1 /* $NetBSD: ifconfig.c,v 1.251 2024/08/20 08:18:24 ozaki-r Exp $ */ 2 3 /*- 4 * Copyright (c) 1997, 1998, 2000 The NetBSD Foundation, Inc. 5 * All rights reserved. 6 * 7 * This code is derived from software contributed to The NetBSD Foundation 8 * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility, 9 * NASA Ames Research Center. 10 * 11 * Redistribution and use in source and binary forms, with or without 12 * modification, are permitted provided that the following conditions 13 * are met: 14 * 1. Redistributions of source code must retain the above copyright 15 * notice, this list of conditions and the following disclaimer. 16 * 2. Redistributions in binary form must reproduce the above copyright 17 * notice, this list of conditions and the following disclaimer in the 18 * documentation and/or other materials provided with the distribution. 19 * 20 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 21 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 22 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 23 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 24 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 25 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 26 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 27 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 28 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 29 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 30 * POSSIBILITY OF SUCH DAMAGE. 31 */ 32 33 /* 34 * Copyright (c) 1983, 1993 35 * The Regents of the University of California. All rights reserved. 36 * 37 * Redistribution and use in source and binary forms, with or without 38 * modification, are permitted provided that the following conditions 39 * are met: 40 * 1. Redistributions of source code must retain the above copyright 41 * notice, this list of conditions and the following disclaimer. 42 * 2. Redistributions in binary form must reproduce the above copyright 43 * notice, this list of conditions and the following disclaimer in the 44 * documentation and/or other materials provided with the distribution. 45 * 3. Neither the name of the University nor the names of its contributors 46 * may be used to endorse or promote products derived from this software 47 * without specific prior written permission. 48 * 49 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 50 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 51 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 52 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 53 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 54 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 55 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 56 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 57 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 58 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 59 * SUCH DAMAGE. 60 */ 61 62 #include <sys/cdefs.h> 63 #ifndef lint 64 __COPYRIGHT("@(#) Copyright (c) 1983, 1993\ 65 The Regents of the University of California. All rights reserved."); 66 __RCSID("$NetBSD: ifconfig.c,v 1.251 2024/08/20 08:18:24 ozaki-r Exp $"); 67 #endif /* not lint */ 68 69 #include <sys/param.h> 70 #include <sys/queue.h> 71 #include <sys/socket.h> 72 #include <sys/ioctl.h> 73 74 #include <net/if.h> 75 #include <net/if_dl.h> 76 #include <net/if_media.h> 77 #include <net/if_ether.h> 78 #include <netinet/in.h> /* XXX */ 79 #include <netinet/in_var.h> /* XXX */ 80 81 #include <netdb.h> 82 83 #include <sys/protosw.h> 84 85 #include <assert.h> 86 #include <ctype.h> 87 #include <err.h> 88 #include <errno.h> 89 #include <stdbool.h> 90 #include <stddef.h> 91 #include <stdio.h> 92 #include <stdlib.h> 93 #include <string.h> 94 #include <unistd.h> 95 #include <ifaddrs.h> 96 #include <util.h> 97 98 #include "extern.h" 99 100 #include "media.h" 101 #include "parse.h" 102 #include "env.h" 103 #include "prog_ops.h" 104 105 #define WAIT_DAD 10000000 /* nanoseconds between each poll, 10ms */ 106 107 static bool bflag, dflag, hflag, sflag, uflag, Wflag, wflag; 108 bool lflag, Nflag, vflag, zflag; 109 static long wflag_secs, Wflag_secs; 110 111 static char gflags[10 + 26 * 2 + 1] = "AabCdhlNsuvW:w:z"; 112 bool gflagset[10 + 26 * 2]; 113 114 static int link_state(prop_dictionary_t); 115 static const char *link_state_str(int); 116 static int carrier(prop_dictionary_t); 117 static int clone_command(prop_dictionary_t, prop_dictionary_t); 118 static void do_setifpreference(prop_dictionary_t); 119 static int flag_index(int); 120 static void init_afs(void); 121 static int list_cloners(prop_dictionary_t, prop_dictionary_t); 122 static int media_status_exec(prop_dictionary_t, prop_dictionary_t); 123 static int wait_dad_exec(prop_dictionary_t, prop_dictionary_t); 124 static int no_cmds_exec(prop_dictionary_t, prop_dictionary_t); 125 static int notrailers(prop_dictionary_t, prop_dictionary_t); 126 static void printall(const char *, prop_dictionary_t); 127 static int setifaddr(prop_dictionary_t, prop_dictionary_t); 128 static int setifbroadaddr(prop_dictionary_t, prop_dictionary_t); 129 static int setifcaps(prop_dictionary_t, prop_dictionary_t); 130 static int setifdstormask(prop_dictionary_t, prop_dictionary_t); 131 static int setifflags(prop_dictionary_t, prop_dictionary_t); 132 static int setifmetric(prop_dictionary_t, prop_dictionary_t); 133 static int setifmtu(prop_dictionary_t, prop_dictionary_t); 134 static int setifnetmask(prop_dictionary_t, prop_dictionary_t); 135 static int setifprefixlen(prop_dictionary_t, prop_dictionary_t); 136 static int setlinkstr(prop_dictionary_t, prop_dictionary_t); 