ipv6.h 20 KB

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  1. /*
  2. * Linux INET6 implementation
  3. *
  4. * Authors:
  5. * Pedro Roque <roque@di.fc.ul.pt>
  6. *
  7. * This program is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU General Public License
  9. * as published by the Free Software Foundation; either version
  10. * 2 of the License, or (at your option) any later version.
  11. */
  12. #ifndef _NET_IPV6_H
  13. #define _NET_IPV6_H
  14. #include <linux/ipv6.h>
  15. #include <linux/hardirq.h>
  16. #include <net/if_inet6.h>
  17. #include <net/ndisc.h>
  18. #include <net/flow.h>
  19. #include <net/snmp.h>
  20. #define SIN6_LEN_RFC2133 24
  21. #define IPV6_MAXPLEN 65535
  22. /*
  23. * NextHeader field of IPv6 header
  24. */
  25. #define NEXTHDR_HOP 0 /* Hop-by-hop option header. */
  26. #define NEXTHDR_TCP 6 /* TCP segment. */
  27. #define NEXTHDR_UDP 17 /* UDP message. */
  28. #define NEXTHDR_IPV6 41 /* IPv6 in IPv6 */
  29. #define NEXTHDR_ROUTING 43 /* Routing header. */
  30. #define NEXTHDR_FRAGMENT 44 /* Fragmentation/reassembly header. */
  31. #define NEXTHDR_GRE 47 /* GRE header. */
  32. #define NEXTHDR_ESP 50 /* Encapsulating security payload. */
  33. #define NEXTHDR_AUTH 51 /* Authentication header. */
  34. #define NEXTHDR_ICMP 58 /* ICMP for IPv6. */
  35. #define NEXTHDR_NONE 59 /* No next header */
  36. #define NEXTHDR_DEST 60 /* Destination options header. */
  37. #define NEXTHDR_MOBILITY 135 /* Mobility header. */
  38. #define NEXTHDR_MAX 255
  39. #define IPV6_DEFAULT_HOPLIMIT 64
  40. #define IPV6_DEFAULT_MCASTHOPS 1
  41. /*
  42. * Addr type
  43. *
  44. * type - unicast | multicast
  45. * scope - local | site | global
  46. * v4 - compat
  47. * v4mapped
  48. * any
  49. * loopback
  50. */
  51. #define IPV6_ADDR_ANY 0x0000U
  52. #define IPV6_ADDR_UNICAST 0x0001U
  53. #define IPV6_ADDR_MULTICAST 0x0002U
  54. #define IPV6_ADDR_LOOPBACK 0x0010U
  55. #define IPV6_ADDR_LINKLOCAL 0x0020U
  56. #define IPV6_ADDR_SITELOCAL 0x0040U
  57. #define IPV6_ADDR_COMPATv4 0x0080U
  58. #define IPV6_ADDR_SCOPE_MASK 0x00f0U
  59. #define IPV6_ADDR_MAPPED 0x1000U
  60. /*
  61. * Addr scopes
  62. */
  63. #define IPV6_ADDR_MC_SCOPE(a) \
  64. ((a)->s6_addr[1] & 0x0f) /* nonstandard */
  65. #define __IPV6_ADDR_SCOPE_INVALID -1
  66. #define IPV6_ADDR_SCOPE_NODELOCAL 0x01
  67. #define IPV6_ADDR_SCOPE_LINKLOCAL 0x02
  68. #define IPV6_ADDR_SCOPE_SITELOCAL 0x05
  69. #define IPV6_ADDR_SCOPE_ORGLOCAL 0x08
  70. #define IPV6_ADDR_SCOPE_GLOBAL 0x0e
  71. /*
  72. * Addr flags
  73. */
  74. #define IPV6_ADDR_MC_FLAG_TRANSIENT(a) \
  75. ((a)->s6_addr[1] & 0x10)
  76. #define IPV6_ADDR_MC_FLAG_PREFIX(a) \
  77. ((a)->s6_addr[1] & 0x20)
  78. #define IPV6_ADDR_MC_FLAG_RENDEZVOUS(a) \
  79. ((a)->s6_addr[1] & 0x40)
  80. /*
  81. * fragmentation header
  82. */
  83. struct frag_hdr {
  84. __u8 nexthdr;
  85. __u8 reserved;
  86. __be16 frag_off;
  87. __be32 identification;
  88. };
  89. #define IP6_MF 0x0001
  90. #include <net/sock.h>
  91. /* sysctls */
  92. extern int sysctl_mld_max_msf;
  93. #define _DEVINC(net, statname, modifier, idev, field) \
  94. ({ \
