1 1.8 chs /* $NetBSD: ip_fil.h,v 1.8 2019/11/11 19:33:43 chs Exp $ */ 2 1.1 christos 3 1.1 christos /* 4 1.1 christos * Copyright (C) 2012 by Darren Reed. 5 1.1 christos * 6 1.1 christos * See the IPFILTER.LICENCE file for details on licencing. 7 1.1 christos * 8 1.1 christos * @(#)ip_fil.h 1.35 6/5/96 9 1.3 darrenr * Id: ip_fil.h,v 1.1.1.2 2012/07/22 13:45:13 darrenr Exp 10 1.1 christos */ 11 1.1 christos 12 1.2 christos #ifndef _NETINET_IP_FIL_H_ 13 1.2 christos #define _NETINET_IP_FIL_H_ 14 1.1 christos 15 1.1 christos #include "netinet/ip_compat.h" 16 1.1 christos #include "netinet/ipf_rb.h" 17 1.1 christos #if NETBSD_GE_REV(104040000) 18 1.1 christos # include <sys/callout.h> 19 1.1 christos #endif 20 1.1 christos #if defined(BSD) && defined(_KERNEL) 21 1.1 christos # if NETBSD_LT_REV(399000000) || defined(__osf__) || FREEBSD_LT_REV(500043) 22 1.1 christos # include <sys/select.h> 23 1.1 christos # else 24 1.1 christos # include <sys/selinfo.h> 25 1.1 christos # endif 26 1.1 christos #endif 27 1.1 christos 28 1.1 christos #if !defined(linux) || !defined(_KERNEL) 29 1.1 christos # include <netinet/in.h> 30 1.1 christos #endif 31 1.1 christos 32 1.1 christos #ifndef SOLARIS 33 1.4 plunky # if (defined(sun) && (defined(__svr4__) || defined(__SVR4))) 34 1.4 plunky # define SOLARIS 1 35 1.4 plunky # else 36 1.4 plunky # define SOLARIS 0 37 1.4 plunky # endif 38 1.1 christos #endif 39 1.1 christos 40 1.1 christos #if defined(__STDC__) || defined(__GNUC__) || defined(_AIX51) 41 1.1 christos # define SIOCADAFR _IOW('r', 60, struct ipfobj) 42 1.1 christos # define SIOCRMAFR _IOW('r', 61, struct ipfobj) 43 1.1 christos # define SIOCSETFF _IOW('r', 62, u_int) 44 1.1 christos # define SIOCGETFF _IOR('r', 63, u_int) 45 1.1 christos # define SIOCGETFS _IOWR('r', 64, struct ipfobj) 46 1.1 christos # define SIOCIPFFL _IOWR('r', 65, int) 47 1.1 christos # define SIOCIPFFB _IOR('r', 66, int) 48 1.1 christos # define SIOCADIFR _IOW('r', 67, struct ipfobj) 49 1.1 christos # define SIOCRMIFR _IOW('r', 68, struct ipfobj) 50 1.1 christos # define SIOCSWAPA _IOR('r', 69, u_int) 51 1.1 christos # define SIOCINAFR _IOW('r', 70, struct ipfobj) 52 1.1 christos # define SIOCINIFR _IOW('r', 71, struct ipfobj) 53 1.1 christos # define SIOCFRENB _IOW('r', 72, u_int) 54 1.1 christos # define SIOCFRSYN _IOW('r', 73, u_int) 55 1.1 christos # define SIOCFRZST _IOWR('r', 74, struct ipfobj) 56 1.1 christos # define SIOCZRLST _IOWR('r', 75, struct ipfobj) 57 1.1 christos # define SIOCAUTHW _IOWR('r', 76, struct ipfobj) 58 1.1 christos # define SIOCAUTHR _IOWR('r', 77, struct ipfobj) 59 1.1 christos # define SIOCSTAT1 _IOWR('r', 78, struct ipfobj) 60 1.1 christos # define SIOCSTLCK _IOWR('r', 79, u_int) 61 1.1 christos # define SIOCSTPUT _IOWR('r', 80, struct ipfobj) 62 1.1 christos # define SIOCSTGET _IOWR('r', 81, struct ipfobj) 63 1.1 christos # define SIOCSTGSZ _IOWR('r', 82, struct ipfobj) 64 1.1 christos # define SIOCSTAT2 _IOWR('r', 83, struct ipfobj) 65 1.1 christos # define SIOCSETLG _IOWR('r', 84, int) 66 1.1 christos # define SIOCGETLG _IOWR('r', 85, int) 67 1.1 christos # define SIOCFUNCL _IOWR('r', 86, struct ipfunc_resolve) 68 1.1 christos # define SIOCIPFGETNEXT _IOWR('r', 87, struct ipfobj) 69 1.1 christos # define SIOCIPFGET _IOWR('r', 88, struct ipfobj) 70 1.1 christos # define SIOCIPFSET _IOWR('r', 89, struct ipfobj) 71 1.1 christos # define SIOCIPFL6 _IOWR('r', 90, int) 72 1.1 christos # define SIOCIPFITER _IOWR('r', 91, struct ipfobj) 73 1.1 christos # define SIOCGENITER _IOWR('r', 92, struct ipfobj) 74 1.1 christos # define SIOCGTABL _IOWR('r', 93, struct ipfobj) 75 1.1 christos # define SIOCIPFDELTOK _IOWR('r', 94, int) 76 1.1 christos # define SIOCLOOKUPITER _IOWR('r', 95, struct ipfobj) 77 1.1 christos # define SIOCGTQTAB _IOWR('r', 96, struct ipfobj) 78 1.1 christos # define SIOCMATCHFLUSH _IOWR('r', 97, struct ipfobj) 79 1.1 christos # define SIOCIPFINTERROR _IOR('r', 98, int) 80 1.1 christos #else 81 1.1 christos # define SIOCADAFR _IOW(r, 60, struct ipfobj) 82 1.1 christos # define SIOCRMAFR _IOW(r, 61, struct ipfobj) 83 1.1 christos # define SIOCSETFF _IOW(r, 62, u_int) 84 1.1 christos # define SIOCGETFF _IOR(r, 63, u_int) 85 1.1 christos # define SIOCGETFS _IOWR(r, 64, struct ipfobj) 86 1.1 christos # define SIOCIPFFL _IOWR(r, 65, int) 87 1.1 christos # define SIOCIPFFB _IOR(r, 66, int) 88 1.1 christos # define SIOCADIFR _IOW(r, 67, struct ipfobj) 89 1.1 christos # define SIOCRMIFR _IOW(r, 68, struct ipfobj) 90 1.1 christos # define SIOCSWAPA _IOR(r, 69, u_int) 91 1.1 christos # define SIOCINAFR _IOW(r, 70, struct ipfobj) 92 1.1 christos # define SIOCINIFR _IOW(r, 71, struct ipfobj) 93 1.1 christos # define SIOCFRENB _IOW(r, 72, u_int) 94 1.1 christos # define SIOCFRSYN _IOW(r, 73, u_int) 95 1.1 christos # define SIOCFRZST _IOWR(r, 74, struct ipfobj) 96 1.1 christos # define SIOCZRLST _IOWR(r, 75, struct ipfobj) 97 1.1 christos # define SIOCAUTHW _IOWR(r, 76, struct ipfobj) 98 1.1 christos # define SIOCAUTHR _IOWR(r, 77, struct ipfobj) 99 1.1 christos # define SIOCSTAT1 _IOWR(r, 78, struct ipfobj) 100 1.1 christos # define SIOCSTLCK _IOWR(r, 79, u_int) 101 1.1 christos # define SIOCSTPUT _IOWR(r, 80, struct ipfobj) 102 1.1 christos # define SIOCSTGET _IOWR(r, 81, struct ipfobj) 103 1.1 christos # define SIOCSTGSZ _IOWR(r, 82, struct ipfobj) 104 1.1 christos # define SIOCSTAT2 _IOWR(r, 83, struct ipfobj) 105 1.1 christos # define SIOCSETLG _IOWR(r, 84, int) 106 1.1 christos # define SIOCGETLG _IOWR(r, 85, int) 107 1.1 christos # define SIOCFUNCL _IOWR(r, 86, struct ipfunc_resolve) 108 1.1 christos # define SIOCIPFGETNEXT _IOWR(r, 87, struct ipfobj) 109 1.1 christos # define SIOCIPFGET _IOWR(r, 88, struct ipfobj) 110 1.1 christos # define SIOCIPFSET _IOWR(r, 89, struct ipfobj) 111 1.1 christos # define SIOCIPFL6 _IOWR(r, 90, int) 112 1.1 christos # define SIOCIPFITER _IOWR(r, 91, struct ipfobj) 113 1.1 christos # define SIOCGENITER _IOWR(r, 92, struct ipfobj) 114 1.1 christos # define SIOCGTABL _IOWR(r, 93, struct ipfobj) 115 1.1 christos # define SIOCIPFDELTOK _IOWR(r, 94, int) 116 1.1 christos # define SIOCLOOKUPITER _IOWR(r, 95, struct ipfobj) 117 1.1 christos # define SIOCGTQTAB _IOWR(r, 96, struct ipfobj) 118 1.1 christos # define SIOCMATCHFLUSH _IOWR(r, 97, struct ipfobj) 119 1.1 christos # define SIOCIPFINTERROR _IOR(r, 98, int) 120 1.1 christos #endif 121 1.1 christos #define SIOCADDFR SIOCADAFR 122 1.1 christos #define SIOCDELFR SIOCRMAFR 123 1.1 christos #define SIOCINSFR SIOCINAFR 124 1.1 christos #define SIOCATHST SIOCSTAT1 125 1.1 christos #define SIOCGFRST SIOCSTAT2 126 1.1 christos 127 1.1 christos 128 1.1 christos struct ipscan; 129 1.1 christos struct ifnet; 130 1.1 christos struct ipf_main_softc_s; 131 1.1 christos 132 1.2 christos typedef int (* lookupfunc_t)(struct ipf_main_softc_s *, void *, 133 1.2 christos int, void *, u_int); 134 1.1 christos 135 1.1 christos /* 136 1.1 christos * i6addr is used as a container for both IPv4 and IPv6 addresses, as well 137 1.1 christos * as other types of objects, depending on its qualifier. 138 1.1 christos */ 139 1.1 christos #ifdef USE_INET6 140 1.1 christos typedef union i6addr { 141 1.1 christos u_32_t i6[4]; 142 1.1 christos struct in_addr in4; 143 1.1 christos struct in6_addr in6; 144 1.1 christos void *vptr[2]; 145 1.1 christos lookupfunc_t lptr[2]; 146 1.1 christos struct { 147 1.1 christos u_short type; 148 1.1 christos u_short subtype; 149 1.1 christos int name; 150 1.1 christos } i6un; 151 1.1 christos } i6addr_t; 152 1.1 christos #else 153 1.1 christos typedef union i6addr { 154 1.1 christos u_32_t i6[4]; 155 1.1 christos struct in_addr in4; 156 1.1 christos void *vptr[2]; 157 1.1 christos lookupfunc_t lptr[2]; 158 1.1 christos struct { 159 1.1 christos u_short type; 160 1.1 christos u_short subtype; 161 1.1 christos int name; 162 1.1 christos } i6un; 163 1.1 christos } i6addr_t; 164 1.1 christos #endif 165 1.1 christos 166 1.1 christos #define in4_addr in4.s_addr 167 1.1 christos #define iplookupnum i6[1] 168 1.1 christos #define iplookupname i6un.name 169 1.1 christos #define iplookuptype i6un.type 170 1.1 christos #define iplookupsubtype i6un.subtype 171 1.1 christos /* 172 1.1 christos * NOTE: These DO overlap the above on 64bit systems and this IS recognised. 173 1.1 christos */ 174 1.1 christos #define iplookupptr vptr[0] 175 1.1 christos #define iplookupfunc lptr[1] 176 1.1 christos 177 1.2 christos /* Avoid casting to a type presuming 64-bit alignment. */ 178 1.1 christos #define I60(x) (((u_32_t *)(x))[0]) 179 1.1 christos #define I61(x) (((u_32_t *)(x))[1]) 180 1.1 christos #define I62(x) (((u_32_t *)(x))[2]) 181 1.1 christos #define I63(x) (((u_32_t *)(x))[3]) 182 1.1 christos #define HI60(x) ntohl(((u_32_t *)(x))[0]) 183 1.1 christos #define HI61(x) ntohl(((u_32_t *)(x))[1]) 184 1.1 christos #define HI62(x) ntohl(((u_32_t *)(x))[2]) 185 1.1 christos #define HI63(x) ntohl(((u_32_t *)(x))[3]) 186 1.1 christos 187 1.1 christos #define IP6_EQ(a,b) ((I63(a) == I63(b)) && (I62(a) == I62(b)) && \ 188 1.1 christos (I61(a) == I61(b)) && (I60(a) == I60(b))) 189 1.1 christos #define IP6_NEQ(a,b) ((I63(a) != I63(b)) || (I62(a) != I62(b)) || \ 190 1.1 christos (I61(a) != I61(b)) || (I60(a) != I60(b))) 191 1.1 christos #define IP6_ISZERO(a) ((I60(a) | I61(a) | I62(a) | I63(a)) == 0) 192 1.1 christos #define IP6_NOTZERO(a) ((I60(a) | I61(a) | I62(a) | I63(a)) != 0) 193 1.1 christos #define IP6_ISONES(a) ((I63(a) == 0xffffffff) && (I62(a) == 0xffffffff) && \ 194 1.1 christos (I61(a) == 0xffffffff) && (I60(a) == 0xffffffff)) 195 1.1 christos #define IP6_GT(a,b) (ntohl(HI60(a)) > ntohl(HI60(b)) || \ 196 1.1 christos (HI60(a) == HI60(b) && \ 197 1.1 christos (ntohl(HI61(a)) > ntohl(HI61(b)) || \ 198 1.1 christos (HI61(a) == HI61(b) && \ 199 1.1 christos (ntohl(HI62(a)) > ntohl(HI62(b)) || \ 200 1.1 christos (HI62(a) == HI62(b) && \ 201 1.1 christos ntohl(HI63(a)) > ntohl(HI63(b)))))))) 202 1.1 christos #define IP6_LT(a,b) (ntohl(HI60(a)) < ntohl(HI60(b)) || \ 203 1.1 christos (HI60(a) == HI60(b) && \ 204 1.1 christos (ntohl(HI61(a)) < ntohl(HI61(b)) || \ 205 1.1 christos (HI61(a) == HI61(b) && \ 206 1.1 christos (ntohl(HI62(a)) < ntohl(HI62(b)) || \ 207 1.1 christos (HI62(a) == HI62(b) && \ 208 1.1 christos ntohl(HI63(a)) < ntohl(HI63(b)))))))) 209 1.1 christos #define NLADD(n,x) htonl(ntohl(n) + (x)) 210 1.1 christos #define IP6_INC(a) \ 211 1.3 darrenr do { u_32_t *_i6 = (u_32_t *)(a); \ 212 1.1 christos _i6[3] = NLADD(_i6[3], 1); \ 213 1.1 christos if (_i6[3] == 0) { \ 214 1.1 christos _i6[2] = NLADD(_i6[2], 1); \ 215 1.1 christos if (_i6[2] == 0) { \ 216 1.1 christos _i6[1] = NLADD(_i6[1], 1); \ 217 1.1 christos if (_i6[1] == 0) { \ 218 1.1 christos _i6[0] = NLADD(_i6[0], 1); \ 219 1.1 christos } \ 220 1.1 christos } \ 221 1.1 christos } \ 222 1.3 darrenr } while (0) 223 1.1 christos #define IP6_ADD(a,x,d) \ 224 1.3 darrenr do { i6addr_t *_s = (i6addr_t *)(a); \ 225 1.1 christos i6addr_t *_d = (i6addr_t *)(d); \ 226 1.1 christos _d->i6[0] = NLADD(_s->i6[0], x); \ 227 1.1 christos if (ntohl(_d->i6[0]) < ntohl(_s->i6[0])) { \ 228 1.1 christos _d->i6[1] = NLADD(_d->i6[1], 1); \ 229 1.1 christos if (ntohl(_d->i6[1]) < ntohl(_s->i6[1])) { \ 230 1.1 christos _d->i6[2] = NLADD(_d->i6[2], 1); \ 231 1.1 christos if (ntohl(_d->i6[2]) < ntohl(_s->i6[2])) { \ 232 1.1 christos _d->i6[3] = NLADD(_d->i6[3], 1); \ 233 1.1 christos } \ 234 1.1 christos } \ 235 1.1 christos } \ 236 1.3 darrenr } while (0) 237 1.3 darrenr #define IP6_AND(a,b,d) do { i6addr_t *_s1 = (i6addr_t *)(a); \ 238 1.1 christos i6addr_t *_s2 = (i6addr_t *)(b); \ 239 1.1 christos i6addr_t *_d = (i6addr_t *)(d); \ 240 1.1 christos _d->i6[0] = _s1->i6[0] & _s2->i6[0]; \ 241 1.1 christos _d->i6[1] = _s1->i6[1] & _s2->i6[1]; \ 242 1.1 christos _d->i6[2] = _s1->i6[2] & _s2->i6[2]; \ 243 1.1 christos _d->i6[3] = _s1->i6[3] & _s2->i6[3]; \ 244 1.3 darrenr } while (0) 245 1.1 christos #define IP6_ANDASSIGN(a,m) \ 246 1.3 darrenr do { i6addr_t *_d = (i6addr_t *)(a); \ 247 1.1 christos i6addr_t *_m = (i6addr_t *)(m); \ 248 1.1 christos _d->i6[0] &= _m->i6[0]; \ 249 1.1 christos _d->i6[1] &= _m->i6[1]; \ 250 1.1 christos _d->i6[2] &= _m->i6[2]; \ 251 1.1 christos _d->i6[3] &= _m->i6[3]; \ 252 1.3 darrenr } while (0) 253 1.1 christos #define IP6_MASKEQ(a,m,b) \ 254 1.1 christos (((I60(a) & I60(m)) == I60(b)) && \ 255 1.1 christos ((I61(a) & I61(m)) == I61(b)) && \ 256 1.1 christos ((I62(a) & I62(m)) == I62(b)) && \ 257 1.1 christos ((I63(a) & I63(m)) == I63(b))) 258 1.1 christos #define IP6_MASKNEQ(a,m,b) \ 259 1.1 christos (((I60(a) & I60(m)) != I60(b)) || \ 260 1.1 christos ((I61(a) & I61(m)) != I61(b)) || \ 261 1.1 christos ((I62(a) & I62(m)) != I62(b)) || \ 262 1.1 christos ((I63(a) & I63(m)) != I63(b))) 263 1.1 christos #define IP6_MERGE(a,b,c) \ 264 1.3 darrenr do { i6addr_t *_d, *_s1, *_s2; \ 265 1.1 christos _d = (i6addr_t *)(a); \ 266 1.1 christos _s1 = (i6addr_t *)(b); \ 267 1.1 christos _s2 = (i6addr_t *)(c); \ 268 1.1 christos _d->i6[0] |= _s1->i6[0] & ~_s2->i6[0]; \ 269 1.1 christos _d->i6[1] |= _s1->i6[1] & ~_s2->i6[1]; \ 270 1.1 christos _d->i6[2] |= _s1->i6[2] & ~_s2->i6[2]; \ 271 1.1 christos _d->i6[3] |= _s1->i6[3] & ~_s2->i6[3]; \ 272 1.3 darrenr } while (0) 273 1.1 christos #define IP6_MASK(a,b,c) \ 274 1.3 darrenr do { i6addr_t *_d, *_s1, *_s2; \ 275 1.1 christos _d = (i6addr_t *)(a); \ 276 1.1 christos _s1 = (i6addr_t *)(b); \ 277 1.1 christos _s2 = (i6addr_t *)(c); \ 278 1.1 christos _d->i6[0] = _s1->i6[0] & ~_s2->i6[0]; \ 279 1.1 christos _d->i6[1] = _s1->i6[1] & ~_s2->i6[1]; \ 280 1.1 christos _d->i6[2] = _s1->i6[2] & ~_s2->i6[2]; \ 281 1.1 christos _d->i6[3] = _s1->i6[3] & ~_s2->i6[3]; \ 282 1.3 darrenr } while (0) 283 1.3 darrenr #define IP6_SETONES(a) \ 284 1.3 darrenr do { i6addr_t *_d = (i6addr_t *)(a); \ 285 1.3 darrenr _d->i6[0] = 0xffffffff; \ 286 1.3 darrenr _d->i6[1] = 0xffffffff; \ 287 1.3 darrenr _d->i6[2] = 0xffffffff; \ 288 1.3 darrenr _d->i6[3] = 0xffffffff; \ 289 1.3 darrenr } while (0) 290 1.3 darrenr 291 1.1 christos typedef union ipso_u { 292 1.1 christos u_short ipso_ripso[2]; 293 1.1 christos u_32_t ipso_doi; 294 1.1 christos } ipso_t; 295 1.1 christos 296 1.1 christos typedef struct fr_ip { 297 1.1 christos u_32_t fi_v:4; /* IP version */ 298 1.1 christos u_32_t fi_xx:4; /* spare */ 299 1.1 christos u_32_t fi_tos:8; /* IP packet TOS */ 300 1.1 christos u_32_t fi_ttl:8; /* IP packet TTL */ 301 1.1 christos u_32_t fi_p:8; /* IP packet protocol */ 302 1.1 christos u_32_t fi_optmsk; /* bitmask composed from IP options */ 303 1.1 christos i6addr_t fi_src; /* source address from packet */ 304 1.1 christos i6addr_t fi_dst; /* destination address from packet */ 305 1.1 christos ipso_t fi_ipso; /* IP security options */ 306 1.1 christos u_32_t fi_flx; /* packet flags */ 307 1.1 christos u_32_t fi_tcpmsk; /* TCP options set/reset */ 308 1.1 christos u_32_t fi_ports[2]; /* TCP ports */ 309 1.1 christos u_char fi_tcpf; /* TCP flags */ 310 1.1 christos u_char fi_sensitivity; 311 1.1 christos u_char fi_xxx[2]; /* pad */ 312 1.1 christos } fr_ip_t; 313 1.1 christos 314 1.1 christos /* 315 1.1 christos * For use in fi_flx 316 1.1 christos */ 317 1.1 christos #define FI_TCPUDP 0x0001 /* TCP/UCP implied comparison*/ 318 1.1 christos #define FI_OPTIONS 0x0002 319 1.1 christos #define FI_FRAG 0x0004 320 1.1 christos #define FI_SHORT 0x0008 321 1.1 christos #define FI_NATED 0x0010 322 1.1 christos #define FI_MULTICAST 0x0020 323 1.1 christos #define FI_BROADCAST 0x0040 324 1.1 christos #define FI_MBCAST 0x0080 325 1.1 christos #define FI_STATE 0x0100 326 1.1 christos #define FI_BADNAT 0x0200 327 1.1 christos #define FI_BAD 0x0400 328 1.1 christos #define FI_OOW 0x0800 /* Out of state window, else match */ 329 1.1 christos #define FI_ICMPERR 0x1000 330 1.1 christos #define FI_FRAGBODY 0x2000 331 1.1 christos #define FI_BADSRC 0x4000 332 1.1 christos #define FI_LOWTTL 0x8000 333 1.1 christos #define FI_CMP 0x5cfe3 /* Not FI_FRAG,FI_NATED,FI_FRAGTAIL */ 334 1.1 christos #define FI_ICMPCMP 0x0003 /* Flags we can check for ICMP error packets */ 335 1.1 christos #define FI_WITH 0x5effe /* Not FI_TCPUDP */ 336 1.1 christos #define FI_V6EXTHDR 0x10000 337 1.1 christos #define FI_COALESCE 0x20000 338 1.1 christos #define FI_NEWNAT 0x40000 339 1.1 christos #define FI_ICMPQUERY 0x80000 340 1.1 christos #define FI_ENCAP 0x100000 /* encap/decap with NAT */ 341 1.1 christos #define FI_AH 0x200000 /* AH header present */ 342 1.3 darrenr #define FI_DOCKSUM 0x10000000 /* Proxy wants L4 recalculation */ 343 1.1 christos #define FI_NOCKSUM 0x20000000 /* don't do a L4 checksum validation */ 344 1.3 darrenr #define FI_NOWILD 0x40000000 /* Do not do wildcard searches */ 345 1.1 christos #define FI_IGNORE 0x80000000 346 1.1 christos 347 1.1 christos #define fi_secmsk fi_ipso.ipso_ripso[0] 348 1.1 christos #define fi_auth fi_ipso.ipso_ripso[1] 349 1.1 christos #define fi_doi fi_ipso.ipso_doi 350 1.1 christos #define fi_saddr fi_src.in4.s_addr 351 1.1 christos #define fi_daddr fi_dst.in4.s_addr 352 1.1 christos #define fi_srcnum fi_src.iplookupnum 353 1.1 christos #define fi_dstnum fi_dst.iplookupnum 354 1.1 christos #define fi_srcname fi_src.iplookupname 355 1.1 christos #define fi_dstname fi_dst.iplookupname 356 1.1 christos #define fi_srctype fi_src.iplookuptype 357 1.1 christos #define fi_dsttype fi_dst.iplookuptype 358 1.1 christos #define fi_srcsubtype fi_src.iplookupsubtype 359 1.1 christos #define fi_dstsubtype fi_dst.iplookupsubtype 360 1.1 christos #define fi_srcptr fi_src.iplookupptr 361 1.1 christos #define fi_dstptr fi_dst.iplookupptr 362 1.1 christos #define fi_srcfunc fi_src.iplookupfunc 363 1.1 christos #define fi_dstfunc fi_dst.iplookupfunc 364 1.1 christos 365 1.1 christos 366 1.1 christos /* 367 1.1 christos * These are both used by the state and NAT code to indicate that one port or 368 1.1 christos * the other should be treated as a wildcard. 369 1.1 christos * NOTE: When updating, check bit masks in ip_state.h and update there too. 370 1.1 christos */ 371 1.1 christos #define SI_W_SPORT 0x00000100 372 1.1 christos #define SI_W_DPORT 0x00000200 373 1.1 christos #define SI_WILDP (SI_W_SPORT|SI_W_DPORT) 374 1.1 christos #define SI_W_SADDR 0x00000400 375 1.1 christos #define SI_W_DADDR 0x00000800 376 1.1 christos #define SI_WILDA (SI_W_SADDR|SI_W_DADDR) 377 1.1 christos #define SI_NEWFR 0x00001000 378 1.1 christos #define SI_CLONE 0x00002000 379 1.1 christos #define SI_CLONED 0x00004000 380 1.1 christos #define SI_NEWCLONE 0x00008000 381 1.1 christos 382 1.1 christos typedef struct { 383 1.1 christos u_short fda_ports[2]; 384 1.1 christos u_char fda_tcpf; /* TCP header flags (SYN, ACK, etc) */ 385 1.1 christos } frdat_t; 386 1.1 christos 387 1.1 christos typedef enum fr_breasons_e { 388 1.3 darrenr FRB_BLOCKED = 0, 389 1.1 christos FRB_LOGFAIL = 1, 390 1.3 darrenr FRB_PPSRATE = 2, 391 1.3 darrenr FRB_JUMBO = 3, 392 1.3 darrenr FRB_MAKEFRIP = 4, 393 1.3 darrenr FRB_STATEADD = 5, 394 1.3 darrenr FRB_UPDATEIPID = 6, 395 1.3 darrenr FRB_LOGFAIL2 = 7, 396 1.3 darrenr FRB_DECAPFRIP = 8, 397 1.3 darrenr FRB_AUTHNEW = 9, 398 1.3 darrenr FRB_AUTHCAPTURE = 10, 399 1.3 darrenr FRB_COALESCE = 11, 400 1.3 darrenr FRB_PULLUP = 12, 401 1.3 darrenr FRB_AUTHFEEDBACK = 13, 402 1.3 darrenr FRB_BADFRAG = 14, 403 1.3 darrenr FRB_NATV4 = 15, 404 1.3 darrenr FRB_NATV6 = 16, 405 1.1 christos } fr_breason_t; 406 1.1 christos 407 1.3 darrenr #define FRB_MAX_VALUE 16 408 1.3 darrenr 409 1.3 darrenr typedef enum ipf_cksum_e { 410 1.3 darrenr FI_CK_BAD = -1, 411 1.3 darrenr FI_CK_NEEDED = 0, 412 1.3 darrenr FI_CK_SUMOK = 1, 413 1.3 darrenr FI_CK_L4PART = 2, 414 1.3 darrenr FI_CK_L4FULL = 4 415 1.3 darrenr } ipf_cksum_t; 416 1.3 darrenr 417 1.1 christos typedef struct fr_info { 418 1.1 christos void *fin_main_soft; 419 1.1 christos void *fin_ifp; /* interface packet is `on' */ 420 1.1 christos struct frentry *fin_fr; /* last matching rule */ 421 1.1 christos int fin_out; /* in or out ? 1 == out, 0 == in */ 422 1.1 christos fr_ip_t fin_fi; /* IP Packet summary */ 423 1.1 christos frdat_t fin_dat; /* TCP/UDP ports, ICMP code/type */ 424 1.1 christos int fin_dlen; /* length of data portion of packet */ 425 1.1 christos int fin_plen; 426 1.1 christos u_32_t fin_rule; /* rule # last matched */ 427 1.1 christos u_short fin_hlen; /* length of IP header in bytes */ 428 1.1 christos char fin_group[FR_GROUPLEN]; /* group number, -1 for none */ 429 1.1 christos void *fin_dp; /* start of data past IP header */ 430 1.1 christos /* 431 1.1 christos * Fields after fin_dp aren't used for compression of log records. 432 1.1 christos * fin_fi contains the IP version (fin_family) 433 1.1 christos * fin_rule isn't included because adding a new rule can change it but 434 1.1 christos * not change fin_fr. fin_rule is the rule number reported. 435 1.1 christos * It isn't necessary to include fin_crc because that is checked 436 1.1 christos * for explicitly, before calling bcmp. 437 1.1 christos */ 438 1.1 christos u_32_t fin_crc; /* Simple calculation for logging */ 439 1.1 christos int fin_family; /* AF_INET, etc. */ 440 1.1 christos int fin_icode; /* ICMP error to return */ 441 1.1 christos int fin_mtu; /* MTU input for ICMP need-frag */ 442 1.1 christos int fin_rev; /* state only: 1 = reverse */ 443 1.1 christos int fin_ipoff; /* # bytes from buffer start to hdr */ 444 1.1 christos u_32_t fin_id; /* IP packet id field */ 445 1.1 christos u_short fin_l4hlen; /* length of L4 header, if known */ 446 1.1 christos u_short fin_off; 447 1.1 christos int fin_depth; /* Group nesting depth */ 448 1.1 christos int fin_error; /* Error code to return */ 449 1.3 darrenr ipf_cksum_t fin_cksum; /* -1 = bad, 1 = good, 0 = not done */ 450 1.1 christos fr_breason_t fin_reason; /* why auto blocked */ 451 1.1 christos u_int fin_pktnum; 452 1.1 christos void *fin_nattag; 453 1.1 christos struct frdest *fin_dif; 454 1.1 christos struct frdest *fin_tif; 455 1.1 christos union { 456 1.1 christos ip_t *fip_ip; 457 1.1 christos #ifdef USE_INET6 458 1.1 christos ip6_t *fip_ip6; 459 1.1 christos #endif 460 1.1 christos } fin_ipu; 461 1.1 christos mb_t **fin_mp; /* pointer to pointer to mbuf */ 462 1.1 christos mb_t *fin_m; /* pointer to mbuf */ 463 1.1 christos #ifdef MENTAT 464 1.1 christos mb_t *fin_qfm; /* pointer to mblk where pkt starts */ 465 1.1 christos void *fin_qpi; 466 1.1 christos char fin_ifname[LIFNAMSIZ]; 467 1.1 christos #endif 468 1.1 christos #ifdef __sgi 469 1.1 christos void *fin_hbuf; 470 1.1 christos #endif 471 1.1 christos void *fin_fraghdr; /* pointer to start of ipv6 frag hdr */ 472 1.1 christos } fr_info_t; 473 1.1 christos 474 1.1 christos #define fin_ip fin_ipu.fip_ip 475 1.1 christos #define fin_ip6 fin_ipu.fip_ip6 476 1.1 christos #define fin_v fin_fi.fi_v 477 1.1 christos #define fin_p fin_fi.fi_p 478 1.1 christos #define fin_flx fin_fi.fi_flx 479 1.1 christos #define fin_optmsk fin_fi.fi_optmsk 480 1.1 christos #define fin_secmsk fin_fi.fi_secmsk 481 1.1 christos #define fin_doi fin_fi.fi_doi 482 1.1 christos #define fin_auth fin_fi.fi_auth 483 1.1 christos #define fin_src fin_fi.fi_src.in4 484 1.1 christos #define