137 static int unsetlinkstr(prop_dictionary_t, prop_dictionary_t); 138 static int setifdescr(prop_dictionary_t, prop_dictionary_t); 139 static int unsetifdescr(prop_dictionary_t, prop_dictionary_t); 140 static void status(prop_dictionary_t, prop_dictionary_t); 141 __dead static void usage(void); 142 143 static const struct kwinst ifflagskw[] = { 144 IFKW("arp", -IFF_NOARP) 145 , IFKW("debug", IFF_DEBUG) 146 , IFKW("unnumbered", IFF_UNNUMBERED) 147 , IFKW("link0", IFF_LINK0) 148 , IFKW("link1", IFF_LINK1) 149 , IFKW("link2", IFF_LINK2) 150 , {.k_word = "down", .k_type = KW_T_INT, .k_int = -IFF_UP} 151 , {.k_word = "up", .k_type = KW_T_INT, .k_int = IFF_UP} 152 }; 153 154 static const struct kwinst ifcapskw[] = { 155 IFKW("ip4csum-tx", IFCAP_CSUM_IPv4_Tx) 156 , IFKW("ip4csum-rx", IFCAP_CSUM_IPv4_Rx) 157 , IFKW("tcp4csum-tx", IFCAP_CSUM_TCPv4_Tx) 158 , IFKW("tcp4csum-rx", IFCAP_CSUM_TCPv4_Rx) 159 , IFKW("udp4csum-tx", IFCAP_CSUM_UDPv4_Tx) 160 , IFKW("udp4csum-rx", IFCAP_CSUM_UDPv4_Rx) 161 , IFKW("tcp6csum-tx", IFCAP_CSUM_TCPv6_Tx) 162 , IFKW("tcp6csum-rx", IFCAP_CSUM_TCPv6_Rx) 163 , IFKW("udp6csum-tx", IFCAP_CSUM_UDPv6_Tx) 164 , IFKW("udp6csum-rx", IFCAP_CSUM_UDPv6_Rx) 165 , IFKW("ip4csum", IFCAP_CSUM_IPv4_Tx|IFCAP_CSUM_IPv4_Rx) 166 , IFKW("tcp4csum", IFCAP_CSUM_TCPv4_Tx|IFCAP_CSUM_TCPv4_Rx) 167 , IFKW("udp4csum", IFCAP_CSUM_UDPv4_Tx|IFCAP_CSUM_UDPv4_Rx) 168 , IFKW("tcp6csum", IFCAP_CSUM_TCPv6_Tx|IFCAP_CSUM_TCPv6_Rx) 169 , IFKW("udp6csum", IFCAP_CSUM_UDPv6_Tx|IFCAP_CSUM_UDPv6_Rx) 170 , IFKW("tso4", IFCAP_TSOv4) 171 , IFKW("tso6", IFCAP_TSOv6) 172 }; 173 174 extern struct pbranch command_root; 175 extern struct pbranch opt_command; 176 extern struct pbranch opt_family, opt_silent_family; 177 extern struct pkw cloning, silent_family, family, ifcaps, ifflags, misc; 178 extern struct pstr parse_linkstr; 179 180 struct pinteger parse_metric = PINTEGER_INITIALIZER(&parse_metric, "metric", 10, 181 setifmetric, "metric", &command_root.pb_parser); 182 183 struct pinteger parse_mtu = PINTEGER_INITIALIZER(&parse_mtu, "mtu", 10, 184 setifmtu, "mtu", &command_root.pb_parser); 185 186 struct pinteger parse_prefixlen = PINTEGER_INITIALIZER(&parse_prefixlen, 187 "prefixlen", 10, setifprefixlen, "prefixlen", &command_root.pb_parser); 188 189 struct pinteger parse_preference = PINTEGER_INITIALIZER1(&parse_preference, 190 "preference", INT16_MIN, INT16_MAX, 10, NULL, "preference", 191 &command_root.pb_parser); 192 193 struct paddr parse_netmask = PADDR_INITIALIZER(&parse_netmask, "netmask", 194 setifnetmask, "dstormask", NULL, NULL, NULL, &command_root.pb_parser); 195 196 struct paddr parse_broadcast = PADDR_INITIALIZER(&parse_broadcast, 197 "broadcast address", 198 setifbroadaddr, "broadcast", NULL, NULL, NULL, &command_root.pb_parser); 199 200 struct pstr parse_descr = PSTR_INITIALIZER1(&parse_descr, "descr", 201 setifdescr, "descr", false, &command_root.pb_parser); 202 203 static const struct kwinst misckw[] = { 204 {.k_word = "alias", .k_key = "alias", .k_deact = "alias", 205 .k_type = KW_T_BOOL, .k_neg = true, 206 .k_bool = true, .k_negbool = false, 207 .k_nextparser = &command_root.pb_parser} 208 , {.k_word = "broadcast", .k_nextparser = &parse_broadcast.pa_parser} 209 , {.k_word = "delete", .k_key = "alias", .k_deact = "alias", 210 .k_type = KW_T_BOOL, .k_bool = false, 211 .k_nextparser = &command_root.pb_parser} 212 , {.k_word = "metric", .k_nextparser = &parse_metric.pi_parser} 213 , {.k_word = "mtu", .k_nextparser = &parse_mtu.pi_parser} 214 , {.k_word = "netmask", .k_nextparser = &parse_netmask.pa_parser} 215 , {.k_word = "preference", .k_act = "address", 216 .k_nextparser = &parse_preference.pi_parser} 217 , {.k_word = "prefixlen", .k_nextparser = &parse_prefixlen.pi_parser} 218 , {.k_word = "trailers", .k_neg = true, 219 .k_exec = notrailers, .k_nextparser = &command_root.pb_parser} 220 , {.k_word = "linkstr", .k_nextparser = &parse_linkstr.ps_parser } 221 , {.k_word = "-linkstr", .k_exec = unsetlinkstr, 222 .k_nextparser = &command_root.pb_parser } 223 , {.k_word = "descr", .k_nextparser = &parse_descr.ps_parser} 224 , {.k_word = "description", .k_nextparser = &parse_descr.ps_parser} 225 , {.k_word = "-descr", .k_exec = unsetifdescr, 226 .k_nextparser = &command_root.pb_parser} 227 , {.k_word = "-description", .k_exec = unsetifdescr, 228 .k_nextparser = &command_root.pb_parser} 229 }; 230 231 /* key: clonecmd */ 232 static const struct kwinst clonekw[] = { 233 {.k_word = "create", .k_type = KW_T_INT, .k_int = SIOCIFCREATE, 234 .k_nextparser = &opt_silent_family.pb_parser}, 235 {.k_word = "destroy", .k_type = KW_T_INT, .k_int = SIOCIFDESTROY} 236 }; 237 238 static struct kwinst familykw[24]; 239 240 struct pterm cloneterm = PTERM_INITIALIZER(&cloneterm, "list cloners", 241 list_cloners, "none"); 242 243 struct pterm wait_dad = PTERM_INITIALIZER(&wait_dad, "wait DAD", wait_dad_exec, 244 "none"); 245 246 struct pterm no_cmds = PTERM_INITIALIZER(&no_cmds, "no commands", no_cmds_exec, 247 "none"); 248 249 struct pkw family_only = 250 PKW_INITIALIZER(&family_only, "family-only", NULL, "af", familykw, 251 __arraycount(familykw), &no_cmds.pt_parser); 252 253 struct paddr address = PADDR_INITIALIZER(&address, 254 "local address (address 1)", 255 setifaddr, "address", "netmask", NULL, "address", &command_root.pb_parser); 256 257 struct paddr dstormask = PADDR_INITIALIZER(&dstormask, 258 "destination/netmask (address 2)", 259 setifdstormask, "dstormask", NULL, "address", "dstormask", 260 &command_root.pb_parser); 261 262 struct paddr broadcast = PADDR_INITIALIZER(&broadcast, 263 "broadcast address (address 3)", 264 setifbroadaddr, "broadcast", NULL, "dstormask", "broadcast", 265 &command_root.pb_parser); 266 267 struct pstr parse_linkstr = PSTR_INITIALIZER(&parse_linkstr, "linkstr", 268 setlinkstr, "linkstr", &command_root.pb_parser); 269 270 static SIMPLEQ_HEAD(, afswtch) aflist = SIMPLEQ_HEAD_INITIALIZER(aflist); 271 272 static SIMPLEQ_HEAD(, usage_func) usage_funcs = 273 SIMPLEQ_HEAD_INITIALIZER(usage_funcs); 274 static SIMPLEQ_HEAD(, status_func) status_funcs = 275 SIMPLEQ_HEAD_INITIALIZER(status_funcs); 276 static SIMPLEQ_HEAD(, statistics_func) statistics_funcs = 277 SIMPLEQ_HEAD_INITIALIZER(statistics_funcs); 278 static SIMPLEQ_HEAD(, cmdloop_branch) cmdloop_branches = 279 SIMPLEQ_HEAD_INITIALIZER(cmdloop_branches); 280 281 struct branch opt_clone_brs[] = { 282 {.b_nextparser = &cloning.pk_parser} 283 , {.b_nextparser = &opt_family.pb_parser} 284 }, opt_silent_family_brs[] = { 285 {.b_nextparser = &silent_family.pk_parser} 286 , {.b_nextparser = &command_root.pb_parser} 287 }, opt_family_brs[] = { 288 {.b_nextparser = &family.pk_parser} 289 , {.b_nextparser = &opt_command.pb_parser} 290 }, command_root_brs[] = { 291 {.b_nextparser = &ifflags.pk_parser} 292 , {.b_nextparser = &ifcaps.pk_parser} 293 , {.b_nextparser = &kwmedia.pk_parser} 294 , {.b_nextparser = &misc.pk_parser} 295 , {.b_nextparser = &address.pa_parser} 296 , {.b_nextparser = &dstormask.pa_parser} 297 , {.b_nextparser = &broadcast.pa_parser} 298 , {.b_nextparser = NULL} 299 }, opt_command_brs[] = { 300 {.b_nextparser = &no_cmds.pt_parser} 301 , {.b_nextparser = &command_root.pb_parser} 302 }; 303 304 struct branch opt_family_only_brs[] = { 305 {.b_nextparser = &no_cmds.pt_parser} 306 , {.b_nextparser = &family_only.pk_parser} 307 }; 308 struct pbranch opt_family_only = PBRANCH_INITIALIZER(&opt_family_only, 309 "opt-family-only", opt_family_only_brs, 310 __arraycount(opt_family_only_brs), true); 311 struct pbranch opt_command = PBRANCH_INITIALIZER(&opt_command, 312 "optional command", 313 opt_command_brs, __arraycount(opt_command_brs), true); 314 315 struct pbranch command_root = PBRANCH_INITIALIZER(&command_root, 316 "command-root", command_root_brs, __arraycount(command_root_brs), true); 317 318 struct piface iface_opt_family_only = 319 PIFACE_INITIALIZER(&iface_opt_family_only, "iface-opt-family-only", 320 NULL, "if", &opt_family_only.pb_parser); 321 322 struct pkw family = PKW_INITIALIZER(&family, "family", NULL, "af", 323 familykw, __arraycount(familykw), &opt_command.pb_parser); 324 325 struct pkw silent_family = PKW_INITIALIZER(&silent_family, "silent family", 326 NULL, "af", familykw, __arraycount(familykw), &command_root.pb_parser); 327 328 struct pkw *family_users[] = {&family_only, &family, &silent_family}; 329 330 struct pkw ifcaps = PKW_INITIALIZER(&ifcaps, "ifcaps", setifcaps, 331 "ifcap", ifcapskw, __arraycount(ifcapskw), &command_root.pb_parser); 332 333 struct pkw ifflags = PKW_INITIALIZER(&ifflags, "ifflags", setifflags, 334 "ifflag", ifflagskw, __arraycount(ifflagskw), &command_root.pb_parser); 335 336 struct pkw cloning = PKW_INITIALIZER(&cloning, "cloning", clone_command, 337 "clonecmd", clonekw, __arraycount(clonekw), NULL); 338 339 struct pkw misc = PKW_INITIALIZER(&misc, "misc", NULL, NULL, 340 misckw, __arraycount(misckw), NULL); 341 342 struct pbranch opt_clone = PBRANCH_INITIALIZER(&opt_clone, 343 "opt-clone", opt_clone_brs, __arraycount(opt_clone_brs), true); 344 345 struct pbranch opt_silent_family = PBRANCH_INITIALIZER(&opt_silent_family, 346 "optional silent family", opt_silent_family_brs, 347 __arraycount(opt_silent_family_brs), true); 348 349 struct pbranch opt_family = PBRANCH_INITIALIZER(&opt_family, 350 "opt-family", opt_family_brs, __arraycount(opt_family_brs), true); 351 352 struct piface iface_start = PIFACE_INITIALIZER(&iface_start, 353 "iface-opt-family", NULL, "if", &opt_clone.pb_parser); 354 355 struct piface iface_only = PIFACE_INITIALIZER(&iface_only, "iface", 356 media_status_exec, "if", NULL); 357 358 static bool 359 flag_is_registered(const char *flags, int flag) 360 { 361 return flags != NULL && strchr(flags, flag) != NULL; 362 } 363 364 static int 365 check_flag(const char *flags, int flag) 366 { 367 if (flag_is_registered(flags, flag)) { 368 errno = EEXIST; 369 return -1; 370 } 371 372 if (flag >= '0' && flag <= '9') 373 return 0; 374 if (flag >= 'a' && flag <= 'z') 375 return 0; 376 if (flag >= 'A' && flag <= 'Z') 377 return 0; 378 379 errno = EINVAL; 380 return -1; 381 } 382 383 void 384 cmdloop_branch_init(cmdloop_branch_t *b, struct parser *p) 385 { 386 b->b_parser = p; 387 } 388 389 void 390 statistics_func_init(statistics_func_t *f, statistics_cb_t func) 391 { 392 f->f_func = func; 393 } 394 395 void 396 status_func_init(status_func_t *f, status_cb_t func) 397 { 398 f->f_func = func; 399 } 400 401 void 402 usage_func_init(usage_func_t *f, usage_cb_t func) 403 { 404 f->f_func = func; 405 } 406 407 int 408 register_cmdloop_branch(cmdloop_branch_t *b) 409 { 410 SIMPLEQ_INSERT_TAIL(&cmdloop_branches, b, b_next); 411 return 0; 412 } 413 414 int 415 register_statistics(statistics_func_t *f) 416 { 417 SIMPLEQ_INSERT_TAIL(&statistics_funcs, f, f_next); 418 return 0; 419 } 420 421 int 422 register_status(status_func_t *f) 423 { 424 SIMPLEQ_INSERT_TAIL(&status_funcs, f, f_next); 425 return 0; 426 } 427 428 int 429 register_usage(usage_func_t *f) 430 { 431 SIMPLEQ_INSERT_TAIL(&usage_funcs, f, f_next); 432 return 0; 433 } 434 435 int 436 register_family(struct afswtch *af) 437 { 438 SIMPLEQ_INSERT_TAIL(&aflist, af, af_next); 439 return 0; 440 } 441 442 int 443 register_flag(int