ipv6_sockglue.c 18 KB

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  1. /*
  2. * IPv6 BSD socket options interface
  3. * Linux INET6 implementation
  4. *
  5. * Authors:
  6. * Pedro Roque <roque@di.fc.ul.pt>
  7. *
  8. * Based on linux/net/ipv4/ip_sockglue.c
  9. *
  10. * $Id: ipv6_sockglue.c,v 1.41 2002/02/01 22:01:04 davem Exp $
  11. *
  12. * This program is free software; you can redistribute it and/or
  13. * modify it under the terms of the GNU General Public License
  14. * as published by the Free Software Foundation; either version
  15. * 2 of the License, or (at your option) any later version.
  16. *
  17. * FIXME: Make the setsockopt code POSIX compliant: That is
  18. *
  19. * o Return -EINVAL for setsockopt of short lengths
  20. * o Truncate getsockopt returns
  21. * o Return an optlen of the truncated length if need be
  22. *
  23. * Changes:
  24. * David L Stevens <dlstevens@us.ibm.com>:
  25. * - added multicast source filtering API for MLDv2
  26. */
  27. #include <linux/module.h>
  28. #include <linux/config.h>
  29. #include <linux/errno.h>
  30. #include <linux/types.h>
  31. #include <linux/socket.h>
  32. #include <linux/sockios.h>
  33. #include <linux/sched.h>
  34. #include <linux/net.h>
  35. #include <linux/in6.h>
  36. #include <linux/netdevice.h>
  37. #include <linux/if_arp.h>
  38. #include <linux/init.h>
  39. #include <linux/sysctl.h>
  40. #include <linux/netfilter.h>
  41. #include <net/sock.h>
  42. #include <net/snmp.h>
  43. #include <net/ipv6.h>
  44. #include <net/ndisc.h>
  45. #include <net/protocol.h>
  46. #include <net/transp_v6.h>
  47. #include <net/ip6_route.h>
  48. #include <net/addrconf.h>
  49. #include <net/inet_common.h>
  50. #include <net/tcp.h>
  51. #include <net/udp.h>
  52. #include <net/xfrm.h>
  53. #include <asm/uaccess.h>
  54. DEFINE_SNMP_STAT(struct ipstats_mib, ipv6_statistics) __read_mostly;
  55. static struct packet_type ipv6_packet_type = {
  56. .type = __constant_htons(ETH_P_IPV6),
  57. .func = ipv6_rcv,
  58. };
  59. struct ip6_ra_chain *ip6_ra_chain;
  60. DEFINE_RWLOCK(ip6_ra_lock);
  61. int ip6_ra_control(struct sock *sk, int sel, void (*destructor)(struct sock *))
  62. {
  63. struct ip6_ra_chain *ra, *new_ra, **rap;
  64. /* RA packet may be delivered ONLY to IPPROTO_RAW socket */
  65. if (sk->sk_type != SOCK_RAW || inet_sk(sk)->num != IPPROTO_RAW)
  66. return -EINVAL;
  67. new_ra = (sel>=0) ? kmalloc(sizeof(*new_ra), GFP_KERNEL) : NULL;
  68. write_lock_bh(&ip6_ra_lock);
  69. for (rap = &ip6_ra_chain; (ra=*rap) != NULL; rap = &ra->next) {
  70. if (ra->sk == sk) {
  71. if (sel>=0) {
  72. write_unlock_bh(&ip6_ra_lock);
  73. if (new_ra)
  74. kfree(new_ra);
  75. return -EADDRINUSE;
  76. }
  77. *rap = ra->next;
  78. write_unlock_bh(&ip6_ra_lock);
  79. if (ra->destructor)
  80. ra->destructor(sk);
  81. sock_put(sk);
  82. kfree(ra);
  83. return 0;
  84. }
  85. }
  86. if (new_ra == NULL) {
  87. write_unlock_bh(&ip6_ra_lock);