fin_saddr fin_fi.fi_saddr 485 1.1 christos #define fin_dst fin_fi.fi_dst.in4 486 1.1 christos #define fin_daddr fin_fi.fi_daddr 487 1.1 christos #define fin_data fin_fi.fi_ports 488 1.1 christos #define fin_sport fin_fi.fi_ports[0] 489 1.1 christos #define fin_dport fin_fi.fi_ports[1] 490 1.1 christos #define fin_tcpf fin_fi.fi_tcpf 491 1.1 christos #define fin_src6 fin_fi.fi_src 492 1.1 christos #define fin_dst6 fin_fi.fi_dst 493 1.1 christos #define fin_srcip6 fin_fi.fi_src.in6 494 1.1 christos #define fin_dstip6 fin_fi.fi_dst.in6 495 1.1 christos 496 1.1 christos #define IPF_IN 0 497 1.1 christos #define IPF_OUT 1 498 1.1 christos 499 1.2 christos typedef struct frentry *(*ipfunc_t)(fr_info_t *, u_32_t *); 500 1.2 christos typedef int (*ipfuncinit_t)(struct ipf_main_softc_s *, 501 1.2 christos struct frentry *); 502 1.1 christos 503 1.1 christos typedef struct ipfunc_resolve { 504 1.1 christos char ipfu_name[32]; 505 1.1 christos ipfunc_t ipfu_addr; 506 1.1 christos ipfuncinit_t ipfu_init; 507 1.1 christos ipfuncinit_t ipfu_fini; 508 1.1 christos } ipfunc_resolve_t; 509 1.1 christos 510 1.1 christos /* 511 1.1 christos * Size for compares on fr_info structures 512 1.1 christos */ 513 1.1 christos #define FI_CSIZE offsetof(fr_info_t, fin_icode) 514 1.1 christos #define FI_LCSIZE offsetof(fr_info_t, fin_dp) 515 1.1 christos 516 1.1 christos /* 517 1.1 christos * Size for copying cache fr_info structure 518 1.1 christos */ 519 1.1 christos #define FI_COPYSIZE offsetof(fr_info_t, fin_dp) 520 1.1 christos 521 1.1 christos /* 522 1.1 christos * Structure for holding IPFilter's tag information 523 1.1 christos */ 524 1.1 christos #define IPFTAG_LEN 16 525 1.1 christos typedef struct { 526 1.1 christos union { 527 1.1 christos u_32_t iptu_num[4]; 528 1.1 christos char iptu_tag[IPFTAG_LEN]; 529 1.1 christos } ipt_un; 530 1.1 christos int ipt_not; 531 1.1 christos } ipftag_t; 532 1.1 christos 533 1.1 christos #define ipt_tag ipt_un.iptu_tag 534 1.1 christos #define ipt_num ipt_un.iptu_num 535 1.1 christos 536 1.1 christos /* 537 1.1 christos * Structure to define address for pool lookups. 538 1.1 christos */ 539 1.1 christos typedef struct { 540 1.1 christos u_char adf_len; 541 1.1 christos sa_family_t adf_family; 542 1.1 christos u_char adf_xxx[2]; 543 1.1 christos i6addr_t adf_addr; 544 1.1 christos } addrfamily_t; 545 1.1 christos 546 1.3 darrenr 547 1.1 christos RBI_LINK(ipf_rb, host_node_s); 548 1.1 christos 549 1.1 christos typedef struct host_node_s { 550 1.1 christos RBI_FIELD(ipf_rb) hn_entry; 551 1.1 christos addrfamily_t hn_addr; 552 1.1 christos int hn_active; 553 1.1 christos } host_node_t; 554 1.1 christos 555 1.1 christos typedef RBI_HEAD(ipf_rb, host_node_s) ipf_rb_head_t; 556 1.1 christos 557 1.1 christos typedef struct host_track_s { 558 1.1 christos ipf_rb_head_t ht_root; 559 1.1 christos int ht_max_nodes; 560 1.1 christos int ht_max_per_node; 561 1.1 christos int ht_netmask; 562 1.1 christos int ht_cur_nodes; 563 1.1 christos } host_track_t; 564 1.1 christos 565 1.1 christos 566 1.1 christos typedef enum fr_dtypes_e { 567 1.1 christos FRD_NORMAL = 0, 568 1.1 christos FRD_DSTLIST 569 1.1 christos } fr_dtypes_t; 570 1.1 christos /* 571 1.1 christos * This structure is used to hold information about the next hop for where 572 1.1 christos * to forward a packet. 573 1.1 christos */ 574 1.1 christos typedef struct frdest { 575 1.1 christos void *fd_ptr; 576 1.1 christos addrfamily_t fd_addr; 577 1.1 christos fr_dtypes_t fd_type; 578 1.1 christos int fd_name; 579 1.8 chs int fd_unused; /* part of the kernel/user ABI */ 580 1.1 christos } frdest_t; 581 1.1 christos 582 1.1 christos #define fd_ip6 fd_addr.adf_addr 583 1.1 christos #define fd_ip fd_ip6.in4 584 1.1 christos 585 1.1 christos 586 1.1 christos typedef enum fr_ctypes_e { 587 1.1 christos FR_NONE = 0, 588 1.1 christos FR_EQUAL, 589 1.1 christos FR_NEQUAL, 590 1.1 christos FR_LESST, 591 1.1 christos FR_GREATERT, 592 1.1 christos FR_LESSTE, 593 1.1 christos FR_GREATERTE, 594 1.1 christos FR_OUTRANGE, 595 1.1 christos FR_INRANGE, 596 1.1 christos FR_INCRANGE 597 1.1 christos } fr_ctypes_t; 598 1.1 christos 599 1.1 christos /* 600 1.1 christos * This structure holds information about a port comparison. 601 1.1 christos */ 602 1.1 christos typedef struct frpcmp { 603 1.1 christos fr_ctypes_t frp_cmp; /* data for port comparisons */ 604 1.1 christos u_32_t frp_port; /* top port for <> and >< */ 605 1.1 christos u_32_t frp_top; /* top port for <> and >< */ 606 1.1 christos } frpcmp_t; 607 1.1 christos 608 1.1 christos 609 1.1 christos /* 610 1.1 christos * Structure containing all the relevant TCP things that can be checked in 611 1.1 christos * a filter rule. 612 1.1 christos */ 613 1.1 christos typedef struct frtuc { 614 1.1 christos u_char ftu_tcpfm; /* tcp flags mask */ 615 1.1 christos u_char ftu_tcpf; /* tcp flags */ 616 1.1 christos frpcmp_t ftu_src; 617 1.1 christos frpcmp_t ftu_dst; 618 1.1 christos } frtuc_t; 619 1.1 christos 620 1.1 christos #define ftu_scmp ftu_src.frp_cmp 621 1.1 christos #define ftu_dcmp ftu_dst.frp_cmp 622 1.1 christos #define ftu_sport ftu_src.frp_port 623 1.1 christos #define ftu_dport ftu_dst.frp_port 624 1.1 christos #define ftu_stop ftu_src.frp_top 625 1.1 christos #define ftu_dtop ftu_dst.frp_top 626 1.1 christos 627 1.1 christos #define FR_TCPFMAX 0x3f 628 1.1 christos 629 1.1 christos typedef enum fr_atypes_e { 630 1.1 christos FRI_NONE = -1, /* For LHS of NAT */ 631 1.1 christos FRI_NORMAL = 0, /* Normal address */ 632 1.1 christos FRI_DYNAMIC, /* dynamic address */ 633 1.1 christos FRI_LOOKUP, /* address is a pool # */ 634 1.1 christos FRI_RANGE, /* address/mask is a range */ 635 1.1 christos FRI_NETWORK, /* network address from if */ 636 1.1 christos FRI_BROADCAST, /* broadcast address from if */ 637 1.1 christos FRI_PEERADDR, /* Peer address for P-to-P */ 638 1.1 christos FRI_NETMASKED, /* network address with netmask from if */ 639 1.1 christos FRI_SPLIT, /* For NAT compatibility */ 640 1.1 christos FRI_INTERFACE /* address is based on interface name */ 641 1.1 christos } fr_atypes_t; 642 1.1 christos 643 1.1 christos /* 644 1.1 christos * This structure makes up what is considered to be the IPFilter specific 645 1.1 christos * matching components of a filter rule, as opposed to the data structures 646 1.1 christos * used to define the result which are in frentry_t and not here. 647 1.1 christos */ 648 1.1 christos typedef struct fripf { 649 1.1 christos fr_ip_t fri_ip; 650 1.1 christos fr_ip_t fri_mip; /* mask structure */ 651 1.1 christos 652 1.1 christos u_short fri_icmpm; /* data for ICMP packets (mask) */ 653 1.1 christos u_short fri_icmp; 654 1.1 christos 655 1.1 christos frtuc_t fri_tuc; 656 1.1 christos fr_atypes_t fri_satype; /* addres type */ 657 1.1 christos fr_atypes_t fri_datype; /* addres type */ 658 1.1 christos int fri_sifpidx; /* doing dynamic addressing */ 659 1.1 christos int fri_difpidx; /* index into fr_ifps[] to use when */ 660 1.1 christos } fripf_t; 661 1.1 christos 662 1.1 christos #define fri_dlookup fri_mip.fi_dst 663 1.1 christos #define fri_slookup fri_mip.fi_src 664 1.1 christos #define fri_dstnum fri_mip.fi_dstnum 665 1.1 christos #define fri_srcnum fri_mip.fi_srcnum 666 1.1 christos #define fri_dstname fri_mip.fi_dstname 667 1.1 christos #define fri_srcname fri_mip.fi_srcname 668 1.1 christos #define fri_dstptr fri_mip.fi_dstptr 669 1.1 christos #define fri_srcptr fri_mip.fi_srcptr 670 1.1 christos 671 1.1 christos 672 1.1 christos typedef enum fr_rtypes_e { 673 1.1 christos FR_T_NONE = 0, 674 1.1 christos FR_T_IPF, /* IPF structures */ 675 1.1 christos FR_T_BPFOPC, /* BPF opcode */ 676 1.1 christos FR_T_CALLFUNC, /* callout to function in fr_func only */ 677 1.1 christos FR_T_COMPIPF, /* compiled C code */ 678 1.1 christos FR_T_IPFEXPR, /* IPF expression */ 679 1.1 christos FR_T_BUILTIN = 0x40000000, /* rule is in kernel space */ 680 1.1 christos FR_T_IPF_BUILTIN, 681 1.1 christos FR_T_BPFOPC_BUILTIN, 682 1.1 christos FR_T_CALLFUNC_BUILTIN, 683 1.1 christos FR_T_COMPIPF_BUILTIN, 684 1.1 christos FR_T_IPFEXPR_BUILTIN 685 1.1 christos } fr_rtypes_t; 686 1.1 christos 687 1.2 christos typedef struct frentry * (* frentfunc_t)(fr_info_t *); 688 1.1 christos 689 1.1 christos typedef struct frentry { 690 1.1 christos ipfmutex_t fr_lock; 691 1.1 christos struct frentry *fr_next; 692 1.1 christos struct frentry **fr_pnext; 693 1.3 darrenr struct frgroup *fr_grp; 694 1.3 darrenr struct frgroup *fr_grphead; 695 1.3 darrenr struct frgroup *fr_icmpgrp; 696 1.1 christos struct ipscan *fr_isc; 697 1.1 christos struct frentry *fr_dnext; /* 2 fr_die linked list pointers */ 698 1.1 christos struct frentry **fr_pdnext; 699 1.1 christos void *fr_ifas[4]; 700 1.1 christos void *fr_ptr; /* for use with fr_arg */ 701 1.1 christos int fr_comment; /* text comment for rule */ 702 1.1 christos int fr_size; /* size of this structure */ 703 1.1 christos int fr_ref; /* reference count */ 704 1.1 christos int fr_statecnt; /* state count - for limit rules */ 705 1.1 christos u_32_t fr_die; /* only used on loading the rule */ 706 1.1 christos u_int fr_cksum; /* checksum on filter rules for performance */ 707 1.1 christos /* 708 1.1 christos * The line number from a file is here because we need to be able to 709 1.1 christos * match the rule generated with ``grep rule ipf.conf | ipf -rf -'' 710 1.1 christos * with the rule loaded using ``ipf -f ipf.conf'' - thus it can't be 711 1.1 christos * on the other side of fr_func. 712 1.1 christos */ 713 1.1 christos int fr_flineno; /* line number from conf file */ 714 1.1 christos /* 715 1.1 christos * These are only incremented when a packet matches this rule and 716 1.1 christos * it is the last match 717 1.1 christos */ 718 1.1 christos U_QUAD_T fr_hits; 719 1.1 christos U_QUAD_T fr_bytes; 720 1.1 christos 721 1.1 christos /* 722 1.1 christos * For PPS rate limiting 723 1.1 christos * fr_lpu is used to always have the same size for this field, 724 1.1 christos * allocating 64bits for seconds and 32bits for milliseconds. 725 1.1 christos */ 726 1.1 christos union { 727 1.1 christos struct timeval frp_lastpkt; 728 1.1 christos char frp_bytes[12]; 729 1.1 christos } fr_lpu; 730 1.1 christos int fr_curpps; 731 1.1 christos 732 1.1 christos union { 733 1.1 christos void *fru_data; 734 1.1 christos char *fru_caddr; 735 1.1 christos fripf_t *fru_ipf; 736 1.1 christos frentfunc_t fru_func; 737 1.1 christos } fr_dun; 738 1.1 christos 739 1.1 christos /* 740 1.1 christos * Fields after this may not change whilst in the kernel. 