1138. return gdeleted || (psf->sf_crcount && sdeleted);
  1139. return psf->sf_crcount && !gdeleted && !sdeleted;
  1140. }
  1141. return 0;
  1142. }
  1143. static int
  1144. mld_scount(struct ifmcaddr6 *pmc, int type, int gdeleted, int sdeleted)
  1145. {
  1146. struct ip6_sf_list *psf;
  1147. int scount = 0;
  1148. for (psf=pmc->mca_sources; psf; psf=psf->sf_next) {
  1149. if (!is_in(pmc, psf, type, gdeleted, sdeleted))
  1150. continue;
  1151. scount++;
  1152. }
  1153. return scount;
  1154. }
  1155. static struct sk_buff *mld_newpack(struct net_device *dev, int size)
  1156. {
  1157. struct net *net = dev_net(dev);
  1158. struct sock *sk = net->ipv6.igmp_sk;
  1159. struct sk_buff *skb;
  1160. struct mld2_report *pmr;
  1161. struct in6_addr addr_buf;
  1162. const struct in6_addr *saddr;
  1163. int err;
  1164. u8 ra[8] = { IPPROTO_ICMPV6, 0,
  1165. IPV6_TLV_ROUTERALERT, 2, 0, 0,
  1166. IPV6_TLV_PADN, 0 };
  1167. /* we assume size > sizeof(ra) here */
  1168. size += LL_ALLOCATED_SPACE(dev);
  1169. /* limit our allocations to order-0 page */
  1170. size = min_t(int, size, SKB_MAX_ORDER(0, 0));
  1171. skb = sock_alloc_send_skb(sk, size, 1, &err);
  1172. if (!skb)
  1173. return NULL;
  1174. skb_reserve(skb, LL_RESERVED_SPACE(dev));
  1175. if (ipv6_get_lladdr(dev, &addr_buf, IFA_F_TENTATIVE)) {
  1176. /* <draft-ietf-magma-mld-source-05.txt>:
  1177. * use unspecified address as the source address
  1178. * when a valid link-local address is not available.
  1179. */
  1180. saddr = &in6addr_any;
  1181. } else
  1182. saddr = &addr_buf;
  1183. ip6_nd_hdr(sk, skb, dev, saddr, &mld2_all_mcr, NEXTHDR_HOP, 0);
  1184. memcpy(skb_put(skb, sizeof(ra)), ra, sizeof(ra));
  1185. skb_set_transport_header(skb, skb_tail_pointer(skb) - skb->data);
  1186. skb_put(skb, sizeof(*pmr));
  1187. pmr = (struct mld2_report *)skb_transport_header(skb);
  1188. pmr->mld2r_type = ICMPV6_MLD2_REPORT;
  1189. pmr->mld2r_resv1 = 0;
  1190. pmr->mld2r_cksum = 0;
  1191. pmr->mld2r_resv2 = 0;
  1192. pmr->mld2r_ngrec = 0;
  1193. return skb;
  1194. }
  1195. static void mld_sendpack(struct sk_buff *skb)
  1196. {
  1197. struct ipv6hdr *pip6 = ipv6_hdr(skb);
  1198. struct mld2_report *pmr =
  1199. (struct mld2_report *)skb_transport_header(skb);
  1200. int payload_len, mldlen;
  1201. struct inet6_dev *idev = in6_dev_get(skb->dev);
  1202. struct net *net = dev_net(skb->dev);
  1203. int err;
  1204. struct flowi fl;
  1205. struct dst_entry *dst;
  1206. IP6_UPD_PO_STATS(net, idev, IPSTATS_MIB_OUT, skb->len);
  1207. payload_len = (skb->tail - skb->network_header) - sizeof(*pip6);
  1208. mldlen = skb->tail - skb->transport_header;
  1209. pip6->payload_len = htons(payload_len);
  1210. pmr->mld2r_cksum = csum_ipv6_magic(&pip6->saddr, &pip6->daddr, mldlen,
  1211. IPPROTO_ICMPV6,
  1212. csum_partial(skb_transport_header(skb),
  1213. mldlen, 0));
  1214. dst = icmp6_dst_alloc(skb->dev, NULL, &ipv6_hdr(skb)->daddr);
  1215. if (!dst) {
  1216. err = -ENOMEM;
  1217. goto err_out;
  1218. }
  1219. icmpv6_flow_init(net->ipv6.igmp_sk, &fl, ICMPV6_MLD2_REPORT,
  1220. &ipv6_hdr(skb)->saddr, &ipv6_hdr(skb)->daddr,
  1221. skb->dev->ifindex);
  1222. err = xfrm_lookup(net, &dst, &fl, NULL, 0);
  1223. skb_dst_set(skb, dst);
  1224. if (err)
  1225. goto err_out;
  1226. payload_len = skb->len;
  1227. err = NF_HOOK(NFPROTO_IPV6, NF_INET_LOCAL_OUT, skb, NULL, skb->dev,
  1228. dst_output);
  1229. out:
  1230. if (!err) {
  1231. ICMP6MSGOUT_INC_STATS_BH(net, idev, ICMPV6_MLD2_REPORT);
  1232. ICMP6_INC_STATS_BH(net, idev, ICMP6_MIB_OUTMSGS);
  1233. IP6_UPD_PO_STATS_BH(net, idev, IPSTATS_MIB_OUTMCAST, payload_len);
  1234. } else
  1235. IP6_INC_STATS_BH(net, idev, IPSTATS_MIB_OUTDISCARDS);
  1236. if (likely(idev != NULL))
  1237. in6_dev_put(idev);
  1238. return;
  1239. err_out:
  1240. kfree_skb(skb);
  1241. goto out;
  1242. }
  1243. static int grec_size(struct ifmcaddr6 *pmc, int type, int gdel, int sdel)
  1244. {
  1245. return sizeof(struct mld2_grec) + 16 * mld_scount(pmc,type,gdel,sdel);
  1246. }
  1247. static struct sk_buff *add_grhead(struct sk_buff *skb, struct ifmcaddr6 *pmc,
  1248. int type, struct mld2_grec **ppgr)
  1249. {
  1250. struct net_device *dev = pmc->idev->dev;
  1251. struct mld2_report *pmr;
  1252. struct mld2_grec *pgr;
  1253. if (!skb)
  1254. skb = mld_newpack(dev, dev->mtu);
  1255. if (!skb)
  1256. return NULL;