  88. return -ENOBUFS;
  89. }
  90. new_ra->sk = sk;
  91. new_ra->sel = sel;
  92. new_ra->destructor = destructor;
  93. new_ra->next = ra;
  94. *rap = new_ra;
  95. sock_hold(sk);
  96. write_unlock_bh(&ip6_ra_lock);
  97. return 0;
  98. }
  99. int ipv6_setsockopt(struct sock *sk, int level, int optname,
  100. char __user *optval, int optlen)
  101. {
  102. struct ipv6_pinfo *np = inet6_sk(sk);
  103. int val, valbool;
  104. int retv = -ENOPROTOOPT;
  105. if (level == SOL_IP && sk->sk_type != SOCK_RAW)
  106. return udp_prot.setsockopt(sk, level, optname, optval, optlen);
  107. if(level!=SOL_IPV6)
  108. goto out;
  109. if (optval == NULL)
  110. val=0;
  111. else if (get_user(val, (int __user *) optval))
  112. return -EFAULT;
  113. valbool = (val!=0);
  114. lock_sock(sk);
  115. switch (optname) {
  116. case IPV6_ADDRFORM:
  117. if (val == PF_INET) {
  118. struct ipv6_txoptions *opt;
  119. struct sk_buff *pktopt;
  120. if (sk->sk_protocol != IPPROTO_UDP &&
  121. sk->sk_protocol != IPPROTO_TCP)
  122. break;
  123. if (sk->sk_state != TCP_ESTABLISHED) {
  124. retv = -ENOTCONN;
  125. break;
  126. }
  127. if (ipv6_only_sock(sk) ||
  128. !(ipv6_addr_type(&np->daddr) & IPV6_ADDR_MAPPED)) {
  129. retv = -EADDRNOTAVAIL;
  130. break;
  131. }
  132. fl6_free_socklist(sk);
  133. ipv6_sock_mc_close(sk);
  134. /*
  135. * Sock is moving from IPv6 to IPv4 (sk_prot), so
  136. * remove it from the refcnt debug socks count in the
  137. * original family...
  138. */
  139. sk_refcnt_debug_dec(sk);
  140. if (sk->sk_protocol == IPPROTO_TCP) {
  141. struct tcp_sock *tp = tcp_sk(sk);
  142. local_bh_disable();
  143. sock_prot_dec_use(sk->sk_prot);
  144. sock_prot_inc_use(&tcp_prot);
  145. local_bh_enable();
  146. sk->sk_prot = &tcp_prot;
  147. tp->af_specific = &ipv4_specific;
  148. sk->sk_socket->ops = &inet_stream_ops;
  149. sk->sk_family = PF_INET;
  150. tcp_sync_mss(sk, tp->pmtu_cookie);
  151. } else {
  152. local_bh_disable();
  153. sock_prot_dec_use(sk->sk_prot);
  154. sock_prot_inc_use(&udp_prot);
  155. local_bh_enable();
  156. sk->sk_prot = &udp_prot;
  157. sk->sk_socket->ops = &inet_dgram_ops;
  158. sk->sk_family = PF_INET;
  159. }
  160. opt = xchg(&np->opt, NULL);
  161. if (opt)
  162. sock_kfree_s(sk, opt, opt->tot_len);
  163. pktopt = xchg(&np->pktoptions, NULL);
  164. if (pktopt)
  165. kfree_skb(pktopt);
  166. sk->sk_destruct = inet_sock_destruct;
  167. /*
  168. * ... and add it to the refcnt debug socks count
  169. * in the new family. -acme
  170. */
  171. sk_refcnt_debug_inc(sk);
  172. module_put(THIS_MODULE);
  173. retv = 0;
  174. break;
  175. }
  176. goto e_inval;
  177. case IPV6_V6ONLY:
  178. if (inet_sk(sk)->num)
  179. goto e_inval;
  180. np->ipv6only = valbool;
  181. retv = 0;
  182. break;
  183. case IPV6_RECVPKTINFO:
  184. np->rxopt.bits.rxinfo = valbool;
  185. retv = 0;
  186. break;
  187. case IPV6_2292PKTINFO:
  188. np->rxopt.bits.rxoinfo = valbool;
  189. retv = 0;