flag) 444 { 445 if (check_flag(gflags, flag) == -1) 446 return -1; 447 448 if (strlen(gflags) + 1 >= sizeof(gflags)) { 449 errno = ENOMEM; 450 return -1; 451 } 452 453 gflags[strlen(gflags)] = flag; 454 455 return 0; 456 } 457 458 static int 459 flag_index(int flag) 460 { 461 if (flag >= '0' && flag <= '9') 462 return flag - '0'; 463 if (flag >= 'a' && flag <= 'z') 464 return 10 + flag - 'a'; 465 if (flag >= 'A' && flag <= 'Z') 466 return 10 + 26 + flag - 'a'; 467 468 errno = EINVAL; 469 return -1; 470 } 471 472 static bool 473 set_flag(int flag) 474 { 475 int idx; 476 477 if ((idx = flag_index(flag)) == -1) 478 return false; 479 480 return gflagset[idx] = true; 481 } 482 483 bool 484 get_flag(int flag) 485 { 486 int idx; 487 488 if ((idx = flag_index(flag)) == -1) 489 return false; 490 491 return gflagset[idx]; 492 } 493 494 static struct parser * 495 init_parser(void) 496 { 497 cmdloop_branch_t *b; 498 499 if (parser_init(&iface_opt_family_only.pif_parser) == -1) 500 err(EXIT_FAILURE, "parser_init(iface_opt_family_only)"); 501 if (parser_init(&iface_only.pif_parser) == -1) 502 err(EXIT_FAILURE, "parser_init(iface_only)"); 503 if (parser_init(&iface_start.pif_parser) == -1) 504 err(EXIT_FAILURE, "parser_init(iface_start)"); 505 506 SIMPLEQ_FOREACH(b, &cmdloop_branches, b_next) 507 pbranch_addbranch(&command_root, b->b_parser); 508 509 return &iface_start.pif_parser; 510 } 511 512 static int 513 no_cmds_exec(prop_dictionary_t env, prop_dictionary_t oenv) 514 { 515 const char *ifname; 516 unsigned short ignore; 517 518 /* ifname == NULL is ok. It indicates 'ifconfig -a'. */ 519 if ((ifname = getifname(env)) == NULL) 520 ; 521 else if (getifflags(env, oenv, &ignore) == -1) 522 err(EXIT_FAILURE, "SIOCGIFFLAGS %s", ifname); 523 524 printall(ifname, env); 525 exit(EXIT_SUCCESS); 526 } 527 528 static int 529 wait_dad_exec(prop_dictionary_t env, prop_dictionary_t oenv) 530 { 531 bool waiting; 532 struct ifaddrs *ifaddrs, *ifa; 533 const struct timespec ts = { .tv_sec = 0, .tv_nsec = WAIT_DAD }; 534 struct timespec now, end_det, end; 535 const struct afswtch *afp; 536 537 if (wflag_secs) { 538 const struct timespec tent = 539 { .tv_sec = wflag_secs, .tv_nsec = 0}; 540 const struct timespec det = 541 { .tv_sec = Wflag_secs, .tv_nsec = 0}; 542 543 if (clock_gettime(CLOCK_MONOTONIC, &now) == -1) 544 err(EXIT_FAILURE, "clock_gettime"); 545 timespecadd(&now, &tent, &end); 546 if (Wflag_secs) 547 timespecadd(&now, &det, &end_det); 548 else 549 timespecclear(&end_det); 550 } else { 551 timespecclear(&end_det); 552 timespecclear(&end); 553 } 554 555 if (getifaddrs(&ifaddrs) == -1) 556 err(EXIT_FAILURE, "getifaddrs"); 557 558 for (;;) { 559 waiting = false; 560 for (ifa = ifaddrs; ifa; ifa = ifa->ifa_next) { 561 if (ifa->ifa_addr == NULL) 562 continue; 563 afp = lookup_af_bynum(ifa->ifa_addr->sa_family); 564 if (afp && 565 ((afp->af_addr_tentative_or_detached && 566 ifa->ifa_flags & IFF_UP && 567 timespecisset(&end_det) && 568 timespeccmp(&now, &end_det, <) && 569 afp->af_addr_tentative_or_detached(ifa)) || 570 (afp->af_addr_tentative && 571 afp->af_addr_tentative(ifa)))) 572 { 573 waiting = true; 574 break; 575 } 576 } 577 if (!waiting) 578 break; 579 nanosleep(&ts, NULL); 580 if (wflag_secs) { 581 if (clock_gettime(CLOCK_MONOTONIC, &now) == -1) 582 err(EXIT_FAILURE, "clock_gettime"); 583 if (timespeccmp(&now, &end, >)) 584 errx(EXIT_FAILURE, "timed out"); 585 } 586 } 587 588 freeifaddrs(ifaddrs); 589 exit(EXIT_SUCCESS); 590 } 591 592 static int 593 media_status_exec(prop_dictionary_t env, prop_dictionary_t oenv) 594 { 595 const char *ifname; 596 unsigned short ignore; 597 598 /* ifname == NULL is ok. It indicates 'ifconfig -a'. */ 599 if ((ifname = getifname(env)) == NULL) 600 ; 601 else if (getifflags(env, oenv, &ignore) == -1) 602 err(EXIT_FAILURE, "SIOCGIFFLAGS %s", ifname); 603 604 exit(carrier(env)); 605 } 606 607 static void 608 do_setifcaps(prop_dictionary_t env) 609 { 610 struct ifcapreq ifcr; 611 prop_data_t d; 612 613 d = (prop_data_t )prop_dictionary_get(env, "ifcaps"); 614 if (d == NULL) 615 return; 616 617 assert(sizeof(ifcr) == prop_data_size(d)); 618 619 memcpy(&ifcr, prop_data_value(d), sizeof(ifcr)); 620 if (direct_ioctl(env, SIOCSIFCAP, &ifcr) == -1) 621 err(EXIT_FAILURE, "SIOCSIFCAP"); 622 } 623 624 int 625 main(int argc, char **argv) 626 { 627 const struct afswtch *afp; 628 int af, s, e; 629 bool aflag = false, Cflag = false; 630 struct match match[32]; 631 size_t nmatch; 632 struct parser *start; 633 int ch, narg = 0, rc; 634 prop_dictionary_t env, oenv; 635 const char *ifname; 636 637 memset(match, 0, sizeof(match)); 638 639 init_afs(); 640 641 start = init_parser(); 642 643 /* Parse command-line options */ 644 Nflag = vflag = zflag = false; 645 aflag = argc == 1 ? true : false; 646 if (aflag) 647 start = &opt_family_only.pb_parser; 648 649 while ((ch = getopt(argc, argv, gflags)) != -1) { 650 switch (ch) { 651 case 'A': 652 warnx("-A is deprecated"); 653 break; 654 655 case 'a': 656 aflag = true; 657 break; 658 659 case 'b': 660 bflag = true; 661 break; 662 663 case 'C': 664 Cflag = true; 665 break; 666 667 case 'd': 668 dflag = true; 669 break; 670 case 'h': 671 hflag = true; 672 break; 673 case 'l': 674 lflag = true; 675 break; 676 case 'N': 677 Nflag = true; 678 break; 679 680 case 's': 681 sflag = true; 682 break; 683 684 case 'u': 685 uflag = true; 686 break; 687 688 case 'v': 689 vflag = true; 690 break; 691 692 case 'w': 693 wflag = true; 694 wflag_secs = strtoi(optarg, NULL, 10, 0, INT32_MAX, &e); 695 if (e) 696 errx(EXIT_FAILURE, "%s: not a number", optarg); 697 break; 698 