  1257. pgr = (struct mld2_grec *)skb_put(skb, sizeof(struct mld2_grec));
  1258. pgr->grec_type = type;
  1259. pgr->grec_auxwords = 0;
  1260. pgr->grec_nsrcs = 0;
  1261. pgr->grec_mca = pmc->mca_addr; /* structure copy */
  1262. pmr = (struct mld2_report *)skb_transport_header(skb);
  1263. pmr->mld2r_ngrec = htons(ntohs(pmr->mld2r_ngrec)+1);
  1264. *ppgr = pgr;
  1265. return skb;
  1266. }
  1267. #define AVAILABLE(skb) ((skb) ? ((skb)->dev ? (skb)->dev->mtu - (skb)->len : \
  1268. skb_tailroom(skb)) : 0)
  1269. static struct sk_buff *add_grec(struct sk_buff *skb, struct ifmcaddr6 *pmc,
  1270. int type, int gdeleted, int sdeleted)
  1271. {
  1272. struct net_device *dev = pmc->idev->dev;
  1273. struct mld2_report *pmr;
  1274. struct mld2_grec *pgr = NULL;
  1275. struct ip6_sf_list *psf, *psf_next, *psf_prev, **psf_list;
  1276. int scount, stotal, first, isquery, truncate;
  1277. if (pmc->mca_flags & MAF_NOREPORT)
  1278. return skb;
  1279. isquery = type == MLD2_MODE_IS_INCLUDE ||
  1280. type == MLD2_MODE_IS_EXCLUDE;
  1281. truncate = type == MLD2_MODE_IS_EXCLUDE ||
  1282. type == MLD2_CHANGE_TO_EXCLUDE;
  1283. stotal = scount = 0;
  1284. psf_list = sdeleted ? &pmc->mca_tomb : &pmc->mca_sources;
  1285. if (!*psf_list)
  1286. goto empty_source;
  1287. pmr = skb ? (struct mld2_report *)skb_transport_header(skb) : NULL;
  1288. /* EX and TO_EX get a fresh packet, if needed */
  1289. if (truncate) {
  1290. if (pmr && pmr->mld2r_ngrec &&
  1291. AVAILABLE(skb) < grec_size(pmc, type, gdeleted, sdeleted)) {
  1292. if (skb)
  1293. mld_sendpack(skb);
  1294. skb = mld_newpack(dev, dev->mtu);
  1295. }
  1296. }
  1297. first = 1;
  1298. psf_prev = NULL;
  1299. for (psf=*psf_list; psf; psf=psf_next) {
  1300. struct in6_addr *psrc;
  1301. psf_next = psf->sf_next;
  1302. if (!is_in(pmc, psf, type, gdeleted, sdeleted)) {
  1303. psf_prev = psf;
  1304. continue;
  1305. }
  1306. /* clear marks on query responses */
  1307. if (isquery)
  1308. psf->sf_gsresp = 0;
  1309. if (AVAILABLE(skb) < sizeof(*psrc) +
  1310. first*sizeof(struct mld2_grec)) {
  1311. if (truncate && !first)
  1312. break; /* truncate these */
  1313. if (pgr)
  1314. pgr->grec_nsrcs = htons(scount);
  1315. if (skb)
  1316. mld_sendpack(skb);
  1317. skb = mld_newpack(dev, dev->mtu);
  1318. first = 1;
  1319. scount = 0;
  1320. }
  1321. if (first) {
  1322. skb = add_grhead(skb, pmc, type, &pgr);
  1323. first = 0;
  1324. }
  1325. if (!skb)
  1326. return NULL;
  1327. psrc = (struct in6_addr *)skb_put(skb, sizeof(*psrc));
  1328. *psrc = psf->sf_addr;
  1329. scount++; stotal++;
  1330. if ((type == MLD2_ALLOW_NEW_SOURCES ||
  1331. type == MLD2_BLOCK_OLD_SOURCES) && psf->sf_crcount) {
  1332. psf->sf_crcount--;
  1333. if ((sdeleted || gdeleted) && psf->sf_crcount == 0) {
  1334. if (psf_prev)
  1335. psf_prev->sf_next = psf->sf_next;
  1336. else
  1337. *psf_list = psf->sf_next;
  1338. kfree(psf);
  1339. continue;
  1340. }
  1341. }
  1342. psf_prev = psf;
  1343. }
  1344. empty_source:
  1345. if (!stotal) {
  1346. if (type == MLD2_ALLOW_NEW_SOURCES ||
  1347. type == MLD2_BLOCK_OLD_SOURCES)
  1348. return skb;
  1349. if (pmc->mca_crcount || isquery) {
  1350. /* make sure we have room for group header */
  1351. if (skb && AVAILABLE(skb) < sizeof(struct mld2_grec)) {
  1352. mld_sendpack(skb);
  1353. skb = NULL; /* add_grhead will get a new one */
  1354. }
  1355. skb = add_grhead(skb, pmc, type, &pgr);
  1356. }
  1357. }
  1358. if (pgr)
  1359. pgr->grec_nsrcs = htons(scount);
  1360. if (isquery)
  1361. pmc->mca_flags &= ~MAF_GSQUERY; /* clear query state */
  1362. return skb;
  1363. }
  1364. static void mld_send_report(struct inet6_dev *idev, struct ifmcaddr6 *pmc)
  1365. {
  1366. struct sk_buff *skb = NULL;
  1367. int type;
  1368. if (!pmc) {
  1369. read_lock_bh(&idev->lock);
  1370. for (pmc=idev->mc_list; pmc; pmc=pmc->next) {
  1371. if (pmc->mca_flags & MAF_NOREPORT)
  1372. continue;
  1373. spin_lock_bh(&pmc->mca_lock);
  1374. if (pmc->mca_sfcount[MCAST_EXCLUDE])
  1375. type = MLD2_MODE_IS_EXCLUDE;
  1376. else
  1377. type = MLD2_MODE_IS_INCLUDE;
  1378. skb = add_grec(skb, pmc, type, 0, 0);
  1379. spin_unlock_bh(&pmc->mca_lock);
  1380. }
  1381. read_unlock_bh(&idev->lock);
  1382. } else {
  1383. spin_lock_bh(&pmc->mca_lock);
  1384. if (pmc->mca_sfcount[MCAST_EXCLUDE])
  1385. type = MLD2_MODE_IS_EXCLUDE;
  1386. else
  1387. type = MLD2_MODE_IS_INCLUDE;