741 1.1 christos */ 742 1.1 christos ipfunc_t fr_func; /* call this function */ 743 1.1 christos int fr_dsize; 744 1.1 christos int fr_pps; 745 1.1 christos fr_rtypes_t fr_type; 746 1.1 christos u_32_t fr_flags; /* per-rule flags && options (see below) */ 747 1.1 christos u_32_t fr_logtag; /* user defined log tag # */ 748 1.1 christos u_32_t fr_collect; /* collection number */ 749 1.1 christos u_int fr_arg; /* misc. numeric arg for rule */ 750 1.1 christos u_int fr_loglevel; /* syslog log facility + priority */ 751 1.1 christos u_char fr_family; 752 1.1 christos u_char fr_icode; /* return ICMP code */ 753 1.1 christos int fr_group; /* group to which this rule belongs */ 754 1.1 christos int fr_grhead; /* group # which this rule starts */ 755 1.1 christos int fr_ifnames[4]; 756 1.1 christos int fr_isctag; 757 1.1 christos int fr_rpc; /* XID Filtering */ 758 1.1 christos ipftag_t fr_nattag; 759 1.1 christos frdest_t fr_tifs[2]; /* "to"/"reply-to" interface */ 760 1.1 christos frdest_t fr_dif; /* duplicate packet interface */ 761 1.1 christos /* 762 1.1 christos * These are all options related to stateful filtering 763 1.1 christos */ 764 1.1 christos host_track_t fr_srctrack; 765 1.1 christos int fr_nostatelog; 766 1.1 christos int fr_statemax; /* max reference count */ 767 1.1 christos int fr_icmphead; /* ICMP group for state options */ 768 1.1 christos u_int fr_age[2]; /* non-TCP state timeouts */ 769 1.1 christos /* 770 1.1 christos * How big is the name buffer at the end? 771 1.1 christos */ 772 1.1 christos int fr_namelen; 773 1.1 christos char fr_names[1]; 774 1.1 christos } frentry_t; 775 1.1 christos 776 1.1 christos #define fr_lastpkt fr_lpu.frp_lastpkt 777 1.1 christos #define fr_caddr fr_dun.fru_caddr 778 1.1 christos #define fr_data fr_dun.fru_data 779 1.1 christos #define fr_dfunc fr_dun.fru_func 780 1.1 christos #define fr_ipf fr_dun.fru_ipf 781 1.1 christos #define fr_ip fr_ipf->fri_ip 782 1.1 christos #define fr_mip fr_ipf->fri_mip 783 1.1 christos #define fr_icmpm fr_ipf->fri_icmpm 784 1.1 christos #define fr_icmp fr_ipf->fri_icmp 785 1.1 christos #define fr_tuc fr_ipf->fri_tuc 786 1.1 christos #define fr_satype fr_ipf->fri_satype 787 1.1 christos #define fr_datype fr_ipf->fri_datype 788 1.1 christos #define fr_sifpidx fr_ipf->fri_sifpidx 789 1.1 christos #define fr_difpidx fr_ipf->fri_difpidx 790 1.1 christos #define fr_proto fr_ip.fi_p 791 1.1 christos #define fr_mproto fr_mip.fi_p 792 1.1 christos #define fr_ttl fr_ip.fi_ttl 793 1.1 christos #define fr_mttl fr_mip.fi_ttl 794 1.1 christos #define fr_tos fr_ip.fi_tos 795 1.1 christos #define fr_mtos fr_mip.fi_tos 796 1.1 christos #define fr_tcpfm fr_tuc.ftu_tcpfm 797 1.1 christos #define fr_tcpf fr_tuc.ftu_tcpf 798 1.1 christos #define fr_scmp fr_tuc.ftu_scmp 799 1.1 christos #define fr_dcmp fr_tuc.ftu_dcmp 800 1.1 christos #define fr_dport fr_tuc.ftu_dport 801 1.1 christos #define fr_sport fr_tuc.ftu_sport 802 1.1 christos #define fr_stop fr_tuc.ftu_stop 803 1.1 christos #define fr_dtop fr_tuc.ftu_dtop 804 1.1 christos #define fr_dst fr_ip.fi_dst.in4 805 1.1 christos #define fr_dst6 fr_ip.fi_dst 806 1.1 christos #define fr_daddr fr_ip.fi_dst.in4.s_addr 807 1.1 christos #define fr_src fr_ip.fi_src.in4 808 1.1 christos #define fr_src6 fr_ip.fi_src 809 1.1 christos #define fr_saddr fr_ip.fi_src.in4.s_addr 810 1.1 christos #define fr_dmsk fr_mip.fi_dst.in4 811 1.1 christos #define fr_dmsk6 fr_mip.fi_dst 812 1.1 christos #define fr_dmask fr_mip.fi_dst.in4.s_addr 813 1.1 christos #define fr_smsk fr_mip.fi_src.in4 814 1.1 christos #define fr_smsk6 fr_mip.fi_src 815 1.1 christos #define fr_smask fr_mip.fi_src.in4.s_addr 816 1.1 christos #define fr_dstnum fr_ip.fi_dstnum 817 1.1 christos #define fr_srcnum fr_ip.fi_srcnum 818 1.1 christos #define fr_dlookup fr_ip.fi_dst 819 1.1 christos #define fr_slookup fr_ip.fi_src 820 1.1 christos #define fr_dstname fr_ip.fi_dstname 821 1.1 christos #define fr_srcname fr_ip.fi_srcname 822 1.1 christos #define fr_dsttype fr_ip.fi_dsttype 823 1.1 christos #define fr_srctype fr_ip.fi_srctype 824 1.1 christos #define fr_dstsubtype fr_ip.fi_dstsubtype 825 1.1 christos #define fr_srcsubtype fr_ip.fi_srcsubtype 826 1.1 christos #define fr_dstptr fr_mip.fi_dstptr 827 1.1 christos #define fr_srcptr fr_mip.fi_srcptr 828 1.1 christos #define fr_dstfunc fr_mip.fi_dstfunc 829 1.1 christos #define fr_srcfunc fr_mip.fi_srcfunc 830 1.1 christos #define fr_optbits fr_ip.fi_optmsk 831 1.1 christos #define fr_optmask fr_mip.fi_optmsk 832 1.1 christos #define fr_secbits fr_ip.fi_secmsk 833 1.1 christos #define fr_secmask fr_mip.fi_secmsk 834 1.1 christos #define fr_authbits fr_ip.fi_auth 835 1.1 christos #define fr_authmask fr_mip.fi_auth 836 1.1 christos #define fr_doi fr_ip.fi_doi 837 1.1 christos #define fr_doimask fr_mip.fi_doi 838 1.1 christos #define fr_flx fr_ip.fi_flx 839 1.1 christos #define fr_mflx fr_mip.fi_flx 840 1.1 christos #define fr_ifa fr_ifas[0] 841 1.1 christos #define fr_oifa fr_ifas[2] 842 1.1 christos #define fr_tif fr_tifs[0] 843 1.1 christos #define fr_rif fr_tifs[1] 844 1.1 christos 845 1.1 christos #define FR_NOLOGTAG 0 846 1.1 christos 847 1.1 christos #define FR_CMPSIZ (sizeof(struct frentry) - \ 848 1.1 christos offsetof(struct frentry, fr_func)) 849 1.1 christos #define FR_NAME(_f, _n) (_f)->fr_names + (_f)->_n 850 1.1 christos 851 1.1 christos 852 1.1 christos /* 853 1.1 christos * fr_flags 854 1.1 christos */ 855 1.1 christos #define FR_BLOCK 0x00001 /* do not allow packet to pass */ 856 1.1 christos #define FR_PASS 0x00002 /* allow packet to pass */ 857 1.1 christos #define FR_AUTH 0x00003 /* use authentication */ 858 1.1 christos #define FR_PREAUTH 0x00004 /* require preauthentication */ 859 1.1 christos #define FR_ACCOUNT 0x00005 /* Accounting rule */ 860 1.1 christos #define FR_SKIP 0x00006 /* skip rule */ 861 1.1 christos #define FR_DECAPSULATE 0x00008 /* decapsulate rule */ 862 1.1 christos #define FR_CALL 0x00009 /* call rule */ 863 1.1 christos #define FR_CMDMASK 0x0000f 864 1.1 christos #define FR_LOG 0x00010 /* Log */ 865 1.1 christos #define FR_LOGB 0x00011 /* Log-fail */ 866 1.1 christos #define FR_LOGP 0x00012 /* Log-pass */ 867 1.1 christos #define FR_LOGMASK (FR_LOG|FR_CMDMASK) 868 1.1 christos #define FR_CALLNOW 0x00020 /* call another function (fr_func) if matches */ 869 1.1 christos #define FR_NOTSRCIP 0x00040 870 1.1 christos #define FR_NOTDSTIP 0x00080 871 1.1 christos #define FR_QUICK 0x00100 /* match & stop processing list */ 872 1.1 christos #define FR_KEEPFRAG 0x00200 /* keep fragment information */ 873 1.1 christos #define FR_KEEPSTATE 0x00400 /* keep `connection' state information */ 874 1.1 christos #define FR_FASTROUTE 0x00800 /* bypass normal routing */ 875 1.1 christos #define FR_RETRST 0x01000 /* Return TCP RST packet - reset connection */ 876 1.1 christos #define FR_RETICMP 0x02000 /* Return ICMP unreachable packet */ 877 1.1 christos #define FR_FAKEICMP 0x03000 /* Return ICMP unreachable with fake source */ 878 1.1 christos #define FR_OUTQUE 0x04000 /* outgoing packets */ 879 1.1 christos #define FR_INQUE 0x08000 /* ingoing packets */ 880 1.1 christos #define FR_LOGBODY 0x10000 /* Log the body */ 881 1.1 christos #define FR_LOGFIRST 0x20000 /* Log the first byte if state held */ 882 1.1 christos #define FR_LOGORBLOCK 0x40000 /* block the packet if it can't be logged */ 883 1.1 christos #define FR_STLOOSE 0x80000 /* loose state checking */ 884 1.1 christos #define FR_FRSTRICT 0x100000 /* strict frag. cache */ 885 1.1 christos #define FR_STSTRICT 0x200000 /* strict keep state */ 886 1.1 christos #define FR_NEWISN 0x400000 /* new ISN for outgoing TCP */ 887 1.1 christos #define FR_NOICMPERR 0x800000 /* do not match ICMP errors in state */ 888 1.1 christos #define FR_STATESYNC 0x1000000 /* synchronize state to slave */ 889 1.1 christos #define FR_COPIED 0x2000000 /* copied from user space */ 890 1.1 christos #define FR_INACTIVE 0x4000000 /* only used when flush'ing rules */ 891 1.1 christos #define FR_NOMATCH 0x8000000 /* no match occured */ 892 1.1 christos /* 0x10000000 FF_LOGPASS */ 893 1.1 christos /* 0x20000000 FF_LOGBLOCK */ 894 1.1 christos /* 0x40000000 FF_LOGNOMATCH */ 895 1.1 christos /* 0x80000000 FF_BLOCKNONIP */ 896 1.1 christos 897 1.1 christos #define FR_RETMASK (FR_RETICMP|FR_RETRST|FR_FAKEICMP) 898 1.1 christos #define FR_ISBLOCK(x) (((x) & FR_CMDMASK) == FR_BLOCK) 899 1.1 christos #define FR_ISPASS(x) (((x) & FR_CMDMASK) == FR_PASS) 900 1.1 christos #define FR_ISAUTH(x) (((x) & FR_CMDMASK) == FR_AUTH) 901 1.1 christos #define FR_ISPREAUTH(x) (((x) & FR_CMDMASK) == FR_PREAUTH) 902 1.1 christos #define FR_ISACCOUNT(x) (((x) & FR_CMDMASK) == FR_ACCOUNT) 903 1.1 christos #define FR_ISSKIP(x) (((x) & FR_CMDMASK) == FR_SKIP) 904 1.1 christos #define FR_ISDECAPS(x) (((x) & FR_CMDMASK) == FR_DECAPSULATE) 905 1.1 christos #define FR_ISNOMATCH(x) ((x) & FR_NOMATCH) 906 1.1 christos #define FR_INOUT (FR_INQUE|FR_OUTQUE) 907 1.1 christos 908 1.1 christos /* 909 1.1 christos * recognized flags for SIOCGETFF and SIOCSETFF, and get put in fr_flags 910 1.1 christos */ 911 1.1 christos #define FF_LOGPASS 0x10000000 912 1.1 christos #define FF_LOGBLOCK 0x20000000 913 1.1 christos #define FF_LOGNOMATCH 0x40000000 914 1.1 christos #define FF_LOGGING (FF_LOGPASS|FF_LOGBLOCK|FF_LOGNOMATCH) 915 1.1 christos #define FF_BLOCKNONIP 0x80000000 /* Solaris2 Only */ 916 1.1 christos 917 1.1 christos 918 1.1 christos /* 919 1.1 christos * Structure that passes information on what/how to flush to the kernel. 920 1.1 christos */ 921 1.1 christos typedef struct ipfflush { 922 1.1 christos int ipflu_how; 923 1.1 christos int ipflu_arg; 924 1.1 christos } ipfflush_t; 925 1.1 christos 926 1.1 christos 927 1.1 christos /* 928 1.1 christos * 929 1.1 christos */ 930 1.1 christos typedef struct ipfgetctl { 931 1.1 christos u_int ipfg_min; /* min value */ 932 1.1 christos u_int ipfg_current; /* current value */ 933 1.1 christos u_int ipfg_max; /* max value */ 934 1.1 christos u_int ipfg_default; /* default value */ 935 1.1 christos u_int ipfg_steps; /* value increments */ 936 1.1 christos char ipfg_name[40]; /* tag name for this control */ 937 1.1 christos } ipfgetctl_t; 938 1.1 christos 939 1.1 christos typedef struct ipfsetctl { 940 1.1 christos int ipfs_which; /* 0 = min 1 = current 2 = max 3 = default */ 941 1.1 christos u_int ipfs_value; /* min value */ 942 1.1 christos char ipfs_name[40]; /* tag name for this control */ 943 1.1 christos } ipfsetctl_t; 944 1.1 christos 945 1.1 christos 946 1.1 christos /* 947 1.1 christos * Some of the statistics below are in their own counters, but most are kept 948 1.1 christos * in this single structure so that they can all easily be collected and 949 1.1 christos * copied back as required. 950 1.1 christos */ 951 1.1 christos typedef struct ipf_statistics { 952 1.1 christos u_long fr_icmp_coalesce; 953 1.1 christos u_long fr_tcp_frag; 954 1.1 christos u_long fr_tcp_pullup; 955 1.1 christos u_long fr_tcp_short; 956 1.1 christos u_long fr_tcp_small; 957 1.1 christos u_long fr_tcp_bad_flags; 958 1.1 christos u_long fr_udp_pullup; 959 1.1 christos u_long fr_ip_freed; 960 1.1 christos u_long fr_v6_ah_bad; 961 1.1 christos u_long fr_v6_bad; 962 1.1 christos u_long fr_v6_badfrag; 963 1.1 christos u_long fr_v6_dst_bad; 964 1.1 christos u_long fr_v6_esp_pullup; 965 1.1 christos u_long fr_v6_ext_short; 966 1.1 christos u_long fr_v6_ext_pullup; 967 1.1 christos u_long fr_v6_ext_hlen; 968 1.1 christos u_long fr_v6_frag_bad; 969 1.1 christos u_long fr_v6_frag_pullup; 970 1.1 christos u_long fr_v6_frag_size; 971 1.1 christos u_long fr_v6_gre_pullup; 972 1.1 christos u_long fr_v6_icmp6_pullup; 973 1.1 christos u_long fr_v6_rh_bad; 974 1.1 christos u_long fr_v6_badttl; /* TTL in packet doesn't reach minimum */ 975 1.1 christos u_long fr_v4_ah_bad; 976 1.1 christos u_long fr_v4_ah_pullup; 977 1.1 christos u_long fr_v4_esp_pullup; 978 1.1 christos u_long fr_v4_cipso_bad; 979 1.1 christos u_long fr_v4_cipso_tlen; 980 1.1 christos u_long fr_v4_gre_frag; 981 1.1 christos u_long fr_v4_gre_pullup; 982 1.1 christos u_long fr_v4_icmp_frag; 983 1.1 christos u_long fr_v4_icmp_pullup; 984 1.1 christos u_long fr_v4_badttl; /* TTL in packet doesn't reach minimum */ 985 1.1 christos u_long fr_v4_badsrc; /* source received doesn't match route */ 986 1.1 christos u_long fr_l4_badcksum; /* layer 4 header checksum failure */ 987 1.1 christos u_long fr_badcoalesces; 988 1.1 christos u_long fr_pass; /* packets allowed */ 989 1.1 christos u_long fr_block; /* packets denied */ 990 1.1 christos u_long fr_nom; /* packets which don't match any rule */ 991 1.1 christos u_long fr_short; /* packets which are short */ 992 1.1 christos u_long fr_ppkl; /* packets allowed and logged */ 993 1.1 christos u_long fr_bpkl; /* packets denied and logged */ 994 1.1 christos u_long fr_npkl; /* packets unmatched and logged */ 995 1.1 christos u_long fr_ret; /* packets for which a return is sent */ 996 1.1 christos u_long fr_acct; /* packets for which counting was performed */ 997 1.1 christos u_long fr_bnfr; /* bad attempts to allocate fragment state */ 998 1.1 christos u_long fr_nfr; /* new fragment state kept */ 999 1.1 christos u_long fr_cfr; /* add new fragment state but complete pkt */ 1000 1.1 christos u_long fr_bads; /* bad attempts to allocate packet state */ 1001 1.1 christos u_long fr_ads; /* new packet state kept */ 1002 1.1 christos u_long fr_chit; /* cached hit */ 1003 1.1 christos u_long fr_cmiss; /* cached miss */ 1004 1.1 christos u_long fr_tcpbad; /* TCP checksum check failures */ 1005 1.1 christos u_long fr_pull[2]; /* good and bad pullup attempts */ 1006 1.1 christos u_long fr_bad; /* bad IP packets to the filter */ 1007 1.1 christos u_long fr_ipv6; /* IPv6 packets in/out */ 1008 1.1 christos u_long fr_ppshit; /* dropped because of pps ceiling */ 1009 1.1 christos u_long fr_ipud; /* IP id update failures */ 1010 1.3 darrenr u_long fr_blocked[FRB_MAX_VALUE + 1]; 1011 1.1 christos } ipf_statistics_t; 1012 1.1 christos 1013 1.1 christos /* 1014 1.1 christos * Log structure. Each packet header logged is prepended by one of these. 