  190. break;
  191. case IPV6_RECVHOPLIMIT:
  192. np->rxopt.bits.rxhlim = valbool;
  193. retv = 0;
  194. break;
  195. case IPV6_2292HOPLIMIT:
  196. np->rxopt.bits.rxohlim = valbool;
  197. retv = 0;
  198. break;
  199. case IPV6_RECVRTHDR:
  200. if (val < 0 || val > 2)
  201. goto e_inval;
  202. np->rxopt.bits.srcrt = val;
  203. retv = 0;
  204. break;
  205. case IPV6_2292RTHDR:
  206. if (val < 0 || val > 2)
  207. goto e_inval;
  208. np->rxopt.bits.osrcrt = val;
  209. retv = 0;
  210. break;
  211. case IPV6_RECVHOPOPTS:
  212. np->rxopt.bits.hopopts = valbool;
  213. retv = 0;
  214. break;
  215. case IPV6_2292HOPOPTS:
  216. np->rxopt.bits.ohopopts = valbool;
  217. retv = 0;
  218. break;
  219. case IPV6_RECVDSTOPTS:
  220. np->rxopt.bits.dstopts = valbool;
  221. retv = 0;
  222. break;
  223. case IPV6_2292DSTOPTS:
  224. np->rxopt.bits.odstopts = valbool;
  225. retv = 0;
  226. break;
  227. case IPV6_FLOWINFO:
  228. np->rxopt.bits.rxflow = valbool;
  229. retv = 0;
  230. break;
  231. case IPV6_HOPOPTS:
  232. case IPV6_RTHDRDSTOPTS:
  233. case IPV6_RTHDR:
  234. case IPV6_DSTOPTS:
  235. {
  236. struct ipv6_txoptions *opt;
  237. if (optlen == 0)
  238. optval = 0;
  239. /* hop-by-hop / destination options are privileged option */
  240. retv = -EPERM;
  241. if (optname != IPV6_RTHDR && !capable(CAP_NET_RAW))
  242. break;
  243. retv = -EINVAL;
  244. if (optlen & 0x7 || optlen > 8 * 255)
  245. break;
  246. opt = ipv6_renew_options(sk, np->opt, optname,
  247. (struct ipv6_opt_hdr __user *)optval,
  248. optlen);
  249. if (IS_ERR(opt)) {
  250. retv = PTR_ERR(opt);
  251. break;
  252. }
  253. /* routing header option needs extra check */
  254. if (optname == IPV6_RTHDR && opt->srcrt) {
  255. struct ipv6_rt_hdr *rthdr = opt->srcrt;
  256. if (rthdr->type)
  257. goto sticky_done;
  258. if ((rthdr->hdrlen & 1) ||
  259. (rthdr->hdrlen >> 1) != rthdr->segments_left)
  260. goto sticky_done;
  261. }
  262. retv = 0;
  263. if (sk->sk_type == SOCK_STREAM) {
  264. if (opt) {
  265. struct tcp_sock *tp = tcp_sk(sk);
  266. if (!((1 << sk->sk_state) &
  267. (TCPF_LISTEN | TCPF_CLOSE))
  268. && inet_sk(sk)->daddr != LOOPBACK4_IPV6) {
  269. tp->ext_header_len = opt->opt_flen + opt->opt_nflen;
  270. tcp_sync_mss(sk, tp->pmtu_cookie);
  271. }
  272. }
  273. opt = xchg(&np->opt, opt);
  274. sk_dst_reset(sk);
  275. } else {
  276. write_lock(&sk->sk_dst_lock);
  277. opt = xchg(&np->opt, opt);
  278. write_unlock(&sk->sk_dst_lock);
  279. sk_dst_reset(sk);
  280. }
  281. sticky_done:
  282. if (opt)
  283. sock_kfree_s(sk, opt, opt->tot_len);
  284. break;
  285. }
  286. case IPV6_2292PKTOPTIONS:
  287. {
  288. struct ipv6_txoptions *opt = NULL;
  289. struct msghdr msg;
  290. struct flowi fl;
  291. int junk;
  292. fl.fl6_flowlabel = 0;
  293. fl.oif = sk->sk_bound_dev_if;
  294. if (optlen == 0)
  295. goto update;
  296. /* 1K is probably excessive
  297. * 1K is surely not enough, 2K per standard header is 16K.
