addrconf.h 11 KB

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  1. #ifndef _ADDRCONF_H
  2. #define _ADDRCONF_H
  3. #define MAX_RTR_SOLICITATIONS 3
  4. #define RTR_SOLICITATION_INTERVAL (4*HZ)
  5. #define MIN_VALID_LIFETIME (2*3600) /* 2 hours */
  6. #define TEMP_VALID_LIFETIME (7*86400)
  7. #define TEMP_PREFERRED_LIFETIME (86400)
  8. #define REGEN_MAX_RETRY (3)
  9. #define MAX_DESYNC_FACTOR (600)
  10. #define ADDR_CHECK_FREQUENCY (120*HZ)
  11. #define IPV6_MAX_ADDRESSES 16
  12. #define ADDRCONF_TIMER_FUZZ_MINUS (HZ > 50 ? HZ / 50 : 1)
  13. #define ADDRCONF_TIMER_FUZZ (HZ / 4)
  14. #define ADDRCONF_TIMER_FUZZ_MAX (HZ)
  15. #include <linux/in.h>
  16. #include <linux/in6.h>
  17. struct prefix_info {
  18. __u8 type;
  19. __u8 length;
  20. __u8 prefix_len;
  21. #if defined(__BIG_ENDIAN_BITFIELD)
  22. __u8 onlink : 1,
  23. autoconf : 1,
  24. reserved : 6;
  25. #elif defined(__LITTLE_ENDIAN_BITFIELD)
  26. __u8 reserved : 6,
  27. autoconf : 1,
  28. onlink : 1;
  29. #else
  30. #error "Please fix <asm/byteorder.h>"
  31. #endif
  32. __be32 valid;
  33. __be32 prefered;
  34. __be32 reserved2;
  35. struct in6_addr prefix;
  36. };
  37. #include <linux/netdevice.h>
  38. #include <net/if_inet6.h>
  39. #include <net/ipv6.h>
  40. #define IN6_ADDR_HSIZE_SHIFT 4
  41. #define IN6_ADDR_HSIZE (1 << IN6_ADDR_HSIZE_SHIFT)
  42. int addrconf_init(void);
  43. void addrconf_cleanup(void);
  44. int addrconf_add_ifaddr(struct net *net, void __user *arg);
  45. int addrconf_del_ifaddr(struct net *net, void __user *arg);
  46. int addrconf_set_dstaddr(struct net *net, void __user *arg);
  47. int ipv6_chk_addr(struct net *net, const struct in6_addr *addr,
  48. const struct net_device *dev, int strict);
  49. int ipv6_chk_addr_and_flags(struct net *net, const struct in6_addr *addr,
  50. const struct net_device *dev, int strict,
  51. u32 banned_flags);
  52. #if defined(CONFIG_IPV6_MIP6) || defined(CONFIG_IPV6_MIP6_MODULE)
  53. int ipv6_chk_home_addr(struct net *net, const struct in6_addr *addr);
  54. #endif
  55. bool ipv6_chk_custom_prefix(const struct in6_addr *addr,
  56. const unsigned int prefix_len,
  57. struct net_device *dev);
  58. int ipv6_chk_prefix(const struct in6_addr *addr, struct net_device *dev);
  59. struct inet6_ifaddr *ipv6_get_ifaddr(struct net *net,
  60. const struct in6_addr *addr,
  61. struct net_device *dev, int strict);
  62. int ipv6_dev_get_saddr(struct net *net, const struct net_device *dev,
  63. const struct in6_addr *daddr, unsigned int srcprefs,
  64. struct in6_addr *saddr);
  65. int __ipv6_get_lladdr(struct inet6_dev *idev, struct in6_addr *addr,
  66. u32 banned_flags);
  67. int ipv6_get_lladdr(struct net_device *dev, struct in6_addr *addr,
  68. u32 banned_flags);
  69. int ipv4_rcv_saddr_equal(const struct sock *sk, const struct sock *sk2,
  70. bool match_wildcard);
  71. int ipv6_rcv_saddr_equal(const struct sock *sk, const struct sock *sk2,
  72. bool match_wildcard);
  73. void addrconf_join_solict(struct net_device *dev, const struct in6_addr *addr);
  74. void addrconf_leave_solict(struct inet6_dev *idev, const struct in6_addr *addr);
  75. static inline int addrconf_ifid_eui48(u8 *eui, struct net_device *dev)
  76. {
  77. if (dev->addr_len != ETH_ALEN)
  78. return -1;
  79. memcpy(eui, dev->dev_addr, 3);
  80. memcpy(eui + 5, dev->dev_addr + 3, 3);
  81. /*
  82. * The zSeries OSA network cards can be shared among various
  83. * OS instances, but the OSA cards have only one MAC address.