  1388. skb = add_grec(skb, pmc, type, 0, 0);
  1389. spin_unlock_bh(&pmc->mca_lock);
  1390. }
  1391. if (skb)
  1392. mld_sendpack(skb);
  1393. }
  1394. /*
  1395. * remove zero-count source records from a source filter list
  1396. */
  1397. static void mld_clear_zeros(struct ip6_sf_list **ppsf)
  1398. {
  1399. struct ip6_sf_list *psf_prev, *psf_next, *psf;
  1400. psf_prev = NULL;
  1401. for (psf=*ppsf; psf; psf = psf_next) {
  1402. psf_next = psf->sf_next;
  1403. if (psf->sf_crcount == 0) {
  1404. if (psf_prev)
  1405. psf_prev->sf_next = psf->sf_next;
  1406. else
  1407. *ppsf = psf->sf_next;
  1408. kfree(psf);
  1409. } else
  1410. psf_prev = psf;
  1411. }
  1412. }
  1413. static void mld_send_cr(struct inet6_dev *idev)
  1414. {
  1415. struct ifmcaddr6 *pmc, *pmc_prev, *pmc_next;
  1416. struct sk_buff *skb = NULL;
  1417. int type, dtype;
  1418. read_lock_bh(&idev->lock);
  1419. spin_lock(&idev->mc_lock);
  1420. /* deleted MCA's */
  1421. pmc_prev = NULL;
  1422. for (pmc=idev->mc_tomb; pmc; pmc=pmc_next) {
  1423. pmc_next = pmc->next;
  1424. if (pmc->mca_sfmode == MCAST_INCLUDE) {
  1425. type = MLD2_BLOCK_OLD_SOURCES;
  1426. dtype = MLD2_BLOCK_OLD_SOURCES;
  1427. skb = add_grec(skb, pmc, type, 1, 0);
  1428. skb = add_grec(skb, pmc, dtype, 1, 1);
  1429. }
  1430. if (pmc->mca_crcount) {
  1431. if (pmc->mca_sfmode == MCAST_EXCLUDE) {
  1432. type = MLD2_CHANGE_TO_INCLUDE;
  1433. skb = add_grec(skb, pmc, type, 1, 0);
  1434. }
  1435. pmc->mca_crcount--;
  1436. if (pmc->mca_crcount == 0) {
  1437. mld_clear_zeros(&pmc->mca_tomb);
  1438. mld_clear_zeros(&pmc->mca_sources);
  1439. }
  1440. }
  1441. if (pmc->mca_crcount == 0 && !pmc->mca_tomb &&
  1442. !pmc->mca_sources) {
  1443. if (pmc_prev)
  1444. pmc_prev->next = pmc_next;
  1445. else
  1446. idev->mc_tomb = pmc_next;
  1447. in6_dev_put(pmc->idev);
  1448. kfree(pmc);
  1449. } else
  1450. pmc_prev = pmc;
  1451. }
  1452. spin_unlock(&idev->mc_lock);
  1453. /* change recs */
  1454. for (pmc=idev->mc_list; pmc; pmc=pmc->next) {
  1455. spin_lock_bh(&pmc->mca_lock);
  1456. if (pmc->mca_sfcount[MCAST_EXCLUDE]) {
  1457. type = MLD2_BLOCK_OLD_SOURCES;
  1458. dtype = MLD2_ALLOW_NEW_SOURCES;
  1459. } else {
  1460. type = MLD2_ALLOW_NEW_SOURCES;
  1461. dtype = MLD2_BLOCK_OLD_SOURCES;
  1462. }
  1463. skb = add_grec(skb, pmc, type, 0, 0);
  1464. skb = add_grec(skb, pmc, dtype, 0, 1); /* deleted sources */
  1465. /* filter mode changes */
  1466. if (pmc->mca_crcount) {
  1467. if (pmc->mca_sfmode == MCAST_EXCLUDE)
  1468. type = MLD2_CHANGE_TO_EXCLUDE;
  1469. else
  1470. type = MLD2_CHANGE_TO_INCLUDE;
  1471. skb = add_grec(skb, pmc, type, 0, 0);
  1472. pmc->mca_crcount--;
  1473. }
  1474. spin_unlock_bh(&pmc->mca_lock);
  1475. }
  1476. read_unlock_bh(&idev->lock);
  1477. if (!skb)
  1478. return;
  1479. (void) mld_sendpack(skb);
  1480. }
  1481. static void igmp6_send(struct in6_addr *addr, struct net_device *dev, int type)
  1482. {
  1483. struct net *net = dev_net(dev);
  1484. struct sock *sk = net->ipv6.igmp_sk;
  1485. struct inet6_dev *idev;
  1486. struct sk_buff *skb;
  1487. struct mld_msg *hdr;
  1488. const struct in6_addr *snd_addr, *saddr;
  1489. struct in6_addr addr_buf;
  1490. int err, len, payload_len, full_len;
  1491. u8 ra[8] = { IPPROTO_ICMPV6, 0,
  1492. IPV6_TLV_ROUTERALERT, 2, 0, 0,
  1493. IPV6_TLV_PADN, 0 };
  1494. struct flowi fl;
  1495. struct dst_entry *dst;
  1496. if (type == ICMPV6_MGM_REDUCTION)
  1497. snd_addr = &in6addr_linklocal_allrouters;
  1498. else
  1499. snd_addr = addr;
  1500. len = sizeof(struct icmp6hdr) + sizeof(struct in6_addr);
  1501. payload_len = len + sizeof(ra);
  1502. full_len = sizeof(struct ipv6hdr) + payload_len;
  1503. rcu_read_lock();
  1504. IP6_UPD_PO_STATS(net, __in6_dev_get(dev),
  1505. IPSTATS_MIB_OUT, full_len);
  1506. rcu_read_unlock();
  1507. skb = sock_alloc_send_skb(sk, LL_ALLOCATED_SPACE(dev) + full_len, 1, &err);
  1508. if (skb == NULL) {
  1509. rcu_read_lock();
  1510. IP6_INC_STATS(net, __in6_dev_get(dev),
  1511. IPSTATS_MIB_OUTDISCARDS);
  1512. rcu_read_unlock();
  1513. return;
  1514. }
  1515. skb_reserve(skb, LL_RESERVED_SPACE(dev));
  1516. if (ipv6_get_lladdr(dev, &addr_buf, IFA_F_TENTATIVE)) {
  1517. /* <draft-ietf-magma-mld-source-05.txt>:
  1518. * use unspecified address as the source address
  1519. * when a valid link-local address is not available.
