1 /* 2 * Copyright (c) 2002 Luigi Rizzo 3 * Copyright (c) 1996 Alex Nash, Paul Traina, Poul-Henning Kamp 4 * Copyright (c) 1994 Ugen J.S.Antsilevich 5 * 6 * Idea and grammar partially left from: 7 * Copyright (c) 1993 Daniel Boulet 8 * 9 * Redistribution and use in source forms, with and without modification, 10 * are permitted provided that this entire comment appears intact. 11 * 12 * Redistribution in binary form may occur without any restrictions. 13 * Obviously, it would be nice if you gave credit where credit is due 14 * but requiring it would be too onerous. 15 * 16 * This software is provided ``AS IS'' without any warranties of any kind. 17 * 18 * NEW command line interface for IP firewall facility 19 * 20 * $FreeBSD$ 21 */ 22 23 #include <sys/param.h> 24 #include <sys/mbuf.h> 25 #include <sys/socket.h> 26 #include <sys/sockio.h> 27 #include <sys/sysctl.h> 28 #include <sys/time.h> 29 #include <sys/wait.h> 30 31 #include <ctype.h> 32 #include <err.h> 33 #include <errno.h> 34 #include <grp.h> 35 #include <limits.h> 36 #include <netdb.h> 37 #include <pwd.h> 38 #include <signal.h> 39 #include <stdio.h> 40 #include <stdlib.h> 41 #include <stdarg.h> 42 #include <string.h> 43 #include <timeconv.h> 44 #include <unistd.h> 45 #include <sysexits.h> 46 47 #include <net/if.h> 48 #include <netinet/in.h> 49 #include <netinet/in_systm.h> 50 #include <netinet/ip.h> 51 #include <netinet/ip_icmp.h> 52 #include <netinet/ip_fw.h> 53 #include <net/route.h> /* def. of struct route */ 54 #include <netinet/ip_dummynet.h> 55 #include <netinet/tcp.h> 56 #include <arpa/inet.h> 57 58 int s, /* main RAW socket */ 59 do_resolv, /* Would try to resolve all */ 60 do_acct, /* Show packet/byte count */ 61 do_time, /* Show time stamps */ 62 do_quiet, /* Be quiet in add and flush */ 63 do_force, /* Don't ask for confirmation */ 64 do_pipe, /* this cmd refers to a pipe */ 65 do_sort, /* field to sort results (0 = no) */ 66 do_dynamic, /* display dynamic rules */ 67 do_expired, /* display expired dynamic rules */ 68 verbose; 69 70 #define IP_MASK_ALL 0xffffffff 71 72 /* 73 * structure to hold flag names and associated values to be 74 * set in the appropriate masks. 75 * A NULL string terminates the array. 76 * Often, an element with 0 value contains an error string. 77 * 78 */ 79 struct _s_x { 80 char *s; 81 int x; 82 }; 83 84 static struct _s_x f_tcpflags[] = { 85 { "syn", TH_SYN }, 86 { "fin", TH_FIN }, 87 { "ack", TH_ACK }, 88 { "psh", TH_PUSH }, 89 { "rst", TH_RST }, 90 { "urg", TH_URG }, 91 { "tcp flag", 0 }, 92 { NULL, 0 } 93 }; 94 95 static struct _s_x f_tcpopts[] = { 96 { "mss", IP_FW_TCPOPT_MSS }, 97 { "maxseg", IP_FW_TCPOPT_MSS }, 98 { "window", IP_FW_TCPOPT_WINDOW }, 99 { "sack", IP_FW_TCPOPT_SACK }, 100 { "ts", IP_FW_TCPOPT_TS }, 101 { "timestamp", IP_FW_TCPOPT_TS }, 102 { "cc", IP_FW_TCPOPT_CC }, 103 { "tcp option", 0 }, 104 { NULL, 0 } 105 }; 106 107 /* 108 * IP options span the range 0 to 255 so we need to remap them 109 * (though in fact only the low 5 bits are significant). 110 */ 111 static struct _s_x f_ipopts[] = { 112 { "ssrr", IP_FW_IPOPT_SSRR}, 113 { "lsrr", IP_FW_IPOPT_LSRR}, 114 { "rr", IP_FW_IPOPT_RR}, 115 { "ts", IP_FW_IPOPT_TS}, 116 { "ip option", 0 }, 117 { NULL, 0 } 118 }; 119 120 static struct _s_x f_iptos[] = { 121 { "lowdelay", IPTOS_LOWDELAY}, 122 { "throughput", IPTOS_THROUGHPUT}, 123 { "reliability", IPTOS_RELIABILITY}, 124 { "mincost", IPTOS_MINCOST}, 125 { "congestion", IPTOS_CE}, 126 { "ecntransport", IPTOS_ECT}, 127 { "ip tos option", 0}, 128 { NULL, 0 } 129 }; 130 131 static struct _s_x limit_masks[] = { 132 {"all", DYN_SRC_ADDR|DYN_SRC_PORT|DYN_DST_ADDR|DYN_DST_PORT}, 133 {"src-addr", DYN_SRC_ADDR}, 134 {"src-port", DYN_SRC_PORT}, 135 {"dst-addr", DYN_DST_ADDR}, 136 {"dst-port", DYN_DST_PORT}, 137 {NULL, 0} 138 }; 139 140 /* 141 * we use IPPROTO_ETHERTYPE as a fake protocol id to call the print routines 142 * This is only used in this code. 143 */ 144 #define IPPROTO_ETHERTYPE 0x1000 145 static struct _s_x ether_types[] = { 146 /* 147 * Note, we cannot use "-:&/" in the names because they are field 148 * separators in the type specifications. Also, we use s = NULL as 149 * end-delimiter, because a type of 0 can be legal. 150 */ 151 { "ip", 0x0800 }, 152 { "ipv4", 0x0800 }, 153 { "ipv6", 0x86dd }, 154 { "arp", 0x0806 }, 155 { "rarp", 0x8035 }, 156 { "vlan", 0x8100 }, 157 { "loop", 0x9000 }, 158 { "trail", 0x1000 }, 159 { "at", 0x809b }, 160 { "atalk", 0x809b }, 161 { "aarp", 0x80f3 }, 162 { "pppoe_disc", 0x8863 }, 163 { "pppoe_sess", 0x8864 }, 164 { "ipx_8022", 0x00E0 }, 165 { "ipx_8023", 0x0000 }, 166 { "ipx_ii", 0x8137 }, 167 { "ipx_snap", 0x8137 }, 168 { "ipx", 0x8137 }, 169 { "ns", 0x0600 }, 170 { NULL, 0 } 171 }; 172 173 static void show_usage(void); 174 175 enum tokens { 176 TOK_NULL=0, 177 178 TOK_OR, 179 TOK_NOT, 180 181 TOK_ACCEPT, 182 TOK_COUNT, 183 TOK_PIPE, 184 TOK_QUEUE, 185 TOK_DIVERT, 186 TOK_TEE, 187 TOK_FORWARD, 188 TOK_SKIPTO, 189 TOK_DENY, 190 TOK_REJECT, 191 TOK_RESET, 192 TOK_UNREACH, 193 TOK_CHECKSTATE, 194 195 TOK_UID, 196 TOK_GID, 197 TOK_IN, 198 TOK_LIMIT, 199 TOK_KEEPSTATE, 200 TOK_LAYER2, 201 TOK_OUT, 202 TOK_XMIT, 203 TOK_RECV, 204 TOK_VIA, 205 TOK_FRAG, 206 TOK_IPOPTS, 207 TOK_IPLEN, 208 TOK_IPID, 209 TOK_IPPRECEDENCE, 210 TOK_IPTOS, 211 TOK_IPTTL, 212 TOK_IPVER, 213 TOK_ESTAB, 214 TOK_SETUP, 215 TOK_TCPFLAGS, 216 TOK_TCPOPTS, 217 TOK_TCPSEQ, 218 TOK_TCPACK, 219 TOK_TCPWIN, 220 TOK_ICMPTYPES, 221 222 TOK_PLR, 223 TOK_BUCKETS, 224 TOK_DSTIP, 225 TOK_SRCIP, 226 TOK_DSTPORT, 227 TOK_SRCPORT, 228 TOK_ALL, 229 TOK_MASK, 230 TOK_BW, 231 TOK_DELAY, 232 TOK_RED, 233 TOK_GRED, 234 TOK_DROPTAIL, 235 TOK_PROTO, 236 TOK_WEIGHT, 237 }; 238 239 struct _s_x dummynet_params[] = { 240 { "plr", TOK_PLR }, 241 { "buckets", TOK_BUCKETS }, 242 { "dst-ip", TOK_DSTIP }, 243 { "src-ip", TOK_SRCIP }, 244 { "dst-port", TOK_DSTPORT }, 245 { "src-port", TOK_SRCPORT }, 246 { "proto", TOK_PROTO }, 247 { "weight", TOK_WEIGHT }, 248 { "all", TOK_ALL }, 249 { "mask", TOK_MASK }, 250 { "droptail", TOK_DROPTAIL }, 251 { "red", TOK_RED }, 252 { "gred", TOK_GRED }, 253 { "bw", TOK_BW }, 254 { "bandwidth", TOK_BW }, 255 { "delay", TOK_DELAY }, 256 { "pipe", TOK_PIPE }, 257 { "queue", TOK_QUEUE }, 258 { "dummynet-params", TOK_NULL }, 259 { NULL, 0 } 260 }; 261 262 struct _s_x rule_actions[] = { 263 { "accept", TOK_ACCEPT }, 264 { "pass", TOK_ACCEPT }, 265 { "allow", TOK_ACCEPT }, 266 { "permit", TOK_ACCEPT }, 267 { "count", TOK_COUNT }, 268 { "pipe", TOK_PIPE }, 269 { "queue", TOK_QUEUE }, 270 { "divert", TOK_DIVERT }, 271 { "tee", TOK_TEE }, 272 { "fwd", TOK_FORWARD }, 273 { "forward", TOK_FORWARD }, 274 { "skipto", TOK_SKIPTO }, 275 { "deny", TOK_DENY }, 276 { "drop", TOK_DENY }, 277 { "reject", TOK_REJECT }, 278 { "reset", TOK_RESET }, 279 { "unreach", TOK_UNREACH }, 280 { "check-state", TOK_CHECKSTATE }, 281 { NULL, TOK_NULL }, 282 { NULL, 0 } 283 }; 284 285 struct _s_x rule_options[] = { 286 { "uid", TOK_UID }, 287 { "gid", TOK_GID }, 288 { "in", TOK_IN }, 289 { "limit", TOK_LIMIT }, 290 { "keep-state", TOK_KEEPSTATE }, 291 { "bridged", TOK_LAYER2 }, 292 { "layer2", TOK_LAYER2 }, 293 { "out", TOK_OUT }, 294 { "xmit", TOK_XMIT }, 295 { "recv", TOK_RECV }, 296 { "via", TOK_VIA }, 297 { "fragment", TOK_FRAG }, 298 { "frag", TOK_FRAG }, 299 { "ipoptions", TOK_IPOPTS }, 300 { "ipopts", TOK_IPOPTS }, 301 { "iplen", TOK_IPLEN }, 302 { "ipid", TOK_IPID }, 303 { "ipprecedence", TOK_IPPRECEDENCE }, 304 { "iptos", TOK_IPTOS }, 305 { "ipttl", TOK_IPTTL }, 306 { "ipversion", TOK_IPVER }, 307 { "ipver", TOK_IPVER }, 308 { "estab", TOK_ESTAB }, 309 { "established", TOK_ESTAB }, 310 { "setup", TOK_SETUP }, 311 { "tcpflags", TOK_TCPFLAGS }, 312 { "tcpflgs", TOK_TCPFLAGS }, 313 { "tcpoptions", TOK_TCPOPTS }, 314 { "tcpopts", TOK_TCPOPTS }, 315 { "tcpseq", TOK_TCPSEQ }, 316 { "tcpack", TOK_TCPACK }, 317 { "tcpwin", TOK_TCPWIN }, 318 { "icmptype", TOK_ICMPTYPES }, 319 { "icmptypes", TOK_ICMPTYPES }, 320 321 { "not", TOK_NOT }, /* pseudo option */ 322 { "!", /* escape ? */ TOK_NOT }, /* pseudo option */ 323 { "or", TOK_OR }, /* pseudo option */ 324 { "|", /* escape */ TOK_OR }, /* pseudo option */ 325 { NULL, TOK_NULL }, 326 { NULL, 0 } 327 }; 328 329 /** 330 * match_token takes a table and a string, returns the value associated 331 * with the string (0 meaning an error in most cases) 332 */ 333 static int 334 match_token(struct _s_x *table, char *string) 335 { 336 struct _s_x *pt; 337 int i = strlen(string); 338 339 for (pt = table ; i && pt->s != NULL ; pt++) 340 if (strlen(pt->s) == i && !bcmp(string, pt->s, i)) 341 return pt->x; 342 return -1; 343 }; 344 345 static char * 346 match_value(struct _s_x *p, u_int32_t value) 347 { 348 for (; p->s != NULL; p++) 349 if (p->x == value) 350 return p->s; 351 return NULL; 352 } 353 354 /* 355 * prints one port, symbolic or numeric 356 */ 357 static void 358 print_port(int proto, u_int16_t port) 359 { 360 361 if (proto == IPPROTO_ETHERTYPE) { 362 char *s; 363 364 if (do_resolv && (s = match_value(ether_types, port)) ) 365 printf("%s", s); 366 else 367 printf("0x%04x", port); 368 } else { 369 struct servent *se = NULL; 370 if (do_resolv) { 371 struct protoent *pe = getprotobynumber(proto); 372 373 se = getservbyport(htons(port), pe ? pe->p_name : NULL); 374 } 375 if (se) 376 printf("%s", se->s_name); 377 else 378 printf("%d", port); 379 } 380 } 381 382 /* 383 * print the values in a list of ports 384 * XXX todo: add support for mask. 385 */ 386 static void 387 print_newports(ipfw_insn_u16 *cmd, int proto) 388 { 389 u_int16_t *p = cmd->ports; 390 int i; 391 char *sep= " "; 392 393 if (cmd->o.len & F_NOT) 394 printf(" not"); 395 for (i = F_LEN((ipfw_insn *)cmd) - 1; i > 0; i--, p += 2) { 396 printf(sep); 397 print_port(proto, p[0]); 398 if (p[0] != p[1]) { 399 printf("-"); 400 print_port(proto, p[1]); 401 } 402 sep = ","; 403 } 404 } 405 406 /* 407 * Like strtol, but also translates service names into port numbers 408 * for some protocols. 