  298. */
  299. retv = -EINVAL;
  300. if (optlen > 64*1024)
  301. break;
  302. opt = sock_kmalloc(sk, sizeof(*opt) + optlen, GFP_KERNEL);
  303. retv = -ENOBUFS;
  304. if (opt == NULL)
  305. break;
  306. memset(opt, 0, sizeof(*opt));
  307. opt->tot_len = sizeof(*opt) + optlen;
  308. retv = -EFAULT;
  309. if (copy_from_user(opt+1, optval, optlen))
  310. goto done;
  311. msg.msg_controllen = optlen;
  312. msg.msg_control = (void*)(opt+1);
  313. retv = datagram_send_ctl(&msg, &fl, opt, &junk);
  314. if (retv)
  315. goto done;
  316. update:
  317. retv = 0;
  318. if (sk->sk_type == SOCK_STREAM) {
  319. if (opt) {
  320. struct tcp_sock *tp = tcp_sk(sk);
  321. if (!((1 << sk->sk_state) &
  322. (TCPF_LISTEN | TCPF_CLOSE))
  323. && inet_sk(sk)->daddr != LOOPBACK4_IPV6) {
  324. tp->ext_header_len = opt->opt_flen + opt->opt_nflen;
  325. tcp_sync_mss(sk, tp->pmtu_cookie);
  326. }
  327. }
  328. opt = xchg(&np->opt, opt);
  329. sk_dst_reset(sk);
  330. } else {
  331. write_lock(&sk->sk_dst_lock);
  332. opt = xchg(&np->opt, opt);
  333. write_unlock(&sk->sk_dst_lock);
  334. sk_dst_reset(sk);
  335. }
  336. done:
  337. if (opt)
  338. sock_kfree_s(sk, opt, opt->tot_len);
  339. break;
  340. }
  341. case IPV6_UNICAST_HOPS:
  342. if (val > 255 || val < -1)
  343. goto e_inval;
  344. np->hop_limit = val;
  345. retv = 0;
  346. break;
  347. case IPV6_MULTICAST_HOPS:
  348. if (sk->sk_type == SOCK_STREAM)
  349. goto e_inval;
  350. if (val > 255 || val < -1)
  351. goto e_inval;
  352. np->mcast_hops = val;
  353. retv = 0;
  354. break;
  355. case IPV6_MULTICAST_LOOP:
  356. np->mc_loop = valbool;
  357. retv = 0;
  358. break;
  359. case IPV6_MULTICAST_IF:
  360. if (sk->sk_type == SOCK_STREAM)
  361. goto e_inval;
  362. if (sk->sk_bound_dev_if && sk->sk_bound_dev_if != val)
  363. goto e_inval;
  364. if (__dev_get_by_index(val) == NULL) {
  365. retv = -ENODEV;
  366. break;
  367. }
  368. np->mcast_oif = val;
  369. retv = 0;
  370. break;
  371. case IPV6_ADD_MEMBERSHIP:
  372. case IPV6_DROP_MEMBERSHIP:
  373. {
  374. struct ipv6_mreq mreq;
  375. retv = -EFAULT;
  376. if (copy_from_user(&mreq, optval, sizeof(struct ipv6_mreq)))
  377. break;
  378. if (optname == IPV6_ADD_MEMBERSHIP)
  379. retv = ipv6_sock_mc_join(sk, mreq.ipv6mr_ifindex, &mreq.ipv6mr_multiaddr);
  380. else
  381. retv = ipv6_sock_mc_drop(sk, mreq.ipv6mr_ifindex, &mreq.ipv6mr_multiaddr);
  382. break;
  383. }
  384. case IPV6_JOIN_ANYCAST:
  385. case IPV6_LEAVE_ANYCAST:
  386. {
  387. struct ipv6_mreq mreq;
  388. if (optlen != sizeof(struct ipv6_mreq))
  389. goto e_inval;
  390. retv = -EFAULT;
  391. if (copy_from_user(&mreq, optval, sizeof(struct ipv6_mreq)))
  392. break;
  393. if (optname == IPV6_JOIN_ANYCAST)
  394. retv = ipv6_sock_ac_join(sk, mreq.ipv6mr_ifindex, &mreq.ipv6mr_acaddr);
  395. else
  396. retv = ipv6_sock_ac_drop(sk, mreq.ipv6mr_ifindex, &mreq.ipv6mr_acaddr);
  397. break;
  398. }
  399. case MCAST_JOIN_GROUP:
  400. case MCAST_LEAVE_GROUP:
  401. {
  402. struct group_req greq;
  403. struct sockaddr_in6 *psin6;
  404. retv = -EFAULT;
