toybox/toys/net/ifconfig.c
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   1/* ifconfig.c - Configure network interface.
   2 *
   3 * Copyright 2012 Ranjan Kumar <ranjankumar.bth@gmail.com>
   4 * Copyright 2012 Kyungwan Han <asura321@gamil.com>
   5 * Reviewed by Kyungsu Kim <kaspyx@gmail.com>
   6 *
   7 * Not in SUSv4.
   8 *
   9 * Obsolete fields included for historical purposes:
  10 * irq|io_addr|mem_start ADDR - micromanage obsolete hardware
  11 * outfill|keepalive INTEGER - SLIP analog dialup line quality monitoring
  12 * metric INTEGER - added to Linux 0.9.10 with comment "never used", still true
  13
  14USE_IFCONFIG(NEWTOY(ifconfig, "^?aS", TOYFLAG_SBIN))
  15
  16config IFCONFIG
  17  bool "ifconfig"
  18  default y
  19  help
  20    usage: ifconfig [-aS] [INTERFACE [ACTION...]]
  21
  22    Display or configure network interface.
  23
  24    With no arguments, display active interfaces. First argument is interface
  25    to operate on, one argument by itself displays that interface.
  26
  27    -a  All interfaces displayed, not just active ones
  28    -S  Short view, one line per interface
  29
  30    Standard ACTIONs to perform on an INTERFACE:
  31
  32    ADDR[/MASK]        - set IPv4 address (1.2.3.4/5) and activate interface
  33    add|del ADDR[/LEN] - add/remove IPv6 address (1111::8888/128)
  34    up|down            - activate or deactivate interface
  35
  36    Advanced ACTIONs (default values usually suffice):
  37
  38    default          - remove IPv4 address
  39    netmask ADDR     - set IPv4 netmask via 255.255.255.0 instead of /24
  40    txqueuelen LEN   - number of buffered packets before output blocks
  41    mtu LEN          - size of outgoing packets (Maximum Transmission Unit)
  42    broadcast ADDR   - Set broadcast address
  43    pointopoint ADDR - PPP and PPPOE use this instead of "route add default gw"
  44    hw TYPE ADDR     - set hardware (mac) address (type = ether|infiniband)
  45    rename NEWNAME   - rename interface
  46
  47    Flags you can set on an interface (or -remove by prefixing with -):
  48
  49    arp       - don't use Address Resolution Protocol to map LAN routes
  50    promisc   - don't discard packets that aren't to this LAN hardware address
  51    multicast - force interface into multicast mode if the driver doesn't
  52    allmulti  - promisc for multicast packets
  53*/
  54
  55#define FOR_ifconfig
  56#include "toys.h"
  57
  58#include <net/if_arp.h>
  59#include <net/ethernet.h>
  60
  61GLOBALS(
  62  int sockfd;
  63)
  64
  65// Convert hostname to binary address for AF_INET or AF_INET6
  66// return /prefix (or range max if none)
  67static int get_addrinfo(char *host, sa_family_t af, void *addr)
  68{
  69  struct addrinfo hints, *result, *rp = 0;
  70  int status, len;
  71  char *from, *slash;
  72
  73  memset(&hints, 0 , sizeof(struct addrinfo));
  74  hints.ai_family = af;
  75  hints.ai_socktype = SOCK_STREAM;
  76
  77  slash = strchr(host, '/');
  78  if (slash) *slash = 0;
  79
  80  status = getaddrinfo(host, NULL, &hints, &result);
  81  if (!status)
  82    for (rp = result; rp; rp = rp->ai_next)
  83      if (rp->ai_family == af) break;
  84  if (!rp) error_exit("bad address '%s' : %s", host, gai_strerror(status));
  85
  86  // ai_addr isn't struct in_addr or in6_addr, it's struct sockaddr. Of course.
  87  // You'd think ipv4 and ipv6 would have some basic compatibility, but no.