409 * In particular: 410 * proto == -1 disables the protocol check; 411 * proto == IPPROTO_ETHERTYPE looks up an internal table 412 * proto == <some value in /etc/protocols> matches the values there. 413 */ 414 static int 415 strtoport(char *s, char **end, int base, int proto) 416 { 417 char *s1, sep; 418 int i; 419 420 if ( *s == '\0') 421 goto none; 422 423 if (isdigit(*s)) 424 return strtol(s, end, base); 425 426 /* 427 * find separator and replace with a '\0' 428 */ 429 for (s1 = s; *s1 && isalnum(*s1) ; s1++) 430 ; 431 sep = *s1; 432 *s1 = '\0'; 433 434 if (proto == IPPROTO_ETHERTYPE) { 435 i = match_token(ether_types, s); 436 *s1 = sep; 437 if (i == -1) { /* not found */ 438 *end = s; 439 return 0; 440 } else { 441 *end = s1; 442 return i; 443 } 444 } else { 445 struct protoent *pe = NULL; 446 struct servent *se; 447 448 if (proto != 0) 449 pe = getprotobynumber(proto); 450 setservent(1); 451 se = getservbyname(s, pe ? pe->p_name : NULL); 452 *s1 = sep; 453 if (se != NULL) { 454 *end = s1; 455 return ntohs(se->s_port); 456 } 457 } 458 none: 459 *end = s; 460 return 0; 461 } 462 463 /* 464 * fill the body of the command with the list of port ranges. 465 * At the moment it only understands numeric ranges. 466 */ 467 static int 468 fill_newports(ipfw_insn_u16 *cmd, char *av, int proto) 469 { 470 u_int16_t *p = cmd->ports; 471 int i = 0; 472 473 for (; *av ; i++, p +=2 ) { 474 u_int16_t a, b; 475 char *s; 476 477 a = strtoport(av, &s, 0, proto); 478 if (s == av) /* no parameter */ 479 break; 480 if (*s == '-') { /* a range */ 481 av = s+1; 482 b = strtoport(av, &s, 0, proto); 483 if (s == av) /* no parameter */ 484 break; 485 p[0] = a; 486 p[1] = b; 487 } else if (*s == ',' || *s == '\0' ) { 488 p[0] = p[1] = a; 489 } else /* invalid separator */ 490 break; 491 av = s+1; 492 } 493 if (i > 0) { 494 if (i+1 > F_LEN_MASK) 495 errx(EX_DATAERR, "too many port range\n"); 496 cmd->o.len |= i+1; /* leave F_NOT and F_OR untouched */ 497 } 498 return i; 499 } 500 501 static struct _s_x icmpcodes[] = { 502 { "net", ICMP_UNREACH_NET }, 503 { "host", ICMP_UNREACH_HOST }, 504 { "protocol", ICMP_UNREACH_PROTOCOL }, 505 { "port", ICMP_UNREACH_PORT }, 506 { "needfrag", ICMP_UNREACH_NEEDFRAG }, 507 { "srcfail", ICMP_UNREACH_SRCFAIL }, 508 { "net-unknown", ICMP_UNREACH_NET_UNKNOWN }, 509 { "host-unknown", ICMP_UNREACH_HOST_UNKNOWN }, 510 { "isolated", ICMP_UNREACH_ISOLATED }, 511 { "net-prohib", ICMP_UNREACH_NET_PROHIB }, 512 { "host-prohib", ICMP_UNREACH_HOST_PROHIB }, 513 { "tosnet", ICMP_UNREACH_TOSNET }, 514 { "toshost", ICMP_UNREACH_TOSHOST }, 515 { "filter-prohib", ICMP_UNREACH_FILTER_PROHIB }, 516 { "host-precedence", ICMP_UNREACH_HOST_PRECEDENCE }, 517 { "precedence-cutoff", ICMP_UNREACH_PRECEDENCE_CUTOFF }, 518 { NULL, 0 } 519 }; 520 521 static void 522 fill_reject_code(u_short *codep, char *str) 523 { 524 int val; 525 char *s; 526 527 val = strtoul(str, &s, 0); 528 if (s == str || *s != '\0' || val >= 0x100) 529 val = match_token(icmpcodes, str); 530 if (val <= 0) 531 errx(EX_DATAERR, "unknown ICMP unreachable code ``%s''", str); 532 *codep = val; 533 return; 534 } 535 536 static void 537 print_reject_code(u_int16_t code) 538 { 539 char *s = match_value(icmpcodes, code); 540 541 if (s != NULL) 542 printf("unreach %s", s); 543 else 544 printf("unreach %u", code); 545 } 546 547 /* 548 * Returns the number of bits set (from left) in a contiguous bitmask, 549 * or -1 if the mask is not contiguous. 550 * XXX this needs a proper fix. 551 * This effectively works on masks in big-endian (network) format. 552 * when compiled on little endian architectures. 553 * 554 * First bit is bit 7 of the first byte -- note, for MAC addresses, 555 * the first bit on the wire is bit 0 of the first byte. 556 * len is the max length in bits. 557 */ 558 static int 559 contigmask(u_char *p, int len) 560 { 561 int i, n; 562 for (i=0; i<len ; i++) 563 if ( (p[i/8] & (1 << (7 - (i%8)))) == 0) /* first bit unset */ 564 break; 565 for (n=i+1; n < len; n++) 566 if ( (p[n/8] & (1 << (7 - (n%8)))) != 0) 567 return -1; /* mask not contiguous */ 568 return i; 569 } 570 571 /* 572 * print flags set/clear in the two bitmasks passed as parameters. 573 * There is a specialized check for f_tcpflags. 574 */ 575 static void 576 print_flags(char *name, ipfw_insn *cmd, struct _s_x *list) 577 { 578 char *comma=""; 579 int i; 580 u_char set = cmd->arg1 & 0xff; 581 u_char clear = (cmd->arg1 >> 8) & 0xff; 582 583 if (list == f_tcpflags && set == TH_SYN && clear == TH_ACK) { 584 printf(" setup"); 585 return; 586 } 587 588 printf(" %s ", name); 589 for (i=0; list[i].x != 0; i++) { 590 if (set & list[i].x) { 591 set &= ~list[i].x; 592 printf("%s%s", comma, list[i].s); 593 comma = ","; 594 } 595 if (clear & list[i].x) { 596 clear &= ~list[i].x; 597 printf("%s!%s", comma, list[i].s); 598 comma = ","; 599 } 600 } 601 } 602 603 /* 604 * Print the ip address contained in a command. 605 */ 606 static void 607 print_ip(ipfw_insn_ip *cmd) 608 { 609 struct hostent *he = NULL; 610 int mb; 611 612 printf("%s ", cmd->o.len & F_NOT ? " not": ""); 613 614 if (cmd->o.opcode == O_IP_SRC_ME || cmd->o.opcode == O_IP_DST_ME) { 615 printf("me"); 616 return; 617 } 618 if (cmd->o.opcode == O_IP_SRC_SET || cmd->o.opcode == O_IP_DST_SET) { 619 u_int32_t x, *d; 620 int i; 621 char comma = '{'; 622 623 x = cmd->o.arg1 - 1; 624 x = htonl( ~x ); 625 cmd->addr.s_addr = htonl(cmd->addr.s_addr); 626 printf("%s/%d", inet_ntoa(cmd->addr), 627 contigmask((u_char *)&x, 32)); 628 x = cmd->addr.s_addr = htonl(cmd->addr.s_addr); 629 x &= 0xff; /* base */ 630 d = (u_int32_t *)&(cmd->mask); 631 for (i=0; i < cmd->o.arg1; i++) 632 if (d[ i/32] & (1<<(i & 31))) { 633 printf("%c%d", comma, i+x); 634 comma = ','; 635 } 636 printf("}"); 637 return; 638 } 639 if (cmd->o.opcode == O_IP_SRC || cmd->o.opcode == O_IP_DST) 640 mb = 32; 641 else 642 mb = contigmask((u_char *)&(cmd->mask.s_addr), 32); 643 if (mb == 32 && do_resolv) 644 he = gethostbyaddr((char *)&(cmd->addr.s_addr), 645 sizeof(u_long), AF_INET); 646 if (he != NULL) /* resolved to name */ 647 printf("%s", he->h_name); 648 else if (mb == 0) /* any */ 649 printf("any"); 650 else { /* numeric IP followed by some kind of mask */ 651 printf("%s", inet_ntoa(cmd->addr)); 652 if (mb < 0) 653 printf(":%s", inet_ntoa(cmd->mask)); 654 else if (mb < 32) 655 printf("/%d", mb); 656 } 657 } 658 659 /* 660 * prints a MAC address/mask pair 661 */ 662 static void 663 print_mac(u_char *addr, u_char *mask) 664 { 665 int l = contigmask(mask, 48); 666 667 if (l == 0) 668 printf(" any"); 669 else { 670 printf(" %02x:%02x:%02x:%02x:%02x:%02x", 671 addr[0], addr[1], addr[2], addr[3], addr[4], addr[5]); 672 if (l == -1) 673 printf("&%02x:%02x:%02x:%02x:%02x:%02x", 674 mask[0], mask[1], mask[2], 675 mask[3], mask[4], mask[5]); 676 else if (l < 48) 677 printf("/%d", l); 678 } 679 } 680 681 static void 682 fill_icmptypes(ipfw_insn_u32 *cmd, char *av) 683 { 684 u_int8_t type; 685 686 cmd->d[0] = 0; 687 while (*av) { 688 if (*av == ',') 689 av++; 690 691 type = strtoul(av, &av, 0); 692 693 if (*av != ',' && *av != '\0') 694 errx(EX_DATAERR, "invalid ICMP type"); 695 696 if (type > 31) 697 errx(EX_DATAERR, "ICMP type out of range"); 698 699 cmd->d[0] |= 1 << type; 700 } 701 cmd->o.opcode = O_ICMPTYPE; 702 cmd->o.len |= F_INSN_SIZE(ipfw_insn_u32); 703 } 704 705 static void 706 print_icmptypes(ipfw_insn_u32 *cmd) 707 { 708 int i; 709 char sep= ' '; 710 711 printf(" icmptypes"); 712 for (i = 0; i < 32; i++) { 713 if ( (cmd->d[0] & (1 << (i))) == 0) 714 continue; 715 printf("%c%d", sep, i); 716 sep = ','; 717 } 718 } 719 720 /* 721 * show_ipfw() prints the body of an ipfw rule. 722 * Because the standard rule has at least proto src_ip dst_ip, we use 723 * a helper function to produce these entries if not provided explicitly. 724 */ 725 #define HAVE_PROTO 1 726 #define HAVE_SRCIP 2 727 #define HAVE_DSTIP 4 728 #define HAVE_MAC 8 729 730 static void 731 show_prerequisites(int *flags, int want) 732 { 733 if ( !(*flags & HAVE_PROTO) && (want & HAVE_PROTO)) 734 printf(" ip"); 735 if ( !(*flags & HAVE_SRCIP) && (want & HAVE_SRCIP)) 736 printf(" from any"); 737 if ( !(*flags & HAVE_DSTIP) && (want & HAVE_DSTIP)) 738 printf(" to any"); 739 *flags |= want; 740 } 741 742 static void 743 show_ipfw(struct ip_fw *rule) 744 { 745 int l; 746 ipfw_insn *cmd; 747 int proto = 0; /* default */ 748 int flags = 0; /* prerequisites */ 749 ipfw_insn_log *logptr = NULL; /* set if we find an O_LOG */ 750 int or_block = 0; /* we are in an or block */ 751 752 printf("%05u ", rule->rulenum); 753 754 if (do_acct) 755 printf("%10qu %10qu ", rule->pcnt, rule->bcnt); 756 757 if (do_time) { 758 if (rule->timestamp) { 759 char timestr[30]; 760 time_t t = _long_to_time(rule->timestamp); 761 762 strcpy(timestr, ctime(&t)); 763 *strchr(timestr, '\n') = '\0'; 764 printf("%s ", timestr); 765 } else { 766 printf(" "); 767 } 768 } 769 770 /* 771 * first print actions 772 */ 773 for (l = rule->cmd_len - rule->act_ofs, cmd = ACTION_PTR(rule); 774 l > 0 ; l -= F_LEN(cmd), cmd += F_LEN(cmd)) { 775 switch(cmd->opcode) { 776 case O_CHECK_STATE: 777 printf("check-state"); 778 /* avoid printing anything else */ 779 flags = HAVE_PROTO|HAVE_SRCIP|HAVE_DSTIP; 780 break; 781 782 case O_PROB: 783 { 784 ipfw_insn_u32 *p = (ipfw_insn_u32 *)cmd; 785 double d = 1.0 * p->d[0]; 786 787 d = 1 - (d / 0x7fffffff); 788 printf("prob %f ", d); 789 } 790 break; 791 792 case O_ACCEPT: 793 printf("allow"); 794 break; 795 796 case O_COUNT: 797 printf("count"); 798 break; 799 800 case O_DENY: 801 printf("deny"); 802 break; 803 804 case O_REJECT: 805 if (cmd->arg1 == ICMP_REJECT_RST) 806 printf("reset"); 807 else if (cmd->arg1 == ICMP_UNREACH_HOST) 808 printf("reject"); 809 else 810 print_reject_code(cmd->arg1); 811 break; 812 813 case O_SKIPTO: 814 printf("skipto %u", cmd->arg1); 815 break; 816 817 case O_PIPE: 818 printf("pipe %u", cmd->arg1); 819 break; 820 821 case O_QUEUE: 822 printf("queue %u", cmd->arg1); 823 