  405. if (copy_from_user(&greq, optval, sizeof(struct group_req)))
  406. break;
  407. if (greq.gr_group.ss_family != AF_INET6) {
  408. retv = -EADDRNOTAVAIL;
  409. break;
  410. }
  411. psin6 = (struct sockaddr_in6 *)&greq.gr_group;
  412. if (optname == MCAST_JOIN_GROUP)
  413. retv = ipv6_sock_mc_join(sk, greq.gr_interface,
  414. &psin6->sin6_addr);
  415. else
  416. retv = ipv6_sock_mc_drop(sk, greq.gr_interface,
  417. &psin6->sin6_addr);
  418. break;
  419. }
  420. case MCAST_JOIN_SOURCE_GROUP:
  421. case MCAST_LEAVE_SOURCE_GROUP:
  422. case MCAST_BLOCK_SOURCE:
  423. case MCAST_UNBLOCK_SOURCE:
  424. {
  425. struct group_source_req greqs;
  426. int omode, add;
  427. if (optlen != sizeof(struct group_source_req))
  428. goto e_inval;
  429. if (copy_from_user(&greqs, optval, sizeof(greqs))) {
  430. retv = -EFAULT;
  431. break;
  432. }
  433. if (greqs.gsr_group.ss_family != AF_INET6 ||
  434. greqs.gsr_source.ss_family != AF_INET6) {
  435. retv = -EADDRNOTAVAIL;
  436. break;
  437. }
  438. if (optname == MCAST_BLOCK_SOURCE) {
  439. omode = MCAST_EXCLUDE;
  440. add = 1;
  441. } else if (optname == MCAST_UNBLOCK_SOURCE) {
  442. omode = MCAST_EXCLUDE;
  443. add = 0;
  444. } else if (optname == MCAST_JOIN_SOURCE_GROUP) {
  445. struct sockaddr_in6 *psin6;
  446. psin6 = (struct sockaddr_in6 *)&greqs.gsr_group;
  447. retv = ipv6_sock_mc_join(sk, greqs.gsr_interface,
  448. &psin6->sin6_addr);
  449. /* prior join w/ different source is ok */
  450. if (retv && retv != -EADDRINUSE)
  451. break;
  452. omode = MCAST_INCLUDE;
  453. add = 1;
  454. } else /* MCAST_LEAVE_SOURCE_GROUP */ {
  455. omode = MCAST_INCLUDE;
  456. add = 0;
  457. }
  458. retv = ip6_mc_source(add, omode, sk, &greqs);
  459. break;
  460. }
  461. case MCAST_MSFILTER:
  462. {
  463. extern int sysctl_mld_max_msf;
  464. struct group_filter *gsf;
  465. if (optlen < GROUP_FILTER_SIZE(0))
  466. goto e_inval;
  467. if (optlen > sysctl_optmem_max) {
  468. retv = -ENOBUFS;
  469. break;
  470. }
  471. gsf = (struct group_filter *)kmalloc(optlen,GFP_KERNEL);
  472. if (gsf == 0) {
  473. retv = -ENOBUFS;
  474. break;
  475. }
  476. retv = -EFAULT;
  477. if (copy_from_user(gsf, optval, optlen)) {
  478. kfree(gsf);
  479. break;
  480. }
  481. /* numsrc >= (4G-140)/128 overflow in 32 bits */
  482. if (gsf->gf_numsrc >= 0x1ffffffU ||
  483. gsf->gf_numsrc > sysctl_mld_max_msf) {
  484. kfree(gsf);
  485. retv = -ENOBUFS;
  486. break;
  487. }
  488. if (GROUP_FILTER_SIZE(gsf->gf_numsrc) > optlen) {
  489. kfree(gsf);
  490. retv = -EINVAL;
  491. break;
  492. }
  493. retv = ip6_mc_msfilter(sk, gsf);
  494. kfree(gsf);
  495. break;
  496. }
  497. case IPV6_ROUTER_ALERT:
  498. retv = ip6_ra_control(sk, val, NULL);
  499. break;
  500. case IPV6_MTU_DISCOVER:
  501. if (val<0 || val>2)
  502. goto e_inval;
  503. np->pmtudisc = val;
  504. retv = 0;
  505. break;
  506. case IPV6_MTU:
  507. if (val && val < IPV6_MIN_MTU)
  508. goto e_inval;
  509. np->frag_size = val;
  510. retv = 0;
  511. break;
  512. case IPV6_RECVERR:
  513. np->recverr = valbool;
  514. if (!val)
  515. skb_queue_purge(&sk->sk_error_queue);