  95. struct inet6_dev *_idev = (idev); \
  96. if (likely(_idev != NULL)) \
  97. SNMP_INC_STATS##modifier((_idev)->stats.statname, (field)); \
  98. SNMP_INC_STATS##modifier((net)->mib.statname##_statistics, (field));\
  99. })
  100. /* per device counters are atomic_long_t */
  101. #define _DEVINCATOMIC(net, statname, modifier, idev, field) \
  102. ({ \
  103. struct inet6_dev *_idev = (idev); \
  104. if (likely(_idev != NULL)) \
  105. SNMP_INC_STATS_ATOMIC_LONG((_idev)->stats.statname##dev, (field)); \
  106. SNMP_INC_STATS##modifier((net)->mib.statname##_statistics, (field));\
  107. })
  108. /* per device and per net counters are atomic_long_t */
  109. #define _DEVINC_ATOMIC_ATOMIC(net, statname, idev, field) \
  110. ({ \
  111. struct inet6_dev *_idev = (idev); \
  112. if (likely(_idev != NULL)) \
  113. SNMP_INC_STATS_ATOMIC_LONG((_idev)->stats.statname##dev, (field)); \
  114. SNMP_INC_STATS_ATOMIC_LONG((net)->mib.statname##_statistics, (field));\
  115. })
  116. #define _DEVADD(net, statname, modifier, idev, field, val) \
  117. ({ \
  118. struct inet6_dev *_idev = (idev); \
  119. if (likely(_idev != NULL)) \
  120. SNMP_ADD_STATS##modifier((_idev)->stats.statname, (field), (val)); \
  121. SNMP_ADD_STATS##modifier((net)->mib.statname##_statistics, (field), (val));\
  122. })
  123. #define _DEVUPD(net, statname, modifier, idev, field, val) \
  124. ({ \
  125. struct inet6_dev *_idev = (idev); \
  126. if (likely(_idev != NULL)) \
  127. SNMP_UPD_PO_STATS##modifier((_idev)->stats.statname, field, (val)); \
  128. SNMP_UPD_PO_STATS##modifier((net)->mib.statname##_statistics, field, (val));\
  129. })
  130. /* MIBs */
  131. #define IP6_INC_STATS(net, idev,field) \
  132. _DEVINC(net, ipv6, 64, idev, field)
  133. #define IP6_INC_STATS_BH(net, idev,field) \
  134. _DEVINC(net, ipv6, 64_BH, idev, field)
  135. #define IP6_ADD_STATS(net, idev,field,val) \
  136. _DEVADD(net, ipv6, 64, idev, field, val)
  137. #define IP6_ADD_STATS_BH(net, idev,field,val) \
  138. _DEVADD(net, ipv6, 64_BH, idev, field, val)
  139. #define IP6_UPD_PO_STATS(net, idev,field,val) \
  140. _DEVUPD(net, ipv6, 64, idev, field, val)
  141. #define IP6_UPD_PO_STATS_BH(net, idev,field,val) \
  142. _DEVUPD(net, ipv6, 64_BH, idev, field, val)
  143. #define ICMP6_INC_STATS(net, idev, field) \
  144. _DEVINCATOMIC(net, icmpv6, , idev, field)
  145. #define ICMP6_INC_STATS_BH(net, idev, field) \
  146. _DEVINCATOMIC(net, icmpv6, _BH, idev, field)
  147. #define ICMP6MSGOUT_INC_STATS(net, idev, field) \
  148. _DEVINC_ATOMIC_ATOMIC(net, icmpv6msg, idev, field +256)
  149. #define ICMP6MSGOUT_INC_STATS_BH(net, idev, field) \
  150. _DEVINC_ATOMIC_ATOMIC(net, icmpv6msg, idev, field +256)
  151. #define ICMP6MSGIN_INC_STATS_BH(net, idev, field) \
  152. _DEVINC_ATOMIC_ATOMIC(net, icmpv6msg, idev, field)
  153. struct ip6_ra_chain {
  154. struct ip6_ra_chain *next;
  155. struct sock *sk;
  156. int sel;
  157. void (*destructor)(struct sock *);
  158. };
  159. extern struct ip6_ra_chain *ip6_ra_chain;
  160. extern rwlock_t ip6_ra_lock;
  161. /*
  162. This structure is prepared by protocol, when parsing
  163. ancillary data and passed to IPv6.
