pfvar.h 55 KB

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  1. /* $OpenBSD: pfvar.h,v 1.419 2015/07/20 01:18:33 mcbride Exp $ */
  2. /*
  3. * Copyright (c) 2001 Daniel Hartmeier
  4. * Copyright (c) 2002 - 2013 Henning Brauer <henning@openbsd.org>
  5. * All rights reserved.
  6. *
  7. * Redistribution and use in source and binary forms, with or without
  8. * modification, are permitted provided that the following conditions
  9. * are met:
  10. *
  11. * - Redistributions of source code must retain the above copyright
  12. * notice, this list of conditions and the following disclaimer.
  13. * - Redistributions in binary form must reproduce the above
  14. * copyright notice, this list of conditions and the following
  15. * disclaimer in the documentation and/or other materials provided
  16. * with the distribution.
  17. *
  18. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  19. * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  20. * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
  21. * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
  22. * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
  23. * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
  24. * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
  25. * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  26. * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  27. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
  28. * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  29. * POSSIBILITY OF SUCH DAMAGE.
  30. *
  31. */
  32. #ifndef _NET_PFVAR_H_
  33. #define _NET_PFVAR_H_
  34. #include <sys/queue.h>
  35. #include <sys/tree.h>
  36. #include <sys/rwlock.h>
  37. #include <sys/syslimits.h>
  38. #include <net/radix.h>
  39. #include <net/route.h>
  40. struct ip;
  41. struct ip6_hdr;
  42. #define PF_TCPS_PROXY_SRC ((TCP_NSTATES)+0)
  43. #define PF_TCPS_PROXY_DST ((TCP_NSTATES)+1)
  44. #define PF_MD5_DIGEST_LENGTH 16
  45. #ifdef MD5_DIGEST_LENGTH
  46. #if PF_MD5_DIGEST_LENGTH != MD5_DIGEST_LENGTH
  47. #error md5 digest length mismatch
  48. #endif
  49. #endif
  50. enum { PF_INOUT, PF_IN, PF_OUT, PF_FWD };
  51. enum { PF_PASS, PF_DROP, PF_SCRUB, PF_NOSCRUB, PF_NAT, PF_NONAT,
  52. PF_BINAT, PF_NOBINAT, PF_RDR, PF_NORDR, PF_SYNPROXY_DROP, PF_DEFER,
  53. PF_MATCH, PF_DIVERT, PF_RT, PF_AFRT };
  54. enum { PF_TRANS_RULESET, PF_TRANS_ALTQ, PF_TRANS_TABLE };
  55. enum { PF_OP_NONE, PF_OP_IRG, PF_OP_EQ, PF_OP_NE, PF_OP_LT,
  56. PF_OP_LE, PF_OP_GT, PF_OP_GE, PF_OP_XRG, PF_OP_RRG };
  57. enum { PF_CHANGE_NONE, PF_CHANGE_ADD_HEAD, PF_CHANGE_ADD_TAIL,
  58. PF_CHANGE_ADD_BEFORE, PF_CHANGE_ADD_AFTER,
  59. PF_CHANGE_REMOVE, PF_CHANGE_GET_TICKET };
  60. enum { PF_GET_NONE, PF_GET_CLR_CNTR };
  61. enum { PF_SK_WIRE, PF_SK_STACK, PF_SK_BOTH };
  62. /*
  63. * Note about PFTM_*: real indices into pf_rule.timeout[] come before
  64. * PFTM_MAX, special cases afterwards. See pf_state_expires().
  65. */
  66. enum { PFTM_TCP_FIRST_PACKET, PFTM_TCP_OPENING, PFTM_TCP_ESTABLISHED,
  67. PFTM_TCP_CLOSING, PFTM_TCP_FIN_WAIT, PFTM_TCP_CLOSED,
  68. PFTM_UDP_FIRST_PACKET, PFTM_UDP_SINGLE, PFTM_UDP_MULTIPLE,
  69. PFTM_ICMP_FIRST_PACKET, PFTM_ICMP_ERROR_REPLY,
  70. PFTM_OTHER_FIRST_PACKET, PFTM_OTHER_SINGLE,
  71. PFTM_OTHER_MULTIPLE, PFTM_FRAG, PFTM_INTERVAL,
  72. PFTM_ADAPTIVE_START, PFTM_ADAPTIVE_END, PFTM_SRC_NODE,
  73. PFTM_TS_DIFF, PFTM_MAX, PFTM_PURGE, PFTM_UNLINKED };
  74. /* PFTM default values */
  75. #define PFTM_TCP_FIRST_PACKET_VAL 120 /* First TCP packet */
  76. #define PFTM_TCP_OPENING_VAL 30 /* No response yet */
  77. #define PFTM_TCP_ESTABLISHED_VAL 24*60*60/* Established */
  78. #define PFTM_TCP_CLOSING_VAL 15 * 60 /* Half closed */
  79. #define PFTM_TCP_FIN_WAIT_VAL 45 /* Got both FINs */
  80. #define PFTM_TCP_CLOSED_VAL 90 /* Got a RST */
  81. #define PFTM_UDP_FIRST_PACKET_VAL 60 /* First UDP packet */
  82. #define PFTM_UDP_SINGLE_VAL 30 /* Unidirectional */
  83. #define PFTM_UDP_MULTIPLE_VAL 60 /* Bidirectional */
  84. #define PFTM_ICMP_FIRST_PACKET_VAL 20 /* First ICMP packet */
  85. #define PFTM_ICMP_ERROR_REPLY_VAL 10 /* Got error response */
  86. #define PFTM_OTHER_FIRST_PACKET_VAL 60 /* First packet */
  87. #define PFTM_OTHER_SINGLE_VAL 30 /* Unidirectional */
  88. #define PFTM_OTHER_MULTIPLE_VAL 60 /* Bidirectional */
  89. #define PFTM_FRAG_VAL 60 /* Fragment expire */
  90. #define PFTM_INTERVAL_VAL 10 /* Expire interval */
  91. #define PFTM_SRC_NODE_VAL 0 /* Source tracking */
  92. #define PFTM_TS_DIFF_VAL 30 /* Allowed TS diff */
  93. enum { PF_NOPFROUTE, PF_ROUTETO, PF_DUPTO, PF_REPLYTO };
  94. enum { PF_LIMIT_STATES, PF_LIMIT_SRC_NODES, PF_LIMIT_FRAGS,
  95. PF_LIMIT_TABLES, PF_LIMIT_TABLE_ENTRIES, PF_LIMIT_MAX };
  96. #define PF_POOL_IDMASK 0x0f
  97. enum { PF_POOL_NONE, PF_POOL_BITMASK, PF_POOL_RANDOM,
  98. PF_POOL_SRCHASH, PF_POOL_ROUNDROBIN, PF_POOL_LEASTSTATES };
  99. enum { PF_ADDR_ADDRMASK, PF_ADDR_NOROUTE, PF_ADDR_DYNIFTL,
  100. PF_ADDR_TABLE, PF_ADDR_RTLABEL, PF_ADDR_URPFFAILED,
  101. PF_ADDR_RANGE, PF_ADDR_NONE };
  102. #define PF_POOL_TYPEMASK 0x0f
  103. #define PF_POOL_STICKYADDR 0x20
  104. #define PF_WSCALE_FLAG 0x80
  105. #define PF_WSCALE_MASK 0x0f
  106. #define PF_POOL_DYNTYPE(_o) \
  107. ((((_o) & PF_POOL_TYPEMASK) == PF_POOL_ROUNDROBIN) || \
  108. (((_o) & PF_POOL_TYPEMASK) == PF_POOL_LEASTSTATES) || \
  109. (((_o) & PF_POOL_TYPEMASK) == PF_POOL_RANDOM) || \
  110. (((_o) & PF_POOL_TYPEMASK) == PF_POOL_SRCHASH))
  111. #define PF_LOG 0x01
  112. #define PF_LOG_ALL 0x02
  113. #define PF_LOG_SOCKET_LOOKUP 0x04
  114. #define PF_LOG_FORCE 0x08
  115. #define PF_LOG_MATCHES 0x10
  116. struct pf_addr {
  117. union {
  118. struct in_addr v4;
  119. struct in6_addr v6;
  120. u_int8_t addr8[16];
  121. u_int16_t addr16[8];
  122. u_int32_t addr32[4];
  123. } pfa; /* 128-bit address */
  124. #define v4 pfa.v4
  125. #define v6 pfa.v6
  126. #define addr8 pfa.addr8
  127. #define addr16 pfa.addr16
  128. #define addr32 pfa.addr32
  129. };
  130. #define PF_TABLE_NAME_SIZE 32
  131. #define PFI_AFLAG_NETWORK 0x01
  132. #define PFI_AFLAG_BROADCAST 0x02
  133. #define PFI_AFLAG_PEER 0x04
  134. #define PFI_AFLAG_MODEMASK 0x07
  135. #define PFI_AFLAG_NOALIAS 0x08
  136. struct pf_addr_wrap {
  137. union {
  138. struct {
  139. struct pf_addr addr;
  140. struct pf_addr mask;
  141. } a;
  142. char ifname[IFNAMSIZ];
  143. char tblname[PF_TABLE_NAME_SIZE];
  144. char rtlabelname[RTLABEL_LEN];
  145. u_int32_t rtlabel;
  146. } v;
  147. union {
  148. struct pfi_dynaddr *dyn;
  149. struct pfr_ktable *tbl;
  150. int dyncnt;
  151. int tblcnt;
  152. } p;
  153. u_int8_t type; /* PF_ADDR_* */
  154. u_int8_t iflags; /* PFI_AFLAG_* */
  155. };
  156. #ifdef _KERNEL
  157. struct pfi_dynaddr {
  158. TAILQ_ENTRY(pfi_dynaddr) entry;
  159. struct pf_addr pfid_addr4;
  160. struct pf_addr pfid_mask4;
  161. struct pf_addr pfid_addr6;
  162. struct pf_addr pfid_mask6;
  163. struct pfr_ktable *pfid_kt;
  164. struct pfi_kif *pfid_kif;
  165. void *pfid_hook_cookie;
  166. int pfid_net; /* mask or 128 */
  167. int pfid_acnt4; /* address count IPv4 */
  168. int pfid_acnt6; /* address count IPv6 */
  169. sa_family_t pfid_af; /* rule af */
  170. u_int8_t pfid_iflags; /* PFI_AFLAG_* */
  171. };
  172. #endif /* _KERNEL */
  173. /*
  174. * Logging macros
  175. */
  176. #ifndef PF_DEBUGNAME
  177. #define PF_DEBUGNAME "pf: "
  178. #endif
  179. #ifdef _KERNEL
  180. #define DPFPRINTF(n, format, x...) \
  181. do { \
  182. if (pf_status.debug >= (n)) { \
  183. log(n, PF_DEBUGNAME); \
  184. addlog(format, ##x); \
  185. addlog("\n"); \
  186. } \
  187. } while (0)
  188. #else
  189. #ifdef PFDEBUG
  190. #define DPFPRINTF(n, format, x...) \
  191. do { \
  192. fprintf(stderr, format, ##x); \
  193. fprintf(stderr, "\n"); \
  194. } while (0)
  195. #else
  196. #define DPFPRINTF(n, format, x...) ((void)0)
  197. #endif /* PFDEBUG */
  198. #endif /* _KERNEL */
  199. /*
  200. * Address manipulation macros
  201. */
  202. #define PF_AEQ(a, b, c) \
  203. ((c == AF_INET && (a)->addr32[0] == (b)->addr32[0]) || \
  204. (c == AF_INET6 && \
  205. (a)->addr32[3] == (b)->addr32[3] && \
  206. (a)->addr32[2] == (b)->addr32[2] && \
  207. (a)->addr32[1] == (b)->addr32[1] && \
  208. (a)->addr32[0] == (b)->addr32[0])) \
  209. #define PF_ANEQ(a, b, c) \
  210. ((c == AF_INET && (a)->addr32[0] != (b)->addr32[0]) || \
  211. (c == AF_INET6 && \
  212. ((a)->addr32[3] != (b)->addr32[3] || \