break; 824 825 case O_DIVERT: 826 printf("divert %u", cmd->arg1); 827 break; 828 829 case O_TEE: 830 printf("tee %u", cmd->arg1); 831 break; 832 833 case O_FORWARD_IP: 834 { 835 ipfw_insn_sa *s = (ipfw_insn_sa *)cmd; 836 837 printf("fwd %s", inet_ntoa(s->sa.sin_addr)); 838 if (s->sa.sin_port) 839 printf(",%d", ntohs(s->sa.sin_port)); 840 } 841 break; 842 843 case O_LOG: /* O_LOG is printed last */ 844 logptr = (ipfw_insn_log *)cmd; 845 break; 846 847 default: 848 printf("** unrecognized action %d len %d", 849 cmd->opcode, cmd->len); 850 } 851 } 852 if (logptr) { 853 if (logptr->max_log > 0) 854 printf(" log logamount %d", logptr->max_log); 855 else 856 printf(" log"); 857 } 858 /* 859 * then print the body 860 */ 861 for (l = rule->act_ofs, cmd = rule->cmd ; 862 l > 0 ; l -= F_LEN(cmd) , cmd += F_LEN(cmd)) { 863 /* useful alias */ 864 ipfw_insn_u32 *cmd32 = (ipfw_insn_u32 *)cmd; 865 866 switch(cmd->opcode) { 867 case O_PROBE_STATE: 868 break; /* no need to print anything here */ 869 870 case O_MACADDR2: { 871 ipfw_insn_mac *m = (ipfw_insn_mac *)cmd; 872 if ( (flags & HAVE_MAC) == 0) 873 printf(" MAC"); 874 flags |= HAVE_MAC; 875 if (cmd->len & F_NOT) 876 printf(" not"); 877 print_mac( m->addr, m->mask); 878 print_mac( m->addr + 6, m->mask + 6); 879 } 880 break; 881 882 case O_MAC_TYPE: 883 print_newports((ipfw_insn_u16 *)cmd, IPPROTO_ETHERTYPE); 884 break; 885 886 case O_IP_SRC: 887 case O_IP_SRC_MASK: 888 case O_IP_SRC_ME: 889 case O_IP_SRC_SET: 890 show_prerequisites(&flags, HAVE_PROTO); 891 if (!(flags & HAVE_SRCIP)) 892 printf(" from"); 893 if ((cmd->len & F_OR) && !or_block) 894 printf(" {"); 895 print_ip((ipfw_insn_ip *)cmd); 896 flags |= HAVE_SRCIP; 897 break; 898 899 case O_IP_DST: 900 case O_IP_DST_MASK: 901 case O_IP_DST_ME: 902 case O_IP_DST_SET: 903 show_prerequisites(&flags, HAVE_PROTO|HAVE_SRCIP); 904 if (!(flags & HAVE_DSTIP)) 905 printf(" to"); 906 if ((cmd->len & F_OR) && !or_block) 907 printf(" {"); 908 print_ip((ipfw_insn_ip *)cmd); 909 flags |= HAVE_DSTIP; 910 break; 911 912 case O_IP_DSTPORT: 913 show_prerequisites(&flags, 914 HAVE_PROTO|HAVE_SRCIP|HAVE_DSTIP); 915 case O_IP_SRCPORT: 916 show_prerequisites(&flags, HAVE_PROTO|HAVE_SRCIP); 917 print_newports((ipfw_insn_u16 *)cmd, proto); 918 break; 919 920 case O_PROTO: { 921 struct protoent *pe; 922 923 if ((cmd->len & F_OR) && !or_block) 924 printf(" {"); 925 if (cmd->len & F_NOT) 926 printf(" not"); 927 proto = cmd->arg1; 928 pe = getprotobynumber(cmd->arg1); 929 if (pe) 930 printf(" %s", pe->p_name); 931 else 932 printf(" %u", cmd->arg1); 933 } 934 flags |= HAVE_PROTO; 935 break; 936 937 default: /*options ... */ 938 show_prerequisites(&flags, 939 HAVE_PROTO|HAVE_SRCIP|HAVE_DSTIP); 940 if ((cmd->len & F_OR) && !or_block) 941 printf(" {"); 942 if (cmd->len & F_NOT && cmd->opcode != O_IN) 943 printf(" not"); 944 switch(cmd->opcode) { 945 case O_FRAG: 946 printf(" frag"); 947 break; 948 949 case O_IN: 950 printf(cmd->len & F_NOT ? " out" : " in"); 951 break; 952 953 case O_LAYER2: 954 printf(" layer2"); 955 break; 956 case O_XMIT: 957 case O_RECV: 958 case O_VIA: { 959 char *s; 960 ipfw_insn_if *cmdif = (ipfw_insn_if *)cmd; 961 962 if (cmd->opcode == O_XMIT) 963 s = "xmit"; 964 else if (cmd->opcode == O_RECV) 965 s = "recv"; 966 else if (cmd->opcode == O_VIA) 967 s = "via"; 968 if (cmdif->name[0] == '\0') 969 printf(" %s %s", s, 970 inet_ntoa(cmdif->p.ip)); 971 else if (cmdif->p.unit == -1) 972 printf(" %s %s*", s, cmdif->name); 973 else 974 printf(" %s %s%d", s, cmdif->name, 975 cmdif->p.unit); 976 } 977 break; 978 979 case O_IPID: 980 printf(" ipid %u", cmd->arg1 ); 981 break; 982 983 case O_IPTTL: 984 printf(" ipttl %u", cmd->arg1 ); 985 break; 986 987 case O_IPVER: 988 printf(" ipver %u", cmd->arg1 ); 989 break; 990 991 case O_IPPRECEDENCE: 992 printf(" ipprecedence %u", (cmd->arg1) >> 5 ); 993 break; 994 995 case O_IPLEN: 996 printf(" iplen %u", cmd->arg1 ); 997 break; 998 999 case O_IPOPT: 1000 print_flags("ipoptions", cmd, f_ipopts); 1001 break; 1002 1003 case O_IPTOS: 1004 print_flags("iptos", cmd, f_iptos); 1005 break; 1006 1007 case O_ICMPTYPE: 1008 print_icmptypes((ipfw_insn_u32 *)cmd); 1009 break; 1010 1011 case O_ESTAB: 1012 printf(" established"); 1013 break; 1014 1015 case O_TCPFLAGS: 1016 print_flags("tcpflags", cmd, f_tcpflags); 1017 break; 1018 1019 case O_TCPOPTS: 1020 print_flags("tcpoptions", cmd, f_tcpopts); 1021 break; 1022 1023 case O_TCPWIN: 1024 printf(" tcpwin %d", ntohs(cmd->arg1)); 1025 break; 1026 1027 case O_TCPACK: 1028 printf(" tcpack %d", ntohl(cmd32->d[0])); 1029 break; 1030 1031 case O_TCPSEQ: 1032 printf(" tcpseq %d", ntohl(cmd32->d[0])); 1033 break; 1034 1035 case O_UID: 1036 { 1037 struct passwd *pwd = getpwuid(cmd32->d[0]); 1038 1039 if (pwd) 1040 printf(" uid %s", pwd->pw_name); 1041 else 1042 printf(" uid %u", cmd32->d[0]); 1043 } 1044 break; 1045 1046 case O_GID: 1047 { 1048 struct group *grp = getgrgid(cmd32->d[0]); 1049 1050 if (grp) 1051 printf(" gid %s", grp->gr_name); 1052 else 1053 printf(" gid %u", cmd32->d[0]); 1054 } 1055 break; 1056 1057 case O_KEEP_STATE: 1058 printf(" keep-state"); 1059 break; 1060 1061 case O_LIMIT: 1062 { 1063 struct _s_x *p = limit_masks; 1064 ipfw_insn_limit *c = (ipfw_insn_limit *)cmd; 1065 u_int8_t x = c->limit_mask; 1066 char *comma = " "; 1067 1068 printf(" limit"); 1069 for ( ; p->x != 0 ; p++) 1070 if ((x & p->x) == p->x) { 1071 x &= ~p->x; 1072 printf("%s%s", comma, p->s); 1073 comma = ","; 1074 } 1075 printf(" %d", c->conn_limit); 1076 } 1077 break; 1078 1079 default: 1080 printf(" [opcode %d len %d]", 1081 cmd->opcode, cmd->len); 1082 } 1083 } 1084 if (cmd->len & F_OR) { 1085 printf(" or"); 1086 or_block = 1; 1087 } else if (or_block) { 1088 printf(" }"); 1089 or_block = 0; 1090 } 1091 } 1092 show_prerequisites(&flags, HAVE_PROTO|HAVE_SRCIP|HAVE_DSTIP); 1093 1094 printf("\n"); 1095 } 1096 1097 static void 1098 show_dyn_ipfw(ipfw_dyn_rule *d) 1099 { 1100 struct protoent *pe; 1101 struct in_addr a; 1102 1103 if (!do_expired) { 1104 if (!d->expire && !(d->dyn_type == O_LIMIT_PARENT)) 1105 return; 1106 } 1107 1108 printf("%05d %10qu %10qu (%ds)", 1109 (int)(d->rule), d->pcnt, d->bcnt, d->expire); 1110 switch (d->dyn_type) { 1111 case O_LIMIT_PARENT: 1112 printf(" PARENT %d", d->count); 1113 break; 1114 case O_LIMIT: 1115 printf(" LIMIT"); 1116 break; 1117 case O_KEEP_STATE: /* bidir, no mask */ 1118 printf(" STATE"); 1119 break; 1120 } 1121 1122 if ((pe = getprotobynumber(d->id.proto)) != NULL) 1123 printf(" %s", pe->p_name); 1124 else 1125 printf(" proto %u", d->id.proto); 1126 1127 a.s_addr = htonl(d->id.src_ip); 1128 printf(" %s %d", inet_ntoa(a), d->id.src_port); 1129 1130 a.s_addr = htonl(d->id.dst_ip); 1131 printf(" <-> %s %d", inet_ntoa(a), d->id.dst_port); 1132 printf("\n"); 1133 } 1134 1135 int 1136 sort_q(const void *pa, const void *pb) 1137 { 1138 int rev = (do_sort < 0); 1139 int field = rev ? -do_sort : do_sort; 1140 long long res = 0; 1141 const struct dn_flow_queue *a = pa; 1142 const struct dn_flow_queue *b = pb; 1143 1144 switch (field) { 1145 case 1: /* pkts */ 1146 res = a->len - b->len; 1147 break; 1148 case 2: /* bytes */ 1149 res = a->len_bytes - b->len_bytes; 1150 break; 1151 1152 case 3: /* tot pkts */ 1153 res = a->tot_pkts - b->tot_pkts; 1154 break; 1155 1156 case 4: /* tot bytes */ 1157 res = a->tot_bytes - b->tot_bytes; 1158 break; 1159 } 1160 if (res < 0) 1161 res = -1; 1162 if (res > 0) 1163 res = 1; 1164 return (int)(rev ? res : -res); 1165 } 1166 1167 static void 1168 list_queues(struct dn_flow_set *fs, struct dn_flow_queue *q) 1169 { 1170 int l; 1171 1172 printf(" mask: 0x%02x 0x%08x/0x%04x -> 0x%08x/0x%04x\n", 1173 fs->flow_mask.proto, 1174 fs->flow_mask.src_ip, fs->flow_mask.src_port, 1175 fs->flow_mask.dst_ip, fs->flow_mask.dst_port); 1176 if (fs->rq_elements == 0) 1177 return; 1178 1179 printf("BKT Prot ___Source IP/port____ " 1180 "____Dest. IP/port____ Tot_pkt/bytes Pkt/Byte Drp\n"); 1181 if (do_sort != 0) 1182 heapsort(q, fs->rq_elements, sizeof *q, sort_q); 1183 for (l = 0; l < fs->rq_elements; l++) { 1184 struct in_addr ina; 1185 struct protoent *pe; 1186 1187 ina.s_addr = htonl(q[l].id.src_ip); 1188 printf("%3d ", q[l].hash_slot); 1189 pe = getprotobynumber(q[l].id.proto); 1190 if (pe) 1191 printf("%-4s ", pe->p_name); 1192 else 1193 printf("%4u ", q[l].id.proto); 1194 printf("%15s/%-5d ", 1195 inet_ntoa(ina), q[l].id.src_port); 1196 ina.s_addr = htonl(q[l].id.dst_ip); 1197 printf("%15s/%-5d ", 1198 inet_ntoa(ina), q[l].id.dst_port); 1199 printf("%4qu %8qu %2u %4u %3u\n", 1200 q[l].tot_pkts, q[l].tot_bytes, 1201 q[l].len, q[l].len_bytes, q[l].drops); 1202 if (verbose) 1203 printf(" S %20qd F %20qd\n", 1204 q[l].S, q[l].F); 1205 } 1206 } 1207 1208 static void 1209 print_flowset_parms(struct dn_flow_set *fs, char *prefix) 1210 { 1211 int l; 1212 char qs[30]; 1213 char plr[30]; 1214 char red[90]; /* Display RED parameters */ 1215 1216 l = fs->qsize; 1217 if (fs->flags_fs & DN_QSIZE_IS_BYTES) { 1218 if (l >= 8192) 1219 sprintf(qs, "%d KB", l / 1024); 1220 else 1221 sprintf(qs, "%d B", l); 1222 } else 1223 sprintf(qs, "%3d sl.", l); 1224 if (fs->plr) 1225 sprintf(plr, "plr %f", 1.0 * fs->plr / (double)(0x7fffffff)); 1226 else 1227 plr[0] = '\0'; 1228 if (fs->flags_fs & DN_IS_RED) /* RED parameters */ 1229 sprintf(red, 1230 "\n\t %cRED w_q %f min_th %d max_th %d max_p %f", 1231 (fs->flags_fs & DN_IS_GENTLE_RED) ? 