1015 1.1 christos * Following this in the log records read from the device will be an ipflog 1016 1.1 christos * structure which is then followed by any packet data. 1017 1.1 christos */ 1018 1.1 christos typedef struct iplog { 1019 1.1 christos u_32_t ipl_magic; 1020 1.1 christos u_int ipl_count; 1021 1.1 christos u_32_t ipl_seqnum; 1022 1.1 christos struct timeval ipl_time; 1023 1.1 christos size_t ipl_dsize; 1024 1.1 christos struct iplog *ipl_next; 1025 1.1 christos } iplog_t; 1026 1.1 christos 1027 1.1 christos #define ipl_sec ipl_time.tv_sec 1028 1.1 christos #define ipl_usec ipl_time.tv_usec 1029 1.1 christos 1030 1.1 christos #define IPL_MAGIC 0x49504c4d /* 'IPLM' */ 1031 1.1 christos #define IPL_MAGIC_NAT 0x49504c4e /* 'IPLN' */ 1032 1.1 christos #define IPL_MAGIC_STATE 0x49504c53 /* 'IPLS' */ 1033 1.1 christos #define IPLOG_SIZE sizeof(iplog_t) 1034 1.1 christos 1035 1.1 christos typedef struct ipflog { 1036 1.1 christos #if (defined(NetBSD) && (NetBSD <= 1991011) && (NetBSD >= 199603)) || \ 1037 1.1 christos (defined(OpenBSD) && (OpenBSD >= 199603)) 1038 1.1 christos #else 1039 1.1 christos u_int fl_unit; 1040 1.1 christos #endif 1041 1.1 christos u_32_t fl_rule; 1042 1.1 christos u_32_t fl_flags; 1043 1.1 christos u_32_t fl_lflags; 1044 1.1 christos u_32_t fl_logtag; 1045 1.1 christos ipftag_t fl_nattag; 1046 1.1 christos u_short fl_plen; /* extra data after hlen */ 1047 1.1 christos u_short fl_loglevel; /* syslog log level */ 1048 1.1 christos char fl_group[FR_GROUPLEN]; 1049 1.1 christos u_char fl_hlen; /* length of IP headers saved */ 1050 1.1 christos u_char fl_dir; 1051 1.1 christos u_char fl_breason; /* from fin_reason */ 1052 1.1 christos u_char fl_family; /* address family of packet logged */ 1053 1.1 christos char fl_ifname[LIFNAMSIZ]; 1054 1.1 christos } ipflog_t; 1055 1.1 christos 1056 1.1 christos #ifndef IPF_LOGGING 1057 1.1 christos # define IPF_LOGGING 0 1058 1.1 christos #endif 1059 1.1 christos #ifndef IPF_DEFAULT_PASS 1060 1.1 christos # define IPF_DEFAULT_PASS FR_PASS 1061 1.1 christos #endif 1062 1.1 christos 1063 1.1 christos #define DEFAULT_IPFLOGSIZE 32768 1064 1.1 christos #ifndef IPFILTER_LOGSIZE 1065 1.1 christos # define IPFILTER_LOGSIZE DEFAULT_IPFLOGSIZE 1066 1.1 christos #else 1067 1.1 christos # if IPFILTER_LOGSIZE < 8192 1068 1.1 christos # error IPFILTER_LOGSIZE too small. Must be >= 8192 1069 1.1 christos # endif 1070 1.1 christos #endif 1071 1.1 christos 1072 1.1 christos #define IPF_OPTCOPY 0x07ff00 /* bit mask of copied options */ 1073 1.1 christos 1074 1.1 christos /* 1075 1.1 christos * Device filenames for reading log information. Use ipf on Solaris2 because 1076 1.1 christos * ipl is already a name used by something else. 1077 1.1 christos */ 1078 1.1 christos #ifndef IPL_NAME 1079 1.1 christos # if SOLARIS 1080 1.1 christos # define IPL_NAME "/dev/ipf" 1081 1.1 christos # else 1082 1.1 christos # define IPL_NAME "/dev/ipl" 1083 1.1 christos # endif 1084 1.1 christos #endif 1085 1.1 christos /* 1086 1.1 christos * Pathnames for various IP Filter control devices. Used by LKM 1087 1.1 christos * and userland, so defined here. 1088 1.1 christos */ 1089 1.1 christos #define IPNAT_NAME "/dev/ipnat" 1090 1.1 christos #define IPSTATE_NAME "/dev/ipstate" 1091 1.1 christos #define IPAUTH_NAME "/dev/ipauth" 1092 1.1 christos #define IPSYNC_NAME "/dev/ipsync" 1093 1.1 christos #define IPSCAN_NAME "/dev/ipscan" 1094 1.1 christos #define IPLOOKUP_NAME "/dev/iplookup" 1095 1.1 christos 1096 1.1 christos #define IPL_LOGIPF 0 /* Minor device #'s for accessing logs */ 1097 1.1 christos #define IPL_LOGNAT 1 1098 1.1 christos #define IPL_LOGSTATE 2 1099 1.1 christos #define IPL_LOGAUTH 3 1100 1.1 christos #define IPL_LOGSYNC 4 1101 1.1 christos #define IPL_LOGSCAN 5 1102 1.1 christos #define IPL_LOGLOOKUP 6 1103 1.1 christos #define IPL_LOGCOUNT 7 1104 1.1 christos #define IPL_LOGMAX 7 1105 1.1 christos #define IPL_LOGSIZE IPL_LOGMAX + 1 1106 1.1 christos #define IPL_LOGALL -1 1107 1.1 christos #define IPL_LOGNONE -2 1108 1.1 christos 1109 1.1 christos /* 1110 1.1 christos * For SIOCGETFS 1111 1.1 christos */ 1112 1.1 christos typedef struct friostat { 1113 1.1 christos ipf_statistics_t f_st[2]; 1114 1.1 christos frentry_t *f_ipf[2][2]; 1115 1.1 christos frentry_t *f_acct[2][2]; 1116 1.1 christos frentry_t *f_auth; 1117 1.1 christos struct frgroup *f_groups[IPL_LOGSIZE][2]; 1118 1.1 christos u_long f_froute[2]; 1119 1.1 christos u_long f_log_ok; 1120 1.1 christos u_long f_log_fail; 1121 1.1 christos u_long f_rb_no_mem; 1122 1.1 christos u_long f_rb_node_max; 1123 1.1 christos u_32_t f_ticks; 1124 1.1 christos int f_locks[IPL_LOGSIZE]; 1125 1.1 christos int f_defpass; /* default pass - from fr_pass */ 1126 1.1 christos int f_active; /* 1 or 0 - active rule set */ 1127 1.1 christos int f_running; /* 1 if running, else 0 */ 1128 1.1 christos int f_logging; /* 1 if enabled, else 0 */ 1129 1.1 christos int f_features; 1130 1.1 christos char f_version[32]; /* version string */ 1131 1.1 christos } friostat_t; 1132 1.1 christos 1133 1.1 christos #define f_fin f_ipf[0] 1134 1.1 christos #define f_fout f_ipf[1] 1135 1.1 christos #define f_acctin f_acct[0] 1136 1.1 christos #define f_acctout f_acct[1] 1137 1.1 christos 1138 1.1 christos #define IPF_FEAT_LKM 0x001 1139 1.1 christos #define IPF_FEAT_LOG 0x002 1140 1.1 christos #define IPF_FEAT_LOOKUP 0x004 1141 1.1 christos #define IPF_FEAT_BPF 0x008 1142 1.1 christos #define IPF_FEAT_COMPILED 0x010 1143 1.1 christos #define IPF_FEAT_CKSUM 0x020 1144 1.1 christos #define IPF_FEAT_SYNC 0x040 1145 1.1 christos #define IPF_FEAT_SCAN 0x080 1146 1.1 christos #define IPF_FEAT_IPV6 0x100 1147 1.1 christos 1148 1.1 christos typedef struct optlist { 1149 1.1 christos u_short ol_val; 1150 1.1 christos int ol_bit; 1151 1.1 christos } optlist_t; 1152 1.1 christos 1153 1.1 christos 1154 1.1 christos /* 1155 1.1 christos * Group list structure. 1156 1.1 christos */ 1157 1.1 christos typedef struct frgroup { 1158 1.1 christos struct frgroup *fg_next; 1159 1.1 christos struct frentry *fg_head; 1160 1.1 christos struct frentry *fg_start; 1161 1.1 christos struct frgroup **fg_set; 1162 1.1 christos u_32_t fg_flags; 1163 1.1 christos int fg_ref; 1164 1.1 christos char fg_name[FR_GROUPLEN]; 1165 1.1 christos } frgroup_t; 1166 1.1 christos 1167 1.1 christos #define FG_NAME(g) (*(g)->fg_name == '\0' ? "" : (g)->fg_name) 1168 1.1 christos 1169 1.1 christos 1170 1.1 christos /* 1171 1.1 christos * Used by state and NAT tables 1172 1.1 christos */ 1173 1.1 christos typedef struct icmpinfo { 1174 1.1 christos u_short ici_id; 1175 1.1 christos u_short ici_seq; 1176 1.1 christos u_char ici_type; 1177 1.1 christos } icmpinfo_t; 1178 1.1 christos 1179 1.1 christos typedef struct udpinfo { 1180 1.1 christos u_short us_sport; 1181 1.1 christos u_short us_dport; 1182 1.1 christos } udpinfo_t; 1183 1.1 christos 1184 1.1 christos 1185 1.1 christos typedef struct tcpdata { 1186 1.1 christos u_32_t td_end; 1187 1.1 christos u_32_t td_maxend; 1188 1.1 christos u_32_t td_maxwin; 1189 1.1 christos u_32_t td_winscale; 1190 1.1 christos u_32_t td_maxseg; 1191 1.1 christos int td_winflags; 1192 1.1 christos } tcpdata_t; 1193 1.1 christos 1194 1.1 christos #define TCP_WSCALE_MAX 14 1195 1.1 christos 1196 1.1 christos #define TCP_WSCALE_SEEN 0x00000001 1197 1.1 christos #define TCP_WSCALE_FIRST 0x00000002 1198 1.1 christos #define TCP_SACK_PERMIT 0x00000004 1199 1.1 christos 1200 1.1 christos 1201 1.1 christos typedef struct tcpinfo { 1202 1.1 christos u_32_t ts_sport; 1203 1.1 christos u_32_t ts_dport; 1204 1.1 christos tcpdata_t ts_data[2]; 1205 1.1 christos } tcpinfo_t; 1206 1.1 christos 1207 1.1 christos 1208 1.1 christos /* 1209 1.1 christos * Structures to define a GRE header as seen in a packet. 1210 1.1 christos */ 1211 1.1 christos struct grebits { 1212 1.1 christos #if defined(sparc) 1213 1.1 christos u_32_t grb_ver:3; 1214 1.1 christos u_32_t grb_flags:3; 1215 1.1 christos u_32_t grb_A:1; 1216 1.1 christos u_32_t grb_recur:1; 1217 1.1 christos u_32_t grb_s:1; 1218 1.1 christos u_32_t grb_S:1; 1219 1.1 christos u_32_t grb_K:1; 1220 1.1 christos u_32_t grb_R:1; 1221 1.1 christos u_32_t grb_C:1; 1222 1.1 christos #else 1223 1.1 christos u_32_t grb_C:1; 1224 1.1 christos u_32_t grb_R:1; 1225 1.1 christos u_32_t grb_K:1; 1226 1.1 christos u_32_t grb_S:1; 1227 1.1 christos u_32_t grb_s:1; 1228 1.1 christos u_32_t grb_recur:1; 1229 1.1 christos u_32_t grb_A:1; 1230 1.1 christos u_32_t grb_flags:3; 1231 1.1 christos u_32_t grb_ver:3; 1232 1.1 christos #endif 1233 1.1 christos u_short grb_ptype; 1234 1.1 christos }; 1235 1.1 christos 1236 1.1 christos typedef struct grehdr { 1237 1.1 christos union { 1238 1.1 christos struct grebits gru_bits; 1239 1.1 christos u_short gru_flags; 1240 1.1 christos } gr_un; 1241 1.1 christos u_short gr_len; 1242 1.1 christos u_short gr_call; 1243 1.1 christos } grehdr_t; 1244 1.1 christos 1245 1.1 christos #define gr_flags gr_un.gru_flags 1246 1.1 christos #define gr_bits gr_un.gru_bits 1247 1.1 christos #define gr_ptype gr_bits.grb_ptype 1248 1.1 christos #define gr_C gr_bits.grb_C 1249 1.1 christos #define gr_R gr_bits.grb_R 1250 1.1 christos #define gr_K gr_bits.grb_K 1251 1.1 christos #define gr_S gr_bits.grb_S 1252 1.1 christos #define gr_s gr_bits.grb_s 1253 1.1 christos #define gr_recur gr_bits.grb_recur 1254 1.1 christos #define gr_A gr_bits.grb_A 1255 1.1 christos #define gr_ver gr_bits.grb_ver 1256 1.1 christos 1257 1.1 christos /* 1258 1.1 christos * GRE information tracked by "keep state" 1259 1.1 christos */ 1260 1.1 christos typedef struct greinfo { 1261 1.1 christos u_short gs_call[2]; 1262 1.1 christos u_short gs_flags; 1263 1.1 christos u_short gs_ptype; 1264 1.1 christos } greinfo_t; 1265 1.1 christos 1266 1.1 christos #define GRE_REV(x) ((ntohs(x) >> 13) & 7) 1267 1.1 christos 1268 1.1 christos 1269 1.1 christos /* 1270 1.1 christos * Format of an Authentication header 1271 1.1 christos */ 1272 1.1 christos typedef struct authhdr { 1273 1.1 christos u_char