  164. */
  165. struct ipv6_txoptions {
  166. /* Length of this structure */
  167. int tot_len;
  168. /* length of extension headers */
  169. __u16 opt_flen; /* after fragment hdr */
  170. __u16 opt_nflen; /* before fragment hdr */
  171. struct ipv6_opt_hdr *hopopt;
  172. struct ipv6_opt_hdr *dst0opt;
  173. struct ipv6_rt_hdr *srcrt; /* Routing Header */
  174. struct ipv6_opt_hdr *dst1opt;
  175. /* Option buffer, as read by IPV6_PKTOPTIONS, starts here. */
  176. };
  177. struct ip6_flowlabel {
  178. struct ip6_flowlabel *next;
  179. __be32 label;
  180. atomic_t users;
  181. struct in6_addr dst;
  182. struct ipv6_txoptions *opt;
  183. unsigned long linger;
  184. u8 share;
  185. union {
  186. struct pid *pid;
  187. kuid_t uid;
  188. } owner;
  189. unsigned long lastuse;
  190. unsigned long expires;
  191. struct net *fl_net;
  192. };
  193. #define IPV6_FLOWINFO_MASK cpu_to_be32(0x0FFFFFFF)
  194. #define IPV6_FLOWLABEL_MASK cpu_to_be32(0x000FFFFF)
  195. struct ipv6_fl_socklist {
  196. struct ipv6_fl_socklist *next;
  197. struct ip6_flowlabel *fl;
  198. };
  199. extern struct ip6_flowlabel *fl6_sock_lookup(struct sock *sk, __be32 label);
  200. extern struct ipv6_txoptions *fl6_merge_options(struct ipv6_txoptions * opt_space,
  201. struct ip6_flowlabel * fl,
  202. struct ipv6_txoptions * fopt);
  203. extern void fl6_free_socklist(struct sock *sk);
  204. extern int ipv6_flowlabel_opt(struct sock *sk, char __user *optval, int optlen);
  205. extern int ip6_flowlabel_init(void);
  206. extern void ip6_flowlabel_cleanup(void);
  207. static inline void fl6_sock_release(struct ip6_flowlabel *fl)
  208. {
  209. if (fl)
  210. atomic_dec(&fl->users);
  211. }
  212. extern void icmpv6_notify(struct sk_buff *skb, u8 type, u8 code, __be32 info);
  213. extern int ip6_ra_control(struct sock *sk, int sel);
  214. extern int ipv6_parse_hopopts(struct sk_buff *skb);
  215. extern struct ipv6_txoptions * ipv6_dup_options(struct sock *sk, struct ipv6_txoptions *opt);
  216. extern struct ipv6_txoptions * ipv6_renew_options(struct sock *sk, struct ipv6_txoptions *opt,
  217. int newtype,
  218. struct ipv6_opt_hdr __user *newopt,
  219. int newoptlen);
  220. struct ipv6_txoptions *ipv6_fixup_options(struct ipv6_txoptions *opt_space,
  221. struct ipv6_txoptions *opt);
  222. extern bool ipv6_opt_accepted(const struct sock *sk, const struct sk_buff *skb);
  223. #if IS_ENABLED(CONFIG_IPV6)
  224. static inline int ip6_frag_nqueues(struct net *net)
  225. {
  226. return net->ipv6.frags.nqueues;
  227. }
  228. static inline int ip6_frag_mem(struct net *net)