'G' : ' ', 1232 1.0 * fs->w_q / (double)(1 << SCALE_RED), 1233 SCALE_VAL(fs->min_th), 1234 SCALE_VAL(fs->max_th), 1235 1.0 * fs->max_p / (double)(1 << SCALE_RED)); 1236 else 1237 sprintf(red, "droptail"); 1238 1239 printf("%s %s%s %d queues (%d buckets) %s\n", 1240 prefix, qs, plr, fs->rq_elements, fs->rq_size, red); 1241 } 1242 1243 static void 1244 list_pipes(void *data, int nbytes, int ac, char *av[]) 1245 { 1246 u_long rulenum; 1247 void *next = data; 1248 struct dn_pipe *p = (struct dn_pipe *) data; 1249 struct dn_flow_set *fs; 1250 struct dn_flow_queue *q; 1251 int l; 1252 1253 if (ac > 0) 1254 rulenum = strtoul(*av++, NULL, 10); 1255 else 1256 rulenum = 0; 1257 for (; nbytes >= sizeof *p; p = (struct dn_pipe *)next) { 1258 double b = p->bandwidth; 1259 char buf[30]; 1260 char prefix[80]; 1261 1262 if (p->next != (struct dn_pipe *)DN_IS_PIPE) 1263 break; /* done with pipes, now queues */ 1264 1265 /* 1266 * compute length, as pipe have variable size 1267 */ 1268 l = sizeof(*p) + p->fs.rq_elements * sizeof(*q); 1269 next = (void *)p + l; 1270 nbytes -= l; 1271 1272 if (rulenum != 0 && rulenum != p->pipe_nr) 1273 continue; 1274 1275 /* 1276 * Print rate (or clocking interface) 1277 */ 1278 if (p->if_name[0] != '\0') 1279 sprintf(buf, "%s", p->if_name); 1280 else if (b == 0) 1281 sprintf(buf, "unlimited"); 1282 else if (b >= 1000000) 1283 sprintf(buf, "%7.3f Mbit/s", b/1000000); 1284 else if (b >= 1000) 1285 sprintf(buf, "%7.3f Kbit/s", b/1000); 1286 else 1287 sprintf(buf, "%7.3f bit/s ", b); 1288 1289 sprintf(prefix, "%05d: %s %4d ms ", 1290 p->pipe_nr, buf, p->delay); 1291 print_flowset_parms(&(p->fs), prefix); 1292 if (verbose) 1293 printf(" V %20qd\n", p->V >> MY_M); 1294 1295 q = (struct dn_flow_queue *)(p+1); 1296 list_queues(&(p->fs), q); 1297 } 1298 for (fs = next; nbytes >= sizeof *fs; fs = next) { 1299 char prefix[80]; 1300 1301 if (fs->next != (struct dn_flow_set *)DN_IS_QUEUE) 1302 break; 1303 l = sizeof(*fs) + fs->rq_elements * sizeof(*q); 1304 next = (void *)fs + l; 1305 nbytes -= l; 1306 q = (struct dn_flow_queue *)(fs+1); 1307 sprintf(prefix, "q%05d: weight %d pipe %d ", 1308 fs->fs_nr, fs->weight, fs->parent_nr); 1309 print_flowset_parms(fs, prefix); 1310 list_queues(fs, q); 1311 } 1312 } 1313 1314 static void 1315 list(int ac, char *av[]) 1316 { 1317 struct ip_fw *r; 1318 ipfw_dyn_rule *dynrules, *d; 1319 1320 void *lim, *data = NULL; 1321 int n, nbytes, nstat, ndyn; 1322 int exitval = EX_OK; 1323 int lac; 1324 char **lav; 1325 u_long rnum; 1326 char *endptr; 1327 int seen = 0; 1328 1329 const int ocmd = do_pipe ? IP_DUMMYNET_GET : IP_FW_GET; 1330 int nalloc = 1024; /* start somewhere... */ 1331 1332 ac--; 1333 av++; 1334 1335 /* get rules or pipes from kernel, resizing array as necessary */ 1336 nbytes = nalloc; 1337 1338 while (nbytes >= nalloc) { 1339 nalloc = nalloc * 2 + 200; 1340 nbytes = nalloc; 1341 if ((data = realloc(data, nbytes)) == NULL) 1342 err(EX_OSERR, "realloc"); 1343 if (getsockopt(s, IPPROTO_IP, ocmd, data, &nbytes) < 0) 1344 err(EX_OSERR, "getsockopt(IP_%s_GET)", 1345 do_pipe ? "DUMMYNET" : "FW"); 1346 } 1347 1348 if (do_pipe) { 1349 list_pipes(data, nbytes, ac, av); 1350 goto done; 1351 } 1352 1353 /* 1354 * Count static rules. They have variable size so we 1355 * need to scan the list to count them. 1356 */ 1357 for (nstat = 1, r = data, lim = data + nbytes; 1358 r->rulenum < 65535 && (void *)r < lim; 1359 ++nstat, r = (void *)r + RULESIZE(r) ) 1360 ; /* nothing */ 1361 1362 /* 1363 * Count dynamic rules. This is easier as they have 1364 * fixed size. 1365 */ 1366 r = (void *)r + RULESIZE(r); 1367 dynrules = (ipfw_dyn_rule *)r ; 1368 n = (void *)r - data; 1369 ndyn = (nbytes - n) / sizeof *dynrules; 1370 1371 /* if no rule numbers were specified, list all rules */ 1372 if (ac == 0) { 1373 for (n = 0, r = data; n < nstat; 1374 n++, r = (void *)r + RULESIZE(r) ) 1375 show_ipfw(r); 1376 1377 if (do_dynamic && ndyn) { 1378 printf("## Dynamic rules (%d):\n", ndyn); 1379 for (n = 0, d = dynrules; n < ndyn; n++, d++) 1380 show_dyn_ipfw(d); 1381 } 1382 goto done; 1383 } 1384 1385 /* display specific rules requested on command line */ 1386 1387 for (lac = ac, lav = av; lac != 0; lac--) { 1388 /* convert command line rule # */ 1389 rnum = strtoul(*lav++, &endptr, 10); 1390 if (*endptr) { 1391 exitval = EX_USAGE; 1392 warnx("invalid rule number: %s", *(lav - 1)); 1393 continue; 1394 } 1395 for (n = seen = 0, r = data; n < nstat; 1396 n++, r = (void *)r + RULESIZE(r) ) { 1397 if (r->rulenum > rnum) 1398 break; 1399 if (r->rulenum == rnum) { 1400 show_ipfw(r); 1401 seen = 1; 1402 } 1403 } 1404 if (!seen) { 1405 /* give precedence to other error(s) */ 1406 if (exitval == EX_OK) 1407 exitval = EX_UNAVAILABLE; 1408 warnx("rule %lu does not exist", rnum); 1409 } 1410 } 1411 1412 if (do_dynamic && ndyn) { 1413 printf("## Dynamic rules:\n"); 1414 for (lac = ac, lav = av; lac != 0; lac--) { 1415 rnum = strtoul(*lav++, &endptr, 10); 1416 if (*endptr) 1417 /* already warned */ 1418 continue; 1419 for (n = 0, d = dynrules; n < ndyn; n++, d++) { 1420 if ((int)(d->rule) > rnum) 1421 break; 1422 if ((int)(d->rule) == rnum) 1423 show_dyn_ipfw(d); 1424 } 1425 } 1426 } 1427 1428 ac = 0; 1429 1430 done: 1431 free(data); 1432 1433 if (exitval != EX_OK) 1434 exit(exitval); 1435 } 1436 1437 static void 1438 show_usage(void) 1439 { 1440 fprintf(stderr, "usage: ipfw [options]\n" 1441 " add [number] rule\n" 1442 " pipe number config [pipeconfig]\n" 1443 " queue number config [queueconfig]\n" 1444 " [pipe] flush\n" 1445 " [pipe] delete number ...\n" 1446 " [pipe] {list|show} [number ...]\n" 1447 " {zero|resetlog} [number ...]\n" 1448 "do \"ipfw -h\" or see ipfw manpage for details\n" 1449 ); 1450 1451 exit(EX_USAGE); 1452 } 1453 1454 static void 1455 help(void) 1456 { 1457 1458 fprintf(stderr, "ipfw syntax summary:\n" 1459 "ipfw add [N] [prob {0..1}] ACTION [log [logamount N]] ADDR OPTIONS\n" 1460 "ipfw {pipe|queue} N config BODY\n" 1461 "ipfw [pipe] {zero|delete|show} [N{,N}]\n" 1462 "\n" 1463 "RULE: [1..] [PROB] BODY\n" 1464 "RULENUM: INTEGER(1..65534)\n" 1465 "PROB: prob REAL(0..1)\n" 1466 "BODY: check-state [LOG] (no body) |\n" 1467 " ACTION [LOG] MATCH_ADDR [OPTION_LIST]\n" 1468 "ACTION: check-state | allow | count | deny | reject | skipto N |\n" 1469 " {divert|tee} PORT | forward ADDR | pipe N | queue N\n" 1470 "ADDR: [ MAC dst src ether_type ] \n" 1471 " [ from IPLIST [ PORT ] to IPLIST [ PORTLIST ] ]\n" 1472 "IPLIST: IPADDR | ( IPADDR or ... or IPADDR )\n" 1473 "IPADDR: [not] { any | me | ip | ip/bits | ip:mask | ip/bits{x,y,z} }\n" 1474 "OPTION_LIST: OPTION [,OPTION_LIST]\n" 1475 ); 1476 exit(0); 1477 } 1478 1479 1480 static int 1481 lookup_host (char *host, struct in_addr *ipaddr) 1482 { 1483 struct hostent *he; 1484 1485 if (!inet_aton(host, ipaddr)) { 1486 if ((he = gethostbyname(host)) == NULL) 1487 return(-1); 1488 *ipaddr = *(struct in_addr *)he->h_addr_list[0]; 1489 } 1490 return(0); 1491 } 1492 1493 /* 1494 * fills the addr and mask fields in the instruction as appropriate from av. 1495 * Update length as appropriate. 1496 * The following formats are allowed: 1497 * any matches any IP. Actually returns an empty instruction. 1498 * me returns O_IP_*_ME 1499 * 1.2.3.4 single IP address 1500 * 1.2.3.4:5.6.7.8 address:mask 1501 * 1.2.3.4/24 address/mask 1502 * 1.2.3.4/26{1,6,5,4,23} set of addresses in a subnet 1503 */ 1504 static void 1505 fill_ip(ipfw_insn_ip *cmd, char *av) 1506 { 1507 char *p = 0, md = 0; 1508 u_int32_t i; 1509 1510 cmd->o.len &= ~F_LEN_MASK; /* zero len */ 1511 1512 if (!strncmp(av, "any", strlen(av))) 1513 return; 1514 1515 if (!strncmp(av, "me", strlen(av))) { 1516 cmd->o.len |= F_INSN_SIZE(ipfw_insn); 1517 return; 1518 } 1519 1520 p = strchr(av, '/'); 1521 if (!p) 1522 p = strchr(av, ':'); 1523 if (p) { 1524 md = *p; 1525 *p++ = '\0'; 1526 } 1527 1528 if (lookup_host(av, &cmd->addr) != 0) 1529 errx(EX_NOHOST, "hostname ``%s'' unknown", av); 1530 switch (md) { 1531 case ':': 1532 if (!inet_aton(p, &cmd->mask)) 1533 errx(EX_DATAERR, "bad netmask ``%s''", p); 1534 break; 1535 case '/': 1536 i = atoi(p); 1537 if (i == 0) 1538 cmd->mask.s_addr = htonl(0); 1539 else if (i > 32) 1540 errx(EX_DATAERR, "bad width ``%s''", p); 1541 else 1542 cmd->mask.s_addr = htonl(~0 << (32 - i)); 1543 break; 1544 default: 1545 cmd->mask.s_addr = htonl(~0); 1546 break; 1547 } 1548 cmd->addr.s_addr &= cmd->mask.s_addr; 1549 /* 1550 * now look if we have a set of addresses. They are stored as follows: 1551 * arg1 is the set size (powers of 2, 2..256) 1552 * addr is the base address IN HOST FORMAT 1553 * mask.. is an array of u_int32_t with bits set. 1554 */ 1555 if (p) 1556 p = strchr(p, '{'); 1557 if (p) { /* fetch addresses */ 1558 u_int32_t *d; 1559 int low, high; 1560 int i = contigmask((u_char *)&(cmd->mask), 32); 1561 1562 if (i < 24 || i > 31) { 1563 fprintf(stderr, "invalid set with mask %d\n", 1564 i); 1565 exit(0); 1566 } 1567 cmd->o.arg1 = 1<<(32-i); 1568 cmd->addr.s_addr = ntohl(cmd->addr.s_addr); 1569 d = (u_int32_t *)&cmd->mask; 1570 cmd->o.opcode = O_IP_DST_SET; /* default */ 1571 cmd->o.len |= F_INSN_SIZE(ipfw_insn_u32) + (cmd->o.arg1+31)/32; 1572 for (i = 0; i < (cmd->o.arg1+31)/32 ; i++) 1573 d[i] = 0; /* clear masks */ 1574 1575 av = p+1; 1576 low = cmd->addr.s_addr & 0xff; 1577 high = low + cmd->o.arg1 - 1; 1578 while (isdigit(*av)) { 1579 char *s; 1580 u_int16_t a = strtol(av, &s, 0); 1581 1582 if (s == av) /* no parameter */ 1583 break; 1584 if (a < low || a > high) { 1585 fprintf(stderr, "addr %d out of range [%d-%d]\n", 1586 a, low, high); 1587 exit(0); 1588 } 1589 a -= low; 1590 d[ a/32] |= 1<<(a & 31); 1591 if (*s != ',') 1592 break; 1593 av = s+1; 1594 } 1595 return; 1596 } 1597 1598 if (cmd->mask.s_addr == 0) { /* any */ 1599 if (cmd->o.len & F_NOT) 1600 errx(EX_DATAERR, "not any never matches"); 1601 else /* useless, nuke it */ 1602 return; 1603 } else if (cmd->mask.s_addr == IP_MASK_ALL) /* one IP */ 1604 cmd->o.len |= F_INSN_SIZE(ipfw_insn_u32); 1605 else /* addr/mask */ 1606 cmd->o.len |= F_INSN_SIZE(ipfw_insn_ip); 1607 } 1608 1609 1610 /* 1611 * helper function to process a set of flags and set bits in the 1612 * appropriate masks. 