  213. (a)->addr32[2] != (b)->addr32[2] || \
  214. (a)->addr32[1] != (b)->addr32[1] || \
  215. (a)->addr32[0] != (b)->addr32[0]))) \
  216. #define PF_AZERO(a, c) \
  217. ((c == AF_INET && !(a)->addr32[0]) || \
  218. (c == AF_INET6 && \
  219. !(a)->addr32[0] && !(a)->addr32[1] && \
  220. !(a)->addr32[2] && !(a)->addr32[3] )) \
  221. #define PF_MATCHA(n, a, m, b, f) \
  222. pf_match_addr(n, a, m, b, f)
  223. #define PF_ACPY(a, b, f) \
  224. pf_addrcpy(a, b, f)
  225. #define PF_AINC(a, f) \
  226. pf_addr_inc(a, f)
  227. #define PF_POOLMASK(a, b, c, d, f) \
  228. pf_poolmask(a, b, c, d, f)
  229. #define PF_MISMATCHAW(aw, x, af, neg, ifp, rtid) \
  230. ( \
  231. (((aw)->type == PF_ADDR_NOROUTE && \
  232. pf_routable((x), (af), NULL, (rtid))) || \
  233. (((aw)->type == PF_ADDR_URPFFAILED && (ifp) != NULL && \
  234. pf_routable((x), (af), (ifp), (rtid))) || \
  235. ((aw)->type == PF_ADDR_RTLABEL && \
  236. !pf_rtlabel_match((x), (af), (aw), (rtid))) || \
  237. ((aw)->type == PF_ADDR_TABLE && \
  238. !pfr_match_addr((aw)->p.tbl, (x), (af))) || \
  239. ((aw)->type == PF_ADDR_DYNIFTL && \
  240. !pfi_match_addr((aw)->p.dyn, (x), (af))) || \
  241. ((aw)->type == PF_ADDR_RANGE && \
  242. !pf_match_addr_range(&(aw)->v.a.addr, \
  243. &(aw)->v.a.mask, (x), (af))) || \
  244. ((aw)->type == PF_ADDR_ADDRMASK && \
  245. !PF_AZERO(&(aw)->v.a.mask, (af)) && \
  246. !PF_MATCHA(0, &(aw)->v.a.addr, \
  247. &(aw)->v.a.mask, (x), (af))))) != \
  248. (neg) \
  249. )
  250. struct pf_rule_uid {
  251. uid_t uid[2];
  252. u_int8_t op;
  253. };
  254. struct pf_rule_gid {
  255. uid_t gid[2];
  256. u_int8_t op;
  257. };
  258. struct pf_rule_addr {
  259. struct pf_addr_wrap addr;
  260. u_int16_t port[2];
  261. u_int8_t neg;
  262. u_int8_t port_op;
  263. u_int16_t weight;
  264. };
  265. struct pf_poolhashkey {
  266. union {
  267. u_int8_t key8[16];
  268. u_int16_t key16[8];
  269. u_int32_t key32[4];
  270. } pfk; /* 128-bit hash key */
  271. #define key8 pfk.key8
  272. #define key16 pfk.key16
  273. #define key32 pfk.key32
  274. };
  275. struct pf_pool {
  276. struct pf_addr_wrap addr;
  277. struct pf_poolhashkey key;
  278. struct pf_addr counter;
  279. char ifname[IFNAMSIZ];
  280. struct pfi_kif *kif;
  281. int tblidx;
  282. u_int64_t states;
  283. int curweight;
  284. u_int16_t weight;
  285. u_int16_t proxy_port[2];
  286. u_int8_t port_op;
  287. u_int8_t opts;
  288. };
  289. /* A packed Operating System description for fingerprinting */
  290. typedef u_int32_t pf_osfp_t;
  291. #define PF_OSFP_ANY ((pf_osfp_t)0)
  292. #define PF_OSFP_UNKNOWN ((pf_osfp_t)-1)
  293. #define PF_OSFP_NOMATCH ((pf_osfp_t)-2)
  294. struct pf_osfp_entry {
  295. SLIST_ENTRY(pf_osfp_entry) fp_entry;
  296. pf_osfp_t fp_os;
  297. int fp_enflags;
  298. #define PF_OSFP_EXPANDED 0x001 /* expanded entry */
  299. #define PF_OSFP_GENERIC 0x002 /* generic signature */
  300. #define PF_OSFP_NODETAIL 0x004 /* no p0f details */
  301. #define PF_OSFP_LEN 32
  302. u_char fp_class_nm[PF_OSFP_LEN];
  303. u_char fp_version_nm[PF_OSFP_LEN];
  304. u_char fp_subtype_nm[PF_OSFP_LEN];
  305. };
  306. #define PF_OSFP_ENTRY_EQ(a, b) \
  307. ((a)->fp_os == (b)->fp_os && \
  308. memcmp((a)->fp_class_nm, (b)->fp_class_nm, PF_OSFP_LEN) == 0 && \
  309. memcmp((a)->fp_version_nm, (b)->fp_version_nm, PF_OSFP_LEN) == 0 && \
  310. memcmp((a)->fp_subtype_nm, (b)->fp_subtype_nm, PF_OSFP_LEN) == 0)
  311. /* handle pf_osfp_t packing */
  312. #define _FP_RESERVED_BIT 1 /* For the special negative #defines */
  313. #define _FP_UNUSED_BITS 1
  314. #define _FP_CLASS_BITS 10 /* OS Class (Windows, Linux) */
  315. #define _FP_VERSION_BITS 10 /* OS version (95, 98, NT, 2.4.54, 3.2) */
  316. #define _FP_SUBTYPE_BITS 10 /* patch level (NT SP4, SP3, ECN patch) */
  317. #define PF_OSFP_UNPACK(osfp, class, version, subtype) do { \
  318. (class) = ((osfp) >> (_FP_VERSION_BITS+_FP_SUBTYPE_BITS)) & \
  319. ((1 << _FP_CLASS_BITS) - 1); \
  320. (version) = ((osfp) >> _FP_SUBTYPE_BITS) & \
  321. ((1 << _FP_VERSION_BITS) - 1);\
  322. (subtype) = (osfp) & ((1 << _FP_SUBTYPE_BITS) - 1); \
  323. } while(0)
  324. #define PF_OSFP_PACK(osfp, class, version, subtype) do { \
  325. (osfp) = ((class) & ((1 << _FP_CLASS_BITS) - 1)) << (_FP_VERSION_BITS \
  326. + _FP_SUBTYPE_BITS); \
  327. (osfp) |= ((version) & ((1 << _FP_VERSION_BITS) - 1)) << \
  328. _FP_SUBTYPE_BITS; \
  329. (osfp) |= (subtype) & ((1 << _FP_SUBTYPE_BITS) - 1); \
  330. } while(0)
  331. /* the fingerprint of an OSes TCP SYN packet */
  332. typedef u_int64_t pf_tcpopts_t;
  333. struct pf_os_fingerprint {
  334. SLIST_HEAD(pf_osfp_enlist, pf_osfp_entry) fp_oses; /* list of matches */
  335. pf_tcpopts_t fp_tcpopts; /* packed TCP options */
  336. u_int16_t fp_wsize; /* TCP window size */
  337. u_int16_t fp_psize; /* ip->ip_len */
  338. u_int16_t fp_mss; /* TCP MSS */
  339. u_int16_t fp_flags;
  340. #define PF_OSFP_WSIZE_MOD 0x0001 /* Window modulus */
  341. #define PF_OSFP_WSIZE_DC 0x0002 /* Window don't care */
  342. #define PF_OSFP_WSIZE_MSS 0x0004 /* Window multiple of MSS */
  343. #define PF_OSFP_WSIZE_MTU 0x0008 /* Window multiple of MTU */
  344. #define PF_OSFP_PSIZE_MOD 0x0010 /* packet size modulus */
  345. #define PF_OSFP_PSIZE_DC 0x0020 /* packet size don't care */
  346. #define PF_OSFP_WSCALE 0x0040 /* TCP window scaling */
  347. #define PF_OSFP_WSCALE_MOD 0x0080 /* TCP window scale modulus */
  348. #define PF_OSFP_WSCALE_DC 0x0100 /* TCP window scale dont-care */
  349. #define PF_OSFP_MSS 0x0200 /* TCP MSS */
  350. #define PF_OSFP_MSS_MOD 0x0400 /* TCP MSS modulus */
  351. #define PF_OSFP_MSS_DC 0x0800 /* TCP MSS dont-care */
  352. #define PF_OSFP_DF 0x1000 /* IPv4 don't fragment bit */
  353. #define PF_OSFP_TS0 0x2000 /* Zero timestamp */
  354. #define PF_OSFP_INET6 0x4000 /* IPv6 */
  355. u_int8_t fp_optcnt; /* TCP option count */
  356. u_int8_t fp_wscale; /* TCP window scaling */
  357. u_int8_t fp_ttl; /* IPv4 TTL */
  358. #define PF_OSFP_MAXTTL_OFFSET 40
  359. /* TCP options packing */
  360. #define PF_OSFP_TCPOPT_NOP 0x0 /* TCP NOP option */
  361. #define PF_OSFP_TCPOPT_WSCALE 0x1 /* TCP window scaling option */
  362. #define PF_OSFP_TCPOPT_MSS 0x2 /* TCP max segment size opt */
  363. #define PF_OSFP_TCPOPT_SACK 0x3 /* TCP SACK OK option */
  364. #define PF_OSFP_TCPOPT_TS 0x4 /* TCP timestamp option */
  365. #define PF_OSFP_TCPOPT_BITS 3 /* bits used by each option */
  366. #define PF_OSFP_MAX_OPTS \
  367. (sizeof(((struct pf_os_fingerprint *)0)->fp_tcpopts) * 8) \
  368. / PF_OSFP_TCPOPT_BITS
  369. SLIST_ENTRY(pf_os_fingerprint) fp_next;
  370. };
  371. struct pf_osfp_ioctl {
  372. struct pf_osfp_entry fp_os;
  373. pf_tcpopts_t fp_tcpopts; /* packed TCP options */
  374. u_int16_t fp_wsize; /* TCP window size */
  375. u_int16_t fp_psize; /* ip->ip_len */
  376. u_int16_t fp_mss; /* TCP MSS */
  377. u_int16_t fp_flags;
  378. u_int8_t fp_optcnt; /* TCP option count */
  379. u_int8_t fp_wscale; /* TCP window scaling */
  380. u_int8_t fp_ttl; /* IPv4 TTL */
  381. int fp_getnum; /* DIOCOSFPGET number */
  382. };
  383. struct pf_rule_actions {
  384. int rtableid;
  385. u_int16_t qid;
  386. u_int16_t pqid;
  387. u_int16_t max_mss;
  388. u_int16_t flags;
  389. u_int8_t log;
  390. u_int8_t set_tos;
  391. u_int8_t min_ttl;
  392. u_int8_t set_prio[2];
  393. u_int8_t pad[3];
  394. };
  395. union pf_rule_ptr {
  396. struct pf_rule *ptr;
  397. u_int32_t nr;
  398. };
  399. #define PF_ANCHOR_NAME_SIZE 64
  400. struct pf_rule {
  401. struct pf_rule_addr src;
  402. struct pf_rule_addr dst;
  403. #define PF_SKIP_IFP 0
  404. #define PF_SKIP_DIR 1
  405. #define PF_SKIP_RDOM 2
  406. #define PF_SKIP_AF 3
  407. #define PF_SKIP_PROTO 4
  408. #define PF_SKIP_SRC_ADDR 5
  409. #define PF_SKIP_DST_ADDR 6
  410. #define PF_SKIP_SRC_PORT 7
  411. #define PF_SKIP_DST_PORT 8
  412. #define PF_SKIP_COUNT 9
  413. union pf_rule_ptr skip[PF_SKIP_COUNT];
  414. #define PF_RULE_LABEL_SIZE 64
  415. char label[PF_RULE_LABEL_SIZE];
  416. #define PF_QNAME_SIZE 64
  417. char ifname[IFNAMSIZ];
  418. char rcv_ifname[IFNAMSIZ];
  419. char qname[PF_QNAME_SIZE];
  420. char pqname[PF_QNAME_SIZE];
  421. #define PF_TAG_NAME_SIZE 64
  422. char tagname[PF_TAG_NAME_SIZE];
  423. char match_tagname[PF_TAG_NAME_SIZE];
  424. char overload_tblname[PF_TABLE_NAME_SIZE];
  425. TAILQ_ENTRY(pf_rule) entries;
  426. struct pf_pool nat;
  427. struct pf_pool rdr;