  229. {
  230. return atomic_read(&net->ipv6.frags.mem);
  231. }
  232. #endif
  233. #define IPV6_FRAG_HIGH_THRESH (256 * 1024) /* 262144 */
  234. #define IPV6_FRAG_LOW_THRESH (192 * 1024) /* 196608 */
  235. #define IPV6_FRAG_TIMEOUT (60 * HZ) /* 60 seconds */
  236. extern int __ipv6_addr_type(const struct in6_addr *addr);
  237. static inline int ipv6_addr_type(const struct in6_addr *addr)
  238. {
  239. return __ipv6_addr_type(addr) & 0xffff;
  240. }
  241. static inline int ipv6_addr_scope(const struct in6_addr *addr)
  242. {
  243. return __ipv6_addr_type(addr) & IPV6_ADDR_SCOPE_MASK;
  244. }
  245. static inline int __ipv6_addr_src_scope(int type)
  246. {
  247. return (type == IPV6_ADDR_ANY) ? __IPV6_ADDR_SCOPE_INVALID : (type >> 16);
  248. }
  249. static inline int ipv6_addr_src_scope(const struct in6_addr *addr)
  250. {
  251. return __ipv6_addr_src_scope(__ipv6_addr_type(addr));
  252. }
  253. static inline int ipv6_addr_cmp(const struct in6_addr *a1, const struct in6_addr *a2)
  254. {
  255. return memcmp(a1, a2, sizeof(struct in6_addr));
  256. }
  257. static inline bool
  258. ipv6_masked_addr_cmp(const struct in6_addr *a1, const struct in6_addr *m,
  259. const struct in6_addr *a2)
  260. {
  261. #if defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) && BITS_PER_LONG == 64
  262. const unsigned long *ul1 = (const unsigned long *)a1;
  263. const unsigned long *ulm = (const unsigned long *)m;
  264. const unsigned long *ul2 = (const unsigned long *)a2;
  265. return !!(((ul1[0] ^ ul2[0]) & ulm[0]) |
  266. ((ul1[1] ^ ul2[1]) & ulm[1]));
  267. #else
  268. return !!(((a1->s6_addr32[0] ^ a2->s6_addr32[0]) & m->s6_addr32[0]) |
  269. ((a1->s6_addr32[1] ^ a2->s6_addr32[1]) & m->s6_addr32[1]) |
  270. ((a1->s6_addr32[2] ^ a2->s6_addr32[2]) & m->s6_addr32[2]) |
  271. ((a1->s6_addr32[3] ^ a2->s6_addr32[3]) & m->s6_addr32[3]));
  272. #endif
  273. }
  274. static inline void ipv6_addr_prefix(struct in6_addr *pfx,
  275. const struct in6_addr *addr,
  276. int plen)
  277. {
  278. /* caller must guarantee 0 <= plen <= 128 */
  279. int o = plen >> 3,
  280. b = plen & 0x7;
  281. memset(pfx->s6_addr, 0, sizeof(pfx->s6_addr));
  282. memcpy(pfx->s6_addr, addr, o);
  283. if (b != 0)
  284. pfx->s6_addr[o] = addr->s6_addr[o] & (0xff00 >> b);
  285. }
  286. static inline void ipv6_addr_set(struct in6_addr *addr,
  287. __be32 w1, __be32 w2,
  288. __be32 w3, __be32 w4)
  289. {
  290. addr->s6_addr32[0] = w1;
  291. addr->s6_addr32[1] = w2;
  292. addr->s6_addr32[2] = w3;
  293. addr->s6_addr32[3] = w4;