1613 */ 1614 static void 1615 fill_flags(ipfw_insn *cmd, enum ipfw_opcodes opcode, 1616 struct _s_x *flags, char *p) 1617 { 1618 u_int8_t set=0, clear=0; 1619 1620 while (p && *p) { 1621 char *q; /* points to the separator */ 1622 int val; 1623 u_int8_t *which; /* mask we are working on */ 1624 1625 if (*p == '!') { 1626 p++; 1627 which = &clear; 1628 } else 1629 which = &set; 1630 q = strchr(p, ','); 1631 if (q) 1632 *q++ = '\0'; 1633 val = match_token(flags, p); 1634 if (val <= 0) 1635 errx(EX_DATAERR, "invalid flag %s", p); 1636 *which |= (u_int8_t)val; 1637 p = q; 1638 } 1639 cmd->opcode = opcode; 1640 cmd->len = (cmd->len & (F_NOT | F_OR)) | 1; 1641 cmd->arg1 = (set & 0xff) | ( (clear & 0xff) << 8); 1642 } 1643 1644 1645 static void 1646 delete(int ac, char *av[]) 1647 { 1648 int rulenum; 1649 struct dn_pipe pipe; 1650 int i; 1651 int exitval = EX_OK; 1652 1653 memset(&pipe, 0, sizeof pipe); 1654 1655 av++; ac--; 1656 1657 /* Rule number */ 1658 while (ac && isdigit(**av)) { 1659 i = atoi(*av); av++; ac--; 1660 if (do_pipe) { 1661 if (do_pipe == 1) 1662 pipe.pipe_nr = i; 1663 else 1664 pipe.fs.fs_nr = i; 1665 i = setsockopt(s, IPPROTO_IP, IP_DUMMYNET_DEL, 1666 &pipe, sizeof pipe); 1667 if (i) { 1668 exitval = 1; 1669 warn("rule %u: setsockopt(IP_DUMMYNET_DEL)", 1670 do_pipe == 1 ? pipe.pipe_nr : 1671 pipe.fs.fs_nr); 1672 } 1673 } else { 1674 rulenum = i; 1675 i = setsockopt(s, IPPROTO_IP, IP_FW_DEL, &rulenum, 1676 sizeof rulenum); 1677 if (i) { 1678 exitval = EX_UNAVAILABLE; 1679 warn("rule %u: setsockopt(IP_FW_DEL)", 1680 rulenum); 1681 } 1682 } 1683 } 1684 if (exitval != EX_OK) 1685 exit(exitval); 1686 } 1687 1688 1689 /* 1690 * fill the interface structure. We do not check the name as we can 1691 * create interfaces dynamically, so checking them at insert time 1692 * makes relatively little sense. 1693 * A '*' following the name means any unit. 1694 */ 1695 static void 1696 fill_iface(ipfw_insn_if *cmd, char *arg) 1697 { 1698 cmd->name[0] = '\0'; 1699 cmd->o.len |= F_INSN_SIZE(ipfw_insn_if); 1700 1701 /* Parse the interface or address */ 1702 if (!strcmp(arg, "any")) 1703 cmd->o.len = 0; /* effectively ignore this command */ 1704 else if (!isdigit(*arg)) { 1705 char *q; 1706 1707 strncpy(cmd->name, arg, sizeof(cmd->name)); 1708 cmd->name[sizeof(cmd->name) - 1] = '\0'; 1709 /* find first digit or wildcard */ 1710 for (q = cmd->name; *q && !isdigit(*q) && *q != '*'; q++) 1711 continue; 1712 cmd->p.unit = (*q == '*') ? -1 : atoi(q); 1713 *q = '\0'; 1714 } else if (!inet_aton(arg, &cmd->p.ip)) 1715 errx(EX_DATAERR, "bad ip address ``%s''", arg); 1716 } 1717 1718 /* 1719 * the following macro returns an error message if we run out of 1720 * arguments. 1721 */ 1722 #define NEED1(msg) {if (!ac) errx(EX_USAGE, msg);} 1723 1724 static void 1725 config_pipe(int ac, char **av) 1726 { 1727 struct dn_pipe pipe; 1728 int i; 1729 char *end; 1730 u_int32_t a; 1731 void *par = NULL; 1732 1733 memset(&pipe, 0, sizeof pipe); 1734 1735 av++; ac--; 1736 /* Pipe number */ 1737 if (ac && isdigit(**av)) { 1738 i = atoi(*av); av++; ac--; 1739 if (do_pipe == 1) 1740 pipe.pipe_nr = i; 1741 else 1742 pipe.fs.fs_nr = i; 1743 } 1744 while (ac > 0) { 1745 double d; 1746 int tok = match_token(dummynet_params, *av); 1747 ac--; av++; 1748 1749 switch(tok) { 1750 case TOK_PLR: 1751 NEED1("plr needs argument 0..1\n"); 1752 d = strtod(av[0], NULL); 1753 if (d > 1) 1754 d = 1; 1755 else if (d < 0) 1756 d = 0; 1757 pipe.fs.plr = (int)(d*0x7fffffff); 1758 ac--; av++; 1759 break; 1760 1761 case TOK_QUEUE: 1762 NEED1("queue needs queue size\n"); 1763 end = NULL; 1764 pipe.fs.qsize = strtoul(av[0], &end, 0); 1765 if (*end == 'K' || *end == 'k') { 1766 pipe.fs.flags_fs |= DN_QSIZE_IS_BYTES; 1767 pipe.fs.qsize *= 1024; 1768 } else if (*end == 'B' || !strncmp(end, "by", 2)) { 1769 pipe.fs.flags_fs |= DN_QSIZE_IS_BYTES; 1770 } 1771 ac--; av++; 1772 break; 1773 1774 case TOK_BUCKETS: 1775 NEED1("buckets needs argument\n"); 1776 pipe.fs.rq_size = strtoul(av[0], NULL, 0); 1777 ac--; av++; 1778 break; 1779 1780 case TOK_MASK: 1781 NEED1("mask needs mask specifier\n"); 1782 /* 1783 * per-flow queue, mask is dst_ip, dst_port, 1784 * src_ip, src_port, proto measured in bits 1785 */ 1786 par = NULL; 1787 1788 pipe.fs.flow_mask.dst_ip = 0; 1789 pipe.fs.flow_mask.src_ip = 0; 1790 pipe.fs.flow_mask.dst_port = 0; 1791 pipe.fs.flow_mask.src_port = 0; 1792 pipe.fs.flow_mask.proto = 0; 1793 end = NULL; 1794 1795 while (ac >= 1) { 1796 u_int32_t *p32 = NULL; 1797 u_int16_t *p16 = NULL; 1798 1799 tok = match_token(dummynet_params, *av); 1800 ac--; av++; 1801 switch(tok) { 1802 case TOK_ALL: 1803 /* 1804 * special case, all bits significant 1805 */ 1806 pipe.fs.flow_mask.dst_ip = ~0; 1807 pipe.fs.flow_mask.src_ip = ~0; 1808 pipe.fs.flow_mask.dst_port = ~0; 1809 pipe.fs.flow_mask.src_port = ~0; 1810 pipe.fs.flow_mask.proto = ~0; 1811 pipe.fs.flags_fs |= DN_HAVE_FLOW_MASK; 1812 goto end_mask; 1813 1814 case TOK_DSTIP: 1815 p32 = &pipe.fs.flow_mask.dst_ip; 1816 break; 1817 1818 case TOK_SRCIP: 1819 p32 = &pipe.fs.flow_mask.src_ip; 1820 break; 1821 1822 case TOK_DSTPORT: 1823 p16 = &pipe.fs.flow_mask.dst_port; 1824 break; 1825 1826 case TOK_SRCPORT: 1827 p16 = &pipe.fs.flow_mask.src_port; 1828 break; 1829 1830 case TOK_PROTO: 1831 break; 1832 1833 default: 1834 ac++; av--; /* backtrack */ 1835 goto end_mask; 1836 } 1837 if (ac < 1) 1838 errx(EX_USAGE, "mask: value missing"); 1839 if (*av[0] == '/') { 1840 a = strtoul(av[0]+1, &end, 0); 1841 a = (a == 32) ? ~0 : (1 << a) - 1; 1842 } else 1843 a = strtoul(av[0], &end, 0); 1844 if (p32 != NULL) 1845 *p32 = a; 1846 else if (p16 != NULL) { 1847 if (a > 65535) 1848 errx(EX_DATAERR, 1849 "mask: must be 16 bit"); 1850 *p16 = (u_int16_t)a; 1851 } else { 1852 if (a > 255) 1853 errx(EX_DATAERR, 1854 "mask: must be 8 bit"); 1855 pipe.fs.flow_mask.proto = (u_int8_t)a; 1856 } 1857 if (a != 0) 1858 pipe.fs.flags_fs |= DN_HAVE_FLOW_MASK; 1859 ac--; av++; 1860 } /* end while, config masks */ 1861 end_mask: 1862 break; 1863 1864 case TOK_RED: 1865 case TOK_GRED: 1866 NEED1("red/gred needs w_q/min_th/max_th/max_p\n"); 1867 pipe.fs.flags_fs |= DN_IS_RED; 1868 if (tok == TOK_GRED) 1869 pipe.fs.flags_fs |= DN_IS_GENTLE_RED; 1870 /* 1871 * the format for parameters is w_q/min_th/max_th/max_p 1872 */ 1873 if ((end = strsep(&av[0], "/"))) { 1874 double w_q = strtod(end, NULL); 1875 if (w_q > 1 || w_q <= 0) 1876 errx(EX_DATAERR, "0 < w_q <= 1"); 1877 pipe.fs.w_q = (int) (w_q * (1 << SCALE_RED)); 1878 } 1879 if ((end = strsep(&av[0], "/"))) { 1880 pipe.fs.min_th = strtoul(end, &end, 0); 1881 if (*end == 'K' || *end == 'k') 1882 pipe.fs.min_th *= 1024; 1883 } 1884 if ((end = strsep(&av[0], "/"))) { 1885 pipe.fs.max_th = strtoul(end, &end, 0); 1886 if (*end == 'K' || *end == 'k') 1887 pipe.fs.max_th *= 1024; 1888 } 1889 if ((end = strsep(&av[0], "/"))) { 1890 double max_p = strtod(end, NULL); 1891 if (max_p > 1 || max_p <= 0) 1892 errx(EX_DATAERR, "0 < max_p <= 1"); 1893 pipe.fs.max_p = (int)(max_p * (1 << SCALE_RED)); 1894 } 1895 ac--; av++; 1896 break; 1897 1898 case TOK_DROPTAIL: 1899 pipe.fs.flags_fs &= ~(DN_IS_RED|DN_IS_GENTLE_RED); 1900 break; 1901 1902 case TOK_BW: 1903 NEED1("bw needs bandwidth or interface\n"); 1904 if (do_pipe != 1) 1905 errx(EX_DATAERR, "bandwidth only valid for pipes"); 1906 /* 1907 * set clocking interface or bandwidth value 1908 */ 1909 if (av[0][0] >= 'a' && av[0][0] <= 'z') { 1910 int l = sizeof(pipe.if_name)-1; 1911 /* interface name */ 1912 strncpy(pipe.if_name, av[0], l); 1913 pipe.if_name[l] = '\0'; 1914 pipe.bandwidth = 0; 1915 } else { 1916 pipe.if_name[0] = '\0'; 1917 pipe.bandwidth = strtoul(av[0], &end, 0); 1918 if (*end == 'K' || *end == 'k') { 1919 end++; 1920 pipe.bandwidth *= 1000; 1921 } else if (*end == 'M') { 1922 end++; 1923 pipe.bandwidth *= 1000000; 1924 } 1925 if (*end == 'B' || !strncmp(end, "by", 2)) 1926 pipe.bandwidth *= 8; 1927 if (pipe.bandwidth < 0) 1928 errx(EX_DATAERR, "bandwidth too large"); 1929 } 1930 ac--; av++; 1931 break; 1932 1933 case TOK_DELAY: 1934 if (do_pipe != 1) 1935 errx(EX_DATAERR, "delay only valid for pipes"); 1936 NEED1("delay needs argument 0..10000ms\n"); 1937 pipe.delay = strtoul(av[0], NULL, 0); 1938 ac--; av++; 1939 break; 1940 1941 case TOK_WEIGHT: 1942 if (do_pipe == 1) 1943 errx(EX_DATAERR,"weight only valid for queues"); 1944 NEED1("weight needs argument 0..100\n"); 1945 pipe.fs.weight = strtoul(av[0], &end, 0); 1946 ac--; av++; 1947 break; 1948 1949 case TOK_PIPE: 1950 if (do_pipe == 1) 1951 errx(EX_DATAERR,"pipe only valid for queues"); 1952 NEED1("pipe needs pipe_number\n"); 1953 pipe.fs.parent_nr = strtoul(av[0], &end, 0); 1954 ac--; av++; 1955 break; 1956 1957 default: 1958 errx(EX_DATAERR, "unrecognised option ``%s''", *av); 1959 } 1960 } 1961 if (do_pipe == 1) { 1962 if (pipe.pipe_nr == 0) 1963 errx(EX_DATAERR, "pipe_nr must be > 0"); 1964 if (pipe.delay > 10000) 1965 errx(EX_DATAERR, "delay must be < 10000"); 1966 } else { /* do_pipe == 2, queue */ 1967 if (pipe.fs.parent_nr == 0) 1968 errx(EX_DATAERR, "pipe must be > 0"); 1969 if (pipe.fs.weight >100) 1970 errx(EX_DATAERR, "weight must be <= 100"); 1971 } 1972 if (pipe.fs.flags_fs & DN_QSIZE_IS_BYTES) { 1973 if (pipe.fs.qsize > 1024*1024) 1974 errx(EX_DATAERR, "queue size must be < 1MB"); 1975 } else { 1976 if (pipe.fs.qsize > 100) 1977 errx(EX_DATAERR, "2 <= queue size <= 100"); 1978 } 1979 if (pipe.fs.flags_fs & DN_IS_RED) { 1980 size_t len; 1981 int lookup_depth, avg_pkt_size; 1982 double s, idle, weight, w_q; 1983 struct clockinfo clock; 1984 int t; 1985 1986 if (pipe.fs.min_th >= pipe.fs.max_th) 1987 errx(EX_DATAERR, "min_th %d must be < than max_th %d", 1988 pipe.fs.min_th, pipe.fs.max_th); 1989 if (pipe.fs.max_th == 0) 1990 errx(EX_DATAERR, "max_th must be > 0"); 1991 1992 len = sizeof(int); 1993 if (sysctlbyname("net.inet.ip.dummynet.red_lookup_depth", 1994 &lookup_depth, &len, NULL, 0) == -1) 1995 1996 errx(1, "sysctlbyname(\"%s\")", 1997 "net.inet.ip.dummynet.red_lookup_depth"); 1998 if (lookup_depth == 0) 1999 errx(EX_DATAERR, "net.inet.ip.dummynet.red_lookup_depth" 2000 " must be greater than zero"); 2001 2002 len = sizeof(int); 2003 if (sysctlbyname("net.inet.ip.dummynet.red_avg_pkt_size", 2004 &avg_pkt_size, &len, NULL, 0) == -1) 2005 2006 errx(1, "sysctlbyname(\"%s\")", 2007 "net.inet.ip.dummynet.red_avg_pkt_size"); 2008 if (avg_pkt_size == 0) 2009 errx(EX_DATAERR, 2010 "net.inet.ip.dummynet.red_avg_pkt_size must" 2011 " be greater than zero"); 2012 2013 len = sizeof(struct clockinfo); 2014 if (sysctlbyname("kern.clockrate", &clock, &len, NULL, 0) == -1) 2015 errx(1, "sysctlbyname(\"%s\")", "kern.clockrate"); 2016 2017 /* 2018 * Ticks needed for sending a medium-sized packet. 