  1520. */
  1521. saddr = &in6addr_any;
  1522. } else
  1523. saddr = &addr_buf;
  1524. ip6_nd_hdr(sk, skb, dev, saddr, snd_addr, NEXTHDR_HOP, payload_len);
  1525. memcpy(skb_put(skb, sizeof(ra)), ra, sizeof(ra));
  1526. hdr = (struct mld_msg *) skb_put(skb, sizeof(struct mld_msg));
  1527. memset(hdr, 0, sizeof(struct mld_msg));
  1528. hdr->mld_type = type;
  1529. ipv6_addr_copy(&hdr->mld_mca, addr);
  1530. hdr->mld_cksum = csum_ipv6_magic(saddr, snd_addr, len,
  1531. IPPROTO_ICMPV6,
  1532. csum_partial(hdr, len, 0));
  1533. idev = in6_dev_get(skb->dev);
  1534. dst = icmp6_dst_alloc(skb->dev, NULL, &ipv6_hdr(skb)->daddr);
  1535. if (!dst) {
  1536. err = -ENOMEM;
  1537. goto err_out;
  1538. }
  1539. icmpv6_flow_init(sk, &fl, type,
  1540. &ipv6_hdr(skb)->saddr, &ipv6_hdr(skb)->daddr,
  1541. skb->dev->ifindex);
  1542. err = xfrm_lookup(net, &dst, &fl, NULL, 0);
  1543. if (err)
  1544. goto err_out;
  1545. skb_dst_set(skb, dst);
  1546. err = NF_HOOK(NFPROTO_IPV6, NF_INET_LOCAL_OUT, skb, NULL, skb->dev,
  1547. dst_output);
  1548. out:
  1549. if (!err) {
  1550. ICMP6MSGOUT_INC_STATS(net, idev, type);
  1551. ICMP6_INC_STATS(net, idev, ICMP6_MIB_OUTMSGS);
  1552. IP6_UPD_PO_STATS(net, idev, IPSTATS_MIB_OUTMCAST, full_len);
  1553. } else
  1554. IP6_INC_STATS(net, idev, IPSTATS_MIB_OUTDISCARDS);
  1555. if (likely(idev != NULL))
  1556. in6_dev_put(idev);
  1557. return;
  1558. err_out:
  1559. kfree_skb(skb);
  1560. goto out;
  1561. }
  1562. static int ip6_mc_del1_src(struct ifmcaddr6 *pmc, int sfmode,
  1563. struct in6_addr *psfsrc)
  1564. {
  1565. struct ip6_sf_list *psf, *psf_prev;
  1566. int rv = 0;
  1567. psf_prev = NULL;
  1568. for (psf=pmc->mca_sources; psf; psf=psf->sf_next) {
  1569. if (ipv6_addr_equal(&psf->sf_addr, psfsrc))
  1570. break;
  1571. psf_prev = psf;
  1572. }
  1573. if (!psf || psf->sf_count[sfmode] == 0) {
  1574. /* source filter not found, or count wrong => bug */
  1575. return -ESRCH;
  1576. }
  1577. psf->sf_count[sfmode]--;
  1578. if (!psf->sf_count[MCAST_INCLUDE] && !psf->sf_count[MCAST_EXCLUDE]) {
  1579. struct inet6_dev *idev = pmc->idev;
  1580. /* no more filters for this source */
  1581. if (psf_prev)
  1582. psf_prev->sf_next = psf->sf_next;
  1583. else
  1584. pmc->mca_sources = psf->sf_next;
  1585. if (psf->sf_oldin && !(pmc->mca_flags & MAF_NOREPORT) &&
  1586. !MLD_V1_SEEN(idev)) {
  1587. psf->sf_crcount = idev->mc_qrv;
  1588. psf->sf_next = pmc->mca_tomb;
  1589. pmc->mca_tomb = psf;
  1590. rv = 1;
  1591. } else
  1592. kfree(psf);
  1593. }
  1594. return rv;
  1595. }
  1596. static int ip6_mc_del_src(struct inet6_dev *idev, struct in6_addr *pmca,
  1597. int sfmode, int sfcount, struct in6_addr *psfsrc,
  1598. int delta)
  1599. {
  1600. struct ifmcaddr6 *pmc;
  1601. int changerec = 0;
  1602. int i, err;
  1603. if (!idev)
  1604. return -ENODEV;
  1605. read_lock_bh(&idev->lock);
  1606. for (pmc=idev->mc_list; pmc; pmc=pmc->next) {
  1607. if (ipv6_addr_equal(pmca, &pmc->mca_addr))
  1608. break;
  1609. }
  1610. if (!pmc) {
  1611. /* MCA not found?? bug */
  1612. read_unlock_bh(&idev->lock);
  1613. return -ESRCH;
  1614. }
  1615. spin_lock_bh(&pmc->mca_lock);
  1616. sf_markstate(pmc);
  1617. if (!delta) {
  1618. if (!pmc->mca_sfcount[sfmode]) {
  1619. spin_unlock_bh(&pmc->mca_lock);
  1620. read_unlock_bh(&idev->lock);
  1621. return -EINVAL;
  1622. }
  1623. pmc->mca_sfcount[sfmode]--;
  1624. }
  1625. err = 0;
  1626. for (i=0; i<sfcount; i++) {
  1627. int rv = ip6_mc_del1_src(pmc, sfmode, &psfsrc[i]);
  1628. changerec |= rv > 0;
  1629. if (!err && rv < 0)
  1630. err = rv;
  1631. }
  1632. if (pmc->mca_sfmode == MCAST_EXCLUDE &&
  1633. pmc->mca_sfcount[MCAST_EXCLUDE] == 0 &&
  1634. pmc->mca_sfcount[MCAST_INCLUDE]) {
  1635. struct ip6_sf_list *psf;
  1636. /* filter mode change */
  1637. pmc->mca_sfmode = MCAST_INCLUDE;
  1638. pmc->mca_crcount = idev->mc_qrv;
  1639. idev->mc_ifc_count = pmc->mca_crcount;
  1640. for (psf=pmc->mca_sources; psf; psf = psf->sf_next)
  1641. psf->sf_crcount = 0;
  1642. mld_ifc_event(pmc->idev);
  1643. } else if (sf_setstate(pmc) || changerec)
  1644. mld_ifc_event(pmc->idev);
  1645. spin_unlock_bh(&pmc->mca_lock);
  1646. read_unlock_bh(&idev->lock);
  1647. return err;
  1648. }
  1649. /*
  1650. * Add multicast single-source filter to the interface list
  1651. */
  1652. static int ip6_mc_add1_src(struct ifmcaddr6 *pmc, int sfmode,
  1653. struct in6_addr *psfsrc, int delta)
  1654. {
  1655. struct ip6_sf_list *psf, *psf_prev;
  1656. psf_prev = NULL;
  1657. for (psf=pmc->mca_sources; psf; psf=psf->sf_next) {
  1658. if (ipv6_addr_equal(&psf->sf_addr, psfsrc))
  1659. break;
  1660. psf_prev = psf;
  1661. }
  1662. if (!psf) {
  1663. psf = kzalloc(sizeof(*psf), GFP_ATOMIC);
  1664. if (!psf)
  1665. return -ENOBUFS;
  1666. psf->sf_addr = *psfsrc;
  1667. if (psf_prev) {
  1668. psf_prev->sf_next = psf;
  1669. } else
  1670. pmc->mca_sources = psf;
  1671. }
  1672. psf->sf_count[sfmode]++;