  428. struct pf_pool route;
  429. u_int64_t evaluations;
  430. u_int64_t packets[2];
  431. u_int64_t bytes[2];
  432. struct pfi_kif *kif;
  433. struct pfi_kif *rcv_kif;
  434. struct pf_anchor *anchor;
  435. struct pfr_ktable *overload_tbl;
  436. pf_osfp_t os_fingerprint;
  437. int rtableid;
  438. int onrdomain;
  439. u_int32_t timeout[PFTM_MAX];
  440. u_int32_t states_cur;
  441. u_int32_t states_tot;
  442. u_int32_t max_states;
  443. u_int32_t src_nodes;
  444. u_int32_t max_src_nodes;
  445. u_int32_t max_src_states;
  446. u_int32_t max_src_conn;
  447. struct {
  448. u_int32_t limit;
  449. u_int32_t seconds;
  450. } max_src_conn_rate;
  451. u_int32_t qid;
  452. u_int32_t pqid;
  453. u_int32_t rt_listid;
  454. u_int32_t nr;
  455. u_int32_t prob;
  456. uid_t cuid;
  457. pid_t cpid;
  458. u_int16_t return_icmp;
  459. u_int16_t return_icmp6;
  460. u_int16_t max_mss;
  461. u_int16_t tag;
  462. u_int16_t match_tag;
  463. u_int16_t scrub_flags;
  464. struct pf_rule_uid uid;
  465. struct pf_rule_gid gid;
  466. u_int32_t rule_flag;
  467. u_int8_t action;
  468. u_int8_t direction;
  469. u_int8_t log;
  470. u_int8_t logif;
  471. u_int8_t quick;
  472. u_int8_t ifnot;
  473. u_int8_t match_tag_not;
  474. #define PF_STATE_NORMAL 0x1
  475. #define PF_STATE_MODULATE 0x2
  476. #define PF_STATE_SYNPROXY 0x3
  477. u_int8_t keep_state;
  478. sa_family_t af;
  479. u_int8_t proto;
  480. u_int8_t type;
  481. u_int8_t code;
  482. u_int8_t flags;
  483. u_int8_t flagset;
  484. u_int8_t min_ttl;
  485. u_int8_t allow_opts;
  486. u_int8_t rt;
  487. u_int8_t return_ttl;
  488. u_int8_t tos;
  489. u_int8_t set_tos;
  490. u_int8_t anchor_relative;
  491. u_int8_t anchor_wildcard;
  492. #define PF_FLUSH 0x01
  493. #define PF_FLUSH_GLOBAL 0x02
  494. u_int8_t flush;
  495. u_int8_t prio;
  496. u_int8_t set_prio[2];
  497. sa_family_t naf;
  498. u_int8_t rcvifnot;
  499. u_int8_t pad[2];
  500. struct {
  501. struct pf_addr addr;
  502. u_int16_t port;
  503. } divert, divert_packet;
  504. };
  505. /* rule flags */
  506. #define PFRULE_DROP 0x0000
  507. #define PFRULE_RETURNRST 0x0001
  508. #define PFRULE_FRAGMENT 0x0002
  509. #define PFRULE_RETURNICMP 0x0004
  510. #define PFRULE_RETURN 0x0008
  511. #define PFRULE_NOSYNC 0x0010
  512. #define PFRULE_SRCTRACK 0x0020 /* track source states */
  513. #define PFRULE_RULESRCTRACK 0x0040 /* per rule */
  514. /* rule flags again */
  515. #define PFRULE_IFBOUND 0x00010000 /* if-bound */
  516. #define PFRULE_STATESLOPPY 0x00020000 /* sloppy state tracking */
  517. #define PFRULE_PFLOW 0x00040000
  518. #define PFRULE_ONCE 0x00100000 /* one shot rule */
  519. #define PFRULE_AFTO 0x00200000 /* af-to rule */
  520. #define PFSTATE_HIWAT 10000 /* default state table size */
  521. #define PFSTATE_ADAPT_START 6000 /* default adaptive timeout start */
  522. #define PFSTATE_ADAPT_END 12000 /* default adaptive timeout end */
  523. struct pf_threshold {
  524. u_int32_t limit;
  525. #define PF_THRESHOLD_MULT 1000
  526. #define PF_THRESHOLD_MAX 0xffffffff / PF_THRESHOLD_MULT
  527. u_int32_t seconds;
  528. u_int32_t count;
  529. u_int32_t last;
  530. };
  531. struct pf_rule_item {
  532. SLIST_ENTRY(pf_rule_item) entry;
  533. struct pf_rule *r;
  534. };
  535. SLIST_HEAD(pf_rule_slist, pf_rule_item);
  536. enum pf_sn_types { PF_SN_NONE, PF_SN_NAT, PF_SN_RDR, PF_SN_ROUTE, PF_SN_MAX };
  537. struct pf_src_node {
  538. RB_ENTRY(pf_src_node) entry;
  539. struct pf_addr addr;
  540. struct pf_addr raddr;
  541. union pf_rule_ptr rule;
  542. struct pfi_kif *kif;
  543. u_int64_t bytes[2];
  544. u_int64_t packets[2];
  545. u_int32_t states;
  546. u_int32_t conn;
  547. struct pf_threshold conn_rate;
  548. int32_t creation;
  549. int32_t expire;
  550. sa_family_t af;
  551. sa_family_t naf;
  552. u_int8_t type;
  553. };
  554. struct pf_sn_item {
  555. SLIST_ENTRY(pf_sn_item) next;
  556. struct pf_src_node *sn;
  557. };
  558. SLIST_HEAD(pf_sn_head, pf_sn_item);
  559. #define PFSNODE_HIWAT 10000 /* default source node table size */
  560. struct pf_state_scrub {
  561. struct timeval pfss_last; /* time received last packet */
  562. u_int32_t pfss_tsecr; /* last echoed timestamp */
  563. u_int32_t pfss_tsval; /* largest timestamp */
  564. u_int32_t pfss_tsval0; /* original timestamp */
  565. u_int16_t pfss_flags;
  566. #define PFSS_TIMESTAMP 0x0001 /* modulate timestamp */
  567. #define PFSS_PAWS 0x0010 /* stricter PAWS checks */
  568. #define PFSS_PAWS_IDLED 0x0020 /* was idle too long. no PAWS */
  569. #define PFSS_DATA_TS 0x0040 /* timestamp on data packets */
  570. #define PFSS_DATA_NOTS 0x0080 /* no timestamp on data packets */
  571. u_int8_t pfss_ttl; /* stashed TTL */
  572. u_int8_t pad;
  573. u_int32_t pfss_ts_mod; /* timestamp modulation */
  574. };
  575. struct pf_state_host {
  576. struct pf_addr addr;
  577. u_int16_t port;
  578. u_int16_t pad;
  579. };
  580. struct pf_state_peer {
  581. struct pf_state_scrub *scrub; /* state is scrubbed */
  582. u_int32_t seqlo; /* Max sequence number sent */
  583. u_int32_t seqhi; /* Max the other end ACKd + win */
  584. u_int32_t seqdiff; /* Sequence number modulator */
  585. u_int16_t max_win; /* largest window (pre scaling) */
  586. u_int16_t mss; /* Maximum segment size option */
  587. u_int8_t state; /* active state level */
  588. u_int8_t wscale; /* window scaling factor */
  589. u_int8_t tcp_est; /* Did we reach TCPS_ESTABLISHED */
  590. u_int8_t pad[1];
  591. };
  592. TAILQ_HEAD(pf_state_queue, pf_state);
  593. /* keep synced with struct pf_state_key, used in RB_FIND */
  594. struct pf_state_key_cmp {
  595. struct pf_addr addr[2];
  596. u_int16_t port[2];
  597. u_int16_t rdomain;
  598. sa_family_t af;
  599. u_int8_t proto;
  600. };
  601. struct pf_state_item {
  602. TAILQ_ENTRY(pf_state_item) entry;
  603. struct pf_state *s;
  604. };
  605. TAILQ_HEAD(pf_statelisthead, pf_state_item);
  606. struct pf_state_key {
  607. struct pf_addr addr[2];
  608. u_int16_t port[2];
  609. u_int16_t rdomain;
  610. sa_family_t af;
  611. u_int8_t proto;
  612. RB_ENTRY(pf_state_key) entry;
  613. struct pf_statelisthead states;
  614. struct pf_state_key *reverse;
  615. struct inpcb *inp;
  616. };
  617. #define PF_REVERSED_KEY(key, family) \
  618. ((key[PF_SK_WIRE]->af != key[PF_SK_STACK]->af) && \
  619. (key[PF_SK_WIRE]->af != (family)))
  620. /* keep synced with struct pf_state, used in RB_FIND */
  621. struct pf_state_cmp {
  622. u_int64_t id;
  623. u_int32_t creatorid;
  624. u_int8_t direction;
  625. u_int8_t pad[3];
  626. };
  627. struct pf_state {
  628. u_int64_t id;
  629. u_int32_t creatorid;
  630. u_int8_t direction;
  631. u_int8_t pad[3];
  632. TAILQ_ENTRY(pf_state) sync_list;
  633. TAILQ_ENTRY(pf_state) entry_list;
  634. RB_ENTRY(pf_state) entry_id;
  635. struct pf_state_peer src;
  636. struct pf_state_peer dst;
  637. struct pf_rule_slist match_rules;
  638. union pf_rule_ptr rule;
  639. union pf_rule_ptr anchor;
  640. union pf_rule_ptr natrule;
  641. struct pf_addr rt_addr;
  642. struct pf_sn_head src_nodes;
  643. struct pf_state_key *key[2]; /* addresses stack and wire */
  644. struct pfi_kif *kif;
  645. struct pfi_kif *rt_kif;
  646. u_int64_t packets[2];
  647. u_int64_t bytes[2];
  648. int32_t creation;
  649. int32_t expire;
  650. int32_t pfsync_time;
  651. u_int16_t qid;
  652. u_int16_t pqid;
  653. u_int16_t tag;
  654. u_int16_t state_flags;
  655. #define PFSTATE_ALLOWOPTS 0x0001
  656. #define PFSTATE_SLOPPY 0x0002
  657. #define PFSTATE_PFLOW 0x0004
  658. #define PFSTATE_NOSYNC 0x0008
  659. #define PFSTATE_ACK 0x0010
  660. #define PFSTATE_NODF 0x0020
  661. #define PFSTATE_SETTOS 0x0040
  662. #define PFSTATE_RANDOMID 0x0080
  663. #define PFSTATE_SCRUB_TCP 0x0100
  664. #define PFSTATE_SETPRIO 0x0200
  665. #define PFSTATE_SCRUBMASK (PFSTATE_NODF|PFSTATE_RANDOMID|PFSTATE_SCRUB_TCP)
  666. #define PFSTATE_SETMASK (PFSTATE_SETTOS|PFSTATE_SETPRIO)
  667. u_int8_t log;
  668. u_int8_t timeout;
  669. u_int8_t sync_state; /* PFSYNC_S_x */
  670. u_int8_t sync_updates;
  671. int rtableid[2]; /* rtables stack and wire */
  672. u_int8_t min_ttl;
  673. u_int8_t set_tos;
  674. u_int8_t set_prio[2];
  675. u_int16_t max_mss;
  676. u_int16_t if_index_in;
  677. u_int16_t if_index_out;
  678. u_int8_t pad2[2];
  679. };
  680. /*
  681. * Unified state structures for pulling states out of the kernel
  682. * used by pfsync(4) and the pf(4) ioctl.