  84. * This leads to duplicate address conflicts in conjunction
  85. * with IPv6 if more than one instance uses the same card.
  86. *
  87. * The driver for these cards can deliver a unique 16-bit
  88. * identifier for each instance sharing the same card. It is
  89. * placed instead of 0xFFFE in the interface identifier. The
  90. * "u" bit of the interface identifier is not inverted in this
  91. * case. Hence the resulting interface identifier has local
  92. * scope according to RFC2373.
  93. */
  94. if (dev->dev_id) {
  95. eui[3] = (dev->dev_id >> 8) & 0xFF;
  96. eui[4] = dev->dev_id & 0xFF;
  97. } else {
  98. eui[3] = 0xFF;
  99. eui[4] = 0xFE;
  100. eui[0] ^= 2;
  101. }
  102. return 0;
  103. }
  104. static inline unsigned long addrconf_timeout_fixup(u32 timeout,
  105. unsigned int unit)
  106. {
  107. if (timeout == 0xffffffff)
  108. return ~0UL;
  109. /*
  110. * Avoid arithmetic overflow.
  111. * Assuming unit is constant and non-zero, this "if" statement
  112. * will go away on 64bit archs.
  113. */
  114. if (0xfffffffe > LONG_MAX / unit && timeout > LONG_MAX / unit)
  115. return LONG_MAX / unit;
  116. return timeout;
  117. }
  118. static inline int addrconf_finite_timeout(unsigned long timeout)
  119. {
  120. return ~timeout;
  121. }
  122. /*
  123. * IPv6 Address Label subsystem (addrlabel.c)
  124. */
  125. int ipv6_addr_label_init(void);
  126. void ipv6_addr_label_cleanup(void);
  127. void ipv6_addr_label_rtnl_register(void);
  128. u32 ipv6_addr_label(struct net *net, const struct in6_addr *addr,
  129. int type, int ifindex);
  130. /*
  131. * multicast prototypes (mcast.c)
  132. */
  133. int ipv6_sock_mc_join(struct sock *sk, int ifindex,
  134. const struct in6_addr *addr);
  135. int ipv6_sock_mc_drop(struct sock *sk, int ifindex,
  136. const struct in6_addr *addr);
  137. void ipv6_sock_mc_close(struct sock *sk);
  138. bool inet6_mc_check(struct sock *sk, const struct in6_addr *mc_addr,
  139. const struct in6_addr *src_addr);
  140. int ipv6_dev_mc_inc(struct net_device *dev, const struct in6_addr *addr);
  141. int __ipv6_dev_mc_dec(struct inet6_dev *idev, const struct in6_addr *addr);
  142. int ipv6_dev_mc_dec(struct net_device *dev, const struct in6_addr *addr);
  143. void ipv6_mc_up(struct inet6_dev *idev);
  144. void ipv6_mc_down(struct inet6_dev *idev);
  145. void ipv6_mc_unmap(struct inet6_dev *idev);
  146. void ipv6_mc_remap(struct inet6_dev *idev);
  147. void ipv6_mc_init_dev(struct inet6_dev *idev);
  148. void ipv6_mc_destroy_dev(struct inet6_dev *idev);
  149. int ipv6_mc_check_mld(struct sk_buff *skb, struct sk_buff **skb_trimmed);
  150. void addrconf_dad_failure(struct inet6_ifaddr *ifp);
  151. bool ipv6_chk_mcast_addr(struct net_device *dev, const struct in6_addr *group,
  152. const struct in6_addr *src_addr);
  153. void ipv6_mc_dad_complete(struct inet6_dev *idev);
  154. /* A stub used by vxlan module. This is ugly, ideally these
  155. * symbols should be built into the core kernel.