  88  from = ((char *)rp->ai_addr) + 4;
  89  if (af == AF_INET6) {
  90    len = 16;
  91    from += 4;  // skip "flowinfo" field ipv6 puts before address
  92  } else len = 4;
  93  memcpy(addr, from, len);
  94  freeaddrinfo(result);
  95
  96  len = -1;
  97  if (slash) len = atolx_range(slash+1, 0, (af == AF_INET) ? 32 : 128);
  98
  99  return len;
 100}
 101
 102static void display_ifconfig(char *name, int always, unsigned long long val[])
 103{
 104  struct ifreq ifre;
 105  struct sockaddr_in *si = (void *)&ifre.ifr_addr;
 106  struct {
 107    int type;
 108    char *title;
 109  } types[] = {
 110    {ARPHRD_LOOPBACK, "Local Loopback"}, {ARPHRD_ETHER, "Ethernet"},
 111    {ARPHRD_PPP, "Point-to-Point Protocol"}, {ARPHRD_INFINIBAND, "InfiniBand"},
 112    {ARPHRD_SIT, "IPv6-in-IPv4"}, {-1, "UNSPEC"}
 113  };
 114  int i;
 115  char *pp;
 116  FILE *fp;
 117  short flags;
 118
 119  xstrncpy(ifre.ifr_name, name, IFNAMSIZ);
 120  if (ioctl(TT.sockfd, SIOCGIFFLAGS, &ifre)<0) perror_exit_raw(name);
 121  flags = ifre.ifr_flags;
 122  if (!always && !(flags & IFF_UP)) return;
 123
 124  if (toys.optflags&FLAG_S) {
 125    unsigned uu = 0;
 126    int len;
 127
 128    ioctl(TT.sockfd, SIOCGIFADDR, &ifre);
 129    len = printf("%*s %s", -9, name, inet_ntoa(si->sin_addr));
 130    if (!ioctl(TT.sockfd, SIOCGIFNETMASK, &ifre))
 131      uu = htonl(*(unsigned *)&(si->sin_addr));
 132    for (i = 0; uu; i++) uu <<= 1;
 133    len += printf("/%d", i);
 134    printf("%*c", 29-len, ' ');
 135  }
 136
 137  // Query hardware type and hardware address.
 138  // Not xioctl because you don't have permission for this on Android.
 139  ioctl(TT.sockfd, SIOCGIFHWADDR, &ifre);
 140
 141  if (toys.optflags&FLAG_S)
 142    for (i=0; i<6; i++) printf(":%02x"+!i, ifre.ifr_hwaddr.sa_data[i]);
 143  else {
 144    for (i=0; i < ARRAY_LEN(types)-1; i++)
 145      if (ifre.ifr_hwaddr.sa_family == types[i].type) break;
 146    xprintf("%-9s Link encap:%s  ", name, types[i].title);
 147    if(ifre.ifr_hwaddr.sa_family == ARPHRD_ETHER) {
 148      xprintf("HWaddr ");
 149      for (i=0; i<6; i++) xprintf(":%02x"+!i, ifre.ifr_hwaddr.sa_data[i]);
 150    }
 151    sprintf(toybuf, "/sys/class/net/%.15s/device/driver", name);
 152    if (readlink0(toybuf, toybuf, sizeof(toybuf))>0)
 153      if ((pp = strrchr(toybuf, '/'))) xprintf("  Driver %s", pp+1);
 154    xputc('\n');
 155  }
 156
 157  // If an address is assigned record that.
 158
 159  ifre.ifr_addr.sa_family = AF_INET;
 160  memset(&ifre.ifr_addr, 0, sizeof(ifre.ifr_addr));
 161  ioctl(TT.sockfd, SIOCGIFADDR, &ifre);
 162  pp = (char *)&ifre.ifr_addr;
 163  for (i = 0; i<sizeof(ifre.ifr_addr); i++) if (pp[i]) break;
 164
 165  if (!(toys.optflags&FLAG_S) && i != sizeof(ifre.ifr_addr)) {
 166    struct sockaddr_in *si = (struct sockaddr_in *)&ifre.ifr_addr;
 167    struct {
 168      char *name;
 169      int flag, ioctl;
 170    } addr[] = {
 171      {"addr", 0, 0},
 172      {"P-t-P", IFF_POINTOPOINT, SIOCGIFDSTADDR},
 173      {"Bcast", IFF_BROADCAST, SIOCGIFBRDADDR},
 174      {"Mask", 0, SIOCGIFNETMASK}
 175    };
 176
 177    // TODO: can this be ipv6? Why are we checking here when ipv6 source later?