2019 * Unfortunately, when we are configuring a WF2Q+ queue, we 2020 * do not have bandwidth information, because that is stored 2021 * in the parent pipe, and also we have multiple queues 2022 * competing for it. So we set s=0, which is not very 2023 * correct. But on the other hand, why do we want RED with 2024 * WF2Q+ ? 2025 */ 2026 if (pipe.bandwidth==0) /* this is a WF2Q+ queue */ 2027 s = 0; 2028 else 2029 s = clock.hz * avg_pkt_size * 8 / pipe.bandwidth; 2030 2031 /* 2032 * max idle time (in ticks) before avg queue size becomes 0. 2033 * NOTA: (3/w_q) is approx the value x so that 2034 * (1-w_q)^x < 10^-3. 2035 */ 2036 w_q = ((double)pipe.fs.w_q) / (1 << SCALE_RED); 2037 idle = s * 3. / w_q; 2038 pipe.fs.lookup_step = (int)idle / lookup_depth; 2039 if (!pipe.fs.lookup_step) 2040 pipe.fs.lookup_step = 1; 2041 weight = 1 - w_q; 2042 for (t = pipe.fs.lookup_step; t > 0; --t) 2043 weight *= weight; 2044 pipe.fs.lookup_weight = (int)(weight * (1 << SCALE_RED)); 2045 } 2046 i = setsockopt(s, IPPROTO_IP, IP_DUMMYNET_CONFIGURE, &pipe, 2047 sizeof pipe); 2048 if (i) 2049 err(1, "setsockopt(%s)", "IP_DUMMYNET_CONFIGURE"); 2050 } 2051 2052 static void 2053 get_mac_addr_mask(char *p, u_char *addr, u_char *mask) 2054 { 2055 int i, l; 2056 2057 for (i=0; i<6; i++) 2058 addr[i] = mask[i] = 0; 2059 if (!strcmp(p, "any")) 2060 return; 2061 2062 for (i=0; *p && i<6;i++, p++) { 2063 addr[i] = strtol(p, &p, 16); 2064 if (*p != ':') /* we start with the mask */ 2065 break; 2066 } 2067 if (*p == '/') { /* mask len */ 2068 l = strtol(p+1, &p, 0); 2069 for (i=0; l>0; l -=8, i++) 2070 mask[i] = (l >=8) ? 0xff : (~0) << (8-l); 2071 } else if (*p == '&') { /* mask */ 2072 for (i=0, p++; *p && i<6;i++, p++) { 2073 mask[i] = strtol(p, &p, 16); 2074 if (*p != ':') 2075 break; 2076 } 2077 } else if (*p == '\0') { 2078 for (i=0; i<6; i++) 2079 mask[i] = 0xff; 2080 } 2081 for (i=0; i<6; i++) 2082 addr[i] &= mask[i]; 2083 } 2084 2085 /* 2086 * helper function, updates the pointer to cmd with the length 2087 * of the current command, and also cleans up the first word of 2088 * the new command in case it has been clobbered before. 2089 */ 2090 static ipfw_insn * 2091 next_cmd(ipfw_insn *cmd) 2092 { 2093 cmd += F_LEN(cmd); 2094 bzero(cmd, sizeof(*cmd)); 2095 return cmd; 2096 } 2097 2098 /* 2099 * A function to fill simple commands of size 1. 2100 * Existing flags are preserved. 2101 */ 2102 static void 2103 fill_cmd(ipfw_insn *cmd, enum ipfw_opcodes opcode, int flags, u_int16_t arg) 2104 { 2105 cmd->opcode = opcode; 2106 cmd->len = ((cmd->len | flags) & (F_NOT | F_OR)) | 1; 2107 cmd->arg1 = arg; 2108 } 2109 2110 /* 2111 * Fetch and add the MAC address and type, with masks. This generates one or 2112 * two microinstructions, and returns the pointer to the last one. 2113 */ 2114 static ipfw_insn * 2115 add_mac(ipfw_insn *cmd, int ac, char *av[]) 2116 { 2117 ipfw_insn_mac *mac; /* also *src */ 2118 2119 if (ac <3) 2120 errx(EX_DATAERR, "MAC dst src type"); 2121 2122 cmd->opcode = O_MACADDR2; 2123 cmd->len = (cmd->len & (F_NOT | F_OR)) | F_INSN_SIZE(ipfw_insn_mac); 2124 2125 mac = (ipfw_insn_mac *)cmd; 2126 get_mac_addr_mask(av[0], mac->addr, mac->mask); /* dst */ 2127 get_mac_addr_mask(av[1], &(mac->addr[6]), &(mac->mask[6])); /* src */ 2128 av += 2; 2129 2130 if (strcmp(av[0], "any") != 0) { /* we have a non-null port */ 2131 cmd += F_LEN(cmd); 2132 2133 fill_newports((ipfw_insn_u16 *)cmd, av[0], IPPROTO_ETHERTYPE); 2134 cmd->opcode = O_MAC_TYPE; 2135 } 2136 2137 return cmd; 2138 } 2139 2140 /* 2141 * Parse arguments and assemble the microinstructions which make up a rule. 2142 * Rules are added into the 'rulebuf' and then copied in the correct order 2143 * into the actual rule. 2144 * 2145 * The syntax for a rule starts with the action, followed by an 2146 * optional log action, and the various match patterns. 2147 * In the assembled microcode, the first opcode must be a O_PROBE_STATE 2148 * (generated if the rule includes a keep-state option), then the 2149 * various match patterns, the "log" action, and the actual action. 2150 * 2151 */ 2152 static void 2153 add(int ac, char *av[]) 2154 { 2155 /* 2156 * rules are added into the 'rulebuf' and then copied in 2157 * the correct order into the actual rule. 2158 * Some things that need to go out of order (prob, action etc.) 2159 * go into actbuf[]. 2160 */ 2161 static u_int32_t rulebuf[255], actbuf[255], cmdbuf[255]; 2162 2163 ipfw_insn *src, *dst, *cmd, *action, *prev; 2164 2165 struct ip_fw *rule; 2166 2167 /* 2168 * various flags used to record that we entered some fields. 2169 */ 2170 int have_mac = 0; /* set if we have a MAC address */ 2171 ipfw_insn *have_state = NULL; /* check-state or keep-state */ 2172 2173 int i; 2174 2175 int open_par = 0; /* open parenthesis ( */ 2176 2177 /* proto is here because it is used to fetch ports */ 2178 u_char proto = IPPROTO_IP; /* default protocol */ 2179 2180 bzero(actbuf, sizeof(actbuf)); /* actions go here */ 2181 bzero(cmdbuf, sizeof(cmdbuf)); 2182 bzero(rulebuf, sizeof(rulebuf)); 2183 2184 rule = (struct ip_fw *)rulebuf; 2185 cmd = (ipfw_insn *)cmdbuf; 2186 action = (ipfw_insn *)actbuf; 2187 2188 av++; ac--; 2189 2190 /* [rule N] -- Rule number optional */ 2191 if (ac && isdigit(**av)) { 2192 rule->rulenum = atoi(*av); 2193 av++; 2194 ac--; 2195 } 2196 2197 /* [prob D] -- match probability, optional */ 2198 if (ac > 1 && !strncmp(*av, "prob", strlen(*av))) { 2199 double d = strtod(av[1], NULL); 2200 2201 if (d <= 0 || d > 1) 2202 errx(EX_DATAERR, "illegal match prob. %s", av[1]); 2203 if (d != 1) { /* 1 means always match */ 2204 action->opcode = O_PROB; 2205 action->len = 2; 2206 *((int32_t *)(action+1)) = 2207 (int32_t)((1 - d) * 0x7fffffff); 2208 action += action->len; 2209 } 2210 av += 2; ac -= 2; 2211 } 2212 2213 /* action -- mandatory */ 2214 NEED1("missing action"); 2215 i = match_token(rule_actions, *av); 2216 ac--; av++; 2217 action->len = 1; /* default */ 2218 switch(i) { 2219 case TOK_CHECKSTATE: 2220 have_state = action; 2221 action->opcode = O_CHECK_STATE; 2222 break; 2223 2224 case TOK_ACCEPT: 2225 action->opcode = O_ACCEPT; 2226 break; 2227 2228 case TOK_DENY: 2229 action->opcode = O_DENY; 2230 action->arg1 = 0; 2231 break; 2232 2233 case TOK_REJECT: 2234 action->opcode = O_REJECT; 2235 action->arg1 = ICMP_UNREACH_HOST; 2236 break; 2237 2238 case TOK_RESET: 2239 action->opcode = O_REJECT; 2240 action->arg1 = ICMP_REJECT_RST; 2241 break; 2242 2243 case TOK_UNREACH: 2244 action->opcode = O_REJECT; 2245 NEED1("missing reject code"); 2246 fill_reject_code(&action->arg1, *av); 2247 ac--; av++; 2248 break; 2249 2250 case TOK_COUNT: 2251 action->opcode = O_COUNT; 2252 break; 2253 2254 case TOK_QUEUE: 2255 case TOK_PIPE: 2256 action->len = F_INSN_SIZE(ipfw_insn_pipe); 2257 case TOK_SKIPTO: 2258 if (i == TOK_QUEUE) 2259 action->opcode = O_QUEUE; 2260 else if (i == TOK_PIPE) 2261 action->opcode = O_PIPE; 2262 else if (i == TOK_SKIPTO) 2263 action->opcode = O_SKIPTO; 2264 NEED1("missing skipto/pipe/queue number"); 2265 action->arg1 = strtoul(*av, NULL, 10); 2266 av++; ac--; 2267 break; 2268 2269 case TOK_DIVERT: 2270 case TOK_TEE: 2271 action->opcode = (i == TOK_DIVERT) ? O_DIVERT : O_TEE; 2272 NEED1("missing divert/tee port"); 2273 action->arg1 = strtoul(*av, NULL, 0); 2274 if (action->arg1 == 0) { 2275 struct servent *s; 2276 setservent(1); 2277 s = getservbyname(av[0], "divert"); 2278 if (s != NULL) 2279 action->arg1 = ntohs(s->s_port); 2280 else 2281 errx(EX_DATAERR, "illegal divert/tee port"); 2282 } 2283 ac--; av++; 2284 break; 2285 2286 case TOK_FORWARD: { 2287 ipfw_insn_sa *p = (ipfw_insn_sa *)action; 2288 char *s, *end; 2289 2290 NEED1("missing forward address[:port]"); 2291 2292 action->opcode = O_FORWARD_IP; 2293 action->len = F_INSN_SIZE(ipfw_insn_sa); 2294 2295 p->sa.sin_len = sizeof(struct sockaddr_in); 2296 p->sa.sin_family = AF_INET; 2297 p->sa.sin_port = 0; 2298 /* 2299 * locate the address-port separator (':' or ',') 2300 */ 2301 s = strchr(*av, ':'); 2302 if (s == NULL) 2303 s = strchr(*av, ','); 2304 if (s != NULL) { 2305 *(s++) = '\0'; 2306 i = strtoport(s, &end, 0 /* base */, 0 /* proto */); 2307 if (s == end) 2308 errx(EX_DATAERR, 2309 "illegal forwarding port ``%s''", s); 2310 p->sa.sin_port = htons( (u_short)i ); 2311 } 2312 lookup_host(*av, &(p->sa.sin_addr)); 2313 } 2314 ac--; av++; 2315 break; 2316 2317 default: 2318 errx(EX_DATAERR, "invalid action %s\n", *av); 2319 } 2320 action = next_cmd(action); 2321 2322 /* 2323 * [log [logamount N]] -- log, optional 2324 * 2325 * If exists, it goes first in the cmdbuf, but then it is 2326 * skipped in the copy section to the end of the buffer. 