  294. }
  295. static inline bool ipv6_addr_equal(const struct in6_addr *a1,
  296. const struct in6_addr *a2)
  297. {
  298. #if defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) && BITS_PER_LONG == 64
  299. const unsigned long *ul1 = (const unsigned long *)a1;
  300. const unsigned long *ul2 = (const unsigned long *)a2;
  301. return ((ul1[0] ^ ul2[0]) | (ul1[1] ^ ul2[1])) == 0UL;
  302. #else
  303. return ((a1->s6_addr32[0] ^ a2->s6_addr32[0]) |
  304. (a1->s6_addr32[1] ^ a2->s6_addr32[1]) |
  305. (a1->s6_addr32[2] ^ a2->s6_addr32[2]) |
  306. (a1->s6_addr32[3] ^ a2->s6_addr32[3])) == 0;
  307. #endif
  308. }
  309. static inline bool __ipv6_prefix_equal(const __be32 *a1, const __be32 *a2,
  310. unsigned int prefixlen)
  311. {
  312. unsigned int pdw, pbi;
  313. /* check complete u32 in prefix */
  314. pdw = prefixlen >> 5;
  315. if (pdw && memcmp(a1, a2, pdw << 2))
  316. return false;
  317. /* check incomplete u32 in prefix */
  318. pbi = prefixlen & 0x1f;
  319. if (pbi && ((a1[pdw] ^ a2[pdw]) & htonl((0xffffffff) << (32 - pbi))))
  320. return false;
  321. return true;
  322. }
  323. static inline bool ipv6_prefix_equal(const struct in6_addr *a1,
  324. const struct in6_addr *a2,
  325. unsigned int prefixlen)
  326. {
  327. return __ipv6_prefix_equal(a1->s6_addr32, a2->s6_addr32,
  328. prefixlen);
  329. }
  330. struct inet_frag_queue;
  331. enum ip6_defrag_users {
  332. IP6_DEFRAG_LOCAL_DELIVER,
  333. IP6_DEFRAG_CONNTRACK_IN,
  334. __IP6_DEFRAG_CONNTRACK_IN = IP6_DEFRAG_CONNTRACK_IN + USHRT_MAX,
  335. IP6_DEFRAG_CONNTRACK_OUT,
  336. __IP6_DEFRAG_CONNTRACK_OUT = IP6_DEFRAG_CONNTRACK_OUT + USHRT_MAX,
  337. IP6_DEFRAG_CONNTRACK_BRIDGE_IN,
  338. __IP6_DEFRAG_CONNTRACK_BRIDGE_IN = IP6_DEFRAG_CONNTRACK_BRIDGE_IN + USHRT_MAX,
  339. };
  340. struct ip6_create_arg {
  341. __be32 id;
  342. u32 user;
  343. const struct in6_addr *src;
  344. const struct in6_addr *dst;
  345. };
  346. void ip6_frag_init(struct inet_frag_queue *q, void *a);
  347. bool ip6_frag_match(struct inet_frag_queue *q, void *a);
  348. /*
  349. * Equivalent of ipv4 struct ip
  350. */
  351. struct frag_queue {
  352. struct inet_frag_queue q;
  353. __be32 id; /* fragment id */
  354. u32 user;
  355. struct in6_addr saddr;
  356. struct in6_addr daddr;
  357. int iif;
  358. unsigned int csum;
  359. __u16 nhoffset;
  360. };
  361. void ip6_expire_frag_queue(struct net *net, struct frag_queue *fq,
  362. struct inet_frags *frags);
  363. static inline bool ipv6_addr_any(const struct in6_addr *a)
  364. {