  516. retv = 0;
  517. break;
  518. case IPV6_FLOWINFO_SEND:
  519. np->sndflow = valbool;
  520. retv = 0;
  521. break;
  522. case IPV6_FLOWLABEL_MGR:
  523. retv = ipv6_flowlabel_opt(sk, optval, optlen);
  524. break;
  525. case IPV6_IPSEC_POLICY:
  526. case IPV6_XFRM_POLICY:
  527. retv = -EPERM;
  528. if (!capable(CAP_NET_ADMIN))
  529. break;
  530. retv = xfrm_user_policy(sk, optname, optval, optlen);
  531. break;
  532. #ifdef CONFIG_NETFILTER
  533. default:
  534. retv = nf_setsockopt(sk, PF_INET6, optname, optval,
  535. optlen);
  536. break;
  537. #endif
  538. }
  539. release_sock(sk);
  540. out:
  541. return retv;
  542. e_inval:
  543. release_sock(sk);
  544. return -EINVAL;
  545. }
  546. int ipv6_getsockopt_sticky(struct sock *sk, struct ipv6_opt_hdr *hdr,
  547. char __user *optval, int len)
  548. {
  549. if (!hdr)
  550. return 0;
  551. len = min_t(int, len, ipv6_optlen(hdr));
  552. if (copy_to_user(optval, hdr, ipv6_optlen(hdr)))
  553. return -EFAULT;
  554. return len;
  555. }
  556. int ipv6_getsockopt(struct sock *sk, int level, int optname,
  557. char __user *optval, int __user *optlen)
  558. {
  559. struct ipv6_pinfo *np = inet6_sk(sk);
  560. int len;
  561. int val;
  562. if (level == SOL_IP && sk->sk_type != SOCK_RAW)
  563. return udp_prot.getsockopt(sk, level, optname, optval, optlen);
  564. if(level!=SOL_IPV6)
  565. return -ENOPROTOOPT;
  566. if (get_user(len, optlen))
  567. return -EFAULT;
  568. switch (optname) {
  569. case IPV6_ADDRFORM:
  570. if (sk->sk_protocol != IPPROTO_UDP &&
  571. sk->sk_protocol != IPPROTO_TCP)
  572. return -EINVAL;
  573. if (sk->sk_state != TCP_ESTABLISHED)
  574. return -ENOTCONN;
  575. val = sk->sk_family;
  576. break;
  577. case MCAST_MSFILTER:
  578. {
  579. struct group_filter gsf;
  580. int err;
  581. if (len < GROUP_FILTER_SIZE(0))
  582. return -EINVAL;
  583. if (copy_from_user(&gsf, optval, GROUP_FILTER_SIZE(0)))
  584. return -EFAULT;
  585. lock_sock(sk);
  586. err = ip6_mc_msfget(sk, &gsf,
  587. (struct group_filter __user *)optval, optlen);
  588. release_sock(sk);
  589. return err;
  590. }
  591. case IPV6_2292PKTOPTIONS:
  592. {
  593. struct msghdr msg;
  594. struct sk_buff *skb;
  595. if (sk->sk_type != SOCK_STREAM)
  596. return -ENOPROTOOPT;
  597. msg.msg_control = optval;
  598. msg.msg_controllen = len;
  599. msg.msg_flags = 0;
  600. lock_sock(sk);
  601. skb = np->pktoptions;
  602. if (skb)
  603. atomic_inc(&skb->users);
  604. release_sock(sk);
  605. if (skb) {
  606. int err = datagram_recv_ctl(sk, &msg, skb);
  607. kfree_skb(skb);
  608. if (err)
  609. return err;
  610. } else {
  611. if (np->rxopt.bits.rxinfo) {
  612. struct in6_pktinfo src_info;
  613. src_info.ipi6_ifindex = np->mcast_oif;
  614. ipv6_addr_copy(&src_info.ipi6_addr, &np->daddr);
  615. put_cmsg(&msg, SOL_IPV6, IPV6_PKTINFO, sizeof(src_info), &src_info);
  616. }
  617. if (np->rxopt.bits.rxhlim) {
  618. int hlim = np->mcast_hops;
  619. put_cmsg(&msg, SOL_IPV6, IPV6_HOPLIMIT, sizeof(hlim), &hlim);
  620. }
  621. if (np->rxopt.bits.rxoinfo) {
  622. struct in6_pktinfo src_info;