  1673. return 0;
  1674. }
  1675. static void sf_markstate(struct ifmcaddr6 *pmc)
  1676. {
  1677. struct ip6_sf_list *psf;
  1678. int mca_xcount = pmc->mca_sfcount[MCAST_EXCLUDE];
  1679. for (psf=pmc->mca_sources; psf; psf=psf->sf_next)
  1680. if (pmc->mca_sfcount[MCAST_EXCLUDE]) {
  1681. psf->sf_oldin = mca_xcount ==
  1682. psf->sf_count[MCAST_EXCLUDE] &&
  1683. !psf->sf_count[MCAST_INCLUDE];
  1684. } else
  1685. psf->sf_oldin = psf->sf_count[MCAST_INCLUDE] != 0;
  1686. }
  1687. static int sf_setstate(struct ifmcaddr6 *pmc)
  1688. {
  1689. struct ip6_sf_list *psf, *dpsf;
  1690. int mca_xcount = pmc->mca_sfcount[MCAST_EXCLUDE];
  1691. int qrv = pmc->idev->mc_qrv;
  1692. int new_in, rv;
  1693. rv = 0;
  1694. for (psf=pmc->mca_sources; psf; psf=psf->sf_next) {
  1695. if (pmc->mca_sfcount[MCAST_EXCLUDE]) {
  1696. new_in = mca_xcount == psf->sf_count[MCAST_EXCLUDE] &&
  1697. !psf->sf_count[MCAST_INCLUDE];
  1698. } else
  1699. new_in = psf->sf_count[MCAST_INCLUDE] != 0;
  1700. if (new_in) {
  1701. if (!psf->sf_oldin) {
  1702. struct ip6_sf_list *prev = NULL;
  1703. for (dpsf=pmc->mca_tomb; dpsf;
  1704. dpsf=dpsf->sf_next) {
  1705. if (ipv6_addr_equal(&dpsf->sf_addr,
  1706. &psf->sf_addr))
  1707. break;
  1708. prev = dpsf;
  1709. }
  1710. if (dpsf) {
  1711. if (prev)
  1712. prev->sf_next = dpsf->sf_next;
  1713. else
  1714. pmc->mca_tomb = dpsf->sf_next;
  1715. kfree(dpsf);
  1716. }
  1717. psf->sf_crcount = qrv;
  1718. rv++;
  1719. }
  1720. } else if (psf->sf_oldin) {
  1721. psf->sf_crcount = 0;
  1722. /*
  1723. * add or update "delete" records if an active filter
  1724. * is now inactive
  1725. */
  1726. for (dpsf=pmc->mca_tomb; dpsf; dpsf=dpsf->sf_next)
  1727. if (ipv6_addr_equal(&dpsf->sf_addr,
  1728. &psf->sf_addr))
  1729. break;
  1730. if (!dpsf) {
  1731. dpsf = kmalloc(sizeof(*dpsf), GFP_ATOMIC);
  1732. if (!dpsf)
  1733. continue;
  1734. *dpsf = *psf;
  1735. /* pmc->mca_lock held by callers */
  1736. dpsf->sf_next = pmc->mca_tomb;
  1737. pmc->mca_tomb = dpsf;
  1738. }
  1739. dpsf->sf_crcount = qrv;
  1740. rv++;
  1741. }
  1742. }
  1743. return rv;
  1744. }
  1745. /*
  1746. * Add multicast source filter list to the interface list
  1747. */
  1748. static int ip6_mc_add_src(struct inet6_dev *idev, struct in6_addr *pmca,
  1749. int sfmode, int sfcount, struct in6_addr *psfsrc,
  1750. int delta)
  1751. {
  1752. struct ifmcaddr6 *pmc;
  1753. int isexclude;
  1754. int i, err;
  1755. if (!idev)
  1756. return -ENODEV;
  1757. read_lock_bh(&idev->lock);
  1758. for (pmc=idev->mc_list; pmc; pmc=pmc->next) {
  1759. if (ipv6_addr_equal(pmca, &pmc->mca_addr))
  1760. break;
  1761. }
  1762. if (!pmc) {
  1763. /* MCA not found?? bug */
  1764. read_unlock_bh(&idev->lock);
  1765. return -ESRCH;
  1766. }
  1767. spin_lock_bh(&pmc->mca_lock);
  1768. sf_markstate(pmc);
  1769. isexclude = pmc->mca_sfmode == MCAST_EXCLUDE;
  1770. if (!delta)
  1771. pmc->mca_sfcount[sfmode]++;
  1772. err = 0;
  1773. for (i=0; i<sfcount; i++) {
  1774. err = ip6_mc_add1_src(pmc, sfmode, &psfsrc[i], delta);
  1775. if (err)
  1776. break;
  1777. }
  1778. if (err) {
  1779. int j;
  1780. if (!delta)
  1781. pmc->mca_sfcount[sfmode]--;
  1782. for (j=0; j<i; j++)
  1783. (void) ip6_mc_del1_src(pmc, sfmode, &psfsrc[i]);
  1784. } else if (isexclude != (pmc->mca_sfcount[MCAST_EXCLUDE] != 0)) {
  1785. struct ip6_sf_list *psf;
  1786. /* filter mode change */
  1787. if (pmc->mca_sfcount[MCAST_EXCLUDE])
  1788. pmc->mca_sfmode = MCAST_EXCLUDE;
  1789. else if (pmc->mca_sfcount[MCAST_INCLUDE])
  1790. pmc->mca_sfmode = MCAST_INCLUDE;
  1791. /* else no filters; keep old mode for reports */
  1792. pmc->mca_crcount = idev->mc_qrv;
  1793. idev->mc_ifc_count = pmc->mca_crcount;
  1794. for (psf=pmc->mca_sources; psf; psf = psf->sf_next)
  1795. psf->sf_crcount = 0;
  1796. mld_ifc_event(idev);
  1797. } else if (sf_setstate(pmc))
  1798. mld_ifc_event(idev);
  1799. spin_unlock_bh(&pmc->mca_lock);
  1800. read_unlock_bh(&idev->lock);
  1801. return err;
  1802. }
  1803. static void ip6_mc_clear_src(struct ifmcaddr6 *pmc)
  1804. {
  1805. struct ip6_sf_list *psf, *nextpsf;
  1806. for (psf=pmc->mca_tomb; psf; psf=nextpsf) {
  1807. nextpsf = psf->sf_next;
  1808. kfree(psf);
  1809. }
  1810. pmc->mca_tomb = NULL;
  1811. for (psf=pmc->mca_sources; psf; psf=nextpsf) {
  1812. nextpsf = psf->sf_next;
  1813. kfree(psf);
  1814. }
  1815. pmc->mca_sources = NULL;
  1816. pmc->mca_sfmode = MCAST_EXCLUDE;
  1817. pmc->mca_sfcount[MCAST_INCLUDE] = 0;
  1818. pmc->mca_sfcount[MCAST_EXCLUDE] = 1;
  1819. }
  1820. static void igmp6_join_group(struct ifmcaddr6 *ma)
  1821. {
  1822. unsigned long delay;
  1823. if (ma->mca_flags & MAF_NOREPORT)
  1824. return;
  1825. igmp6_send(&ma->mca_addr, ma->idev->dev, ICMPV6_MGM_REPORT);
  1826. delay = net_random() % IGMP6_UNSOLICITED_IVAL;
  1827. spin_lock_bh(&ma->mca_lock);
  1828. if (del_timer(&ma->mca_timer)) {
  1829. atomic_dec(&ma->mca_refcnt);