2327 */ 2328 if (ac && !strncmp(*av, "log", strlen(*av))) { 2329 ipfw_insn_log *c = (ipfw_insn_log *)cmd; 2330 2331 cmd->len = F_INSN_SIZE(ipfw_insn_log); 2332 cmd->opcode = O_LOG; 2333 av++; ac--; 2334 if (ac && !strncmp(*av, "logamount", strlen(*av))) { 2335 ac--; av++; 2336 NEED1("logamount requires argument"); 2337 c->max_log = atoi(*av); 2338 if (c->max_log < 0) 2339 errx(EX_DATAERR, "logamount must be positive"); 2340 ac--; av++; 2341 } 2342 cmd = next_cmd(cmd); 2343 } 2344 2345 if (have_state) /* must be a check-state, we are done */ 2346 goto done; 2347 2348 #define OR_START(target) \ 2349 if (ac && (*av[0] == '(' || *av[0] == '{')) { \ 2350 if (open_par) \ 2351 errx(EX_USAGE, "nested \"(\" not allowed\n"); \ 2352 open_par = 1; \ 2353 if ( (av[0])[1] == '\0') { \ 2354 ac--; av++; \ 2355 } else \ 2356 (*av)++; \ 2357 } \ 2358 target: \ 2359 2360 2361 #define CLOSE_PAR \ 2362 if (open_par) { \ 2363 if (ac && ( \ 2364 !strncmp(*av, ")", strlen(*av)) || \ 2365 !strncmp(*av, "}", strlen(*av)) )) { \ 2366 open_par = 0; \ 2367 ac--; av++; \ 2368 } else \ 2369 errx(EX_USAGE, "missing \")\"\n"); \ 2370 } 2371 2372 #define NOT_BLOCK \ 2373 if (ac && !strncmp(*av, "not", strlen(*av))) { \ 2374 if (cmd->len & F_NOT) \ 2375 errx(EX_USAGE, "double \"not\" not allowed\n"); \ 2376 cmd->len |= F_NOT; \ 2377 ac--; av++; \ 2378 } 2379 2380 #define OR_BLOCK(target) \ 2381 if (ac && !strncmp(*av, "or", strlen(*av))) { \ 2382 if (prev == NULL || open_par == 0) \ 2383 errx(EX_DATAERR, "invalid OR block"); \ 2384 prev->len |= F_OR; \ 2385 ac--; av++; \ 2386 goto target; \ 2387 } \ 2388 CLOSE_PAR; 2389 2390 /* 2391 * protocol, mandatory 2392 */ 2393 OR_START(get_proto); 2394 NOT_BLOCK; 2395 NEED1("missing protocol"); 2396 { 2397 struct protoent *pe; 2398 2399 if (!strncmp(*av, "all", strlen(*av))) 2400 ; /* same as "ip" */ 2401 else if (!strncmp(*av, "MAC", strlen(*av))) { 2402 /* need exactly 3 fields */ 2403 cmd = add_mac(cmd, ac-1, av+1); /* exits in case of errors */ 2404 ac -= 3; 2405 av += 3; 2406 have_mac = 1; 2407 } else if ((proto = atoi(*av)) > 0) 2408 ; /* all done! */ 2409 else if ((pe = getprotobyname(*av)) != NULL) 2410 proto = pe->p_proto; 2411 else 2412 errx(EX_DATAERR, "invalid protocol ``%s''", *av); 2413 av++; ac--; 2414 if (proto != IPPROTO_IP) 2415 fill_cmd(cmd, O_PROTO, 0, proto); 2416 } 2417 cmd = next_cmd(cmd); 2418 OR_BLOCK(get_proto); 2419 2420 /* 2421 * "from", mandatory (unless we have a MAC address) 2422 */ 2423 if (!ac || strncmp(*av, "from", strlen(*av))) { 2424 if (have_mac) /* we do not need a "to" address */ 2425 goto read_to; 2426 errx(EX_USAGE, "missing ``from''"); 2427 } 2428 ac--; av++; 2429 2430 /* 2431 * source IP, mandatory 2432 */ 2433 OR_START(source_ip); 2434 NOT_BLOCK; /* optional "not" */ 2435 NEED1("missing source address"); 2436 2437 /* source -- mandatory */ 2438 fill_ip((ipfw_insn_ip *)cmd, *av); 2439 if (cmd->opcode == O_IP_DST_SET) /* set */ 2440 cmd->opcode = O_IP_SRC_SET; 2441 else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn)) /* me */ 2442 cmd->opcode = O_IP_SRC_ME; 2443 else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn_u32)) /* one IP */ 2444 cmd->opcode = O_IP_SRC; 2445 else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn_ip)) /* addr/mask */ 2446 cmd->opcode = O_IP_SRC_MASK; 2447 /* otherwise len will be zero and the command skipped */ 2448 ac--; av++; 2449 prev = cmd; /* in case we need to backtrack */ 2450 cmd = next_cmd(cmd); 2451 OR_BLOCK(source_ip); 2452 2453 /* 2454 * source ports, optional 2455 */ 2456 NOT_BLOCK; /* optional "not" */ 2457 if (ac && fill_newports((ipfw_insn_u16 *)cmd, *av, proto)) { 2458 /* XXX todo: check that we have a protocol with ports */ 2459 cmd->opcode = O_IP_SRCPORT; 2460 ac--; 2461 av++; 2462 cmd = next_cmd(cmd); 2463 } 2464 2465 read_to: 2466 /* 2467 * "to", mandatory (unless we have a MAC address 2468 */ 2469 if (!ac || strncmp(*av, "to", strlen(*av))) { 2470 if (have_mac) 2471 goto read_options; 2472 errx(EX_USAGE, "missing ``to''"); 2473 } 2474 av++; ac--; 2475 2476 /* 2477 * destination, mandatory 2478 */ 2479 OR_START(dest_ip); 2480 NOT_BLOCK; /* optional "not" */ 2481 NEED1("missing dst address"); 2482 fill_ip((ipfw_insn_ip *)cmd, *av); 2483 if (cmd->opcode == O_IP_DST_SET) /* set */ 2484 ; 2485 else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn)) /* me */ 2486 cmd->opcode = O_IP_DST_ME; 2487 else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn_u32)) /* one IP */ 2488 cmd->opcode = O_IP_DST; 2489 else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn_ip)) /* addr/mask */ 2490 cmd->opcode = O_IP_DST_MASK; 2491 ac--; 2492 av++; 2493 prev = cmd; 2494 cmd = next_cmd(cmd); 2495 OR_BLOCK(dest_ip); 2496 2497 /* 2498 * dest. ports, optional 2499 */ 2500 NOT_BLOCK; /* optional "not" */ 2501 if (ac && fill_newports((ipfw_insn_u16 *)cmd, *av, proto)) { 2502 /* XXX todo: check that we have a protocol with ports */ 2503 cmd->opcode = O_IP_DSTPORT; 2504 ac--; 2505 av++; 2506 cmd += F_LEN(cmd); 2507 } 2508 2509 read_options: 2510 prev = NULL; 2511 while (ac) { 2512 char *s = *av; 2513 ipfw_insn_u32 *cmd32 = (ipfw_insn_u32 *)cmd; /* alias */ 2514 2515 if (*s == '!') { /* alternate syntax for NOT */ 2516 if (cmd->len & F_NOT) 2517 errx(EX_USAGE, "double \"not\" not allowed\n"); 2518 cmd->len = F_NOT; 2519 s++; 2520 } 2521 i = match_token(rule_options, s); 2522 ac--; av++; 2523 switch(i) { 2524 case TOK_NOT: 2525 if (cmd->len & F_NOT) 2526 errx(EX_USAGE, "double \"not\" not allowed\n"); 2527 cmd->len = F_NOT; 2528 break; 2529 2530 case TOK_OR: 2531 if (prev == NULL) 2532 errx(EX_USAGE, "invalid \"or\" block\n"); 2533 prev->len |= F_OR; 2534 break; 2535 2536 case TOK_IN: 2537 fill_cmd(cmd, O_IN, 0, 0); 2538 break; 2539 2540 case TOK_OUT: 2541 cmd->len ^= F_NOT; /* toggle F_NOT */ 2542 fill_cmd(cmd, O_IN, 0, 0); 2543 break; 2544 2545 case TOK_FRAG: 2546 fill_cmd(cmd, O_FRAG, 0, 0); 2547 break; 2548 2549 case TOK_LAYER2: 2550 fill_cmd(cmd, O_LAYER2, 0, 0); 2551 break; 2552 2553 case TOK_XMIT: 2554 case TOK_RECV: 2555 case TOK_VIA: 2556 NEED1("recv, xmit, via require interface name" 2557 " or address"); 2558 fill_iface((ipfw_insn_if *)cmd, av[0]); 2559 ac--; av++; 2560 if (F_LEN(cmd) == 0) /* not a valid address */ 2561 break; 2562 if (i == TOK_XMIT) 2563 cmd->opcode = O_XMIT; 2564 else if (i == TOK_RECV) 2565 cmd->opcode = O_RECV; 2566 else if (i == TOK_VIA) 2567 cmd->opcode = O_VIA; 2568 break; 2569 2570 case TOK_ICMPTYPES: 2571 NEED1("icmptypes requires list of types"); 2572 fill_icmptypes((ipfw_insn_u32 *)cmd, *av); 2573 av++; ac--; 2574 break; 2575 2576 case TOK_IPTTL: 2577 NEED1("ipttl requires TTL"); 2578 fill_cmd(cmd, O_IPTTL, 0, strtoul(*av, NULL, 0)); 2579 ac--; av++; 2580 break; 2581 2582 case TOK_IPID: 2583 NEED1("ipid requires length"); 2584 fill_cmd(cmd, O_IPID, 0, strtoul(*av, NULL, 0)); 2585 ac--; av++; 2586 break; 2587 2588 case TOK_IPLEN: 2589 NEED1("iplen requires length"); 2590 fill_cmd(cmd, O_IPLEN, 0, strtoul(*av, NULL, 0)); 2591 ac--; av++; 2592 break; 2593 2594 case TOK_IPVER: 2595 NEED1("ipver requires version"); 2596 fill_cmd(cmd, O_IPVER, 0, strtoul(*av, NULL, 0)); 2597 ac--; av++; 2598 break; 2599 2600 case TOK_IPPRECEDENCE: 2601 NEED1("ipprecedence requires value"); 2602 fill_cmd(cmd, O_IPPRECEDENCE, 0, 2603 (strtoul(*av, NULL, 0) & 7) << 5); 2604 ac--; av++; 2605 break; 2606 2607 case TOK_IPOPTS: 2608 NEED1("missing argument for ipoptions"); 2609 fill_flags(cmd, O_IPOPT, f_ipopts, *av); 2610 ac--; av++; 2611 break; 2612 2613 case TOK_IPTOS: 2614 NEED1("missing argument for iptos"); 2615 fill_flags(cmd, O_IPTOS, f_iptos, *av); 2616 ac--; av++; 2617 break; 2618 2619 case TOK_UID: 2620 NEED1("uid requires argument"); 2621 { 2622 char *end; 2623 uid_t uid; 2624 struct passwd *pwd; 2625 2626 cmd->opcode = O_UID; 2627 uid = strtoul(*av, &end, 0); 2628 pwd = (*end == '\0') ? getpwuid(uid) : getpwnam(*av); 2629 if (pwd == NULL) 2630 errx(EX_DATAERR, "uid \"%s\" nonexistent", *av); 2631 cmd32->d[0] = uid; 2632 cmd->len = F_INSN_SIZE(ipfw_insn_u32); 2633 ac--; av++; 2634 } 2635 break; 2636 2637 case TOK_GID: 2638 NEED1("gid requires argument"); 2639 { 2640 char *end; 2641 gid_t gid; 2642 struct group *grp; 2643 2644 cmd->opcode = O_GID; 2645 gid = strtoul(*av, &end, 0); 2646 grp = (*end == '\0') ? getgrgid(gid) : getgrnam(*av); 2647 if (grp == NULL) 2648 errx(EX_DATAERR, "gid \"%s\" nonexistent", *av); 2649 2650 cmd32->d[0] = gid; 2651 cmd->len = F_INSN_SIZE(ipfw_insn_u32); 2652 ac--; av++; 2653 } 2654 break; 2655 2656 case TOK_ESTAB: 2657 fill_cmd(cmd, O_ESTAB, 0, 0); 2658 break; 2659 2660 case TOK_SETUP: 2661 fill_cmd(cmd, O_TCPFLAGS, 0, 2662 (TH_SYN) | ( (TH_ACK) & 0xff) <<8 ); 2663 break; 2664 2665 case TOK_TCPOPTS: 2666 NEED1("missing argument for tcpoptions"); 2667 fill_flags(cmd, O_TCPOPTS, f_tcpopts, *av); 2668 ac--; av++; 2669 break; 2670 2671 case TOK_TCPSEQ: 2672 case TOK_TCPACK: 2673 NEED1("tcpseq/tcpack requires argument"); 2674 cmd->len = F_INSN_SIZE(ipfw_insn_u32); 2675 cmd->opcode = (i == TOK_TCPSEQ) ? O_TCPSEQ : O_TCPACK; 2676 cmd32->d[0] = htonl(strtoul(*av, NULL, 0)); 2677 ac--; av++; 2678 break; 2679 2680 case TOK_TCPWIN: 2681 NEED1("tcpwin requires length"); 2682 fill_cmd(cmd, O_TCPWIN, 0, 2683 htons(strtoul(*av, NULL, 0))); 2684 ac--; av++; 2685 break; 2686 2687 case TOK_TCPFLAGS: 2688 NEED1("missing argument for tcpflags"); 2689 cmd->opcode = O_TCPFLAGS; 2690 fill_flags(cmd, O_TCPFLAGS, f_tcpflags, *av); 2691 ac--; av++; 2692 break; 2693 2694 case TOK_KEEPSTATE: 2695 if (have_state) 2696 errx(EX_USAGE, "only one of keep-state " 2697 "and limit is allowed"); 2698 have_state = cmd; 2699 fill_cmd(cmd, O_KEEP_STATE, 0, 0); 2700 break; 2701 2702 case TOK_LIMIT: 2703 NEED1("limit needs mask and # of connections"); 2704 if (have_state) 2705 errx(EX_USAGE, "only one of keep-state " 2706 "and limit is allowed"); 2707 have_state = cmd; 2708 { 2709 ipfw_insn_limit *c = (ipfw_insn_limit *)cmd; 2710 2711 cmd->len = F_INSN_SIZE(ipfw_insn_limit); 2712 cmd->opcode = O_LIMIT; 2713 c->limit_mask = 0; 2714 c->conn_limit = 0; 2715 for (; ac >1 ;) { 2716 int val; 2717 2718 val = match_token(limit_masks, *av); 2719 if (val <= 0) 2720 break; 2721 c->limit_mask |= val; 2722 ac--; av++; 2723 } 2724 c->conn_limit = atoi(*av); 2725 if (c->conn_limit == 0) 2726 errx(EX_USAGE, "limit: limit must be >0"); 2727 if (c->limit_mask == 0) 2728 errx(EX_USAGE, "missing limit mask"); 2729 ac--; av++; 2730 } 2731 break; 2732 2733 default: 2734 errx(EX_USAGE, "unrecognised option [%d] %s\n", i, s); 2735 } 2736 if (F_LEN(cmd) > 0) { /* prepare to advance */ 2737 prev = cmd; 2738 cmd = next_cmd(cmd); 2739 } 2740 } 2741 2742 done: 2743 /* 2744 * Now copy stuff into the rule. 2745 * If we have a keep-state option, the first instruction 2746 * must be a PROBE_STATE (which is generated here). 