  365. #if defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) && BITS_PER_LONG == 64
  366. const unsigned long *ul = (const unsigned long *)a;
  367. return (ul[0] | ul[1]) == 0UL;
  368. #else
  369. return (a->s6_addr32[0] | a->s6_addr32[1] |
  370. a->s6_addr32[2] | a->s6_addr32[3]) == 0;
  371. #endif
  372. }
  373. static inline u32 ipv6_addr_hash(const struct in6_addr *a)
  374. {
  375. #if defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) && BITS_PER_LONG == 64
  376. const unsigned long *ul = (const unsigned long *)a;
  377. unsigned long x = ul[0] ^ ul[1];
  378. return (u32)(x ^ (x >> 32));
  379. #else
  380. return (__force u32)(a->s6_addr32[0] ^ a->s6_addr32[1] ^
  381. a->s6_addr32[2] ^ a->s6_addr32[3]);
  382. #endif
  383. }
  384. static inline bool ipv6_addr_loopback(const struct in6_addr *a)
  385. {
  386. return (a->s6_addr32[0] | a->s6_addr32[1] |
  387. a->s6_addr32[2] | (a->s6_addr32[3] ^ htonl(1))) == 0;
  388. }
  389. static inline bool ipv6_addr_v4mapped(const struct in6_addr *a)
  390. {
  391. return (a->s6_addr32[0] | a->s6_addr32[1] |
  392. (a->s6_addr32[2] ^ htonl(0x0000ffff))) == 0;
  393. }
  394. /*
  395. * Check for a RFC 4843 ORCHID address
  396. * (Overlay Routable Cryptographic Hash Identifiers)
  397. */
  398. static inline bool ipv6_addr_orchid(const struct in6_addr *a)
  399. {
  400. return (a->s6_addr32[0] & htonl(0xfffffff0)) == htonl(0x20010010);
  401. }
  402. static inline void ipv6_addr_set_v4mapped(const __be32 addr,
  403. struct in6_addr *v4mapped)
  404. {
  405. ipv6_addr_set(v4mapped,
  406. 0, 0,
  407. htonl(0x0000FFFF),
  408. addr);
  409. }
  410. /*
  411. * find the first different bit between two addresses
  412. * length of address must be a multiple of 32bits
  413. */
  414. static inline int __ipv6_addr_diff(const void *token1, const void *token2, int addrlen)
  415. {
  416. const __be32 *a1 = token1, *a2 = token2;
  417. int i;
  418. addrlen >>= 2;
  419. for (i = 0; i < addrlen; i++) {
  420. __be32 xb = a1[i] ^ a2[i];
  421. if (xb)
  422. return i * 32 + 31 - __fls(ntohl(xb));
  423. }
  424. /*
  425. * we should *never* get to this point since that
  426. * would mean the addrs are equal
  427. *
  428. * However, we do get to it 8) And exacly, when
  429. * addresses are equal 8)
  430. *
  431. * ip route add 1111::/128 via ...
  432. * ip route add 1111::/64 via ...
  433. * and we are here.
  434. *
  435. * Ideally, this function should stop comparison
  436. * at prefix length. It does not, but it is still OK,
  437. * if returned value is greater than prefix length.