  623. src_info.ipi6_ifindex = np->mcast_oif;
  624. ipv6_addr_copy(&src_info.ipi6_addr, &np->daddr);
  625. put_cmsg(&msg, SOL_IPV6, IPV6_2292PKTINFO, sizeof(src_info), &src_info);
  626. }
  627. if (np->rxopt.bits.rxohlim) {
  628. int hlim = np->mcast_hops;
  629. put_cmsg(&msg, SOL_IPV6, IPV6_2292HOPLIMIT, sizeof(hlim), &hlim);
  630. }
  631. }
  632. len -= msg.msg_controllen;
  633. return put_user(len, optlen);
  634. }
  635. case IPV6_MTU:
  636. {
  637. struct dst_entry *dst;
  638. val = 0;
  639. lock_sock(sk);
  640. dst = sk_dst_get(sk);
  641. if (dst) {
  642. val = dst_mtu(dst);
  643. dst_release(dst);
  644. }
  645. release_sock(sk);
  646. if (!val)
  647. return -ENOTCONN;
  648. break;
  649. }
  650. case IPV6_V6ONLY:
  651. val = np->ipv6only;
  652. break;
  653. case IPV6_RECVPKTINFO:
  654. val = np->rxopt.bits.rxinfo;
  655. break;
  656. case IPV6_2292PKTINFO:
  657. val = np->rxopt.bits.rxoinfo;
  658. break;
  659. case IPV6_RECVHOPLIMIT:
  660. val = np->rxopt.bits.rxhlim;
  661. break;
  662. case IPV6_2292HOPLIMIT:
  663. val = np->rxopt.bits.rxohlim;
  664. break;
  665. case IPV6_RECVRTHDR:
  666. val = np->rxopt.bits.srcrt;
  667. break;
  668. case IPV6_2292RTHDR:
  669. val = np->rxopt.bits.osrcrt;
  670. break;
  671. case IPV6_HOPOPTS:
  672. case IPV6_RTHDRDSTOPTS:
  673. case IPV6_RTHDR:
  674. case IPV6_DSTOPTS:
  675. {
  676. lock_sock(sk);
  677. len = ipv6_getsockopt_sticky(sk, np->opt->hopopt,
  678. optval, len);
  679. release_sock(sk);
  680. return put_user(len, optlen);
  681. }
  682. case IPV6_RECVHOPOPTS:
  683. val = np->rxopt.bits.hopopts;
  684. break;
  685. case IPV6_2292HOPOPTS:
  686. val = np->rxopt.bits.ohopopts;
  687. break;
  688. case IPV6_RECVDSTOPTS:
  689. val = np->rxopt.bits.dstopts;
  690. break;
  691. case IPV6_2292DSTOPTS:
  692. val = np->rxopt.bits.odstopts;
  693. break;
  694. case IPV6_FLOWINFO:
  695. val = np->rxopt.bits.rxflow;
  696. break;
  697. case IPV6_UNICAST_HOPS:
  698. val = np->hop_limit;
  699. break;
  700. case IPV6_MULTICAST_HOPS:
  701. val = np->mcast_hops;
  702. break;
  703. case IPV6_MULTICAST_LOOP:
  704. val = np->mc_loop;
  705. break;
  706. case IPV6_MULTICAST_IF:
  707. val = np->mcast_oif;
  708. break;
  709. case IPV6_MTU_DISCOVER:
  710. val = np->pmtudisc;
  711. break;
  712. case IPV6_RECVERR:
  713. val = np->recverr;
  714. break;
  715. case IPV6_FLOWINFO_SEND:
  716. val = np->sndflow;
  717. break;
  718. default:
  719. #ifdef CONFIG_NETFILTER
  720. lock_sock(sk);
  721. val = nf_getsockopt(sk, PF_INET6, optname, optval,
  722. &len);
  723. release_sock(sk);
  724. if (val >= 0)
  725. val = put_user(len, optlen);
  726. return val;
  727. #else
  728. return -EINVAL;
  729. #endif
  730. }
  731. len = min_t(unsigned int, sizeof(int), len);
  732. if(put_user(len, optlen))
  733. return -EFAULT;
  734. if(copy_to_user(optval,&val,len))
  735. return -EFAULT;
  736. return 0;
  737. }
  738. void __init ipv6_packet_init(void)
  739. {
  740. dev_add_pack(&ipv6_packet_type);
  741. }
  742. void ipv6_packet_cleanup(void)
  743. {
  744. dev_remove_pack(&ipv6_packet_type);
  745. }