  683. */
  684. struct pfsync_state_scrub {
  685. u_int16_t pfss_flags;
  686. u_int8_t pfss_ttl; /* stashed TTL */
  687. #define PFSYNC_SCRUB_FLAG_VALID 0x01
  688. u_int8_t scrub_flag;
  689. u_int32_t pfss_ts_mod; /* timestamp modulation */
  690. } __packed;
  691. struct pfsync_state_peer {
  692. struct pfsync_state_scrub scrub; /* state is scrubbed */
  693. u_int32_t seqlo; /* Max sequence number sent */
  694. u_int32_t seqhi; /* Max the other end ACKd + win */
  695. u_int32_t seqdiff; /* Sequence number modulator */
  696. u_int16_t max_win; /* largest window (pre scaling) */
  697. u_int16_t mss; /* Maximum segment size option */
  698. u_int8_t state; /* active state level */
  699. u_int8_t wscale; /* window scaling factor */
  700. u_int8_t pad[6];
  701. } __packed;
  702. struct pfsync_state_key {
  703. struct pf_addr addr[2];
  704. u_int16_t port[2];
  705. u_int16_t rdomain;
  706. sa_family_t af;
  707. u_int8_t pad;
  708. };
  709. struct pfsync_state {
  710. u_int64_t id;
  711. char ifname[IFNAMSIZ];
  712. struct pfsync_state_key key[2];
  713. struct pfsync_state_peer src;
  714. struct pfsync_state_peer dst;
  715. struct pf_addr rt_addr;
  716. u_int32_t rule;
  717. u_int32_t anchor;
  718. u_int32_t nat_rule;
  719. u_int32_t creation;
  720. u_int32_t expire;
  721. u_int32_t packets[2][2];
  722. u_int32_t bytes[2][2];
  723. u_int32_t creatorid;
  724. int32_t rtableid[2];
  725. u_int16_t max_mss;
  726. sa_family_t af;
  727. u_int8_t proto;
  728. u_int8_t direction;
  729. u_int8_t log;
  730. u_int8_t pad0;
  731. u_int8_t timeout;
  732. u_int8_t sync_flags;
  733. u_int8_t updates;
  734. u_int8_t min_ttl;
  735. u_int8_t set_tos;
  736. u_int16_t state_flags;
  737. u_int8_t set_prio[2];
  738. } __packed;
  739. #define PFSYNC_FLAG_SRCNODE 0x04
  740. #define PFSYNC_FLAG_NATSRCNODE 0x08
  741. /* for copies to/from network byte order */
  742. /* ioctl interface also uses network byte order */
  743. #define pf_state_peer_hton(s,d) do { \
  744. (d)->seqlo = htonl((s)->seqlo); \
  745. (d)->seqhi = htonl((s)->seqhi); \
  746. (d)->seqdiff = htonl((s)->seqdiff); \
  747. (d)->max_win = htons((s)->max_win); \
  748. (d)->mss = htons((s)->mss); \
  749. (d)->state = (s)->state; \
  750. (d)->wscale = (s)->wscale; \
  751. if ((s)->scrub) { \
  752. (d)->scrub.pfss_flags = \
  753. htons((s)->scrub->pfss_flags & PFSS_TIMESTAMP); \
  754. (d)->scrub.pfss_ttl = (s)->scrub->pfss_ttl; \
  755. (d)->scrub.pfss_ts_mod = htonl((s)->scrub->pfss_ts_mod);\
  756. (d)->scrub.scrub_flag = PFSYNC_SCRUB_FLAG_VALID; \
  757. } \
  758. } while (0)
  759. #define pf_state_peer_ntoh(s,d) do { \
  760. (d)->seqlo = ntohl((s)->seqlo); \
  761. (d)->seqhi = ntohl((s)->seqhi); \
  762. (d)->seqdiff = ntohl((s)->seqdiff); \
  763. (d)->max_win = ntohs((s)->max_win); \
  764. (d)->mss = ntohs((s)->mss); \
  765. (d)->state = (s)->state; \
  766. (d)->wscale = (s)->wscale; \
  767. if ((s)->scrub.scrub_flag == PFSYNC_SCRUB_FLAG_VALID && \
  768. (d)->scrub != NULL) { \
  769. (d)->scrub->pfss_flags = \
  770. ntohs((s)->scrub.pfss_flags) & PFSS_TIMESTAMP; \
  771. (d)->scrub->pfss_ttl = (s)->scrub.pfss_ttl; \
  772. (d)->scrub->pfss_ts_mod = ntohl((s)->scrub.pfss_ts_mod);\
  773. } \
  774. } while (0)
  775. #define pf_state_counter_hton(s,d) do { \
  776. d[0] = htonl((s>>32)&0xffffffff); \
  777. d[1] = htonl(s&0xffffffff); \
  778. } while (0)
  779. #define pf_state_counter_from_pfsync(s) \
  780. (((u_int64_t)(s[0])<<32) | (u_int64_t)(s[1]))
  781. #define pf_state_counter_ntoh(s,d) do { \
  782. d = ntohl(s[0]); \
  783. d = d<<32; \
  784. d += ntohl(s[1]); \
  785. } while (0)
  786. TAILQ_HEAD(pf_rulequeue, pf_rule);
  787. struct pf_anchor;
  788. struct pf_ruleset {
  789. struct {
  790. struct pf_rulequeue queues[2];
  791. struct {
  792. struct pf_rulequeue *ptr;
  793. struct pf_rule **ptr_array;
  794. u_int32_t rcount;
  795. u_int32_t ticket;
  796. int open;
  797. } active, inactive;
  798. } rules;
  799. struct pf_anchor *anchor;
  800. u_int32_t tticket;
  801. int tables;
  802. int topen;
  803. };
  804. RB_HEAD(pf_anchor_global, pf_anchor);
  805. RB_HEAD(pf_anchor_node, pf_anchor);
  806. struct pf_anchor {
  807. RB_ENTRY(pf_anchor) entry_global;
  808. RB_ENTRY(pf_anchor) entry_node;
  809. struct pf_anchor *parent;
  810. struct pf_anchor_node children;
  811. char name[PF_ANCHOR_NAME_SIZE];
  812. char path[PATH_MAX];
  813. struct pf_ruleset ruleset;
  814. int refcnt; /* anchor rules */
  815. int match;
  816. };
  817. RB_PROTOTYPE(pf_anchor_global, pf_anchor, entry_global, pf_anchor_compare)
  818. RB_PROTOTYPE(pf_anchor_node, pf_anchor, entry_node, pf_anchor_compare)
  819. #define PF_RESERVED_ANCHOR "_pf"
  820. #define PFR_TFLAG_PERSIST 0x00000001
  821. #define PFR_TFLAG_CONST 0x00000002
  822. #define PFR_TFLAG_ACTIVE 0x00000004
  823. #define PFR_TFLAG_INACTIVE 0x00000008
  824. #define PFR_TFLAG_REFERENCED 0x00000010
  825. #define PFR_TFLAG_REFDANCHOR 0x00000020
  826. #define PFR_TFLAG_COUNTERS 0x00000040
  827. /* Adjust masks below when adding flags. */
  828. #define PFR_TFLAG_USRMASK 0x00000043
  829. #define PFR_TFLAG_SETMASK 0x0000003C
  830. #define PFR_TFLAG_ALLMASK 0x0000007F
  831. struct pfr_table {
  832. char pfrt_anchor[PATH_MAX];
  833. char pfrt_name[PF_TABLE_NAME_SIZE];
  834. u_int32_t pfrt_flags;
  835. u_int8_t pfrt_fback;
  836. };
  837. enum { PFR_FB_NONE, PFR_FB_MATCH, PFR_FB_ADDED, PFR_FB_DELETED,
  838. PFR_FB_CHANGED, PFR_FB_CLEARED, PFR_FB_DUPLICATE,
  839. PFR_FB_NOTMATCH, PFR_FB_CONFLICT, PFR_FB_NOCOUNT, PFR_FB_MAX };
  840. struct pfr_addr {
  841. union {
  842. struct in_addr _pfra_ip4addr;
  843. struct in6_addr _pfra_ip6addr;
  844. } pfra_u;
  845. char pfra_ifname[IFNAMSIZ];
  846. u_int32_t pfra_states;
  847. u_int16_t pfra_weight;
  848. u_int8_t pfra_af;
  849. u_int8_t pfra_net;
  850. u_int8_t pfra_not;
  851. u_int8_t pfra_fback;
  852. u_int8_t pfra_type;
  853. u_int8_t pad[7];
  854. };
  855. #define pfra_ip4addr pfra_u._pfra_ip4addr
  856. #define pfra_ip6addr pfra_u._pfra_ip6addr
  857. enum { PFR_DIR_IN, PFR_DIR_OUT, PFR_DIR_MAX };
  858. enum { PFR_OP_BLOCK, PFR_OP_MATCH, PFR_OP_PASS, PFR_OP_ADDR_MAX, PFR_OP_TABLE_MAX };
  859. #define PFR_OP_XPASS PFR_OP_ADDR_MAX
  860. struct pfr_astats {
  861. struct pfr_addr pfras_a;
  862. u_int64_t pfras_packets[PFR_DIR_MAX][PFR_OP_ADDR_MAX];
  863. u_int64_t pfras_bytes[PFR_DIR_MAX][PFR_OP_ADDR_MAX];
  864. time_t pfras_tzero;
  865. };
  866. enum { PFR_REFCNT_RULE, PFR_REFCNT_ANCHOR, PFR_REFCNT_MAX };
  867. struct pfr_tstats {
  868. struct pfr_table pfrts_t;
  869. u_int64_t pfrts_packets[PFR_DIR_MAX][PFR_OP_TABLE_MAX];
  870. u_int64_t pfrts_bytes[PFR_DIR_MAX][PFR_OP_TABLE_MAX];
  871. u_int64_t pfrts_match;
  872. u_int64_t pfrts_nomatch;
  873. time_t pfrts_tzero;
  874. int pfrts_cnt;
  875. int pfrts_refcnt[PFR_REFCNT_MAX];
  876. };
  877. #define pfrts_name pfrts_t.pfrt_name
  878. #define pfrts_flags pfrts_t.pfrt_flags
  879. struct pfr_kcounters {
  880. u_int64_t pfrkc_packets[PFR_DIR_MAX][PFR_OP_ADDR_MAX];
  881. u_int64_t pfrkc_bytes[PFR_DIR_MAX][PFR_OP_ADDR_MAX];
  882. u_int64_t states;
  883. };
  884. /*
  885. * XXX ip_ipsp.h's sockaddr_union should be converted to sockaddr *
  886. * passing with correct sa_len, then a good approach for cleaning this
  887. * will become more clear.