699 case 'W': 700 Wflag = true; 701 Wflag_secs = strtoi(optarg, NULL, 10, 0, INT32_MAX, &e); 702 if (e) 703 errx(EXIT_FAILURE, "%s: not a number", optarg); 704 break; 705 706 case 'z': 707 zflag = true; 708 break; 709 710 default: 711 if (!set_flag(ch)) 712 usage(); 713 break; 714 } 715 switch (ch) { 716 case 'a': 717 start = &opt_family_only.pb_parser; 718 break; 719 720 case 'L': 721 case 'm': 722 case 'z': 723 if (start != &opt_family_only.pb_parser) 724 start = &iface_opt_family_only.pif_parser; 725 break; 726 case 'C': 727 start = &cloneterm.pt_parser; 728 break; 729 case 'l': 730 start = &no_cmds.pt_parser; 731 break; 732 case 's': 733 if (start != &no_cmds.pt_parser && 734 start != &opt_family_only.pb_parser) 735 start = &iface_only.pif_parser; 736 break; 737 case 'w': 738 start = &wait_dad.pt_parser; 739 break; 740 default: 741 break; 742 } 743 } 744 argc -= optind; 745 argv += optind; 746 747 /* 748 * -l means "list all interfaces", and is mutually exclusive with 749 * all other flags/commands. 750 * 751 * -C means "list all names of cloners", and it mutually exclusive 752 * with all other flags/commands. 753 * 754 * -a means "print status of all interfaces". 755 * 756 * -w means "spin until DAD completes for all addresses", and is 757 * mutually exclusive with all other flags/commands. 758 */ 759 if ((lflag || Cflag || wflag) && 760 (aflag || get_flag('m') || vflag || zflag)) 761 usage(); 762 if ((lflag || Cflag || wflag) && get_flag('L')) 763 usage(); 764 if ((lflag && Cflag) || (lflag & wflag) || (Cflag && wflag)) 765 usage(); 766 767 nmatch = __arraycount(match); 768 769 rc = parse(argc, argv, start, match, &nmatch, &narg); 770 if (rc != 0) 771 usage(); 772 773 if (prog_init && prog_init() == -1) 774 err(1, "rump client init"); 775 776 if ((oenv = prop_dictionary_create()) == NULL) 777 err(EXIT_FAILURE, "%s: prop_dictionary_create", __func__); 778 779 if (matches_exec(match, oenv, nmatch) == -1) 780 err(EXIT_FAILURE, "exec_matches"); 781 782 argc -= narg; 783 argv += narg; 784 785 env = (nmatch > 0) ? match[(int)nmatch - 1].m_env : NULL; 786 if (env == NULL) 787 env = oenv; 788 else { 789 env = prop_dictionary_augment(env, oenv); 790 if (env == NULL) 791 err(EXIT_FAILURE, "%s: prop_dictionary_augment", 792 __func__); 793 } 794 795 /* Process any media commands that may have been issued. */ 796 process_media_commands(env); 797 798 if ((af = getaf(env)) == -1) 799 af = AF_INET; 800 801 if ((s = getsock(af)) == -1) 802 err(EXIT_FAILURE, "%s: getsock", __func__); 803 804 if ((ifname = getifname(env)) == NULL) 805 err(EXIT_FAILURE, "%s: getifname", __func__); 806 807 if ((afp = lookup_af_bynum(af)) == NULL) 808 errx(EXIT_FAILURE, "%s: lookup_af_bynum", __func__); 809 810 assert(afp->af_addr_commit != NULL); 811 (*afp->af_addr_commit)(env, oenv); 812 813 do_setifpreference(env); 814 do_setifcaps(env); 815 do_setethercaps(env); 816 817 exit(EXIT_SUCCESS); 818 } 819 820 static void 821 init_afs(void) 822 { 823 size_t i; 824 const struct afswtch *afp; 825 struct kwinst kw = {.k_type = KW_T_INT}; 826 827 SIMPLEQ_FOREACH(afp, &aflist, af_next) { 828 kw.k_word = afp->af_name; 829 kw.k_int = afp->af_af; 830 for (i = 0; i < __arraycount(familykw); i++) { 831 if (familykw[i].k_word == NULL) { 832 familykw[i] = kw; 833 break; 834 } 835 } 836 } 837 } 838 839 const struct afswtch * 840 lookup_af_bynum(int afnum) 841 { 842 const struct afswtch *afp; 843 844 SIMPLEQ_FOREACH(afp, &aflist, af_next) { 845 if (afp->af_af == afnum) 846 break; 847 } 848 return afp; 849 } 850 851 void 852 printall(const char *ifname, prop_dictionary_t env0) 853 { 854 struct ifaddrs *ifap, *ifa; 855 prop_dictionary_t env, oenv; 856 int idx; 857 char *p; 858 859 if (env0 == NULL) 860 env = prop_dictionary_create(); 861 else 862 env = prop_dictionary_copy_mutable(env0); 863 864 oenv = prop_dictionary_create(); 865 866 if (env == NULL || oenv == NULL) 867 errx(EXIT_FAILURE, "%s: prop_dictionary_copy/create", __func__); 868 869 if (getifaddrs(&ifap) != 0) 870 err(EXIT_FAILURE, "getifaddrs"); 871 p = NULL; 872 idx = 0; 873 for (ifa = ifap; ifa; ifa = ifa->ifa_next) { 874 if (ifname != NULL && strcmp(ifname, ifa->ifa_name) != 0) 875 continue; 876 if (p && strcmp(p, ifa->ifa_name) == 0) 877 continue; 878 if (!prop_dictionary_set_string(env, "if", ifa->ifa_name)) 879 continue; 880 p = ifa->ifa_name; 881 882 if (bflag && (ifa->ifa_flags & IFF_BROADCAST) == 0) 883 continue; 884 if (dflag && (ifa->ifa_flags & IFF_UP) != 0) 885 continue; 886 if (uflag && (ifa->ifa_flags & IFF_UP) == 0) 887 continue; 888 889 if (sflag && link_state(env) == LINK_STATE_DOWN) 890 continue; 891 idx++; 892 /* 893 * Are we just listing the interfaces? 894 */ 895 if (lflag) { 896 if (idx > 1) 897 printf(" "); 898 fputs(ifa->ifa_name, stdout); 899 continue; 900 } 901 902 status(env, oenv); 903 } 904 if (lflag) 905 printf("\n"); 906 prop_object_release((prop_object_t)env); 907 prop_object_release((prop_object_t)oenv); 908 freeifaddrs(ifap); 909 } 910 911 static int 912 list_cloners(prop_dictionary_t env, prop_dictionary_t oenv) 913 { 914 struct if_clonereq ifcr; 915 char *cp, *buf; 916 int idx, s; 917 918 memset(&ifcr, 0, sizeof(ifcr)); 919 920 s = getsock(AF_INET); 921 922 if (prog_ioctl(s, SIOCIFGCLONERS, &ifcr) == -1) 923 err(EXIT_FAILURE, "SIOCIFGCLONERS for count"); 924 925 buf = malloc(ifcr.ifcr_total * IFNAMSIZ); 926 if (buf == NULL) 927 err(EXIT_FAILURE, "unable to allocate cloner name buffer"); 928 929 ifcr.ifcr_count = ifcr.ifcr_total; 930 ifcr.ifcr_buffer = buf; 931 932 if (prog_ioctl(s, SIOCIFGCLONERS, &ifcr) == -1) 933 err(EXIT_FAILURE, "SIOCIFGCLONERS