  1830. delay = ma->mca_timer.expires - jiffies;
  1831. }
  1832. if (!mod_timer(&ma->mca_timer, jiffies + delay))
  1833. atomic_inc(&ma->mca_refcnt);
  1834. ma->mca_flags |= MAF_TIMER_RUNNING | MAF_LAST_REPORTER;
  1835. spin_unlock_bh(&ma->mca_lock);
  1836. }
  1837. static int ip6_mc_leave_src(struct sock *sk, struct ipv6_mc_socklist *iml,
  1838. struct inet6_dev *idev)
  1839. {
  1840. int err;
  1841. /* callers have the socket lock and a write lock on ipv6_sk_mc_lock,
  1842. * so no other readers or writers of iml or its sflist
  1843. */
  1844. if (!iml->sflist) {
  1845. /* any-source empty exclude case */
  1846. return ip6_mc_del_src(idev, &iml->addr, iml->sfmode, 0, NULL, 0);
  1847. }
  1848. err = ip6_mc_del_src(idev, &iml->addr, iml->sfmode,
  1849. iml->sflist->sl_count, iml->sflist->sl_addr, 0);
  1850. sock_kfree_s(sk, iml->sflist, IP6_SFLSIZE(iml->sflist->sl_max));
  1851. iml->sflist = NULL;
  1852. return err;
  1853. }
  1854. static void igmp6_leave_group(struct ifmcaddr6 *ma)
  1855. {
  1856. if (MLD_V1_SEEN(ma->idev)) {
  1857. if (ma->mca_flags & MAF_LAST_REPORTER)
  1858. igmp6_send(&ma->mca_addr, ma->idev->dev,
  1859. ICMPV6_MGM_REDUCTION);
  1860. } else {
  1861. mld_add_delrec(ma->idev, ma);
  1862. mld_ifc_event(ma->idev);
  1863. }
  1864. }
  1865. static void mld_gq_timer_expire(unsigned long data)
  1866. {
  1867. struct inet6_dev *idev = (struct inet6_dev *)data;
  1868. idev->mc_gq_running = 0;
  1869. mld_send_report(idev, NULL);
  1870. __in6_dev_put(idev);
  1871. }
  1872. static void mld_ifc_timer_expire(unsigned long data)
  1873. {
  1874. struct inet6_dev *idev = (struct inet6_dev *)data;
  1875. mld_send_cr(idev);
  1876. if (idev->mc_ifc_count) {
  1877. idev->mc_ifc_count--;
  1878. if (idev->mc_ifc_count)
  1879. mld_ifc_start_timer(idev, idev->mc_maxdelay);
  1880. }
  1881. __in6_dev_put(idev);
  1882. }
  1883. static void mld_ifc_event(struct inet6_dev *idev)
  1884. {
  1885. if (MLD_V1_SEEN(idev))
  1886. return;
  1887. idev->mc_ifc_count = idev->mc_qrv;
  1888. mld_ifc_start_timer(idev, 1);
  1889. }
  1890. static void igmp6_timer_handler(unsigned long data)
  1891. {
  1892. struct ifmcaddr6 *ma = (struct ifmcaddr6 *) data;
  1893. if (MLD_V1_SEEN(ma->idev))
  1894. igmp6_send(&ma->mca_addr, ma->idev->dev, ICMPV6_MGM_REPORT);
  1895. else
  1896. mld_send_report(ma->idev, ma);
  1897. spin_lock(&ma->mca_lock);
  1898. ma->mca_flags |= MAF_LAST_REPORTER;
  1899. ma->mca_flags &= ~MAF_TIMER_RUNNING;
  1900. spin_unlock(&ma->mca_lock);
  1901. ma_put(ma);
  1902. }
  1903. /* Device changing type */
  1904. void ipv6_mc_unmap(struct inet6_dev *idev)
  1905. {
  1906. struct ifmcaddr6 *i;
  1907. /* Install multicast list, except for all-nodes (already installed) */
  1908. read_lock_bh(&idev->lock);
  1909. for (i = idev->mc_list; i; i = i->next)
  1910. igmp6_group_dropped(i);
  1911. read_unlock_bh(&idev->lock);
  1912. }
  1913. void ipv6_mc_remap(struct inet6_dev *idev)
  1914. {
  1915. ipv6_mc_up(idev);
  1916. }
  1917. /* Device going down */
  1918. void ipv6_mc_down(struct inet6_dev *idev)
  1919. {
  1920. struct ifmcaddr6 *i;
  1921. /* Withdraw multicast list */
  1922. read_lock_bh(&idev->lock);
  1923. idev->mc_ifc_count = 0;
  1924. if (del_timer(&idev->mc_ifc_timer))
  1925. __in6_dev_put(idev);
  1926. idev->mc_gq_running = 0;
  1927. if (del_timer(&idev->mc_gq_timer))
  1928. __in6_dev_put(idev);
  1929. for (i = idev->mc_list; i; i=i->next)
  1930. igmp6_group_dropped(i);
  1931. read_unlock_bh(&idev->lock);
  1932. mld_clear_delrec(idev);
  1933. }
  1934. /* Device going up */
  1935. void ipv6_mc_up(struct inet6_dev *idev)
  1936. {
  1937. struct ifmcaddr6 *i;
  1938. /* Install multicast list, except for all-nodes (already installed) */
  1939. read_lock_bh(&idev->lock);
  1940. for (i = idev->mc_list; i; i=i->next)
  1941. igmp6_group_added(i);
  1942. read_unlock_bh(&idev->lock);
  1943. }
  1944. /* IPv6 device initialization. */
  1945. void ipv6_mc_init_dev(struct inet6_dev *idev)
  1946. {
  1947. write_lock_bh(&idev->lock);
  1948. spin_lock_init(&idev->mc_lock);
  1949. idev->mc_gq_running = 0;
  1950. setup_timer(&idev->mc_gq_timer, mld_gq_timer_expire,
  1951. (unsigned long)idev);
  1952. idev->mc_tomb = NULL;
  1953. idev->mc_ifc_count = 0;
  1954. setup_timer(&idev->mc_ifc_timer, mld_ifc_timer_expire,
  1955. (unsigned long)idev);
  1956. idev->mc_qrv = MLD_QRV_DEFAULT;
  1957. idev->mc_maxdelay = IGMP6_UNSOLICITED_IVAL;
  1958. idev->mc_v1_seen = 0;
  1959. write_unlock_bh(&idev->lock);
  1960. }
  1961. /*
  1962. * Device is about to be destroyed: clean up.
  1963. */
  1964. void ipv6_mc_destroy_dev(struct inet6_dev *idev)
  1965. {
  1966. struct ifmcaddr6 *i;
  1967. /* Deactivate timers */
  1968. ipv6_mc_down(idev);
  1969. /* Delete all-nodes address. */
  1970. /* We cannot call ipv6_dev_mc_dec() directly, our caller in
  1971. * addrconf.c has NULL'd out dev->ip6_ptr so in6_dev_get() will
  1972. * fail.