  888. */
  889. union pfsockaddr_union {
  890. struct sockaddr sa;
  891. struct sockaddr_in sin;
  892. struct sockaddr_in6 sin6;
  893. };
  894. SLIST_HEAD(pfr_kentryworkq, pfr_kentry);
  895. struct _pfr_kentry {
  896. struct radix_node _pfrke_node[2];
  897. union pfsockaddr_union _pfrke_sa;
  898. SLIST_ENTRY(pfr_kentry) _pfrke_workq;
  899. struct pfr_kcounters *_pfrke_counters;
  900. time_t _pfrke_tzero;
  901. u_int8_t _pfrke_af;
  902. u_int8_t _pfrke_net;
  903. u_int8_t _pfrke_flags;
  904. u_int8_t _pfrke_type;
  905. };
  906. #define PFRKE_FLAG_NOT 0x01
  907. #define PFRKE_FLAG_MARK 0x02
  908. /* pfrke_type */
  909. enum { PFRKE_PLAIN, PFRKE_ROUTE, PFRKE_COST, PFRKE_MAX };
  910. struct pfr_kentry {
  911. union {
  912. struct _pfr_kentry _ke;
  913. } u;
  914. };
  915. #define pfrke_node u._ke._pfrke_node
  916. #define pfrke_sa u._ke._pfrke_sa
  917. #define pfrke_workq u._ke._pfrke_workq
  918. #define pfrke_counters u._ke._pfrke_counters
  919. #define pfrke_tzero u._ke._pfrke_tzero
  920. #define pfrke_af u._ke._pfrke_af
  921. #define pfrke_net u._ke._pfrke_net
  922. #define pfrke_flags u._ke._pfrke_flags
  923. #define pfrke_type u._ke._pfrke_type
  924. struct pfr_kentry_route {
  925. union {
  926. struct _pfr_kentry _ke;
  927. } u;
  928. struct pfi_kif *kif;
  929. };
  930. struct pfr_kentry_cost {
  931. union {
  932. struct _pfr_kentry _ke;
  933. } u;
  934. struct pfi_kif *kif;
  935. /* Above overlaps with pfr_kentry route */
  936. u_int16_t weight;
  937. };
  938. struct pfr_kentry_all {
  939. union {
  940. struct _pfr_kentry _ke;
  941. struct pfr_kentry_route kr;
  942. struct pfr_kentry_cost kc;
  943. } u;
  944. };
  945. #define pfrke_rkif u.kr.kif
  946. SLIST_HEAD(pfr_ktableworkq, pfr_ktable);
  947. RB_HEAD(pfr_ktablehead, pfr_ktable);
  948. struct pfr_ktable {
  949. struct pfr_tstats pfrkt_ts;
  950. RB_ENTRY(pfr_ktable) pfrkt_tree;
  951. SLIST_ENTRY(pfr_ktable) pfrkt_workq;
  952. struct radix_node_head *pfrkt_ip4;
  953. struct radix_node_head *pfrkt_ip6;
  954. struct pfr_ktable *pfrkt_shadow;
  955. struct pfr_ktable *pfrkt_root;
  956. struct pf_ruleset *pfrkt_rs;
  957. long pfrkt_larg;
  958. int pfrkt_nflags;
  959. u_int64_t pfrkt_refcntcost;
  960. u_int16_t pfrkt_gcdweight;
  961. u_int16_t pfrkt_maxweight;
  962. };
  963. #define pfrkt_t pfrkt_ts.pfrts_t
  964. #define pfrkt_name pfrkt_t.pfrt_name
  965. #define pfrkt_anchor pfrkt_t.pfrt_anchor
  966. #define pfrkt_ruleset pfrkt_t.pfrt_ruleset
  967. #define pfrkt_flags pfrkt_t.pfrt_flags
  968. #define pfrkt_cnt pfrkt_ts.pfrts_cnt
  969. #define pfrkt_refcnt pfrkt_ts.pfrts_refcnt
  970. #define pfrkt_packets pfrkt_ts.pfrts_packets
  971. #define pfrkt_bytes pfrkt_ts.pfrts_bytes
  972. #define pfrkt_match pfrkt_ts.pfrts_match
  973. #define pfrkt_nomatch pfrkt_ts.pfrts_nomatch
  974. #define pfrkt_tzero pfrkt_ts.pfrts_tzero
  975. RB_HEAD(pf_state_tree, pf_state_key);
  976. RB_PROTOTYPE(pf_state_tree, pf_state_key, entry, pf_state_compare_key)
  977. RB_HEAD(pf_state_tree_ext_gwy, pf_state_key);
  978. RB_PROTOTYPE(pf_state_tree_ext_gwy, pf_state_key,
  979. entry_ext_gwy, pf_state_compare_ext_gwy)
  980. RB_HEAD(pfi_ifhead, pfi_kif);
  981. /* state tables */
  982. extern struct pf_state_tree pf_statetbl;
  983. /* keep synced with pfi_kif, used in RB_FIND */
  984. struct pfi_kif_cmp {
  985. char pfik_name[IFNAMSIZ];
  986. };
  987. struct ifnet;
  988. struct ifg_group;
  989. struct pfi_kif {
  990. char pfik_name[IFNAMSIZ];
  991. RB_ENTRY(pfi_kif) pfik_tree;
  992. u_int64_t pfik_packets[2][2][2];
  993. u_int64_t pfik_bytes[2][2][2];
  994. time_t pfik_tzero;
  995. int pfik_flags;
  996. int pfik_flags_new;
  997. void *pfik_ah_cookie;
  998. struct ifnet *pfik_ifp;
  999. struct ifg_group *pfik_group;
  1000. int pfik_states;
  1001. int pfik_rules;
  1002. int pfik_routes;
  1003. TAILQ_HEAD(, pfi_dynaddr) pfik_dynaddrs;
  1004. };
  1005. enum pfi_kif_refs {
  1006. PFI_KIF_REF_NONE,
  1007. PFI_KIF_REF_STATE,
  1008. PFI_KIF_REF_RULE,
  1009. PFI_KIF_REF_ROUTE
  1010. };
  1011. #define PFI_IFLAG_SKIP 0x0100 /* skip filtering on interface */
  1012. #define PFI_IFLAG_ANY 0x0200 /* match any non-loopback interface */
  1013. struct pf_pdesc {
  1014. struct {
  1015. int done;
  1016. uid_t uid;
  1017. gid_t gid;
  1018. pid_t pid;
  1019. } lookup;
  1020. u_int64_t tot_len; /* Make Mickey money */
  1021. union {
  1022. struct tcphdr *tcp;
  1023. struct udphdr *udp;
  1024. struct icmp *icmp;
  1025. #ifdef INET6
  1026. struct icmp6_hdr *icmp6;
  1027. #endif /* INET6 */
  1028. void *any;
  1029. } hdr;
  1030. struct pf_addr nsaddr; /* src address after NAT */
  1031. struct pf_addr ndaddr; /* dst address after NAT */
  1032. struct pfi_kif *kif; /* incoming interface */
  1033. struct mbuf *m; /* mbuf containing the packet */
  1034. struct pf_addr *src; /* src address */
  1035. struct pf_addr *dst; /* dst address */
  1036. u_int16_t *pcksum; /* proto cksum */
  1037. u_int16_t *sport;
  1038. u_int16_t *dport;
  1039. u_int16_t osport;
  1040. u_int16_t odport;
  1041. u_int16_t nsport; /* src port after NAT */
  1042. u_int16_t ndport; /* dst port after NAT */
  1043. u_int32_t off; /* protocol header offset */
  1044. u_int32_t hdrlen; /* protocol header length */
  1045. u_int32_t p_len; /* length of protocol payload */
  1046. u_int32_t extoff; /* extentsion header offset */
  1047. u_int32_t fragoff; /* fragment header offset */
  1048. u_int32_t jumbolen; /* length from v6 jumbo header */
  1049. u_int32_t badopts; /* v4 options or v6 routing headers */
  1050. u_int16_t rdomain; /* original routing domain */
  1051. u_int16_t virtual_proto;
  1052. #define PF_VPROTO_FRAGMENT 256
  1053. sa_family_t af;
  1054. sa_family_t naf;
  1055. u_int8_t proto;
  1056. u_int8_t tos;
  1057. u_int8_t ttl;
  1058. u_int8_t dir; /* direction */
  1059. u_int8_t sidx; /* key index for source */
  1060. u_int8_t didx; /* key index for destination */
  1061. u_int8_t destchg; /* flag set when destination changed */
  1062. u_int8_t pflog; /* flags for packet logging */
  1063. u_int8_t csum_status; /* proto cksum ok/bad/unchecked */
  1064. #define PF_CSUM_UNKNOWN 0
  1065. #define PF_CSUM_BAD 1
  1066. #define PF_CSUM_OK 2
  1067. };
  1068. /* flags for RDR options */
  1069. #define PF_DPORT_RANGE 0x01 /* Dest port uses range */
  1070. #define PF_RPORT_RANGE 0x02 /* RDR'ed port uses range */
  1071. /* Reasons code for passing/dropping a packet */
  1072. #define PFRES_MATCH 0 /* Explicit match of a rule */
  1073. #define PFRES_BADOFF 1 /* Bad offset for pull_hdr */
  1074. #define PFRES_FRAG 2 /* Dropping following fragment */
  1075. #define PFRES_SHORT 3 /* Dropping short packet */
  1076. #define PFRES_NORM 4 /* Dropping by normalizer */
  1077. #define PFRES_MEMORY 5 /* Dropped due to lacking mem */
  1078. #define PFRES_TS 6 /* Bad TCP Timestamp (RFC1323) */
  1079. #define PFRES_CONGEST 7 /* Congestion (of ipintrq) */
  1080. #define PFRES_IPOPTIONS 8 /* IP option */
  1081. #define PFRES_PROTCKSUM 9 /* Protocol checksum invalid */
  1082. #define PFRES_BADSTATE 10 /* State mismatch */
  1083. #define PFRES_STATEINS 11 /* State insertion failure */
  1084. #define PFRES_MAXSTATES 12 /* State limit */
  1085. #define PFRES_SRCLIMIT 13 /* Source node/conn limit */
  1086. #define PFRES_SYNPROXY 14 /* SYN proxy */
  1087. #define PFRES_TRANSLATE 15 /* No translation address available */
  1088. #define PFRES_NOROUTE 16 /* No route found for PBR action */
  1089. #define PFRES_MAX 17 /* total+1 */
  1090. #define PFRES_NAMES { \
  1091. "match", \
  1092. "bad-offset", \
  1093. "fragment", \
  1094. "short", \
  1095. "normalize", \
  1096. "memory", \
  1097. "bad-timestamp", \
  1098. "congestion", \
  1099. "ip-option", \
  1100. "proto-cksum", \
  1101. "state-mismatch", \
  1102. "state-insert", \
  1103. "state-limit", \
  1104. "src-limit", \
  1105. "synproxy", \
  1106. "translate", \
  1107. "no-route", \
  1108. NULL \
  1109. }
  1110. /* Counters for other things we want to keep track of */
  1111. #define LCNT_STATES 0 /* states */
  1112. #define LCNT_SRCSTATES 1 /* max-src-states */