  438. * --ANK (980803)
  439. */
  440. return addrlen << 5;
  441. }
  442. static inline int ipv6_addr_diff(const struct in6_addr *a1, const struct in6_addr *a2)
  443. {
  444. return __ipv6_addr_diff(a1, a2, sizeof(struct in6_addr));
  445. }
  446. extern void ipv6_select_ident(struct frag_hdr *fhdr, struct rt6_info *rt);
  447. /*
  448. * Prototypes exported by ipv6
  449. */
  450. /*
  451. * rcv function (called from netdevice level)
  452. */
  453. extern int ipv6_rcv(struct sk_buff *skb,
  454. struct net_device *dev,
  455. struct packet_type *pt,
  456. struct net_device *orig_dev);
  457. extern int ip6_rcv_finish(struct sk_buff *skb);
  458. /*
  459. * upper-layer output functions
  460. */
  461. extern int ip6_xmit(struct sock *sk,
  462. struct sk_buff *skb,
  463. struct flowi6 *fl6,
  464. struct ipv6_txoptions *opt,
  465. int tclass);
  466. extern int ip6_nd_hdr(struct sock *sk,
  467. struct sk_buff *skb,
  468. struct net_device *dev,
  469. const struct in6_addr *saddr,
  470. const struct in6_addr *daddr,
  471. int proto, int len);
  472. extern int ip6_find_1stfragopt(struct sk_buff *skb, u8 **nexthdr);
  473. extern int ip6_append_data(struct sock *sk,
  474. int getfrag(void *from, char *to, int offset, int len, int odd, struct sk_buff *skb),
  475. void *from,
  476. int length,
  477. int transhdrlen,
  478. int hlimit,
  479. int tclass,
  480. struct ipv6_txoptions *opt,
  481. struct flowi6 *fl6,
  482. struct rt6_info *rt,
  483. unsigned int flags,
  484. int dontfrag);
  485. extern int ip6_push_pending_frames(struct sock *sk);
  486. extern void ip6_flush_pending_frames(struct sock *sk);
  487. extern int ip6_dst_lookup(struct sock *sk,
  488. struct dst_entry **dst,
  489. struct flowi6 *fl6);
  490. extern struct dst_entry * ip6_dst_lookup_flow(struct sock *sk,
  491. struct flowi6 *fl6,
  492. const struct in6_addr *final_dst,
  493. bool can_sleep);
  494. extern struct dst_entry * ip6_sk_dst_lookup_flow(struct sock *sk,
  495. struct flowi6 *fl6,
  496. const struct in6_addr *final_dst,
  497. bool can_sleep);
  498. extern struct dst_entry * ip6_blackhole_route(struct net *net,
  499. struct dst_entry *orig_dst);
  500. /*
  501. * skb processing functions
  502. */
  503. extern int ip6_output(struct sk_buff *skb);
  504. extern int ip6_forward(struct sk_buff *skb);
  505. extern int ip6_input(struct sk_buff *skb);
  506. extern int ip6_mc_input(struct sk_buff *skb);
  507. extern int __ip6_local_out(struct sk_buff *skb);
  508. extern int ip6_local_out(struct sk_buff *skb);
  509. /*
  510. * Extension header (options) processing
  511. */
  512. extern void ipv6_push_nfrag_opts(struct sk_buff *skb,
  513. struct ipv6_txoptions *opt,
  514. u8 *proto,
  515. struct in6_addr **daddr_p);
  516. extern void ipv6_push_frag_opts(struct sk_buff *skb,
  517. struct ipv6_txoptions *opt,
  518. u8 *proto);
  519. extern int ipv6_skip_exthdr(const struct sk_buff *, int start,
  520. u8 *nexthdrp, __be16 *frag_offp);
  521. extern bool ipv6_ext_hdr(u8 nexthdr);
  522. extern int ipv6_find_tlv(struct sk_buff *skb, int offset, int type);
  523. extern struct in6_addr *fl6_update_dst(struct flowi6 *fl6,
  524. const struct ipv6_txoptions *opt,
  525. struct in6_addr *orig);
  526. /*
  527. * socket options (ipv6_sockglue.c)
  528. */
  529. extern int ipv6_setsockopt(struct sock *sk, int level,
  530. int optname,
  531. char __user *optval,
  532. unsigned int optlen);
  533. extern int ipv6_getsockopt(struct sock *sk, int level,