ah_next; 1274 1.1 christos u_char ah_plen; 1275 1.1 christos u_short ah_reserved; 1276 1.1 christos u_32_t ah_spi; 1277 1.1 christos u_32_t ah_seq; 1278 1.1 christos /* Following the sequence number field is 0 or more bytes of */ 1279 1.1 christos /* authentication data, as specified by ah_plen - RFC 2402. */ 1280 1.1 christos } authhdr_t; 1281 1.1 christos 1282 1.1 christos 1283 1.1 christos /* 1284 1.1 christos * Timeout tail queue list member 1285 1.1 christos */ 1286 1.1 christos typedef struct ipftqent { 1287 1.1 christos struct ipftqent **tqe_pnext; 1288 1.1 christos struct ipftqent *tqe_next; 1289 1.1 christos struct ipftq *tqe_ifq; 1290 1.1 christos void *tqe_parent; /* pointer back to NAT/state struct */ 1291 1.1 christos u_32_t tqe_die; /* when this entriy is to die */ 1292 1.1 christos u_32_t tqe_touched; 1293 1.1 christos int tqe_flags; 1294 1.1 christos int tqe_state[2]; /* current state of this entry */ 1295 1.1 christos } ipftqent_t; 1296 1.1 christos 1297 1.1 christos #define TQE_RULEBASED 0x00000001 1298 1.1 christos #define TQE_DELETE 0x00000002 1299 1.1 christos 1300 1.1 christos 1301 1.1 christos /* 1302 1.1 christos * Timeout tail queue head for IPFilter 1303 1.1 christos */ 1304 1.1 christos typedef struct ipftq { 1305 1.1 christos ipfmutex_t ifq_lock; 1306 1.1 christos u_int ifq_ttl; 1307 1.1 christos ipftqent_t *ifq_head; 1308 1.1 christos ipftqent_t **ifq_tail; 1309 1.1 christos struct ipftq *ifq_next; 1310 1.1 christos struct ipftq **ifq_pnext; 1311 1.1 christos int ifq_ref; 1312 1.1 christos u_int ifq_flags; 1313 1.1 christos } ipftq_t; 1314 1.1 christos 1315 1.1 christos #define IFQF_USER 0x01 /* User defined aging */ 1316 1.1 christos #define IFQF_DELETE 0x02 /* Marked for deletion */ 1317 1.1 christos #define IFQF_PROXY 0x04 /* Timeout queue in use by a proxy */ 1318 1.1 christos 1319 1.1 christos #define IPFTQ_INIT(x,y,z) do { \ 1320 1.1 christos (x)->ifq_ttl = (y); \ 1321 1.1 christos (x)->ifq_head = NULL; \ 1322 1.1 christos (x)->ifq_ref = 1; \ 1323 1.1 christos (x)->ifq_tail = &(x)->ifq_head; \ 1324 1.1 christos MUTEX_INIT(&(x)->ifq_lock, (z)); \ 1325 1.1 christos } while (0) 1326 1.1 christos 1327 1.1 christos #define IPF_HZ_MULT 1 1328 1.1 christos #define IPF_HZ_DIVIDE 2 /* How many times a second ipfilter */ 1329 1.1 christos /* checks its timeout queues. */ 1330 1.1 christos #define IPF_TTLVAL(x) (((x) / IPF_HZ_MULT) * IPF_HZ_DIVIDE) 1331 1.1 christos 1332 1.1 christos typedef int (*ipftq_delete_fn_t)(struct ipf_main_softc_s *, void *); 1333 1.1 christos 1334 1.1 christos 1335 1.1 christos /* 1336 1.1 christos * Object structure description. For passing through in ioctls. 1337 1.1 christos */ 1338 1.1 christos typedef struct ipfobj { 1339 1.1 christos u_32_t ipfo_rev; /* IPFilter version number */ 1340 1.1 christos u_32_t ipfo_size; /* size of object at ipfo_ptr */ 1341 1.1 christos void *ipfo_ptr; /* pointer to object */ 1342 1.1 christos int ipfo_type; /* type of object being pointed to */ 1343 1.1 christos int ipfo_offset; /* bytes from ipfo_ptr where to start */ 1344 1.1 christos int ipfo_retval; /* return value */ 1345 1.1 christos u_char ipfo_xxxpad[28]; /* reserved for future use */ 1346 1.1 christos } ipfobj_t; 1347 1.1 christos 1348 1.1 christos #define IPFOBJ_FRENTRY 0 /* struct frentry */ 1349 1.1 christos #define IPFOBJ_IPFSTAT 1 /* struct friostat */ 1350 1.1 christos #define IPFOBJ_IPFINFO 2 /* struct fr_info */ 1351 1.1 christos #define IPFOBJ_AUTHSTAT 3 /* struct fr_authstat */ 1352 1.1 christos #define IPFOBJ_FRAGSTAT 4 /* struct ipfrstat */ 1353 1.1 christos #define IPFOBJ_IPNAT 5 /* struct ipnat */ 1354 1.1 christos #define IPFOBJ_NATSTAT 6 /* struct natstat */ 1355 1.1 christos #define IPFOBJ_STATESAVE 7 /* struct ipstate_save */ 1356 1.1 christos #define IPFOBJ_NATSAVE 8 /* struct nat_save */ 1357 1.1 christos #define IPFOBJ_NATLOOKUP 9 /* struct natlookup */ 1358 1.1 christos #define IPFOBJ_IPSTATE 10 /* struct ipstate */ 1359 1.1 christos #define IPFOBJ_STATESTAT 11 /* struct ips_stat */ 1360 1.1 christos #define IPFOBJ_FRAUTH 12 /* struct frauth */ 1361 1.1 christos #define IPFOBJ_TUNEABLE 13 /* struct ipftune */ 1362 1.1 christos #define IPFOBJ_NAT 14 /* struct nat */ 1363 1.1 christos #define IPFOBJ_IPFITER 15 /* struct ipfruleiter */ 1364 1.1 christos #define IPFOBJ_GENITER 16 /* struct ipfgeniter */ 1365 1.1 christos #define IPFOBJ_GTABLE 17 /* struct ipftable */ 1366 1.1 christos #define IPFOBJ_LOOKUPITER 18 /* struct ipflookupiter */ 1367 1.1 christos #define IPFOBJ_STATETQTAB 19 /* struct ipftq * NSTATES */ 1368 1.1 christos #define IPFOBJ_IPFEXPR 20 1369 1.1 christos #define IPFOBJ_PROXYCTL 21 /* strct ap_ctl */ 1370 1.1 christos #define IPFOBJ_FRIPF 22 /* structfripf */ 1371 1.1 christos #define IPFOBJ_COUNT 23 /* How many #defines are above this? */ 1372 1.1 christos 1373 1.1 christos 1374 1.1 christos typedef union ipftunevalptr { 1375 1.1 christos void *ipftp_void; 1376 1.1 christos u_long *ipftp_long; 1377 1.1 christos u_int *ipftp_int; 1378 1.1 christos u_short *ipftp_short; 1379 1.1 christos u_char *ipftp_char; 1380 1.1 christos u_long ipftp_offset; 1381 1.1 christos } ipftunevalptr_t; 1382 1.1 christos 1383 1.1 christos typedef union ipftuneval { 1384 1.1 christos u_long ipftu_long; 1385 1.1 christos u_int ipftu_int; 1386 1.1 christos u_short ipftu_short; 1387 1.1 christos u_char ipftu_char; 1388 1.1 christos } ipftuneval_t; 1389 1.1 christos 1390 1.1 christos struct ipftuneable; 1391 1.2 christos typedef int (* ipftunefunc_t)(struct ipf_main_softc_s *, struct ipftuneable *, 1392 1.2 christos ipftuneval_t *); 1393 1.1 christos 1394 1.1 christos typedef struct ipftuneable { 1395 1.1 christos ipftunevalptr_t ipft_una; 1396 1.1 christos const char *ipft_name; 1397 1.1 christos u_long ipft_min; 1398 1.1 christos u_long ipft_max; 1399 1.1 christos int ipft_sz; 1400 1.1 christos int ipft_flags; 1401 1.1 christos struct ipftuneable *ipft_next; 1402 1.1 christos ipftunefunc_t ipft_func; 1403 1.1 christos } ipftuneable_t; 1404 1.1 christos 1405 1.1 christos #define ipft_addr ipft_una.ipftp_void 1406 1.1 christos #define ipft_plong ipft_una.ipftp_long 1407 1.1 christos #define ipft_pint ipft_una.ipftp_int 1408 1.1 christos #define ipft_pshort ipft_una.ipftp_short 1409 1.1 christos #define ipft_pchar ipft_una.ipftp_char 1410 1.1 christos 1411 1.1 christos #define IPFT_RDONLY 1 /* read-only */ 1412 1.1 christos #define IPFT_WRDISABLED 2 /* write when disabled only */ 1413 1.1 christos 1414 1.1 christos typedef struct ipftune { 1415 1.1 christos void *ipft_cookie; 1416 1.1 christos ipftuneval_t ipft_un; 1417 1.1 christos u_long ipft_min; 1418 1.1 christos u_long ipft_max; 1419 1.1 christos int ipft_sz; 1420 1.1 christos int ipft_flags; 1421 1.1 christos char ipft_name[80]; 1422 1.1 christos } ipftune_t; 1423 1.1 christos 1424 1.1 christos #define ipft_vlong ipft_un.ipftu_long 1425 1.1 christos #define ipft_vint ipft_un.ipftu_int 1426 1.1 christos #define ipft_vshort ipft_un.ipftu_short 1427 1.1 christos #define ipft_vchar ipft_un.ipftu_char 1428 1.1 christos 1429 1.1 christos /* 1430 1.1 christos * Hash table header 1431 1.1 christos */ 1432 1.1 christos #define IPFHASH(x,y) typedef struct { \ 1433 1.1 christos ipfrwlock_t ipfh_lock; \ 1434 1.1 christos struct x *ipfh_head; \ 1435 1.1 christos } y 1436 1.1 christos 1437 1.1 christos /* 1438 1.1 christos ** HPUX Port 1439 1.1 christos */ 1440 1.1 christos #ifdef __hpux 1441 1.1 christos /* HP-UX locking sequence deadlock detection module lock MAJOR ID */ 1442 1.1 christos # define IPF_SMAJ 0 /* temp assignment XXX, not critical */ 1443 1.1 christos #endif 1444 1.1 christos 1445 1.1 christos #if !defined(CDEV_MAJOR) && defined (__FreeBSD_version) && \ 1446 1.1 christos (__FreeBSD_version >= 220000) 1447 1.1 christos # define CDEV_MAJOR 79 1448 1.1 christos #endif 1449 1.1 christos 1450 1.1 christos /* 1451 1.1 christos * Post NetBSD 1.2 has the PFIL interface for packet filters. This turns 1452 1.1 christos * on those hooks. We don't need any special mods in non-IP Filter code 1453 1.1 christos * with this! 1454 1.1 christos */ 1455 1.1 christos #if (defined(NetBSD) && (NetBSD > 199609) && (NetBSD <= 1991011)) || \ 1456 1.1 christos (defined(NetBSD1_2) && NetBSD1_2 > 1) || \ 1457 1.1 christos (defined(__FreeBSD__) && (__FreeBSD_version >= 500043)) 1458 1.5 rmind # if (NetBSD >= 199905) && !defined(PFIL_HOOKS) 1459 1.1 christos # define PFIL_HOOKS 1460 1.1 christos # endif 1461 1.1 christos # ifdef PFIL_HOOKS 1462 1.1 christos # define NETBSD_PF 1463 1.1 christos # endif 1464 1.1 christos #endif 1465 1.1 christos 1466 1.1 christos #ifdef _KERNEL 1467 1.1 christos # define FR_VERBOSE(verb_pr) 1468 1.1 christos # define FR_DEBUG(verb_pr) 1469 1.1 christos #else 1470 1.2 christos extern void ipfkdebug(char *, ...); 1471 1.2 christos extern void ipfkverbose(char *, ...); 1472 1.1 christos # define FR_VERBOSE(verb_pr) ipfkverbose verb_pr 1473 1.1 christos # define FR_DEBUG(verb_pr) ipfkdebug verb_pr 1474 1.1 christos #endif 1475 1.1 christos 1476 1.1 christos /* 1477 1.1 christos * 1478 1.1 christos */ 1479 1.1 christos typedef struct ipfruleiter { 1480 1.1 christos int iri_inout; 1481 1.1 christos char iri_group[FR_GROUPLEN]; 1482 1.1 christos int iri_active; 1483 1.1 christos int iri_nrules; 1484 1.1 christos int iri_v; /* No longer used (compatibility) */ 1485 1.1 christos frentry_t *iri_rule; 1486 1.1 christos } ipfruleiter_t; 1487 1.1 christos 1488 1.1 christos /* 1489 1.1 christos * Values for iri_inout 1490 1.1 christos */ 1491 1.1 christos #define F_IN 0 1492 1.1 christos #define F_OUT 1 1493 1.1 christos #define F_ACIN 2 1494 1.1 christos #define F_ACOUT 3 1495 1.1 christos 1496 1.1 christos 1497 1.1 christos typedef struct ipfgeniter { 1498 1.1 christos int igi_type; 1499 1.1 christos int igi_nitems; 1500 1.1 christos void *igi_data; 1501 1.1 christos } ipfgeniter_t; 1502 1.1 christos 1503 1.1 christos #define IPFGENITER_IPF 0 1504 1.1 christos #define IPFGENITER_NAT 1 1505 1.1 christos #define IPFGENITER_IPNAT 2 1506 1.1 christos #define IPFGENITER_FRAG 3 1507 1.1 christos #define IPFGENITER_AUTH 4 1508 1.1 christos #define IPFGENITER_STATE 5 1509 1.1 christos #define IPFGENITER_NATFRAG 6 1510 1.1 christos #define IPFGENITER_HOSTMAP 7 1511 1.1 christos #define IPFGENITER_LOOKUP 8 1512 1.1 christos 1513 1.1 christos typedef struct ipftable { 1514 1.1 christos int ita_type; 1515 1.1 christos void *ita_table; 1516 1.1 christos } ipftable_t; 1517 1.1 christos 1518 1.1 christos #define IPFTABLE_BUCKETS 1 1519 1.1 christos #define IPFTABLE_BUCKETS_NATIN 2 1520 1.1 christos #define IPFTABLE_BUCKETS_NATOUT 3 1521 1.1 christos 1522 1.1 christos 1523 1.3 darrenr typedef struct ipf_v4_masktab_s { 1524 1.3 darrenr u_32_t imt4_active[33]; 1525 1.3 darrenr int imt4_masks[33]; 1526 1.3 darrenr int imt4_max; 1527 1.3 darrenr } ipf_v4_masktab_t; 1528 1.3 darrenr 1529 1.3 darrenr typedef struct ipf_v6_masktab_s { 1530 1.3 darrenr i6addr_t imt6_active[129]; 1531 1.3 darrenr int imt6_masks[129]; 1532 1.3 darrenr int imt6_max; 1533 1.3 darrenr } ipf_v6_masktab_t; 1534 1.3 darrenr 1535 1.3 darrenr 1536 1.1 christos /* 1537 1.1 christos * 1538 1.1 christos */ 1539 1.1 christos typedef struct ipftoken { 1540 1.1 christos struct ipftoken *ipt_next; 1541 1.1 christos struct ipftoken **ipt_pnext; 1542 1.1 christos void *ipt_ctx; 1543 1.1 christos void *ipt_data; 1544 1.1 christos u_long ipt_die; 1545 1.1 christos int ipt_type; 1546 1.1 christos int ipt_uid; 1547 1.1 christos int ipt_subtype; 1548 1.1 christos int ipt_ref; 1549 1.1 christos int ipt_complete; 