  1973. */
  1974. __ipv6_dev_mc_dec(idev, &in6addr_linklocal_allnodes);
  1975. if (idev->cnf.forwarding)
  1976. __ipv6_dev_mc_dec(idev, &in6addr_linklocal_allrouters);
  1977. write_lock_bh(&idev->lock);
  1978. while ((i = idev->mc_list) != NULL) {
  1979. idev->mc_list = i->next;
  1980. write_unlock_bh(&idev->lock);
  1981. igmp6_group_dropped(i);
  1982. ma_put(i);
  1983. write_lock_bh(&idev->lock);
  1984. }
  1985. write_unlock_bh(&idev->lock);
  1986. }
  1987. #ifdef CONFIG_PROC_FS
  1988. struct igmp6_mc_iter_state {
  1989. struct seq_net_private p;
  1990. struct net_device *dev;
  1991. struct inet6_dev *idev;
  1992. };
  1993. #define igmp6_mc_seq_private(seq) ((struct igmp6_mc_iter_state *)(seq)->private)
  1994. static inline struct ifmcaddr6 *igmp6_mc_get_first(struct seq_file *seq)
  1995. {
  1996. struct ifmcaddr6 *im = NULL;
  1997. struct igmp6_mc_iter_state *state = igmp6_mc_seq_private(seq);
  1998. struct net *net = seq_file_net(seq);
  1999. state->idev = NULL;
  2000. for_each_netdev_rcu(net, state->dev) {
  2001. struct inet6_dev *idev;
  2002. idev = __in6_dev_get(state->dev);
  2003. if (!idev)
  2004. continue;
  2005. read_lock_bh(&idev->lock);
  2006. im = idev->mc_list;
  2007. if (im) {
  2008. state->idev = idev;
  2009. break;
  2010. }
  2011. read_unlock_bh(&idev->lock);
  2012. }
  2013. return im;
  2014. }
  2015. static struct ifmcaddr6 *igmp6_mc_get_next(struct seq_file *seq, struct ifmcaddr6 *im)
  2016. {
  2017. struct igmp6_mc_iter_state *state = igmp6_mc_seq_private(seq);
  2018. im = im->next;
  2019. while (!im) {
  2020. if (likely(state->idev != NULL))
  2021. read_unlock_bh(&state->idev->lock);
  2022. state->dev = next_net_device_rcu(state->dev);
  2023. if (!state->dev) {
  2024. state->idev = NULL;
  2025. break;
  2026. }
  2027. state->idev = __in6_dev_get(state->dev);
  2028. if (!state->idev)
  2029. continue;
  2030. read_lock_bh(&state->idev->lock);
  2031. im = state->idev->mc_list;
  2032. }
  2033. return im;
  2034. }
  2035. static struct ifmcaddr6 *igmp6_mc_get_idx(struct seq_file *seq, loff_t pos)
  2036. {
  2037. struct ifmcaddr6 *im = igmp6_mc_get_first(seq);
  2038. if (im)
  2039. while (pos && (im = igmp6_mc_get_next(seq, im)) != NULL)
  2040. --pos;
  2041. return pos ? NULL : im;
  2042. }
  2043. static void *igmp6_mc_seq_start(struct seq_file *seq, loff_t *pos)
  2044. __acquires(RCU)
  2045. {
  2046. rcu_read_lock();
  2047. return igmp6_mc_get_idx(seq, *pos);
  2048. }
  2049. static void *igmp6_mc_seq_next(struct seq_file *seq, void *v, loff_t *pos)
  2050. {
  2051. struct ifmcaddr6 *im = igmp6_mc_get_next(seq, v);
  2052. ++*pos;
  2053. return im;
  2054. }
  2055. static void igmp6_mc_seq_stop(struct seq_file *seq, void *v)
  2056. __releases(RCU)
  2057. {
  2058. struct igmp6_mc_iter_state *state = igmp6_mc_seq_private(seq);
  2059. if (likely(state->idev != NULL)) {
  2060. read_unlock_bh(&state->idev->lock);
  2061. state->idev = NULL;
  2062. }
  2063. state->dev = NULL;
  2064. rcu_read_unlock();
  2065. }
  2066. static int igmp6_mc_seq_show(struct seq_file *seq, void *v)
  2067. {
  2068. struct ifmcaddr6 *im = (struct ifmcaddr6 *)v;
  2069. struct igmp6_mc_iter_state *state = igmp6_mc_seq_private(seq);
  2070. seq_printf(seq,
  2071. "%-4d %-15s %pi6 %5d %08X %ld\n",
  2072. state->dev->ifindex, state->dev->name,
  2073. &im->mca_addr,
  2074. im->mca_users, im->mca_flags,
  2075. (im->mca_flags&MAF_TIMER_RUNNING) ?
  2076. jiffies_to_clock_t(im->mca_timer.expires-jiffies) : 0);
  2077. return 0;
  2078. }
  2079. static const struct seq_operations igmp6_mc_seq_ops = {
  2080. .start = igmp6_mc_seq_start,
  2081. .next = igmp6_mc_seq_next,
  2082. .stop = igmp6_mc_seq_stop,
  2083. .show = igmp6_mc_seq_show,
  2084. };
  2085. static int igmp6_mc_seq_open(struct inode *inode, struct file *file)
  2086. {
  2087. return seq_open_net(inode, file, &igmp6_mc_seq_ops,
  2088. sizeof(struct igmp6_mc_iter_state));
  2089. }
  2090. static const struct file_operations igmp6_mc_seq_fops = {
  2091. .owner = THIS_MODULE,
  2092. .open = igmp6_mc_seq_open,
  2093. .read = seq_read,
  2094. .llseek = seq_lseek,
  2095. .release = seq_release_net,
  2096. };
  2097. struct igmp6_mcf_iter_state {
  2098. struct seq_net_private p;
  2099. struct net_device *dev;
  2100. struct inet6_dev *idev;
  2101. struct ifmcaddr6 *im;
  2102. };
  2103. #define igmp6_mcf_seq_private(seq) ((struct igmp6_mcf_iter_state *)(seq)->private)
  2104. static inline struct ip6_sf_list *igmp6_mcf_get_first(struct seq_file *seq)
  2105. {
  2106. struct ip6_sf_list *psf = NULL;
  2107. struct ifmcaddr6 *im = NULL;
  2108. struct igmp6_mcf_iter_state *state = igmp6_mcf_seq_private(seq);
  2109. struct net *net = seq_file_net(seq);
  2110. state->idev = NULL;
  2111. state->im = NULL;
  2112. for_each_netdev_rcu(net, state->dev) {
  2113. struct inet6_dev *idev;
  2114. idev = __in6_dev_get(state->dev);
  2115. if (unlikely(idev == NULL))
  2116. continue;
  2117. read_lock_bh(&idev->lock);
  2118. im = idev->mc_list;
  2119. if (likely(im != NULL)) {
  2120. spin_lock_bh(&im->mca_lock);
  2121. psf = im->mca_sources;
  2122. if (likely(psf != NULL)) {
  2123. state->im = im;
  2124. state->idev = idev;
  2125. break;
  2126. }
  2127. spin_unlock_bh(&im->mca_lock);
  2128. }
  2129. read_unlock_bh(&idev->lock);
  2130. }
  2131. return psf;
  2132. }
  2133. static struct ip6_sf_list *igmp6_mcf_get_next(struct seq_file *seq, struct ip6_sf_list *psf)