  534. int optname,
  535. char __user *optval,
  536. int __user *optlen);
  537. extern int compat_ipv6_setsockopt(struct sock *sk,
  538. int level,
  539. int optname,
  540. char __user *optval,
  541. unsigned int optlen);
  542. extern int compat_ipv6_getsockopt(struct sock *sk,
  543. int level,
  544. int optname,
  545. char __user *optval,
  546. int __user *optlen);
  547. extern int ip6_datagram_connect(struct sock *sk,
  548. struct sockaddr *addr, int addr_len);
  549. extern int ipv6_recv_error(struct sock *sk, struct msghdr *msg, int len);
  550. extern int ipv6_recv_rxpmtu(struct sock *sk, struct msghdr *msg, int len);
  551. extern void ipv6_icmp_error(struct sock *sk, struct sk_buff *skb, int err, __be16 port,
  552. u32 info, u8 *payload);
  553. extern void ipv6_local_error(struct sock *sk, int err, struct flowi6 *fl6, u32 info);
  554. extern void ipv6_local_rxpmtu(struct sock *sk, struct flowi6 *fl6, u32 mtu);
  555. extern int inet6_release(struct socket *sock);
  556. extern int inet6_bind(struct socket *sock, struct sockaddr *uaddr,
  557. int addr_len);
  558. extern int inet6_getname(struct socket *sock, struct sockaddr *uaddr,
  559. int *uaddr_len, int peer);
  560. extern int inet6_ioctl(struct socket *sock, unsigned int cmd,
  561. unsigned long arg);
  562. extern int inet6_hash_connect(struct inet_timewait_death_row *death_row,
  563. struct sock *sk);
  564. /*
  565. * reassembly.c
  566. */
  567. extern const struct proto_ops inet6_stream_ops;
  568. extern const struct proto_ops inet6_dgram_ops;
  569. struct group_source_req;
  570. struct group_filter;
  571. extern int ip6_mc_source(int add, int omode, struct sock *sk,
  572. struct group_source_req *pgsr);
  573. extern int ip6_mc_msfilter(struct sock *sk, struct group_filter *gsf);
  574. extern int ip6_mc_msfget(struct sock *sk, struct group_filter *gsf,
  575. struct group_filter __user *optval,
  576. int __user *optlen);
  577. extern unsigned int inet6_hash_frag(__be32 id, const struct in6_addr *saddr,
  578. const struct in6_addr *daddr, u32 rnd);
  579. #ifdef CONFIG_PROC_FS
  580. extern int ac6_proc_init(struct net *net);
  581. extern void ac6_proc_exit(struct net *net);
  582. extern int raw6_proc_init(void);
  583. extern void raw6_proc_exit(void);
  584. extern int tcp6_proc_init(struct net *net);
  585. extern void tcp6_proc_exit(struct net *net);
  586. extern int udp6_proc_init(struct net *net);
  587. extern void udp6_proc_exit(struct net *net);
  588. extern int udplite6_proc_init(void);
  589. extern void udplite6_proc_exit(void);
  590. extern int ipv6_misc_proc_init(void);
  591. extern void ipv6_misc_proc_exit(void);
  592. extern int snmp6_register_dev(struct inet6_dev *idev);
  593. extern int snmp6_unregister_dev(struct inet6_dev *idev);
  594. #else
  595. static inline int ac6_proc_init(struct net *net) { return 0; }
  596. static inline void ac6_proc_exit(struct net *net) { }
  597. static inline int snmp6_register_dev(struct inet6_dev *idev) { return 0; }
  598. static inline int snmp6_unregister_dev(struct inet6_dev *idev) { return 0; }
  599. #endif
  600. #ifdef CONFIG_SYSCTL
  601. extern ctl_table ipv6_route_table_template[];
  602. extern ctl_table ipv6_icmp_table_template[];
  603. extern struct ctl_table *ipv6_icmp_sysctl_init(struct net *net);
  604. extern struct ctl_table *ipv6_route_sysctl_init(struct net *net);
  605. extern int ipv6_sysctl_register(void);
  606. extern void ipv6_sysctl_unregister(void);
  607. #endif
  608. #endif /* _NET_IPV6_H */