1550 1.1 christos } ipftoken_t; 1551 1.1 christos 1552 1.1 christos 1553 1.1 christos /* 1554 1.1 christos * 1555 1.1 christos */ 1556 1.1 christos typedef struct ipfexp { 1557 1.1 christos int ipfe_cmd; 1558 1.1 christos int ipfe_not; 1559 1.1 christos int ipfe_narg; 1560 1.3 darrenr int ipfe_size; 1561 1.3 darrenr int ipfe_arg0[1]; 1562 1.1 christos } ipfexp_t; 1563 1.1 christos 1564 1.1 christos /* 1565 1.1 christos * Currently support commands (ipfe_cmd) 1566 1.1 christos * 32bits is split up follows: 1567 1.1 christos * aabbcccc 1568 1.1 christos * aa = 0 = packet matching, 1 = meta data matching 1569 1.1 christos * bb = IP protocol number 1570 1.1 christos * cccc = command 1571 1.1 christos */ 1572 1.1 christos #define IPF_EXP_IP_PR 0x00000001 1573 1.1 christos #define IPF_EXP_IP_ADDR 0x00000002 1574 1.1 christos #define IPF_EXP_IP_SRCADDR 0x00000003 1575 1.1 christos #define IPF_EXP_IP_DSTADDR 0x00000004 1576 1.1 christos #define IPF_EXP_IP6_ADDR 0x00000005 1577 1.1 christos #define IPF_EXP_IP6_SRCADDR 0x00000006 1578 1.1 christos #define IPF_EXP_IP6_DSTADDR 0x00000007 1579 1.1 christos #define IPF_EXP_TCP_FLAGS 0x00060001 1580 1.1 christos #define IPF_EXP_TCP_PORT 0x00060002 1581 1.1 christos #define IPF_EXP_TCP_SPORT 0x00060003 1582 1.1 christos #define IPF_EXP_TCP_DPORT 0x00060004 1583 1.1 christos #define IPF_EXP_UDP_PORT 0x00110002 1584 1.1 christos #define IPF_EXP_UDP_SPORT 0x00110003 1585 1.1 christos #define IPF_EXP_UDP_DPORT 0x00110004 1586 1.1 christos #define IPF_EXP_IDLE_GT 0x01000001 1587 1.1 christos #define IPF_EXP_TCP_STATE 0x01060002 1588 1.1 christos #define IPF_EXP_END 0xffffffff 1589 1.1 christos 1590 1.1 christos #define ONE_DAY IPF_TTLVAL(1 * 86400) /* 1 day */ 1591 1.1 christos #define FIVE_DAYS (5 * ONE_DAY) 1592 1.1 christos 1593 1.1 christos typedef struct ipf_main_softc_s { 1594 1.1 christos struct ipf_main_softc_s *ipf_next; 1595 1.1 christos ipfmutex_t ipf_rw; 1596 1.1 christos ipfmutex_t ipf_timeoutlock; 1597 1.1 christos ipfrwlock_t ipf_mutex; 1598 1.1 christos ipfrwlock_t ipf_frag; 1599 1.1 christos ipfrwlock_t ipf_global; 1600 1.1 christos ipfrwlock_t ipf_tokens; 1601 1.1 christos ipfrwlock_t ipf_state; 1602 1.1 christos ipfrwlock_t ipf_nat; 1603 1.1 christos ipfrwlock_t ipf_natfrag; 1604 1.1 christos ipfrwlock_t ipf_poolrw; 1605 1.1 christos int ipf_dynamic_softc; 1606 1.1 christos int ipf_refcnt; 1607 1.1 christos int ipf_running; 1608 1.1 christos int ipf_flags; 1609 1.1 christos int ipf_active; 1610 1.1 christos int ipf_control_forwarding; 1611 1.1 christos int ipf_update_ipid; 1612 1.1 christos int ipf_chksrc; /* causes a system crash if enabled */ 1613 1.1 christos int ipf_pass; 1614 1.1 christos int ipf_minttl; 1615 1.1 christos int ipf_icmpminfragmtu; 1616 1.1 christos int ipf_interror; /* Should be in a struct that is per */ 1617 1.1 christos /* thread or process. Does not belong */ 1618 1.1 christos /* here but there's a lot more work */ 1619 1.1 christos /* in doing that properly. For now, */ 1620 1.1 christos /* it is squatting. */ 1621 1.1 christos u_int ipf_tcpidletimeout; 1622 1.1 christos u_int ipf_tcpclosewait; 1623 1.1 christos u_int ipf_tcplastack; 1624 1.1 christos u_int ipf_tcptimewait; 1625 1.1 christos u_int ipf_tcptimeout; 1626 1.1 christos u_int ipf_tcpsynsent; 1627 1.1 christos u_int ipf_tcpsynrecv; 1628 1.1 christos u_int ipf_tcpclosed; 1629 1.1 christos u_int ipf_tcphalfclosed; 1630 1.1 christos u_int ipf_udptimeout; 1631 1.1 christos u_int ipf_udpacktimeout; 1632 1.1 christos u_int ipf_icmptimeout; 1633 1.1 christos u_int ipf_icmpacktimeout; 1634 1.1 christos u_int ipf_iptimeout; 1635 1.1 christos u_long ipf_ticks; 1636 1.1 christos u_long ipf_userifqs; 1637 1.1 christos u_long ipf_rb_no_mem; 1638 1.1 christos u_long ipf_rb_node_max; 1639 1.1 christos u_long ipf_frouteok[2]; 1640 1.1 christos ipftuneable_t *ipf_tuners; 1641 1.1 christos void *ipf_frag_soft; 1642 1.1 christos void *ipf_nat_soft; 1643 1.1 christos void *ipf_state_soft; 1644 1.1 christos void *ipf_auth_soft; 1645 1.1 christos void *ipf_proxy_soft; 1646 1.1 christos void *ipf_sync_soft; 1647 1.1 christos void *ipf_lookup_soft; 1648 1.1 christos void *ipf_log_soft; 1649 1.1 christos struct frgroup *ipf_groups[IPL_LOGSIZE][2]; 1650 1.1 christos frentry_t *ipf_rules[2][2]; 1651 1.1 christos frentry_t *ipf_acct[2][2]; 1652 1.1 christos frentry_t *ipf_rule_explist[2]; 1653 1.1 christos ipftoken_t *ipf_token_head; 1654 1.1 christos ipftoken_t **ipf_token_tail; 1655 1.1 christos #if defined(__FreeBSD_version) && (__FreeBSD_version >= 300000) && \ 1656 1.1 christos defined(_KERNEL) 1657 1.1 christos struct callout_handle ipf_slow_ch; 1658 1.1 christos #endif 1659 1.1 christos #if defined(linux) && defined(_KERNEL) 1660 1.1 christos struct timer_list ipf_timer; 1661 1.1 christos #endif 1662 1.1 christos #if NETBSD_GE_REV(104040000) 1663 1.1 christos struct callout ipf_slow_ch; 1664 1.1 christos #endif 1665 1.1 christos #if SOLARIS 1666 1.1 christos # if SOLARIS2 >= 7 1667 1.1 christos timeout_id_t ipf_slow_ch; 1668 1.1 christos # else 1669 1.1 christos int ipf_slow_ch; 1670 1.1 christos # endif 1671 1.1 christos #endif 1672 1.1 christos #if defined(_KERNEL) 1673 1.1 christos # if SOLARIS 1674 1.1 christos struct pollhead ipf_poll_head[IPL_LOGSIZE]; 1675 1.1 christos void *ipf_dip; 1676 1.1 christos # if defined(INSTANCES) 1677 1.1 christos int ipf_get_loopback; 1678 1.1 christos u_long ipf_idnum; 1679 1.1 christos net_handle_t ipf_nd_v4; 1680 1.1 christos net_handle_t ipf_nd_v6; 1681 1.1 christos hook_t *ipf_hk_v4_in; 1682 1.1 christos hook_t *ipf_hk_v4_out; 1683 1.1 christos hook_t *ipf_hk_v4_nic; 1684 1.1 christos hook_t *ipf_hk_v6_in; 1685 1.1 christos hook_t *ipf_hk_v6_out; 1686 1.1 christos hook_t *ipf_hk_v6_nic; 1687 1.1 christos hook_t *ipf_hk_loop_v4_in; 1688 1.1 christos hook_t *ipf_hk_loop_v4_out; 1689 1.1 christos hook_t *ipf_hk_loop_v6_in; 1690 1.1 christos hook_t *ipf_hk_loop_v6_out; 1691 1.1 christos # endif 1692 1.1 christos # else 1693 1.1 christos # if defined(linux) && defined(_KERNEL) 1694 1.1 christos struct poll_table_struct ipf_selwait[IPL_LOGSIZE]; 1695 1.1 christos wait_queue_head_t iplh_linux[IPL_LOGSIZE]; 1696 1.1 christos # else 1697 1.1 christos struct selinfo ipf_selwait[IPL_LOGSIZE]; 1698 1.1 christos # endif 1699 1.1 christos # endif 1700 1.1 christos #endif 1701 1.1 christos void *ipf_slow; 1702 1.1 christos ipf_statistics_t ipf_stats[2]; 1703 1.1 christos u_char ipf_iss_secret[32]; 1704 1.1 christos u_short ipf_ip_id; 1705 1.1 christos } ipf_main_softc_t; 1706 1.1 christos 1707 1.1 christos #define IPFERROR(_e) do { softc->ipf_interror = (_e); \ 1708 1.1 christos DT1(user_error, int, _e); \ 1709 1.1 christos } while (0) 1710 1.1 christos 1711 1.1 christos #ifndef _KERNEL 1712 1.2 christos extern int ipf_check(void *, struct ip *, int, void *, int, mb_t **); 1713 1.2 christos extern int (*ipf_checkp)(ip_t *, int, void *, int, mb_t **); 1714 1.2 christos extern struct ifnet *get_unit(char *, int); 1715 1.2 christos extern char *get_ifname(struct ifnet *); 1716 1.2 christos extern int ipfioctl(ipf_main_softc_t *, int, ioctlcmd_t, 1717 1.2 christos void *, int); 1718 1.2 christos extern void m_freem(mb_t *); 1719 1.2 christos extern size_t msgdsize(mb_t *); 1720 1.2 christos extern int bcopywrap(void *, void *, size_t); 1721 1.1 christos #else /* #ifndef _KERNEL */ 1722 1.1 christos # if defined(__NetBSD__) && defined(PFIL_HOOKS) 1723 1.2 christos extern void ipfilterattach(int); 1724 1.1 christos # endif 1725 1.2 christos extern int ipl_enable(void); 1726 1.2 christos extern int ipl_disable(void); 1727 1.1 christos # ifdef MENTAT 1728 1.2 christos extern int ipf_check(void *, struct ip *, int, void *, int, void *, 1729 1.2 christos mblk_t **); 1730 1.1 christos # if SOLARIS 1731 1.3 darrenr extern void ipf_prependmbt(fr_info_t *, mblk_t *); 1732 1.1 christos # if SOLARIS2 >= 7 1733 1.2 christos extern int ipfioctl(dev_t, int, intptr_t, int, cred_t *, int *); 1734 1.1 christos # else 1735 1.2 christos extern int ipfioctl(dev_t, int, int *, int, cred_t *, int *); 1736 1.1 christos # endif 1737 1.1 christos # endif 1738 1.1 christos # ifdef __hpux 1739 1.2 christos extern int ipfioctl(dev_t, int, caddr_t, int); 1740 1.2 christos extern int ipf_select(dev_t, int); 1741 1.1 christos # endif 1742 1.2 christos extern int ipf_qout(queue_t *, mblk_t *); 1743 1.1 christos # else /* MENTAT */ 1744 1.2 christos extern int ipf_check(void *, struct ip *, int, void *, int, mb_t **); 1745 1.2 christos extern int (*fr_checkp)(ip_t *, int, void *, int, mb_t **); 1746 1.2 christos extern size_t mbufchainlen(mb_t *); 1747 1.1 christos # ifdef __sgi 1748 1.1 christos # include <sys/cred.h> 1749 1.2 christos extern int ipfioctl(dev_t, int, caddr_t, int, cred_t *, int *); 1750 1.2 christos extern int ipfilter_sgi_attach(void); 1751 1.2 christos extern void ipfilter_sgi_detach(void); 1752 1.2 christos extern void ipfilter_sgi_intfsync(void); 1753 1.1 christos # else 1754 1.1 christos # ifdef IPFILTER_LKM 1755 1.2 christos extern int ipf_identify(char *); 1756 1.1 christos # endif 1757 1.1 christos # if BSDOS_GE_REV(199510) || FREEBSD_GE_REV(220000) || \ 1758 1.1 christos (defined(NetBSD) && (NetBSD >= 199511)) || defined(__OpenBSD__) 1759 1.1 christos # if defined(__NetBSD__) || BSDOS_GE_REV(199701) || \ 1760 1.1 christos defined(__OpenBSD__) || FREEBSD_GE_REV(300000) 1761 1.1 christos # if (__FreeBSD_version >= 500024) 1762 1.1 christos # if (__FreeBSD_version >= 502116) 1763 1.2 christos extern int ipfioctl(struct cdev*, u_long, caddr_t, int, struct thread *); 1764 1.1 christos # else 1765 1.2 christos extern int ipfioctl(dev_t, u_long, caddr_t, int, struct thread *); 1766 1.1 christos # endif /* __FreeBSD_version >= 502116 */ 1767 1.1 christos # else 1768 1.1 christos # if NETBSD_GE_REV(499001000) 1769 1.2 christos extern int ipfioctl(dev_t, u_long, void *, int, struct lwp *); 1770 1.1 christos # else 1771 1.1 christos # if NETBSD_GE_REV(399001400) 1772 1.2 christos extern int ipfioctl(dev_t, u_long, caddr_t, int, struct lwp *); 1773 1.1 christos # else 1774 1.2 christos extern int ipfioctl(dev_t, u_long, caddr_t, int, struct proc *); 1775 1.1 christos # endif 1776 1.1 christos # endif 1777 1.1 christos # endif /* __FreeBSD_version >= 500024 */ 1778 1.1 christos # else 1779 1.2 christos extern int ipfioctl(dev_t, int, caddr_t, int, struct proc *); 1780 1.1 christos # endif 1781 1.1 christos # else 1782 1.1 christos # ifdef linux 1783 1.2 christos extern int ipfioctl(struct inode *, struct file *, u_int, u_long); 1784 1.1 christos # else 1785 1.2 christos extern int ipfioctl(dev_t, int, caddr_t, int); 1786 1.1 christos # endif 1787 1.1 christos # endif /* (_BSDI_VERSION >= 199510) */ 1788 1.1 christos # endif /* __ sgi */ 1789 1.1 christos # endif /* MENTAT */ 1790 1.1 christos 1791 1.1 christos # if defined(__FreeBSD_version) 1792 1.2 christos extern int ipf_pfil_hook(void); 1793 1.2 christos extern int ipf_pfil_unhook(void); 1794 1.2 christos extern void ipf_event_reg(void); 1795 1.2 christos extern void ipf_event_dereg(void); 1796 1.1 christos # endif 1797 1.1 christos 1798 1.1 christos # if defined(INSTANCES) 1799 1.2 christos extern ipf_main_softc_t *ipf_find_softc(u_long); 1800 1.2 christos extern int ipf_set_loopback(ipf_main_softc_t *, ipftuneable_t *, 1801 1.2 christos ipftuneval_t *); 1802 1.1 christos # endif 1803 1.1 christos 1804 1.1 christos #endif /* #ifndef _KERNEL */ 1805 1.1 christos 1806 1.2 christos extern char *memstr(const char *, char *, size_t, size_t); 1807 1.2 christos extern int count4bits(u_32_t); 