  2134. {
  2135. struct igmp6_mcf_iter_state *state = igmp6_mcf_seq_private(seq);
  2136. psf = psf->sf_next;
  2137. while (!psf) {
  2138. spin_unlock_bh(&state->im->mca_lock);
  2139. state->im = state->im->next;
  2140. while (!state->im) {
  2141. if (likely(state->idev != NULL))
  2142. read_unlock_bh(&state->idev->lock);
  2143. state->dev = next_net_device_rcu(state->dev);
  2144. if (!state->dev) {
  2145. state->idev = NULL;
  2146. goto out;
  2147. }
  2148. state->idev = __in6_dev_get(state->dev);
  2149. if (!state->idev)
  2150. continue;
  2151. read_lock_bh(&state->idev->lock);
  2152. state->im = state->idev->mc_list;
  2153. }
  2154. if (!state->im)
  2155. break;
  2156. spin_lock_bh(&state->im->mca_lock);
  2157. psf = state->im->mca_sources;
  2158. }
  2159. out:
  2160. return psf;
  2161. }
  2162. static struct ip6_sf_list *igmp6_mcf_get_idx(struct seq_file *seq, loff_t pos)
  2163. {
  2164. struct ip6_sf_list *psf = igmp6_mcf_get_first(seq);
  2165. if (psf)
  2166. while (pos && (psf = igmp6_mcf_get_next(seq, psf)) != NULL)
  2167. --pos;
  2168. return pos ? NULL : psf;
  2169. }
  2170. static void *igmp6_mcf_seq_start(struct seq_file *seq, loff_t *pos)
  2171. __acquires(RCU)
  2172. {
  2173. rcu_read_lock();
  2174. return *pos ? igmp6_mcf_get_idx(seq, *pos - 1) : SEQ_START_TOKEN;
  2175. }
  2176. static void *igmp6_mcf_seq_next(struct seq_file *seq, void *v, loff_t *pos)
  2177. {
  2178. struct ip6_sf_list *psf;
  2179. if (v == SEQ_START_TOKEN)
  2180. psf = igmp6_mcf_get_first(seq);
  2181. else
  2182. psf = igmp6_mcf_get_next(seq, v);
  2183. ++*pos;
  2184. return psf;
  2185. }
  2186. static void igmp6_mcf_seq_stop(struct seq_file *seq, void *v)
  2187. __releases(RCU)
  2188. {
  2189. struct igmp6_mcf_iter_state *state = igmp6_mcf_seq_private(seq);
  2190. if (likely(state->im != NULL)) {
  2191. spin_unlock_bh(&state->im->mca_lock);
  2192. state->im = NULL;
  2193. }
  2194. if (likely(state->idev != NULL)) {
  2195. read_unlock_bh(&state->idev->lock);
  2196. state->idev = NULL;
  2197. }
  2198. state->dev = NULL;
  2199. rcu_read_unlock();
  2200. }
  2201. static int igmp6_mcf_seq_show(struct seq_file *seq, void *v)
  2202. {
  2203. struct ip6_sf_list *psf = (struct ip6_sf_list *)v;
  2204. struct igmp6_mcf_iter_state *state = igmp6_mcf_seq_private(seq);
  2205. if (v == SEQ_START_TOKEN) {
  2206. seq_printf(seq,
  2207. "%3s %6s "
  2208. "%32s %32s %6s %6s\n", "Idx",
  2209. "Device", "Multicast Address",
  2210. "Source Address", "INC", "EXC");
  2211. } else {
  2212. seq_printf(seq,
  2213. "%3d %6.6s %pi6 %pi6 %6lu %6lu\n",
  2214. state->dev->ifindex, state->dev->name,
  2215. &state->im->mca_addr,
  2216. &psf->sf_addr,
  2217. psf->sf_count[MCAST_INCLUDE],
  2218. psf->sf_count[MCAST_EXCLUDE]);
  2219. }
  2220. return 0;
  2221. }
  2222. static const struct seq_operations igmp6_mcf_seq_ops = {
  2223. .start = igmp6_mcf_seq_start,
  2224. .next = igmp6_mcf_seq_next,
  2225. .stop = igmp6_mcf_seq_stop,
  2226. .show = igmp6_mcf_seq_show,
  2227. };
  2228. static int igmp6_mcf_seq_open(struct inode *inode, struct file *file)
  2229. {
  2230. return seq_open_net(inode, file, &igmp6_mcf_seq_ops,
  2231. sizeof(struct igmp6_mcf_iter_state));
  2232. }
  2233. static const struct file_operations igmp6_mcf_seq_fops = {
  2234. .owner = THIS_MODULE,
  2235. .open = igmp6_mcf_seq_open,
  2236. .read = seq_read,
  2237. .llseek = seq_lseek,
  2238. .release = seq_release_net,
  2239. };
  2240. static int __net_init igmp6_proc_init(struct net *net)
  2241. {
  2242. int err;
  2243. err = -ENOMEM;
  2244. if (!proc_net_fops_create(net, "igmp6", S_IRUGO, &igmp6_mc_seq_fops))
  2245. goto out;
  2246. if (!proc_net_fops_create(net, "mcfilter6", S_IRUGO,
  2247. &igmp6_mcf_seq_fops))
  2248. goto out_proc_net_igmp6;
  2249. err = 0;
  2250. out:
  2251. return err;
  2252. out_proc_net_igmp6:
  2253. proc_net_remove(net, "igmp6");
  2254. goto out;
  2255. }
  2256. static void __net_exit igmp6_proc_exit(struct net *net)
  2257. {
  2258. proc_net_remove(net, "mcfilter6");
  2259. proc_net_remove(net, "igmp6");
  2260. }
  2261. #else
  2262. static inline int igmp6_proc_init(struct net *net)
  2263. {
  2264. return 0;
  2265. }
  2266. static inline void igmp6_proc_exit(struct net *net)
  2267. {
  2268. }
  2269. #endif
  2270. static int __net_init igmp6_net_init(struct net *net)
  2271. {
  2272. int err;
  2273. err = inet_ctl_sock_create(&net->ipv6.igmp_sk, PF_INET6,
  2274. SOCK_RAW, IPPROTO_ICMPV6, net);
  2275. if (err < 0) {
  2276. printk(KERN_ERR
  2277. "Failed to initialize the IGMP6 control socket (err %d).\n",
  2278. err);
  2279. goto out;
  2280. }
  2281. inet6_sk(net->ipv6.igmp_sk)->hop_limit = 1;
  2282. err = igmp6_proc_init(net);
  2283. if (err)
  2284. goto out_sock_create;
  2285. out:
  2286. return err;
  2287. out_sock_create:
  2288. inet_ctl_sock_destroy(net->ipv6.igmp_sk);
  2289. goto out;
  2290. }
  2291. static void __net_exit igmp6_net_exit(struct net *net)
  2292. {
  2293. inet_ctl_sock_destroy(net->ipv6.igmp_sk);
  2294. igmp6_proc_exit(net);
  2295. }
  2296. static struct pernet_operations igmp6_net_ops = {
  2297. .init = igmp6_net_init,
  2298. .exit = igmp6_net_exit,
  2299. };
  2300. int __init igmp6_init(void)
  2301. {
  2302. return register_pernet_subsys(&igmp6_net_ops);
  2303. }
  2304. void igmp6_cleanup(void)
  2305. {
  2306. unregister_pernet_subsys(&igmp6_net_ops);
  2307. }