  1113. #define LCNT_SRCNODES 2 /* max-src-nodes */
  1114. #define LCNT_SRCCONN 3 /* max-src-conn */
  1115. #define LCNT_SRCCONNRATE 4 /* max-src-conn-rate */
  1116. #define LCNT_OVERLOAD_TABLE 5 /* entry added to overload table */
  1117. #define LCNT_OVERLOAD_FLUSH 6 /* state entries flushed */
  1118. #define LCNT_MAX 7 /* total+1 */
  1119. #define LCNT_NAMES { \
  1120. "max states per rule", \
  1121. "max-src-states", \
  1122. "max-src-nodes", \
  1123. "max-src-conn", \
  1124. "max-src-conn-rate", \
  1125. "overload table insertion", \
  1126. "overload flush states", \
  1127. NULL \
  1128. }
  1129. /* UDP state enumeration */
  1130. #define PFUDPS_NO_TRAFFIC 0
  1131. #define PFUDPS_SINGLE 1
  1132. #define PFUDPS_MULTIPLE 2
  1133. #define PFUDPS_NSTATES 3 /* number of state levels */
  1134. #define PFUDPS_NAMES { \
  1135. "NO_TRAFFIC", \
  1136. "SINGLE", \
  1137. "MULTIPLE", \
  1138. NULL \
  1139. }
  1140. /* Other protocol state enumeration */
  1141. #define PFOTHERS_NO_TRAFFIC 0
  1142. #define PFOTHERS_SINGLE 1
  1143. #define PFOTHERS_MULTIPLE 2
  1144. #define PFOTHERS_NSTATES 3 /* number of state levels */
  1145. #define PFOTHERS_NAMES { \
  1146. "NO_TRAFFIC", \
  1147. "SINGLE", \
  1148. "MULTIPLE", \
  1149. NULL \
  1150. }
  1151. #define FCNT_STATE_SEARCH 0
  1152. #define FCNT_STATE_INSERT 1
  1153. #define FCNT_STATE_REMOVALS 2
  1154. #define FCNT_MAX 3
  1155. #define SCNT_SRC_NODE_SEARCH 0
  1156. #define SCNT_SRC_NODE_INSERT 1
  1157. #define SCNT_SRC_NODE_REMOVALS 2
  1158. #define SCNT_MAX 3
  1159. #define ACTION_SET(a, x) \
  1160. do { \
  1161. if ((a) != NULL) \
  1162. *(a) = (x); \
  1163. } while (0)
  1164. #define REASON_SET(a, x) \
  1165. do { \
  1166. if ((void *)(a) != NULL) { \
  1167. *(a) = (x); \
  1168. if (x < PFRES_MAX) \
  1169. pf_status.counters[x]++; \
  1170. } \
  1171. } while (0)
  1172. struct pf_status {
  1173. u_int64_t counters[PFRES_MAX];
  1174. u_int64_t lcounters[LCNT_MAX]; /* limit counters */
  1175. u_int64_t fcounters[FCNT_MAX];
  1176. u_int64_t scounters[SCNT_MAX];
  1177. u_int64_t pcounters[2][2][3];
  1178. u_int64_t bcounters[2][2];
  1179. u_int64_t stateid;
  1180. time_t since;
  1181. u_int32_t running;
  1182. u_int32_t states;
  1183. u_int32_t src_nodes;
  1184. u_int32_t debug;
  1185. u_int32_t hostid;
  1186. u_int32_t reass; /* reassembly */
  1187. char ifname[IFNAMSIZ];
  1188. u_int8_t pf_chksum[PF_MD5_DIGEST_LENGTH];
  1189. };
  1190. #define PF_REASS_ENABLED 0x01
  1191. #define PF_REASS_NODF 0x02
  1192. #define PF_PRIO_ZERO 0xff /* match "prio 0" packets */
  1193. struct pf_queue_bwspec {
  1194. u_int absolute;
  1195. u_int percent;
  1196. };
  1197. struct pf_queue_scspec {
  1198. struct pf_queue_bwspec m1;
  1199. struct pf_queue_bwspec m2;
  1200. u_int d;
  1201. };
  1202. struct pf_queuespec {
  1203. TAILQ_ENTRY(pf_queuespec) entries;
  1204. char qname[PF_QNAME_SIZE];
  1205. char parent[PF_QNAME_SIZE];
  1206. char ifname[IFNAMSIZ];
  1207. struct pf_queue_scspec realtime;
  1208. struct pf_queue_scspec linkshare;
  1209. struct pf_queue_scspec upperlimit;
  1210. struct pfi_kif *kif;
  1211. u_int flags;
  1212. u_int qlimit;
  1213. u_int32_t qid;
  1214. u_int32_t parent_qid;
  1215. };
  1216. struct cbq_opts {
  1217. u_int minburst;
  1218. u_int maxburst;
  1219. u_int pktsize;
  1220. u_int maxpktsize;
  1221. u_int ns_per_byte;
  1222. u_int maxidle;
  1223. int minidle;
  1224. u_int offtime;
  1225. int flags;
  1226. };
  1227. struct priq_opts {
  1228. int flags;
  1229. };
  1230. struct hfsc_opts {
  1231. /* real-time service curve */
  1232. u_int rtsc_m1; /* slope of the 1st segment in bps */
  1233. u_int rtsc_d; /* the x-projection of m1 in msec */
  1234. u_int rtsc_m2; /* slope of the 2nd segment in bps */
  1235. /* link-sharing service curve */
  1236. u_int lssc_m1;
  1237. u_int lssc_d;
  1238. u_int lssc_m2;
  1239. /* upper-limit service curve */
  1240. u_int ulsc_m1;
  1241. u_int ulsc_d;
  1242. u_int ulsc_m2;
  1243. int flags;
  1244. };
  1245. struct pf_tagname {
  1246. TAILQ_ENTRY(pf_tagname) entries;
  1247. char name[PF_TAG_NAME_SIZE];
  1248. u_int16_t tag;
  1249. int ref;
  1250. };
  1251. struct pf_divert {
  1252. struct pf_addr addr;
  1253. u_int16_t port;
  1254. u_int16_t rdomain;
  1255. };
  1256. /* Fragment entries reference mbuf clusters, so base the default on that. */
  1257. #define PFFRAG_FRENT_HIWAT (NMBCLUSTERS / 4) /* Number of entries */
  1258. #define PFFRAG_FRAG_HIWAT (NMBCLUSTERS / 8) /* Number of packets */
  1259. #define PFR_KTABLE_HIWAT 1000 /* Number of tables */
  1260. #define PFR_KENTRY_HIWAT 200000 /* Number of table entries */
  1261. #define PFR_KENTRY_HIWAT_SMALL 100000 /* Number of entries for tiny hosts */
  1262. /*
  1263. * ioctl parameter structures
  1264. */
  1265. struct pfioc_rule {
  1266. u_int32_t action;
  1267. u_int32_t ticket;
  1268. u_int32_t nr;
  1269. char anchor[PATH_MAX];
  1270. char anchor_call[PATH_MAX];
  1271. struct pf_rule rule;
  1272. };
  1273. struct pfioc_natlook {
  1274. struct pf_addr saddr;
  1275. struct pf_addr daddr;
  1276. struct pf_addr rsaddr;
  1277. struct pf_addr rdaddr;
  1278. u_int16_t rdomain;
  1279. u_int16_t rrdomain;
  1280. u_int16_t sport;
  1281. u_int16_t dport;
  1282. u_int16_t rsport;
  1283. u_int16_t rdport;
  1284. sa_family_t af;
  1285. u_int8_t proto;
  1286. u_int8_t direction;
  1287. };
  1288. struct pfioc_state {
  1289. struct pfsync_state state;
  1290. };
  1291. struct pfioc_src_node_kill {
  1292. sa_family_t psnk_af;
  1293. struct pf_rule_addr psnk_src;
  1294. struct pf_rule_addr psnk_dst;
  1295. u_int psnk_killed;
  1296. };
  1297. struct pfioc_state_kill {
  1298. struct pf_state_cmp psk_pfcmp;
  1299. sa_family_t psk_af;
  1300. int psk_proto;
  1301. struct pf_rule_addr psk_src;
  1302. struct pf_rule_addr psk_dst;
  1303. char psk_ifname[IFNAMSIZ];
  1304. char psk_label[PF_RULE_LABEL_SIZE];
  1305. u_int psk_killed;
  1306. u_int16_t psk_rdomain;
  1307. };
  1308. struct pfioc_states {
  1309. int ps_len;
  1310. union {
  1311. caddr_t psu_buf;
  1312. struct pfsync_state *psu_states;
  1313. } ps_u;
  1314. #define ps_buf ps_u.psu_buf
  1315. #define ps_states ps_u.psu_states
  1316. };
  1317. struct pfioc_src_nodes {
  1318. int psn_len;
  1319. union {
  1320. caddr_t psu_buf;
  1321. struct pf_src_node *psu_src_nodes;
  1322. } psn_u;
  1323. #define psn_buf psn_u.psu_buf
  1324. #define psn_src_nodes psn_u.psu_src_nodes
  1325. };
  1326. struct pfioc_tm {
  1327. int timeout;
  1328. int seconds;
  1329. };
  1330. struct pfioc_limit {
  1331. int index;
  1332. unsigned limit;
  1333. };
  1334. struct pfioc_ruleset {
  1335. u_int32_t nr;
  1336. char path[PATH_MAX];
  1337. char name[PF_ANCHOR_NAME_SIZE];
  1338. };
  1339. struct pfioc_trans {
  1340. int size; /* number of elements */
  1341. int esize; /* size of each element in bytes */
  1342. struct pfioc_trans_e {
  1343. int type;
  1344. char anchor[PATH_MAX];
  1345. u_int32_t ticket;
  1346. } *array;
  1347. };
  1348. struct pfioc_queue {
  1349. u_int32_t ticket;
  1350. u_int nr;
  1351. struct pf_queuespec queue;
  1352. };
  1353. struct pfioc_qstats {
  1354. u_int32_t ticket;
  1355. u_int32_t nr;
  1356. struct pf_queuespec queue;
  1357. void *buf;
  1358. int nbytes;
  1359. };
  1360. #define PFR_FLAG_DUMMY 0x00000002
  1361. #define PFR_FLAG_FEEDBACK 0x00000004
  1362. #define PFR_FLAG_CLSTATS 0x00000008
  1363. #define PFR_FLAG_ADDRSTOO 0x00000010
  1364. #define PFR_FLAG_REPLACE 0x00000020
  1365. #define PFR_FLAG_ALLRSETS 0x00000040
  1366. #define PFR_FLAG_ALLMASK 0x0000007F
  1367. #ifdef _KERNEL
  1368. #define PFR_FLAG_USERIOCTL 0x10000000
  1369. #endif
  1370. struct pfioc_table {
  1371. struct pfr_table pfrio_table;
  1372. void *pfrio_buffer;
  1373. int pfrio_esize;
  1374. int pfrio_size;
  1375. int pfrio_size2;
  1376. int pfrio_nadd;
  1377. int pfrio_ndel;
  1378. int pfrio_nchange;
  1379. int pfrio_flags;
  1380. u_int32_t pfrio_ticket;
  1381. };
  1382. #define pfrio_exists pfrio_nadd
  1383. #define pfrio_nzero pfrio_nadd
  1384. #define pfrio_nmatch pfrio_nadd