2747 * If we have a LOG option, it was stored as the first command, 2748 * and now must be moved to the top of the action part. 2749 */ 2750 dst = (ipfw_insn *)rule->cmd; 2751 2752 /* 2753 * generate O_PROBE_STATE if necessary 2754 */ 2755 if (have_state && have_state->opcode != O_CHECK_STATE) { 2756 fill_cmd(dst, O_PROBE_STATE, 0, 0); 2757 dst = next_cmd(dst); 2758 } 2759 /* 2760 * copy all commands but O_LOG, O_KEEP_STATE, O_LIMIT 2761 */ 2762 for (src = (ipfw_insn *)cmdbuf; src != cmd; src += i) { 2763 i = F_LEN(src); 2764 2765 switch (src->opcode) { 2766 case O_LOG: 2767 case O_KEEP_STATE: 2768 case O_LIMIT: 2769 break; 2770 default: 2771 bcopy(src, dst, i * sizeof(u_int32_t)); 2772 dst += i; 2773 } 2774 } 2775 2776 /* 2777 * put back the have_state command as last opcode 2778 */ 2779 if (have_state) { 2780 i = F_LEN(have_state); 2781 bcopy(have_state, dst, i * sizeof(u_int32_t)); 2782 dst += i; 2783 } 2784 /* 2785 * start action section 2786 */ 2787 rule->act_ofs = dst - rule->cmd; 2788 2789 /* 2790 * put back O_LOG if necessary 2791 */ 2792 src = (ipfw_insn *)cmdbuf; 2793 if ( src->opcode == O_LOG ) { 2794 i = F_LEN(src); 2795 bcopy(src, dst, i * sizeof(u_int32_t)); 2796 dst += i; 2797 } 2798 /* 2799 * copy all other actions 2800 */ 2801 for (src = (ipfw_insn *)actbuf; src != action; src += i) { 2802 i = F_LEN(src); 2803 bcopy(src, dst, i * sizeof(u_int32_t)); 2804 dst += i; 2805 } 2806 2807 rule->cmd_len = (u_int32_t *)dst - (u_int32_t *)(rule->cmd); 2808 i = (void *)dst - (void *)rule; 2809 if (getsockopt(s, IPPROTO_IP, IP_FW_ADD, rule, &i) == -1) 2810 err(EX_UNAVAILABLE, "getsockopt(%s)", "IP_FW_ADD"); 2811 if (!do_quiet) 2812 show_ipfw(rule); 2813 } 2814 2815 static void 2816 zero (int ac, char *av[]) 2817 { 2818 int rulenum; 2819 int failed = EX_OK; 2820 2821 av++; ac--; 2822 2823 if (!ac) { 2824 /* clear all entries */ 2825 if (setsockopt(s, IPPROTO_IP, IP_FW_ZERO, NULL, 0) < 0) 2826 err(EX_UNAVAILABLE, "setsockopt(%s)", "IP_FW_ZERO"); 2827 if (!do_quiet) 2828 printf("Accounting cleared.\n"); 2829 2830 return; 2831 } 2832 2833 while (ac) { 2834 /* Rule number */ 2835 if (isdigit(**av)) { 2836 rulenum = atoi(*av); 2837 av++; 2838 ac--; 2839 if (setsockopt(s, IPPROTO_IP, 2840 IP_FW_ZERO, &rulenum, sizeof rulenum)) { 2841 warn("rule %u: setsockopt(IP_FW_ZERO)", 2842 rulenum); 2843 failed = EX_UNAVAILABLE; 2844 } else if (!do_quiet) 2845 printf("Entry %d cleared\n", rulenum); 2846 } else { 2847 errx(EX_USAGE, "invalid rule number ``%s''", *av); 2848 } 2849 } 2850 if (failed != EX_OK) 2851 exit(failed); 2852 } 2853 2854 static void 2855 resetlog (int ac, char *av[]) 2856 { 2857 int rulenum; 2858 int failed = EX_OK; 2859 2860 av++; ac--; 2861 2862 if (!ac) { 2863 /* clear all entries */ 2864 if (setsockopt(s, IPPROTO_IP, IP_FW_RESETLOG, NULL, 0) < 0) 2865 err(EX_UNAVAILABLE, "setsockopt(IP_FW_RESETLOG)"); 2866 if (!do_quiet) 2867 printf("Logging counts reset.\n"); 2868 2869 return; 2870 } 2871 2872 while (ac) { 2873 /* Rule number */ 2874 if (isdigit(**av)) { 2875 rulenum = atoi(*av); 2876 av++; 2877 ac--; 2878 if (setsockopt(s, IPPROTO_IP, 2879 IP_FW_RESETLOG, &rulenum, sizeof rulenum)) { 2880 warn("rule %u: setsockopt(IP_FW_RESETLOG)", 2881 rulenum); 2882 failed = EX_UNAVAILABLE; 2883 } else if (!do_quiet) 2884 printf("Entry %d logging count reset\n", 2885 rulenum); 2886 } else { 2887 errx(EX_DATAERR, "invalid rule number ``%s''", *av); 2888 } 2889 } 2890 if (failed != EX_OK) 2891 exit(failed); 2892 } 2893 2894 static void 2895 flush() 2896 { 2897 int cmd = do_pipe ? IP_DUMMYNET_FLUSH : IP_FW_FLUSH; 2898 2899 if (!do_force && !do_quiet) { /* need to ask user */ 2900 int c; 2901 2902 printf("Are you sure? [yn] "); 2903 fflush(stdout); 2904 do { 2905 c = toupper(getc(stdin)); 2906 while (c != '\n' && getc(stdin) != '\n') 2907 if (feof(stdin)) 2908 return; /* and do not flush */ 2909 } while (c != 'Y' && c != 'N'); 2910 printf("\n"); 2911 if (c == 'N') /* user said no */ 2912 return; 2913 } 2914 if (setsockopt(s, IPPROTO_IP, cmd, NULL, 0) < 0) 2915 err(EX_UNAVAILABLE, "setsockopt(IP_%s_FLUSH)", 2916 do_pipe ? "DUMMYNET" : "FW"); 2917 if (!do_quiet) 2918 printf("Flushed all %s.\n", do_pipe ? "pipes" : "rules"); 2919 } 2920 2921 static int 2922 ipfw_main(int ac, char **av) 2923 { 2924 int ch; 2925 2926 if (ac == 1) 2927 show_usage(); 2928 2929 /* Set the force flag for non-interactive processes */ 2930 do_force = !isatty(STDIN_FILENO); 2931 2932 optind = optreset = 1; 2933 while ((ch = getopt(ac, av, "hs:adefNqtv")) != -1) 2934 switch (ch) { 2935 case 'h': /* help */ 2936 help(); 2937 break; /* NOTREACHED */ 2938 2939 case 's': /* sort */ 2940 do_sort = atoi(optarg); 2941 break; 2942 case 'a': 2943 do_acct = 1; 2944 break; 2945 case 'd': 2946 do_dynamic = 1; 2947 break; 2948 case 'e': 2949 do_expired = 1; 2950 break; 2951 case 'f': 2952 do_force = 1; 2953 break; 2954 case 'N': 2955 do_resolv = 1; 2956 break; 2957 case 'q': 2958 do_quiet = 1; 2959 break; 2960 case 't': 2961 do_time = 1; 2962 break; 2963 case 'v': /* verbose */ 2964 verbose++; 2965 break; 2966 default: 2967 show_usage(); 2968 } 2969 2970 ac -= optind; 2971 av += optind; 2972 NEED1("bad arguments, for usage summary ``ipfw''"); 2973 2974 /* 2975 * optional: pipe or queue 2976 */ 2977 if (!strncmp(*av, "pipe", strlen(*av))) { 2978 do_pipe = 1; 2979 ac--; 2980 av++; 2981 } else if (!strncmp(*av, "queue", strlen(*av))) { 2982 do_pipe = 2; 2983 ac--; 2984 av++; 2985 } 2986 NEED1("missing command"); 2987 2988 /* 2989 * for pipes and queues we normally say 'pipe NN config' 2990 * but the code is easier to parse as 'pipe config NN' 2991 * so we swap the two arguments. 2992 */ 2993 if (do_pipe > 0 && ac > 1 && *av[0] >= '0' && *av[0] <= '9') { 2994 char *p = av[0]; 2995 av[0] = av[1]; 2996 av[1] = p; 2997 } 2998 if (!strncmp(*av, "add", strlen(*av))) 2999 add(ac, av); 3000 else if (do_pipe && !strncmp(*av, "config", strlen(*av))) 3001 config_pipe(ac, av); 3002 else if (!strncmp(*av, "delete", strlen(*av))) 3003 delete(ac, av); 3004 else if (!strncmp(*av, "flush", strlen(*av))) 3005 flush(); 3006 else if (!strncmp(*av, "zero", strlen(*av))) 3007 zero(ac, av); 3008 else if (!strncmp(*av, "resetlog", strlen(*av))) 3009 resetlog(ac, av); 3010 else if (!strncmp(*av, "print", strlen(*av)) || 3011 !strncmp(*av, "list", strlen(*av))) 3012 list(ac, av); 3013 else if (!strncmp(*av, "show", strlen(*av))) { 3014 do_acct++; 3015 list(ac, av); 3016 } else 3017 errx(EX_USAGE, "bad command `%s'", *av); 3018 return 0; 3019 } 3020 3021 3022 static void 3023 ipfw_readfile(int ac, char *av[]) 3024 { 3025 #define MAX_ARGS 32 3026 #define WHITESP " \t\f\v\n\r" 3027 char buf[BUFSIZ]; 3028 char *a, *p, *args[MAX_ARGS], *cmd = NULL; 3029 char linename[10]; 3030 int i=0, lineno=0, qflag=0, pflag=0, status; 3031 FILE *f = NULL; 3032 pid_t preproc = 0; 3033 int c; 3034 3035 while ((c = getopt(ac, av, "D:U:p:q")) != -1) 3036 switch(c) { 3037 case 'D': 3038 if (!pflag) 3039 errx(EX_USAGE, "-D requires -p"); 3040 if (i > MAX_ARGS - 2) 3041 errx(EX_USAGE, 3042 "too many -D or -U options"); 3043 args[i++] = "-D"; 3044 args[i++] = optarg; 3045 break; 3046 3047 case 'U': 3048 if (!pflag) 3049 errx(EX_USAGE, "-U requires -p"); 3050 if (i > MAX_ARGS - 2) 3051 errx(EX_USAGE, 3052 "too many -D or -U options"); 3053 args[i++] = "-U"; 3054 args[i++] = optarg; 3055 break; 3056 3057 case 'p': 3058 pflag = 1; 3059 cmd = optarg; 3060 args[0] = cmd; 3061 i = 1; 3062 break; 3063 3064 case 'q': 3065 qflag = 1; 3066 break; 3067 3068 default: 3069 errx(EX_USAGE, "bad arguments, for usage" 3070 " summary ``ipfw''"); 3071 } 3072 3073 av += optind; 3074 ac -= optind; 3075 if (ac != 1) 3076 errx(EX_USAGE, "extraneous filename arguments"); 3077 3078 if ((f = fopen(av[0], "r")) == NULL) 3079 err(EX_UNAVAILABLE, "fopen: %s", av[0]); 3080 3081 if (pflag) { 3082 /* pipe through preprocessor (cpp or m4) */ 3083 int pipedes[2]; 3084 3085 args[i] = 0; 3086 3087 if (pipe(pipedes) == -1) 3088 err(EX_OSERR, "cannot create pipe"); 3089 3090 switch((preproc = fork())) { 3091 case -1: 3092 err(EX_OSERR, "cannot fork"); 3093 3094 case 0: 3095 /* child */ 3096 if (dup2(fileno(f), 0) == -1 3097 || dup2(pipedes[1], 1) == -1) 3098 err(EX_OSERR, "dup2()"); 3099 fclose(f); 3100 close(pipedes[1]); 3101 close(pipedes[0]); 3102 execvp(cmd, args); 3103 err(EX_OSERR, "execvp(%s) failed", cmd); 3104 3105 default: 3106 /* parent */ 3107 fclose(f); 3108 close(pipedes[1]); 3109 if ((f = fdopen(pipedes[0], "r")) == NULL) { 3110 int savederrno = errno; 3111 3112 (void)kill(preproc, SIGTERM); 3113 errno = savederrno; 3114 err(EX_OSERR, "fdopen()"); 3115 } 3116 } 3117 } 3118 3119 while (fgets(buf, BUFSIZ, f)) { 3120 lineno++; 3121 sprintf(linename, "Line %d", lineno); 3122 args[0] = linename; 3123 3124 if (*buf == '#') 3125 continue; 3126 if ((p = strchr(buf, '#')) != NULL) 3127 *p = '\0'; 3128 i = 1; 3129 if (qflag) 3130 args[i++] = "-q"; 3131 for (a = strtok(buf, WHITESP); 3132 a && i < MAX_ARGS; a = strtok(NULL, WHITESP), i++) 3133 args[i] = a; 3134 if (i == (qflag? 2: 1)) 3135 continue; 3136 if (i == MAX_ARGS) 3137 errx(EX_USAGE, "%s: too many arguments", 3138 linename); 3139 args[i] = NULL; 3140 3141 ipfw_main(i, args); 3142 } 3143 fclose(f); 3144 if (pflag) { 3145 if (waitpid(preproc, &status, 0) == -1) 3146 errx(EX_OSERR, "waitpid()"); 3147 if (WIFEXITED(status) && WEXITSTATUS(status) != EX_OK) 3148 errx(EX_UNAVAILABLE, 3149 "preprocessor exited with status %d", 3150 WEXITSTATUS(status)); 3151 else if (WIFSIGNALED(status)) 3152 errx(EX_UNAVAILABLE, 3153 "preprocessor exited with signal %d", 3154 WTERMSIG(status)); 3155 } 3156 } 3157 3158 int 3159 main(int ac, char *av[]) 3160 { 3161 s = socket(AF_INET, SOCK_RAW, IPPROTO_RAW); 3162 if (s < 0) 3163 err(EX_UNAVAILABLE, "socket"); 3164 3165 /* 3166 * If the last argument is an absolute pathname, interpret it 3167 * as a file to be preprocessed. 3168 */ 3169 3170 if (ac > 1 && av[ac - 1][0] == '/' && access(av[ac - 1], R_OK) == 0) 3171 ipfw_readfile(ac, av); 3172 else 3173 ipfw_main(ac, av); 3174 return EX_OK; 3175 } 3176