  156. */
  157. struct ipv6_stub {
  158. int (*ipv6_sock_mc_join)(struct sock *sk, int ifindex,
  159. const struct in6_addr *addr);
  160. int (*ipv6_sock_mc_drop)(struct sock *sk, int ifindex,
  161. const struct in6_addr *addr);
  162. int (*ipv6_dst_lookup)(struct net *net, struct sock *sk,
  163. struct dst_entry **dst, struct flowi6 *fl6);
  164. void (*udpv6_encap_enable)(void);
  165. void (*ndisc_send_na)(struct net_device *dev, const struct in6_addr *daddr,
  166. const struct in6_addr *solicited_addr,
  167. bool router, bool solicited, bool override, bool inc_opt);
  168. struct neigh_table *nd_tbl;
  169. };
  170. extern const struct ipv6_stub *ipv6_stub __read_mostly;
  171. /*
  172. * identify MLD packets for MLD filter exceptions
  173. */
  174. static inline bool ipv6_is_mld(struct sk_buff *skb, int nexthdr, int offset)
  175. {
  176. struct icmp6hdr *hdr;
  177. if (nexthdr != IPPROTO_ICMPV6 ||
  178. !pskb_network_may_pull(skb, offset + sizeof(struct icmp6hdr)))
  179. return false;
  180. hdr = (struct icmp6hdr *)(skb_network_header(skb) + offset);
  181. switch (hdr->icmp6_type) {
  182. case ICMPV6_MGM_QUERY:
  183. case ICMPV6_MGM_REPORT:
  184. case ICMPV6_MGM_REDUCTION:
  185. case ICMPV6_MLD2_REPORT:
  186. return true;
  187. default:
  188. break;
  189. }
  190. return false;
  191. }
  192. void addrconf_prefix_rcv(struct net_device *dev,
  193. u8 *opt, int len, bool sllao);
  194. /*
  195. * anycast prototypes (anycast.c)
  196. */
  197. int ipv6_sock_ac_join(struct sock *sk, int ifindex,
  198. const struct in6_addr *addr);
  199. int ipv6_sock_ac_drop(struct sock *sk, int ifindex,
  200. const struct in6_addr *addr);
  201. void ipv6_sock_ac_close(struct sock *sk);
  202. int __ipv6_dev_ac_inc(struct inet6_dev *idev, const struct in6_addr *addr);
  203. int __ipv6_dev_ac_dec(struct inet6_dev *idev, const struct in6_addr *addr);
  204. void ipv6_ac_destroy_dev(struct inet6_dev *idev);
  205. bool ipv6_chk_acast_addr(struct net *net, struct net_device *dev,
  206. const struct in6_addr *addr);
  207. bool ipv6_chk_acast_addr_src(struct net *net, struct net_device *dev,
  208. const struct in6_addr *addr);
  209. /* Device notifier */
  210. int register_inet6addr_notifier(struct notifier_block *nb);
  211. int unregister_inet6addr_notifier(struct notifier_block *nb);
  212. int inet6addr_notifier_call_chain(unsigned long val, void *v);
  213. void inet6_netconf_notify_devconf(struct net *net, int type, int ifindex,
  214. struct ipv6_devconf *devconf);
  215. /**
  216. * __in6_dev_get - get inet6_dev pointer from netdevice
  217. * @dev: network device
  218. *
  219. * Caller must hold rcu_read_lock or RTNL, because this function
  220. * does not take a reference on the inet6_dev.
  221. */
  222. static inline struct inet6_dev *__in6_dev_get(const struct net_device *dev)
  223. {
  224. return rcu_dereference_rtnl(dev->ip6_ptr);
  225. }
  226. /**
  227. * in6_dev_get - get inet6_dev pointer from netdevice
  228. * @dev: network device
  229. *
  230. * This version can be used in any context, and takes a reference
  231. * on the inet6_dev. Callers must use in6_dev_put() later to
  232. * release this reference.