  1385. #define pfrio_naddr pfrio_size2
  1386. #define pfrio_setflag pfrio_size2
  1387. #define pfrio_clrflag pfrio_nadd
  1388. struct pfioc_iface {
  1389. char pfiio_name[IFNAMSIZ];
  1390. void *pfiio_buffer;
  1391. int pfiio_esize;
  1392. int pfiio_size;
  1393. int pfiio_nzero;
  1394. int pfiio_flags;
  1395. };
  1396. /*
  1397. * ioctl operations
  1398. */
  1399. #define DIOCSTART _IO ('D', 1)
  1400. #define DIOCSTOP _IO ('D', 2)
  1401. #define DIOCADDRULE _IOWR('D', 4, struct pfioc_rule)
  1402. #define DIOCGETRULES _IOWR('D', 6, struct pfioc_rule)
  1403. #define DIOCGETRULE _IOWR('D', 7, struct pfioc_rule)
  1404. /* XXX cut 8 - 17 */
  1405. #define DIOCCLRSTATES _IOWR('D', 18, struct pfioc_state_kill)
  1406. #define DIOCGETSTATE _IOWR('D', 19, struct pfioc_state)
  1407. #define DIOCSETSTATUSIF _IOWR('D', 20, struct pfioc_iface)
  1408. #define DIOCGETSTATUS _IOWR('D', 21, struct pf_status)
  1409. #define DIOCCLRSTATUS _IOWR('D', 22, struct pfioc_iface)
  1410. #define DIOCNATLOOK _IOWR('D', 23, struct pfioc_natlook)
  1411. #define DIOCSETDEBUG _IOWR('D', 24, u_int32_t)
  1412. #define DIOCGETSTATES _IOWR('D', 25, struct pfioc_states)
  1413. #define DIOCCHANGERULE _IOWR('D', 26, struct pfioc_rule)
  1414. /* XXX cut 27 - 28 */
  1415. #define DIOCSETTIMEOUT _IOWR('D', 29, struct pfioc_tm)
  1416. #define DIOCGETTIMEOUT _IOWR('D', 30, struct pfioc_tm)
  1417. #define DIOCADDSTATE _IOWR('D', 37, struct pfioc_state)
  1418. #define DIOCCLRRULECTRS _IO ('D', 38)
  1419. #define DIOCGETLIMIT _IOWR('D', 39, struct pfioc_limit)
  1420. #define DIOCSETLIMIT _IOWR('D', 40, struct pfioc_limit)
  1421. #define DIOCKILLSTATES _IOWR('D', 41, struct pfioc_state_kill)
  1422. /* XXX cut 42 - 57 */
  1423. #define DIOCGETRULESETS _IOWR('D', 58, struct pfioc_ruleset)
  1424. #define DIOCGETRULESET _IOWR('D', 59, struct pfioc_ruleset)
  1425. #define DIOCRCLRTABLES _IOWR('D', 60, struct pfioc_table)
  1426. #define DIOCRADDTABLES _IOWR('D', 61, struct pfioc_table)
  1427. #define DIOCRDELTABLES _IOWR('D', 62, struct pfioc_table)
  1428. #define DIOCRGETTABLES _IOWR('D', 63, struct pfioc_table)
  1429. #define DIOCRGETTSTATS _IOWR('D', 64, struct pfioc_table)
  1430. #define DIOCRCLRTSTATS _IOWR('D', 65, struct pfioc_table)
  1431. #define DIOCRCLRADDRS _IOWR('D', 66, struct pfioc_table)
  1432. #define DIOCRADDADDRS _IOWR('D', 67, struct pfioc_table)
  1433. #define DIOCRDELADDRS _IOWR('D', 68, struct pfioc_table)
  1434. #define DIOCRSETADDRS _IOWR('D', 69, struct pfioc_table)
  1435. #define DIOCRGETADDRS _IOWR('D', 70, struct pfioc_table)
  1436. #define DIOCRGETASTATS _IOWR('D', 71, struct pfioc_table)
  1437. #define DIOCRCLRASTATS _IOWR('D', 72, struct pfioc_table)
  1438. #define DIOCRTSTADDRS _IOWR('D', 73, struct pfioc_table)
  1439. #define DIOCRSETTFLAGS _IOWR('D', 74, struct pfioc_table)
  1440. #define DIOCRINADEFINE _IOWR('D', 77, struct pfioc_table)
  1441. #define DIOCOSFPFLUSH _IO('D', 78)
  1442. #define DIOCOSFPADD _IOWR('D', 79, struct pf_osfp_ioctl)
  1443. #define DIOCOSFPGET _IOWR('D', 80, struct pf_osfp_ioctl)
  1444. #define DIOCXBEGIN _IOWR('D', 81, struct pfioc_trans)
  1445. #define DIOCXCOMMIT _IOWR('D', 82, struct pfioc_trans)
  1446. #define DIOCXROLLBACK _IOWR('D', 83, struct pfioc_trans)
  1447. #define DIOCGETSRCNODES _IOWR('D', 84, struct pfioc_src_nodes)
  1448. #define DIOCCLRSRCNODES _IO('D', 85)
  1449. #define DIOCSETHOSTID _IOWR('D', 86, u_int32_t)
  1450. #define DIOCIGETIFACES _IOWR('D', 87, struct pfioc_iface)
  1451. #define DIOCSETIFFLAG _IOWR('D', 89, struct pfioc_iface)
  1452. #define DIOCCLRIFFLAG _IOWR('D', 90, struct pfioc_iface)
  1453. #define DIOCKILLSRCNODES _IOWR('D', 91, struct pfioc_src_node_kill)
  1454. #define DIOCSETREASS _IOWR('D', 92, u_int32_t)
  1455. #define DIOCADDQUEUE _IOWR('D', 93, struct pfioc_queue)
  1456. #define DIOCGETQUEUES _IOWR('D', 94, struct pfioc_queue)
  1457. #define DIOCGETQUEUE _IOWR('D', 95, struct pfioc_queue)
  1458. #define DIOCGETQSTATS _IOWR('D', 96, struct pfioc_qstats)
  1459. #ifdef _KERNEL
  1460. RB_HEAD(pf_src_tree, pf_src_node);
  1461. RB_PROTOTYPE(pf_src_tree, pf_src_node, entry, pf_src_compare);
  1462. extern struct pf_src_tree tree_src_tracking;
  1463. RB_HEAD(pf_state_tree_id, pf_state);
  1464. RB_PROTOTYPE(pf_state_tree_id, pf_state,
  1465. entry_id, pf_state_compare_id);
  1466. extern struct pf_state_tree_id tree_id;
  1467. extern struct pf_state_queue state_list;
  1468. TAILQ_HEAD(pf_queuehead, pf_queuespec);
  1469. extern struct pf_queuehead pf_queues[2];
  1470. extern struct pf_queuehead *pf_queues_active, *pf_queues_inactive;
  1471. extern u_int32_t ticket_pabuf;
  1472. extern int pf_free_queues(struct pf_queuehead *,
  1473. struct ifnet *);
  1474. extern int pf_remove_queues(struct ifnet *);
  1475. extern int pf_tbladdr_setup(struct pf_ruleset *,
  1476. struct pf_addr_wrap *);
  1477. extern void pf_tbladdr_remove(struct pf_addr_wrap *);
  1478. extern void pf_tbladdr_copyout(struct pf_addr_wrap *);
  1479. extern void pf_calc_skip_steps(struct pf_rulequeue *);
  1480. extern struct pool pf_src_tree_pl, pf_sn_item_pl, pf_rule_pl;
  1481. extern struct pool pf_state_pl, pf_state_key_pl, pf_state_item_pl,
  1482. pf_rule_item_pl, pf_queue_pl;
  1483. extern struct pool pf_state_scrub_pl;
  1484. extern void pf_purge_thread(void *);
  1485. extern void pf_purge_expired_src_nodes(int);
  1486. extern void pf_purge_expired_states(u_int32_t);
  1487. extern void pf_unlink_state(struct pf_state *);
  1488. extern void pf_free_state(struct pf_state *);
  1489. extern int pf_state_insert(struct pfi_kif *,
  1490. struct pf_state_key **,
  1491. struct pf_state_key **,
  1492. struct pf_state *);
  1493. int pf_insert_src_node(struct pf_src_node **,
  1494. struct pf_rule *, enum pf_sn_types,
  1495. sa_family_t, struct pf_addr *,
  1496. struct pf_addr *, int);
  1497. void pf_remove_src_node(struct pf_src_node *);
  1498. struct pf_src_node *pf_get_src_node(struct pf_state *,
  1499. enum pf_sn_types);
  1500. void pf_src_tree_remove_state(struct pf_state *);
  1501. void pf_state_rm_src_node(struct pf_state *,
  1502. struct pf_src_node *);
  1503. extern struct pf_state *pf_find_state_byid(struct pf_state_cmp *);
  1504. extern struct pf_state *pf_find_state_all(struct pf_state_key_cmp *,
  1505. u_int, int *);
  1506. extern void pf_state_export(struct pfsync_state *,
  1507. struct pf_state *);
  1508. extern void pf_print_state(struct pf_state *);
  1509. extern void pf_print_flags(u_int8_t);
  1510. extern struct ifnet *sync_ifp;
  1511. extern struct pf_rule pf_default_rule;
  1512. extern void pf_addrcpy(struct pf_addr *, struct pf_addr *,
  1513. sa_family_t);
  1514. void pf_rm_rule(struct pf_rulequeue *,
  1515. struct pf_rule *);
  1516. void pf_purge_rule(struct pf_ruleset *,
  1517. struct pf_rule *, struct pf_ruleset *,
  1518. struct pf_rule *);
  1519. struct pf_divert *pf_find_divert(struct mbuf *);
  1520. int pf_setup_pdesc(struct pf_pdesc *, void *,
  1521. sa_family_t, int, struct pfi_kif *,
  1522. struct mbuf *, u_short *);
  1523. int pf_test(sa_family_t, int, struct ifnet *, struct mbuf **);
  1524. void pf_poolmask(struct pf_addr *, struct pf_addr*,
  1525. struct pf_addr *, struct pf_addr *, sa_family_t);
  1526. void pf_addr_inc(struct pf_addr *, sa_family_t);
  1527. void *pf_pull_hdr(struct mbuf *, int, void *, int, u_short *, u_short *,
  1528. sa_family_t);
  1529. void pf_change_a(struct pf_pdesc *, void *, u_int32_t);
  1530. int pf_check_proto_cksum(struct pf_pdesc *, int, int, u_int8_t,
  1531. sa_family_t);
  1532. int pflog_packet(struct pf_pdesc *, u_int8_t, struct pf_rule *,
  1533. struct pf_rule *, struct pf_ruleset *, struct pf_rule *);
  1534. void pf_send_deferred_syn(struct pf_state *);
  1535. int pf_match_addr(u_int8_t, struct pf_addr *, struct pf_addr *,
  1536. struct pf_addr *, sa_family_t);
  1537. int pf_match_addr_range(struct pf_addr *, struct pf_addr *,
  1538. struct pf_addr *, sa_family_t);
  1539. int pf_match(u_int8_t, u_int32_t, u_int32_t, u_int32_t);
  1540. int pf_match_port(u_int8_t, u_int16_t, u_int16_t, u_int16_t);
  1541. int pf_match_uid(u_int8_t, uid_t, uid_t, uid_t);