1808 1.1 christos #ifdef USE_INET6 1809 1.2 christos extern int count6bits(u_32_t *); 1810 1.1 christos #endif 1811 1.2 christos extern int frrequest(ipf_main_softc_t *, int, ioctlcmd_t, void *, 1812 1.2 christos int, int); 1813 1.2 christos extern char *getifname(struct ifnet *); 1814 1.2 christos extern int ipfattach(ipf_main_softc_t *); 1815 1.2 christos extern int ipfdetach(ipf_main_softc_t *); 1816 1.2 christos extern u_short ipf_cksum(u_short *, int); 1817 1.2 christos extern int copyinptr(ipf_main_softc_t *, void *, void *, size_t); 1818 1.2 christos extern int copyoutptr(ipf_main_softc_t *, void *, void *, size_t); 1819 1.2 christos extern int ipf_fastroute(mb_t *, mb_t **, fr_info_t *, frdest_t *); 1820 1.2 christos extern int ipf_inject(fr_info_t *, mb_t *); 1821 1.2 christos extern int ipf_inobj(ipf_main_softc_t *, void *, ipfobj_t *, 1822 1.2 christos void *, int); 1823 1.2 christos extern int ipf_inobjsz(ipf_main_softc_t *, void *, void *, 1824 1.2 christos int , int); 1825 1.2 christos extern int ipf_ioctlswitch(ipf_main_softc_t *, int, void *, 1826 1.2 christos ioctlcmd_t, int, int, void *); 1827 1.2 christos extern int ipf_ipf_ioctl(ipf_main_softc_t *, void *, ioctlcmd_t, 1828 1.2 christos int, int, void *); 1829 1.2 christos extern int ipf_ipftune(ipf_main_softc_t *, ioctlcmd_t, void *); 1830 1.2 christos extern int ipf_matcharray_load(ipf_main_softc_t *, void *, 1831 1.2 christos ipfobj_t *, int **); 1832 1.2 christos extern int ipf_matcharray_verify(int *, int); 1833 1.2 christos extern int ipf_outobj(ipf_main_softc_t *, void *, void *, int); 1834 1.2 christos extern int ipf_outobjk(ipf_main_softc_t *, ipfobj_t *, void *); 1835 1.2 christos extern int ipf_outobjsz(ipf_main_softc_t *, void *, void *, 1836 1.2 christos int, int); 1837 1.2 christos extern void *ipf_pullup(mb_t *, fr_info_t *, int); 1838 1.2 christos extern int ipf_resolvedest(ipf_main_softc_t *, char *, 1839 1.2 christos struct frdest *, int); 1840 1.2 christos extern int ipf_resolvefunc(ipf_main_softc_t *, void *); 1841 1.2 christos extern void *ipf_resolvenic(ipf_main_softc_t *, char *, int); 1842 1.2 christos extern int ipf_send_icmp_err(int, fr_info_t *, int); 1843 1.2 christos extern int ipf_send_reset(fr_info_t *); 1844 1.1 christos #if (defined(__FreeBSD_version) && (__FreeBSD_version < 501000)) || \ 1845 1.1 christos !defined(_KERNEL) || defined(linux) 1846 1.2 christos extern int ppsratecheck(struct timeval *, int *, int); 1847 1.1 christos #endif 1848 1.2 christos extern void ipf_apply_timeout(ipftq_t *, u_int); 1849 1.2 christos extern ipftq_t *ipf_addtimeoutqueue(ipf_main_softc_t *, ipftq_t **, 1850 1.2 christos u_int); 1851 1.2 christos extern void ipf_deletequeueentry(ipftqent_t *); 1852 1.2 christos extern int ipf_deletetimeoutqueue(ipftq_t *); 1853 1.2 christos extern void ipf_freetimeoutqueue(ipf_main_softc_t *, ipftq_t *); 1854 1.2 christos extern void ipf_movequeue(u_long, ipftqent_t *, ipftq_t *, 1855 1.2 christos ipftq_t *); 1856 1.2 christos extern void ipf_queueappend(u_long, ipftqent_t *, ipftq_t *, void *); 1857 1.2 christos extern void ipf_queueback(u_long, ipftqent_t *); 1858 1.2 christos extern int ipf_queueflush(ipf_main_softc_t *, ipftq_delete_fn_t, 1859 1.2 christos ipftq_t *, ipftq_t *, u_int *, int, int); 1860 1.2 christos extern void ipf_queuefront(ipftqent_t *); 1861 1.2 christos extern int ipf_settimeout_tcp(ipftuneable_t *, ipftuneval_t *, 1862 1.2 christos ipftq_t *); 1863 1.2 christos extern int ipf_checkv4sum(fr_info_t *); 1864 1.2 christos extern int ipf_checkl4sum(fr_info_t *); 1865 1.2 christos extern int ipf_ifpfillv4addr(int, struct sockaddr_in *, 1866 1.1 christos struct sockaddr_in *, struct in_addr *, 1867 1.2 christos struct in_addr *); 1868 1.2 christos extern int ipf_coalesce(fr_info_t *); 1869 1.1 christos #ifdef USE_INET6 1870 1.2 christos extern int ipf_checkv6sum(fr_info_t *); 1871 1.2 christos extern int ipf_ifpfillv6addr(int, struct sockaddr_in6 *, 1872 1.1 christos struct sockaddr_in6 *, i6addr_t *, 1873 1.2 christos i6addr_t *); 1874 1.1 christos #endif 1875 1.1 christos 1876 1.2 christos extern int ipf_tune_add(ipf_main_softc_t *, ipftuneable_t *); 1877 1.2 christos extern int ipf_tune_add_array(ipf_main_softc_t *, ipftuneable_t *); 1878 1.2 christos extern int ipf_tune_del(ipf_main_softc_t *, ipftuneable_t *); 1879 1.2 christos extern int ipf_tune_del_array(ipf_main_softc_t *, ipftuneable_t *); 1880 1.2 christos extern int ipf_tune_array_link(ipf_main_softc_t *, ipftuneable_t *); 1881 1.2 christos extern int ipf_tune_array_unlink(ipf_main_softc_t *, 1882 1.2 christos ipftuneable_t *); 1883 1.2 christos extern ipftuneable_t *ipf_tune_array_copy(void *, size_t, 1884 1.6 maxv const ipftuneable_t *); 1885 1.2 christos 1886 1.2 christos extern int ipf_pr_pullup(fr_info_t *, int); 1887 1.2 christos 1888 1.2 christos extern int ipf_flush(ipf_main_softc_t *, minor_t, int); 1889 1.2 christos extern frgroup_t *ipf_group_add(ipf_main_softc_t *, char *, void *, 1890 1.2 christos u_32_t, minor_t, int); 1891 1.3 darrenr extern void ipf_group_del(ipf_main_softc_t *, frgroup_t *, frentry_t *); 1892 1.2 christos extern int ipf_derefrule(ipf_main_softc_t *, frentry_t **); 1893 1.2 christos extern frgroup_t *ipf_findgroup(ipf_main_softc_t *, char *, minor_t, 1894 1.2 christos int, frgroup_t ***); 1895 1.2 christos 1896 1.2 christos extern int ipf_log_init(void); 1897 1.2 christos extern int ipf_log_bytesused(ipf_main_softc_t *, int); 1898 1.2 christos extern int ipf_log_canread(ipf_main_softc_t *, int); 1899 1.2 christos extern int ipf_log_clear(ipf_main_softc_t *, minor_t); 1900 1.2 christos extern u_long ipf_log_failures(ipf_main_softc_t *, int); 1901 1.2 christos extern int ipf_log_read(ipf_main_softc_t *, minor_t, uio_t *); 1902 1.2 christos extern int ipf_log_items(ipf_main_softc_t *, int, fr_info_t *, 1903 1.2 christos void **, size_t *, int *, int); 1904 1.2 christos extern u_long ipf_log_logok(ipf_main_softc_t *, int); 1905 1.2 christos extern void ipf_log_unload(ipf_main_softc_t *); 1906 1.2 christos extern int ipf_log_pkt(fr_info_t *, u_int); 1907 1.2 christos extern int ipf_log_pkt(fr_info_t *, u_int); 1908 1.2 christos 1909 1.2 christos extern frentry_t *ipf_acctpkt(fr_info_t *, u_32_t *); 1910 1.2 christos extern u_short fr_cksum(fr_info_t *, ip_t *, int, void *); 1911 1.2 christos extern void ipf_deinitialise(ipf_main_softc_t *); 1912 1.2 christos extern int ipf_deliverlocal(ipf_main_softc_t *, int, void *, 1913 1.2 christos i6addr_t *); 1914 1.2 christos extern frentry_t *ipf_dstgrpmap(fr_info_t *, u_32_t *); 1915 1.2 christos extern void ipf_fixskip(frentry_t **, frentry_t *, int); 1916 1.2 christos extern void ipf_forgetifp(ipf_main_softc_t *, void *); 1917 1.2 christos extern frentry_t *ipf_getrulen(ipf_main_softc_t *, int, char *, 1918 1.2 christos u_32_t); 1919 1.2 christos extern int ipf_ifpaddr(ipf_main_softc_t *, int, int, void *, 1920 1.2 christos i6addr_t *, i6addr_t *); 1921 1.2 christos extern int ipf_initialise(void); 1922 1.2 christos extern int ipf_lock(void *, int *); 1923 1.2 christos extern int ipf_makefrip(int, ip_t *, fr_info_t *); 1924 1.3 darrenr extern void ipf_inet_mask_add(int, ipf_v4_masktab_t *); 1925 1.3 darrenr extern void ipf_inet_mask_del(int, ipf_v4_masktab_t *); 1926 1.3 darrenr #ifdef USE_INET6 1927 1.3 darrenr extern void ipf_inet6_mask_add(int, i6addr_t *, ipf_v6_masktab_t *); 1928 1.3 darrenr extern void ipf_inet6_mask_del(int, i6addr_t *, ipf_v6_masktab_t *); 1929 1.3 darrenr #endif 1930 1.2 christos extern int ipf_matchtag(ipftag_t *, ipftag_t *); 1931 1.2 christos extern int ipf_matchicmpqueryreply(int, icmpinfo_t *, 1932 1.2 christos struct icmp *, int); 1933 1.2 christos extern u_32_t ipf_newisn(fr_info_t *); 1934 1.2 christos extern u_short ipf_nextipid(fr_info_t *); 1935 1.2 christos extern u_int ipf_pcksum(fr_info_t *, int, u_int); 1936 1.2 christos extern void ipf_rule_expire(ipf_main_softc_t *); 1937 1.2 christos extern int ipf_scanlist(fr_info_t *, u_32_t); 1938 1.2 christos extern frentry_t *ipf_srcgrpmap(fr_info_t *, u_32_t *); 1939 1.2 christos extern int ipf_tcpudpchk(fr_ip_t *, frtuc_t *); 1940 1.2 christos extern int ipf_verifysrc(fr_info_t *fin); 1941 1.2 christos extern int ipf_zerostats(ipf_main_softc_t *, void *); 1942 1.2 christos extern int ipf_getnextrule(ipf_main_softc_t *, ipftoken_t *, 1943 1.2 christos void *); 1944 1.2 christos extern int ipf_sync(ipf_main_softc_t *, void *); 1945 1.3 darrenr extern int ipf_token_deref(ipf_main_softc_t *, ipftoken_t *); 1946 1.2 christos extern void ipf_token_expire(ipf_main_softc_t *); 1947 1.2 christos extern ipftoken_t *ipf_token_find(ipf_main_softc_t *, int, int, 1948 1.2 christos void *); 1949 1.2 christos extern void ipf_token_free(ipf_main_softc_t *, ipftoken_t *); 1950 1.2 christos extern int ipf_token_del(ipf_main_softc_t *, int, int, 1951 1.2 christos void *); 1952 1.2 christos extern void ipf_token_mark_complete(ipftoken_t *); 1953 1.2 christos extern int ipf_genericiter(ipf_main_softc_t *, void *, 1954 1.2 christos int, void *); 1955 1.1 christos #ifdef IPFILTER_LOOKUP 1956 1.2 christos extern void *ipf_resolvelookup(int, u_int, u_int, 1957 1.2 christos lookupfunc_t *); 1958 1.1 christos #endif 1959 1.2 christos extern u_32_t ipf_random(void); 1960 1.1 christos 1961 1.2 christos extern int ipf_main_load(void); 1962 1.2 christos extern void *ipf_main_soft_create(void *); 1963 1.3 darrenr extern void ipf_main_soft_destroy(ipf_main_softc_t *); 1964 1.2 christos extern int ipf_main_soft_init(ipf_main_softc_t *); 1965 1.2 christos extern int ipf_main_soft_fini(ipf_main_softc_t *); 1966 1.2 christos extern int ipf_main_unload(void); 1967 1.2 christos extern int ipf_load_all(void); 1968 1.2 christos extern int ipf_unload_all(void); 1969 1.2 christos extern void ipf_destroy_all(ipf_main_softc_t *); 1970 1.2 christos extern ipf_main_softc_t *ipf_create_all(void *); 1971 1.2 christos extern int ipf_init_all(ipf_main_softc_t *); 1972 1.2 christos extern int ipf_fini_all(ipf_main_softc_t *); 1973 1.2 christos extern void ipf_log_soft_destroy(ipf_main_softc_t *, void *); 1974 1.2 christos extern void *ipf_log_soft_create(ipf_main_softc_t *); 1975 1.2 christos extern int ipf_log_soft_init(ipf_main_softc_t *, void *); 1976 1.2 christos extern int ipf_log_soft_fini(ipf_main_softc_t *, void *); 1977 1.2 christos extern int ipf_log_main_load(void); 1978 1.2 christos extern int ipf_log_main_unload(void); 1979 1.1 christos 1980 1.1 christos 1981 1.1 christos extern char ipfilter_version[]; 1982 1.1 christos #ifdef USE_INET6 1983 1.1 christos extern int icmptoicmp6types[ICMP_MAXTYPE+1]; 1984 1.1 christos extern int icmptoicmp6unreach[ICMP_MAX_UNREACH]; 1985 1.1 christos extern int icmpreplytype6[ICMP6_MAXTYPE + 1]; 1986 1.1 christos #endif 1987 1.1 christos #ifdef IPFILTER_COMPAT 1988 1.2 christos extern int ipf_in_compat(ipf_main_softc_t *, ipfobj_t *, void *,int); 1989 1.2 christos extern int ipf_out_compat(ipf_main_softc_t *, ipfobj_t *, void *); 1990 1.1 christos #endif 1991 1.1 christos extern int icmpreplytype4[ICMP_MAXTYPE + 1]; 1992 1.1 christos 1993 1.2 christos extern int ipf_ht_node_add(ipf_main_softc_t *, host_track_t *, 1994 1.2 christos int, i6addr_t *); 1995 1.2 christos extern int ipf_ht_node_del(host_track_t *, int, i6addr_t *); 1996 1.2 christos extern void ipf_rb_ht_flush(host_track_t *); 1997 1.2 christos extern void ipf_rb_ht_freenode(host_node_t *, void *); 1998 1.2 christos extern void ipf_rb_ht_init(host_track_t *); 1999 1.1 christos 2000 1.2 christos #endif /* _NETINET_IP_FIL_H_ */ 2001