for names"); 934 935 /* 936 * In case some disappeared in the mean time, clamp it down. 937 */ 938 if (ifcr.ifcr_count > ifcr.ifcr_total) 939 ifcr.ifcr_count = ifcr.ifcr_total; 940 941 for (cp = buf, idx = 0; idx < ifcr.ifcr_count; idx++, cp += IFNAMSIZ) { 942 if (idx > 0) 943 printf(" "); 944 printf("%s", cp); 945 } 946 947 printf("\n"); 948 free(buf); 949 exit(EXIT_SUCCESS); 950 } 951 952 static int 953 clone_command(prop_dictionary_t env, prop_dictionary_t oenv) 954 { 955 int64_t cmd; 956 957 if (!prop_dictionary_get_int64(env, "clonecmd", &cmd)) { 958 errno = ENOENT; 959 return -1; 960 } 961 962 if (indirect_ioctl(env, (unsigned long)cmd, NULL) == -1) { 963 warn("%s", __func__); 964 return -1; 965 } 966 return 0; 967 } 968 969 /*ARGSUSED*/ 970 static int 971 setifaddr(prop_dictionary_t env, prop_dictionary_t oenv) 972 { 973 const struct paddr_prefix *pfx0; 974 struct paddr_prefix *pfx; 975 prop_data_t d; 976 int af; 977 978 if ((af = getaf(env)) == -1) 979 af = AF_INET; 980 981 d = (prop_data_t)prop_dictionary_get(env, "address"); 982 assert(d != NULL); 983 pfx0 = prop_data_value(d); 984 985 if (pfx0->pfx_len >= 0) { 986 pfx = prefixlen_to_mask(af, pfx0->pfx_len); 987 if (pfx == NULL) 988 err(EXIT_FAILURE, "prefixlen_to_mask"); 989 free(pfx); 990 } 991 992 return 0; 993 } 994 995 static int 996 setifnetmask(prop_dictionary_t env, prop_dictionary_t oenv) 997 { 998 prop_data_t d; 999 1000 d = (prop_data_t)prop_dictionary_get(env, "dstormask"); 1001 assert(d != NULL); 1002 1003 if (!prop_dictionary_set(oenv, "netmask", (prop_object_t)d)) 1004 return -1; 1005 1006 return 0; 1007 } 1008 1009 static int 1010 setifbroadaddr(prop_dictionary_t env, prop_dictionary_t oenv) 1011 { 1012 prop_data_t d; 1013 unsigned short flags; 1014 1015 if (getifflags(env, oenv, &flags) == -1) 1016 err(EXIT_FAILURE, "%s: getifflags", __func__); 1017 1018 if ((flags & IFF_BROADCAST) == 0) 1019 errx(EXIT_FAILURE, "not a broadcast interface"); 1020 1021 d = (prop_data_t)prop_dictionary_get(env, "broadcast"); 1022 assert(d != NULL); 1023 1024 if (!prop_dictionary_set(oenv, "broadcast", (prop_object_t)d)) 1025 return -1; 1026 1027 return 0; 1028 } 1029 1030 /*ARGSUSED*/ 1031 static int 1032 notrailers(prop_dictionary_t env, prop_dictionary_t oenv) 1033 { 1034 puts("Note: trailers are no longer sent, but always received"); 1035 return 0; 1036 } 1037 1038 /*ARGSUSED*/ 1039 static int 1040 setifdstormask(prop_dictionary_t env, prop_dictionary_t oenv) 1041 { 1042 const char *key; 1043 prop_data_t d; 1044 unsigned short flags; 1045 1046 if (getifflags(env, oenv, &flags) == -1) 1047 err(EXIT_FAILURE, "%s: getifflags", __func__); 1048 1049 d = (prop_data_t)prop_dictionary_get(env, "dstormask"); 1050 assert(d != NULL); 1051 1052 if ((flags & IFF_BROADCAST) == 0) { 1053 key = "dst"; 1054 } else { 1055 key = "netmask"; 1056 } 1057 1058 if (!prop_dictionary_set(oenv, key, (prop_object_t)d)) 1059 return -1; 1060 1061 return 0; 1062 } 1063 1064 static int 1065 setifflags(prop_dictionary_t env, prop_dictionary_t oenv) 1066 { 1067 struct ifreq ifr; 1068 int64_t ifflag; 1069 bool rc; 1070 1071 rc = prop_dictionary_get_int64(env, "ifflag", &ifflag); 1072 assert(rc); 1073 1074 if (direct_ioctl(env, SIOCGIFFLAGS, &ifr) == -1) 1075 return -1; 1076 1077 if (ifflag < 0) { 1078 ifflag = -ifflag; 1079 ifr.ifr_flags &= ~ifflag; 1080 } else 1081 ifr.ifr_flags |= ifflag; 1082 1083 if (direct_ioctl(env, SIOCSIFFLAGS, &ifr) == -1) 1084 return -1; 1085 1086 return 0; 1087 } 1088 1089 static int 1090 getifcaps(prop_dictionary_t env, prop_dictionary_t oenv, struct ifcapreq *oifcr) 1091 { 1092 bool rc; 1093 struct ifcapreq ifcr; 1094 const struct ifcapreq *tmpifcr; 1095 prop_data_t capdata; 1096 1097 capdata = (prop_data_t)prop_dictionary_get(env, "ifcaps"); 1098 1099 if (capdata != NULL) { 1100 tmpifcr = prop_data_value(capdata); 1101 *oifcr = *tmpifcr; 1102 return 0; 1103 } 1104 1105 (void)direct_ioctl(env, SIOCGIFCAP, &ifcr); 1106 *oifcr = ifcr; 1107 1108 capdata = prop_data_create_copy(&ifcr, sizeof(ifcr)); 1109 1110 rc = prop_dictionary_set(oenv, "ifcaps", capdata); 1111 1112 prop_object_release((prop_object_t)capdata); 1113 1114 return rc ? 0 : -1; 1115 } 1116 1117 static int 1118 setifcaps(prop_dictionary_t env, prop_dictionary_t oenv) 1119 { 1120 int64_t ifcap; 1121 bool rc; 1122 prop_data_t capdata; 1123 struct ifcapreq ifcr; 1124 1125 rc = prop_dictionary_get_int64(env, "ifcap", &ifcap); 1126 assert(rc); 1127 1128 if (getifcaps(env, oenv, &ifcr) == -1) 1129 return -1; 1130 1131 if (ifcap < 0) { 1132 ifcap = -ifcap; 1133 ifcr.ifcr_capenable &= ~ifcap; 1134 } else 1135 ifcr.ifcr_capenable |= ifcap; 1136 1137 if ((capdata = prop_data_create_copy(&ifcr, sizeof(ifcr))) == NULL) 1138 return -1; 1139 1140 rc = prop_dictionary_set(oenv, "ifcaps", capdata); 1141 prop_object_release((prop_object_t)capdata); 1142 1143 return rc ? 