  1542. int pf_match_gid(u_int8_t, gid_t, gid_t, gid_t);
  1543. int pf_refragment6(struct mbuf **, struct m_tag *mtag);
  1544. void pf_normalize_init(void);
  1545. int pf_normalize_ip(struct pf_pdesc *, u_short *);
  1546. int pf_normalize_ip6(struct pf_pdesc *, u_short *);
  1547. int pf_normalize_tcp(struct pf_pdesc *);
  1548. void pf_normalize_tcp_cleanup(struct pf_state *);
  1549. int pf_normalize_tcp_init(struct pf_pdesc *, struct pf_state_peer *);
  1550. int pf_normalize_tcp_stateful(struct pf_pdesc *, u_short *,
  1551. struct pf_state *, struct pf_state_peer *, struct pf_state_peer *,
  1552. int *);
  1553. int pf_normalize_mss(struct pf_pdesc *, u_int16_t);
  1554. void pf_scrub(struct mbuf *, u_int16_t, sa_family_t, u_int8_t, u_int8_t);
  1555. int32_t pf_state_expires(const struct pf_state *);
  1556. void pf_purge_expired_fragments(void);
  1557. int pf_routable(struct pf_addr *addr, sa_family_t af, struct pfi_kif *,
  1558. int);
  1559. int pf_rtlabel_match(struct pf_addr *, sa_family_t, struct pf_addr_wrap *,
  1560. int);
  1561. int pf_socket_lookup(struct pf_pdesc *);
  1562. struct pf_state_key *pf_alloc_state_key(int);
  1563. void pf_pkt_addr_changed(struct mbuf *);
  1564. int pf_state_key_attach(struct pf_state_key *, struct pf_state *, int);
  1565. int pf_translate(struct pf_pdesc *, struct pf_addr *, u_int16_t,
  1566. struct pf_addr *, u_int16_t, u_int16_t, int);
  1567. int pf_translate_af(struct pf_pdesc *);
  1568. void pf_route(struct mbuf **, struct pf_rule *, int,
  1569. struct ifnet *, struct pf_state *);
  1570. void pf_route6(struct mbuf **, struct pf_rule *, int,
  1571. struct ifnet *, struct pf_state *);
  1572. void pfr_initialize(void);
  1573. int pfr_match_addr(struct pfr_ktable *, struct pf_addr *, sa_family_t);
  1574. void pfr_update_stats(struct pfr_ktable *, struct pf_addr *,
  1575. struct pf_pdesc *, int, int);
  1576. int pfr_pool_get(struct pf_pool *, struct pf_addr **,
  1577. struct pf_addr **, sa_family_t);
  1578. int pfr_states_increase(struct pfr_ktable *, struct pf_addr *, int);
  1579. int pfr_states_decrease(struct pfr_ktable *, struct pf_addr *, int);
  1580. struct pfr_kentry *
  1581. pfr_kentry_byaddr(struct pfr_ktable *, struct pf_addr *, sa_family_t,
  1582. int);
  1583. void pfr_dynaddr_update(struct pfr_ktable *, struct pfi_dynaddr *);
  1584. struct pfr_ktable *
  1585. pfr_attach_table(struct pf_ruleset *, char *, int);
  1586. void pfr_detach_table(struct pfr_ktable *);
  1587. int pfr_clr_tables(struct pfr_table *, int *, int);
  1588. int pfr_add_tables(struct pfr_table *, int, int *, int);
  1589. int pfr_del_tables(struct pfr_table *, int, int *, int);
  1590. int pfr_get_tables(struct pfr_table *, struct pfr_table *, int *, int);
  1591. int pfr_get_tstats(struct pfr_table *, struct pfr_tstats *, int *, int);
  1592. int pfr_clr_tstats(struct pfr_table *, int, int *, int);
  1593. int pfr_set_tflags(struct pfr_table *, int, int, int, int *, int *, int);
  1594. int pfr_clr_addrs(struct pfr_table *, int *, int);
  1595. int pfr_insert_kentry(struct pfr_ktable *, struct pfr_addr *, time_t);
  1596. int pfr_add_addrs(struct pfr_table *, struct pfr_addr *, int, int *,
  1597. int);
  1598. int pfr_del_addrs(struct pfr_table *, struct pfr_addr *, int, int *,
  1599. int);
  1600. int pfr_set_addrs(struct pfr_table *, struct pfr_addr *, int, int *,
  1601. int *, int *, int *, int, u_int32_t);
  1602. int pfr_get_addrs(struct pfr_table *, struct pfr_addr *, int *, int);
  1603. int pfr_get_astats(struct pfr_table *, struct pfr_astats *, int *, int);
  1604. int pfr_clr_astats(struct pfr_table *, struct pfr_addr *, int, int *,
  1605. int);
  1606. int pfr_tst_addrs(struct pfr_table *, struct pfr_addr *, int, int *,
  1607. int);
  1608. int pfr_ina_begin(struct pfr_table *, u_int32_t *, int *, int);
  1609. int pfr_ina_rollback(struct pfr_table *, u_int32_t, int *, int);
  1610. int pfr_ina_commit(struct pfr_table *, u_int32_t, int *, int *, int);
  1611. int pfr_ina_define(struct pfr_table *, struct pfr_addr *, int, int *,
  1612. int *, u_int32_t, int);
  1613. extern struct pfi_kif *pfi_all;
  1614. void pfi_initialize(void);
  1615. struct pfi_kif *pfi_kif_get(const char *);
  1616. void pfi_kif_ref(struct pfi_kif *, enum pfi_kif_refs);
  1617. void pfi_kif_unref(struct pfi_kif *, enum pfi_kif_refs);
  1618. int pfi_kif_match(struct pfi_kif *, struct pfi_kif *);
  1619. void pfi_attach_ifnet(struct ifnet *);
  1620. void pfi_detach_ifnet(struct ifnet *);
  1621. void pfi_attach_ifgroup(struct ifg_group *);
  1622. void pfi_detach_ifgroup(struct ifg_group *);
  1623. void pfi_group_change(const char *);
  1624. int pfi_match_addr(struct pfi_dynaddr *, struct pf_addr *,
  1625. sa_family_t);
  1626. int pfi_dynaddr_setup(struct pf_addr_wrap *, sa_family_t);
  1627. void pfi_dynaddr_remove(struct pf_addr_wrap *);
  1628. void pfi_dynaddr_copyout(struct pf_addr_wrap *);
  1629. void pfi_update_status(const char *, struct pf_status *);
  1630. int pfi_get_ifaces(const char *, struct pfi_kif *, int *);
  1631. int pfi_set_flags(const char *, int);
  1632. int pfi_clear_flags(const char *, int);
  1633. void pfi_xcommit(void);
  1634. int pf_match_tag(struct mbuf *, struct pf_rule *, int *);
  1635. u_int16_t pf_tagname2tag(char *, int);
  1636. void pf_tag2tagname(u_int16_t, char *);
  1637. void pf_tag_ref(u_int16_t);
  1638. void pf_tag_unref(u_int16_t);
  1639. void pf_tag_packet(struct mbuf *, int, int);
  1640. int pf_addr_compare(struct pf_addr *, struct pf_addr *,
  1641. sa_family_t);
  1642. extern struct pf_status pf_status;
  1643. extern struct pool pf_frent_pl, pf_frag_pl;
  1644. extern struct rwlock pf_consistency_lock;
  1645. struct pf_pool_limit {
  1646. void *pp;
  1647. unsigned limit;
  1648. unsigned limit_new;
  1649. };
  1650. extern struct pf_pool_limit pf_pool_limits[PF_LIMIT_MAX];
  1651. #endif /* _KERNEL */
  1652. extern struct pf_anchor_global pf_anchors;
  1653. extern struct pf_anchor pf_main_anchor;
  1654. #define pf_main_ruleset pf_main_anchor.ruleset
  1655. /* these ruleset functions can be linked into userland programs (pfctl) */
  1656. void pf_init_ruleset(struct pf_ruleset *);
  1657. int pf_anchor_setup(struct pf_rule *,
  1658. const struct pf_ruleset *, const char *);
  1659. int pf_anchor_copyout(const struct pf_ruleset *,
  1660. const struct pf_rule *, struct pfioc_rule *);
  1661. void pf_anchor_remove(struct pf_rule *);
  1662. void pf_remove_if_empty_ruleset(struct pf_ruleset *);
  1663. struct pf_anchor *pf_find_anchor(const char *);
  1664. struct pf_ruleset *pf_find_ruleset(const char *);
  1665. struct pf_ruleset *pf_find_or_create_ruleset(const char *);
  1666. void pf_rs_initialize(void);
  1667. #ifdef _KERNEL
  1668. int pf_anchor_copyout(const struct pf_ruleset *,
  1669. const struct pf_rule *, struct pfioc_rule *);
  1670. void pf_anchor_remove(struct pf_rule *);
  1671. #endif /* _KERNEL */
  1672. /* The fingerprint functions can be linked into userland programs (tcpdump) */
  1673. int pf_osfp_add(struct pf_osfp_ioctl *);
  1674. #ifdef _KERNEL
  1675. struct pf_osfp_enlist *
  1676. pf_osfp_fingerprint(struct pf_pdesc *);
  1677. #endif /* _KERNEL */
  1678. struct pf_osfp_enlist *
  1679. pf_osfp_fingerprint_hdr(const struct ip *, const struct ip6_hdr *,
  1680. const struct tcphdr *);
  1681. void pf_osfp_flush(void);
  1682. int pf_osfp_get(struct pf_osfp_ioctl *);
  1683. void pf_osfp_initialize(void);
  1684. int pf_osfp_match(struct pf_osfp_enlist *, pf_osfp_t);
  1685. struct pf_os_fingerprint *
  1686. pf_osfp_validate(void);
  1687. #ifdef _KERNEL
  1688. void pf_print_host(struct pf_addr *, u_int16_t, sa_family_t);
  1689. int pf_get_transaddr(struct pf_rule *, struct pf_pdesc *,
  1690. struct pf_src_node **, struct pf_rule **);
  1691. int pf_map_addr(sa_family_t, struct pf_rule *,
  1692. struct pf_addr *, struct pf_addr *,
  1693. struct pf_addr *, struct pf_src_node **,
  1694. struct pf_pool *, enum pf_sn_types);
  1695. int pf_postprocess_addr(struct pf_state *);
  1696. void pf_cksum(struct pf_pdesc *, struct mbuf *);
  1697. #endif /* _KERNEL */
  1698. #endif /* _NET_PFVAR_H_ */