  233. */
  234. static inline struct inet6_dev *in6_dev_get(const struct net_device *dev)
  235. {
  236. struct inet6_dev *idev;
  237. rcu_read_lock();
  238. idev = rcu_dereference(dev->ip6_ptr);
  239. if (idev)
  240. atomic_inc(&idev->refcnt);
  241. rcu_read_unlock();
  242. return idev;
  243. }
  244. static inline struct neigh_parms *__in6_dev_nd_parms_get_rcu(const struct net_device *dev)
  245. {
  246. struct inet6_dev *idev = __in6_dev_get(dev);
  247. return idev ? idev->nd_parms : NULL;
  248. }
  249. void in6_dev_finish_destroy(struct inet6_dev *idev);
  250. static inline void in6_dev_put(struct inet6_dev *idev)
  251. {
  252. if (atomic_dec_and_test(&idev->refcnt))
  253. in6_dev_finish_destroy(idev);
  254. }
  255. static inline void __in6_dev_put(struct inet6_dev *idev)
  256. {
  257. atomic_dec(&idev->refcnt);
  258. }
  259. static inline void in6_dev_hold(struct inet6_dev *idev)
  260. {
  261. atomic_inc(&idev->refcnt);
  262. }
  263. void inet6_ifa_finish_destroy(struct inet6_ifaddr *ifp);
  264. static inline void in6_ifa_put(struct inet6_ifaddr *ifp)
  265. {
  266. if (atomic_dec_and_test(&ifp->refcnt))
  267. inet6_ifa_finish_destroy(ifp);
  268. }
  269. static inline void __in6_ifa_put(struct inet6_ifaddr *ifp)
  270. {
  271. atomic_dec(&ifp->refcnt);
  272. }
  273. static inline void in6_ifa_hold(struct inet6_ifaddr *ifp)
  274. {
  275. atomic_inc(&ifp->refcnt);
  276. }
  277. /*
  278. * compute link-local solicited-node multicast address
  279. */
  280. static inline void addrconf_addr_solict_mult(const struct in6_addr *addr,
  281. struct in6_addr *solicited)
  282. {
  283. ipv6_addr_set(solicited,
  284. htonl(0xFF020000), 0,
  285. htonl(0x1),
  286. htonl(0xFF000000) | addr->s6_addr32[3]);
  287. }
  288. static inline bool ipv6_addr_is_ll_all_nodes(const struct in6_addr *addr)
  289. {
  290. #if defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) && BITS_PER_LONG == 64
  291. __be64 *p = (__be64 *)addr;
  292. return ((p[0] ^ cpu_to_be64(0xff02000000000000UL)) | (p[1] ^ cpu_to_be64(1))) == 0UL;
  293. #else
  294. return ((addr->s6_addr32[0] ^ htonl(0xff020000)) |
  295. addr->s6_addr32[1] | addr->s6_addr32[2] |
  296. (addr->s6_addr32[3] ^ htonl(0x00000001))) == 0;
  297. #endif
  298. }
  299. static inline bool ipv6_addr_is_ll_all_routers(const struct in6_addr *addr)
  300. {
  301. #if defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) && BITS_PER_LONG == 64
  302. __be64 *p = (__be64 *)addr;
  303. return ((p[0] ^ cpu_to_be64(0xff02000000000000UL)) | (p[1] ^ cpu_to_be64(2))) == 0UL;
  304. #else
  305. return ((addr->s6_addr32[0] ^ htonl(0xff020000)) |
  306. addr->s6_addr32[1] | addr->s6_addr32[2] |
  307. (addr->s6_addr32[3] ^ htonl(0x00000002))) == 0;
  308. #endif
  309. }
  310. static inline bool ipv6_addr_is_isatap(const struct in6_addr *addr)
  311. {
  312. return (addr->s6_addr32[2] | htonl(0x02000000)) == htonl(0x02005EFE);
  313. }
  314. static inline bool ipv6_addr_is_solict_mult(const struct in6_addr *addr)
  315. {
  316. #if defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) && BITS_PER_LONG == 64
  317. __be64 *p = (__be64 *)addr;
  318. return ((p[0] ^ cpu_to_be64(0xff02000000000000UL)) |
  319. ((p[1] ^ cpu_to_be64(0x00000001ff000000UL)) &
  320. cpu_to_be64(0xffffffffff000000UL))) == 0UL;
  321. #else
  322. return ((addr->s6_addr32[0] ^ htonl(0xff020000)) |
  323. addr->s6_addr32[1] |
  324. (addr->s6_addr32[2] ^ htonl(0x00000001)) |
  325. (addr->s6_addr[12] ^ 0xff)) == 0;
  326. #endif
  327. }
  328. #ifdef CONFIG_PROC_FS
  329. int if6_proc_init(void);
  330. void if6_proc_exit(void);
  331. #endif
  332. #endif