0 : -1; 1144 } 1145 1146 static int 1147 setifmetric(prop_dictionary_t env, prop_dictionary_t oenv) 1148 { 1149 struct ifreq ifr; 1150 bool rc; 1151 int64_t metric; 1152 1153 rc = prop_dictionary_get_int64(env, "metric", &metric); 1154 assert(rc); 1155 1156 ifr.ifr_metric = metric; 1157 if (direct_ioctl(env, SIOCSIFMETRIC, &ifr) == -1) 1158 warn("SIOCSIFMETRIC"); 1159 return 0; 1160 } 1161 1162 static void 1163 do_setifpreference(prop_dictionary_t env) 1164 { 1165 struct if_addrprefreq ifap; 1166 prop_data_t d; 1167 const struct paddr_prefix *pfx; 1168 1169 memset(&ifap, 0, sizeof(ifap)); 1170 1171 if (!prop_dictionary_get_int16(env, "preference", 1172 &ifap.ifap_preference)) 1173 return; 1174 1175 d = (prop_data_t)prop_dictionary_get(env, "address"); 1176 assert(d != NULL); 1177 1178 pfx = prop_data_value(d); 1179 1180 memcpy(&ifap.ifap_addr, &pfx->pfx_addr, 1181 MIN(sizeof(ifap.ifap_addr), pfx->pfx_addr.sa_len)); 1182 if (direct_ioctl(env, SIOCSIFADDRPREF, &ifap) == -1) 1183 warn("SIOCSIFADDRPREF"); 1184 } 1185 1186 static int 1187 setifmtu(prop_dictionary_t env, prop_dictionary_t oenv) 1188 { 1189 int64_t mtu; 1190 bool rc; 1191 struct ifreq ifr; 1192 1193 rc = prop_dictionary_get_int64(env, "mtu", &mtu); 1194 assert(rc); 1195 1196 ifr.ifr_mtu = mtu; 1197 if (direct_ioctl(env, SIOCSIFMTU, &ifr) == -1) 1198 warn("SIOCSIFMTU"); 1199 1200 return 0; 1201 } 1202 1203 static int 1204 link_state(prop_dictionary_t env) 1205 { 1206 struct ifdatareq ifdr = { .ifdr_data.ifi_link_state = 0 }; 1207 1208 if (direct_ioctl(env, SIOCGIFDATA, &ifdr) == -1) 1209 return -1; 1210 1211 return ifdr.ifdr_data.ifi_link_state; 1212 } 1213 1214 static const char * 1215 link_state_str(int state) 1216 { 1217 1218 switch (state) { 1219 case LINK_STATE_UNKNOWN: 1220 return "unknown"; 1221 case LINK_STATE_DOWN: 1222 return "down"; 1223 case LINK_STATE_UP: 1224 return "up"; 1225 default: /* Assume -1 */ 1226 return "error"; 1227 } 1228 } 1229 1230 static int 1231 carrier(prop_dictionary_t env) 1232 { 1233 switch (link_state(env)) { 1234 case -1: 1235 case LINK_STATE_DOWN: 1236 return EXIT_FAILURE; 1237 default: 1238 /* Assume UP if UNKNOWN */ 1239 return EXIT_SUCCESS; 1240 } 1241 } 1242 1243 static void 1244 print_plural(const char *prefix, uint64_t n, const char *unit) 1245 { 1246 printf("%s%" PRIu64 " %s%s", prefix, n, unit, (n == 1) ? "" : "s"); 1247 } 1248 1249 static void 1250 print_human_bytes(bool humanize, uint64_t n) 1251 { 1252 char buf[5]; 1253 1254 if (humanize) { 1255 (void)humanize_number(buf, sizeof(buf), 1256 (int64_t)n, "", HN_AUTOSCALE, HN_NOSPACE | HN_DECIMAL); 1257 printf(", %s byte%s", buf, (atof(buf) == 1.0) ? "" : "s"); 1258 } else 1259 print_plural(", ", n, "byte"); 1260 } 1261 1262 /* 1263 * Print the status of the interface. If an address family was 1264 * specified, show it and it only; otherwise, show them all. 1265 */ 1266 1267 #define MAX_PRINT_LEN 58 /* XXX need a better way to determine this! */ 1268 1269 void 1270 status(prop_dictionary_t env, prop_dictionary_t oenv) 1271 { 1272 status_func_t *status_f; 1273 statistics_func_t *statistics_f; 1274 struct ifdatareq ifdr; 1275 struct if_data *ifi; 1276 struct ifreq ifr; 1277 struct ifdrv ifdrv; 1278 char fbuf[BUFSIZ]; 1279 char *bp; 1280 int af, s; 1281 const char *ifname; 1282 struct ifcapreq ifcr; 1283 unsigned short flags; 1284 const struct afswtch *afp; 1285 char ifdescr[IFDESCRSIZE]; 1286 1287 if ((af = getaf(env)) == -1) { 1288 afp = NULL; 1289 af = AF_UNSPEC; 1290 } else 1291 afp = lookup_af_bynum(af); 1292 1293 /* get out early if the family is unsupported by the kernel */ 1294 if ((s = getsock(af)) == -1) 1295 err(EXIT_FAILURE, "%s: getsock", __func__); 1296 1297 if ((ifname = getifinfo(env, oenv, &flags)) == NULL) 1298 err(EXIT_FAILURE, "%s: getifinfo", __func__); 1299 1300 (void)snprintb(fbuf, sizeof(fbuf), IFFBITS, flags); 1301 printf("%s: flags=%s", ifname, fbuf); 1302 1303 estrlcpy(ifr.ifr_name, ifname, sizeof(ifr.ifr_name)); 1304 if (prog_ioctl(s, SIOCGIFMETRIC, &ifr) == -1) 1305 warn("SIOCGIFMETRIC %s", ifr.ifr_name); 1306 else if (ifr.ifr_metric != 0) 1307 printf(" metric %d", ifr.ifr_metric); 1308 1309 estrlcpy(ifr.ifr_name, ifname, sizeof(ifr.ifr_name)); 1310 if (prog_ioctl(s, SIOCGIFMTU, &ifr) != -1 && ifr.ifr_mtu != 0) 1311 printf(" mtu %d", ifr.ifr_mtu); 1312 printf("\n"); 1313 1314 if (getifcaps(env, oenv, &ifcr) == -1) 1315 err(EXIT_FAILURE, "%s: getifcaps", __func__); 1316 1317 if (ifcr.ifcr_capabilities != 0) { 1318 (void)snprintb_m(fbuf, sizeof(fbuf), IFCAPBITS, 1319 ifcr.ifcr_capabilities, MAX_PRINT_LEN); 1320 bp = fbuf; 1321 while (*bp != '\0') { 1322 printf("\tcapabilities=%s\n", bp); 1323 bp += strlen(bp) + 1; 1324 } 1325 (void)snprintb_m(fbuf, sizeof(fbuf), IFCAPBITS, 1326 ifcr.ifcr_capenable, MAX_PRINT_LEN); 1327 bp = fbuf; 1328 while (*bp != '\0') { 1329 printf("\tenabled=%s\n", bp); 1330 bp += strlen(bp) + 1; 1331 } 1332 } 1333 1334 SIMPLEQ_FOREACH(status_f, &status_funcs, f_next) 1335 (*status_f->f_func)(env, oenv); 1336 1337 estrlcpy(ifr.ifr_name, ifname, sizeof(ifr.ifr_name)); 1338 ifr.ifr_buf = &ifdescr; 1339 ifr.ifr_buflen = sizeof(ifdescr); 1340 if (prog_ioctl(s, SIOCGIFDESCR, &ifr) == 0) 1341 printf("\tdescription: \"%s\"\n", (char *)ifr.ifr_buf); 1342 1343 print_link_addresses(env, true); 1344 1345 estrlcpy(ifdrv.ifd_name, ifname, sizeof(ifdrv.ifd_name)); 1346 ifdrv.ifd_cmd = IFLINKSTR_QUERYLEN; 1347 ifdrv.ifd_len = 0; 1348 ifdrv.ifd_data = NULL; 1349 /* interface supports linkstr? */ 1350 if (prog_ioctl(s, SIOCGLINKSTR, &ifdrv) != -1) { 1351 char *p; 1352 1353 p = malloc(ifdrv.ifd_len); 1354 if (p == NULL) 1355 err(EXIT_FAILURE, "malloc linkstr buf failed"); 1356 ifdrv.ifd_data = p; 1357 ifdrv.ifd_cmd = 0; 1358 if (prog_ioctl(s, SIOCGLINKSTR, &ifdrv) == -1) 1359 err(EXIT_FAILURE, "failed to query linkstr"); 1360 printf("\tlinkstr: %s\n", (char *)ifdrv.ifd_data); 1361 free(p); 1362 } 1363 1364 if (vflag) 1365 printf("\tlinkstate: %s\n", link_state_str(link_state(env))); 1366 1367 media_status(env, oenv); 1368 1369 if (!vflag && !zflag) 1370 goto proto_status; 1371 1372 /* We already have if_data from SIOCGIFDATA in ifa_data. */ 1373 estrlcpy(ifdr.ifdr_name, ifname, sizeof(ifdr.ifdr_name)); 1374 if (prog_ioctl(s, zflag ? SIOCZIFDATA : SIOCGIFDATA, &ifdr) == -1) 1375 err(EXIT_FAILURE, zflag ? "SIOCZIFDATA" : "SIOCGIFDATA"); 1376 ifi = &ifdr.ifdr_data; 1377 1378 print_plural("\tinput: ", ifi->ifi_ipackets, "packet"); 1379 print_human_bytes(hflag, ifi->ifi_ibytes); 1380 if (ifi->ifi_imcasts) 1381 print_plural(", ", ifi->ifi_imcasts, "multicast"); 1382 if (ifi->ifi_ierrors) 1383 print_plural(", ", ifi->ifi_ierrors, "error"); 1384 if (ifi->ifi_iqdrops) 1385 print_plural(", ", ifi->ifi_iqdrops, "queue drop"); 1386 if (ifi->ifi_noproto) 1387 printf(", %" PRIu64 " unknown protocol", ifi->ifi_noproto); 1388 print_plural("\n\toutput: ", ifi->ifi_opackets, "packet"); 1389 print_human_bytes(hflag, ifi->ifi_obytes); 1390 if (ifi->ifi_omcasts) 1391 print_plural(", ", ifi->ifi_omcasts, "multicast"); 1392 if (ifi->ifi_oerrors) 1393 print_plural(", ", ifi->ifi_oerrors, "error"); 1394 if (ifi->ifi_collisions) 1395 print_plural(", ", ifi->ifi_collisions, "collision"); 1396 printf("\n"); 1397 1398 SIMPLEQ_FOREACH(statistics_f, &statistics_funcs, f_next) 1399 (*statistics_f->f_func)(env); 1400 1401 proto_status: 1402 1403 if (afp != NULL) 1404 (*afp->af_status)(env, oenv, true); 1405 else SIMPLEQ_FOREACH(afp, &aflist, af_next) 1406 (*afp->af_status)(env, oenv, false); 1407 } 1408 1409 static int 1410 setifprefixlen(prop_dictionary_t env, prop_dictionary_t oenv) 1411 { 1412 bool rc; 1413 int64_t plen; 1414 int af; 1415 struct paddr_prefix *pfx; 1416 prop_data_t d; 1417 1418 if ((af = getaf(env)) == -1) 1419 af = AF_INET; 1420 1421 rc = prop_dictionary_get_int64(env, "prefixlen", &plen); 1422 assert(rc); 1423 1424 pfx = prefixlen_to_mask(af, plen); 1425 if (pfx == NULL) 1426 err(EXIT_FAILURE, "prefixlen_to_mask"); 1427 1428 d = prop_data_create_copy(pfx, paddr_prefix_size(pfx)); 1429 if (d == NULL) 1430 err(EXIT_FAILURE, "%s: prop_data_create_copy", __func__); 1431 1432 if (!prop_dictionary_set(oenv, "netmask", (prop_object_t)d)) 1433 err(EXIT_FAILURE, "%s: prop_dictionary_set", __func__); 1434 1435 free(pfx); 1436 return 0; 1437 } 1438 1439 static int 1440 setlinkstr(prop_dictionary_t env, prop_dictionary_t oenv) 1441 { 1442 struct ifdrv ifdrv; 1443 size_t linkstrlen; 1444 prop_data_t data; 1445 char *linkstr; 1446 1447 data = (prop_data_t)prop_dictionary_get(env, "linkstr"); 1448 if (data == NULL) { 1449 errno = ENOENT; 1450 return -1; 1451 } 1452 linkstrlen = prop_data_size(data)+1; 1453 1454 linkstr = malloc(linkstrlen); 1455 if (linkstr == NULL) 1456 err(EXIT_FAILURE, "malloc linkstr space"); 1457 if (getargstr(env, "linkstr", linkstr, linkstrlen) == -1) 1458 errx(EXIT_FAILURE, "getargstr linkstr failed"); 1459 1460 ifdrv.ifd_cmd = 0; 1461 ifdrv.ifd_len = linkstrlen; 1462 ifdrv.ifd_data = __UNCONST(linkstr); 1463 1464 if (direct_ioctl(env, SIOCSLINKSTR, &ifdrv) == -1) 1465 err(EXIT_FAILURE, "SIOCSLINKSTR"); 1466 free(linkstr); 1467 1468 return 0; 1469 } 1470 1471 static int 1472 unsetlinkstr(prop_dictionary_t env, prop_dictionary_t oenv) 1473 { 1474 struct ifdrv ifdrv; 1475 1476 memset(&ifdrv, 0, sizeof(ifdrv)); 1477 ifdrv.ifd_cmd = IFLINKSTR_UNSET; 1478 1479 if (direct_ioctl(env, SIOCSLINKSTR, &ifdrv) == -1) 1480 err(EXIT_FAILURE, "SIOCSLINKSTR"); 1481 1482 return 0; 1483 } 1484 1485 static int 1486 setifdescr(prop_dictionary_t env, prop_dictionary_t oenv) 1487 { 1488 struct ifreq ifr; 1489 size_t len; 1490 prop_data_t data; 1491 char *descr; 1492 1493 data = (prop_data_t)prop_dictionary_get(env, "descr"); 1494 if (data == NULL) { 1495 errno = ENOENT; 1496 return -1; 1497 } 1498 len = prop_data_size(data) + 1; 1499 1500 if (len > IFDESCRSIZE) 1501 err(EXIT_FAILURE, "description too long"); 1502 1503 descr = malloc(len); 1504 if (descr == NULL) 1505 err(EXIT_FAILURE, "malloc description space"); 1506 if (getargstr(env, "descr", descr, len) == -1) 1507 errx(EXIT_FAILURE, "getargstr descr failed"); 1508 1509 1510 ifr.ifr_buf = descr; 1511 ifr.ifr_buflen = len; 1512 if (direct_ioctl(env, SIOCSIFDESCR, &ifr) != 0) 1513 err(EXIT_FAILURE, "SIOCSIFDESCR"); 1514 1515 free(descr); 1516 1517 return 0; 1518 } 1519 1520 static int 1521 unsetifdescr(prop_dictionary_t env, prop_dictionary_t oenv) 1522 { 1523 struct ifreq ifr; 1524 ifr.ifr_buf = NULL; 1525 ifr.ifr_buflen = 0; 1526 1527 if (direct_ioctl(env, SIOCSIFDESCR, &ifr) != 0) 1528 err(EXIT_FAILURE, "SIOCSIFDESCR"); 1529 1530 return 0; 1531 } 1532 1533 1534 static void 1535 usage(void) 1536 { 1537 const char *progname = getprogname(); 1538 usage_func_t *usage_f; 1539 prop_dictionary_t env; 1540 1541 if ((env = prop_dictionary_create()) == NULL) 1542 err(EXIT_FAILURE, "%s: prop_dictionary_create", __func__); 1543 1544 fprintf(stderr, "usage: %s [-h] %s[-v] [-z] %sinterface\n" 1545 "\t[ af [ address [ dest_addr ] ] [ netmask mask ] [ prefixlen n ]\n" 1546 "\t\t[ alias | -alias ] ]\n" 1547 "\t[ up ] [ down ] [ metric n ] [ mtu n ]\n", progname, 1548 flag_is_registered(gflags, 'm') ? "[-m] " : "", 1549 flag_is_registered(gflags, 'L') ? "[-L] " : ""); 1550 1551 SIMPLEQ_FOREACH(usage_f, &usage_funcs, f_next) 1552 (*usage_f->f_func)(env); 1553 1554 fprintf(stderr, 1555 "\t[ arp | -arp ]\n" 1556 "\t[ preference n ]\n" 1557 "\t[ link0 | -link0 ] [ link1 | -link1 ] [ link2 | -link2 ]\n" 1558 "\t[ linkstr str | -linkstr ]\n" 1559 "\t[ unnumbered | -unnumbered ]\n" 1560 "\t[ description str | descr str | -description | -descr ]\n" 1561 " %s -a [-b] [-d] [-h] %s[-u] [-v] [-z] [ af ]\n" 1562 " %s -l [-b] [-d] [-s] [-u]\n" 1563 " %s -C\n" 1564 " %s -w n\n" 1565 " %s interface create\n" 1566 " %s interface destroy\n", 1567 progname, flag_is_registered(gflags, 'm') ? "[-m] " : "", 1568 progname, progname, progname, progname, progname); 1569 1570 prop_object_release((prop_object_t)env); 1571 exit(EXIT_FAILURE); 1572 } 1573