 178    xprintf("%10c%s", ' ', (si->sin_family == AF_INET) ? "inet" :
 179        (si->sin_family == AF_INET6) ? "inet6" : "unspec");
 180
 181    for (i=0; i<ARRAY_LEN(addr); i++) {
 182      if (!addr[i].flag || (flags & addr[i].flag)) {
 183        if (addr[i].ioctl && ioctl(TT.sockfd, addr[i].ioctl, &ifre))
 184          si->sin_family = 0;
 185        xprintf(" %s:%s ", addr[i].name,
 186          (si->sin_family == 0xFFFF || !si->sin_family)
 187            ? "[NOT SET]" : inet_ntoa(si->sin_addr));
 188      }
 189    }
 190
 191    xputc('\n');
 192  }
 193
 194  fp = fopen(pp = "/proc/net/if_inet6", "r");
 195  if (fp) {
 196    char iface_name[IFNAMSIZ];
 197    int plen, iscope;
 198
 199    while (fgets(toybuf, sizeof(toybuf), fp)) {
 200      int nitems;
 201      char ipv6_addr[40];
 202
 203      nitems = sscanf(toybuf, "%32s %*08x %02x %02x %*02x %15s\n",
 204                      ipv6_addr, &plen, &iscope, iface_name);
 205      if (nitems<0 && feof(fp)) break;
 206      if (nitems != 4) perror_exit("bad %s", pp);
 207
 208      if (!strcmp(name, iface_name)) {
 209        struct sockaddr_in6 s6;
 210        char *ptr = ipv6_addr+sizeof(ipv6_addr)-1;
 211
 212        // convert giant hex string into colon-spearated ipv6 address by
 213        // inserting ':' every 4 characters. 
 214        for (i = 32; i; i--)
 215          if ((*(ptr--) = ipv6_addr[i])) if (!(i&3)) *(ptr--) = ':';
 216
 217        // Convert to binary and back to get abbreviated :: version
 218        if (inet_pton(AF_INET6, ipv6_addr, (void *)&s6.sin6_addr) > 0) {
 219          if (inet_ntop(AF_INET6, &s6.sin6_addr, toybuf, sizeof(toybuf))) {
 220            char *scopes[] = {"Global","Host","Link","Site","Compat"},
 221                 *scope = "Unknown";
 222
 223            for (i=0; i<ARRAY_LEN(scopes); i++)
 224              if (iscope == (!!i)<<(i+3)) scope = scopes[i];
 225            if (toys.optflags&FLAG_S) xprintf(" %s/%d@%c", toybuf, plen,*scope);
 226            else xprintf("%10cinet6 addr: %s/%d Scope: %s\n",
 227                         ' ', toybuf, plen, scope);
 228          }
 229        }
 230      }
 231    }
 232    fclose(fp);
 233  }
 234
 235  if (toys.optflags&FLAG_S) {
 236    xputc('\n');
 237    return;
 238  }
 239
 240  xprintf("%10c", ' ');
 241
 242  if (flags) {
 243    unsigned short mask = 1;
 244    char **s, *str[] = {
 245      "UP", "BROADCAST", "DEBUG", "LOOPBACK", "POINTOPOINT", "NOTRAILERS",
 246      "RUNNING", "NOARP", "PROMISC", "ALLMULTI", "MASTER", "SLAVE", "MULTICAST",
 247      "PORTSEL", "AUTOMEDIA", "DYNAMIC", NULL
 248    };
 249
 250    for (s = str; *s; s++) {
 251      if (flags & mask) xprintf("%s ", *s);
 252      mask <<= 1;
 253    }
 254  } else xprintf("[NO FLAGS] ");
 255
 256  if (ioctl(TT.sockfd, SIOCGIFMTU, &ifre) < 0) ifre.ifr_mtu = 0;
 257  xprintf(" MTU:%d", ifre.ifr_mtu);
 258  if (ioctl(TT.sockfd, SIOCGIFMETRIC, &ifre) < 0) ifre.ifr_metric = 0;
 259  if (!ifre.ifr_metric) ifre.ifr_metric = 1;
 260  xprintf("  Metric:%d", ifre.ifr_metric);
 261
 262  // non-virtual interface
 263
 264  if (val) {
 265    char *label[] = {"RX bytes", "RX packets", "errors", "dropped", "overruns",
 266      "frame", 0, 0, "TX bytes", "TX packets", "errors", "dropped", "overruns",
 267      "collisions", "carrier", 0, "txqueuelen"};
 268    signed char order[] = {-1, 1, 2, 3, 4, 5, -1, 9, 10, 11, 12, 14, -1,
 269      13, 16, -1, 0, 8};
 270    int i;
 271
 272    // Query txqueuelen
 273    if (ioctl(TT.sockfd, SIOCGIFTXQLEN, &ifre) >= 0) val[16] = ifre.ifr_qlen;
 274    else val[16] = -1;
 275
 276    for (i = 0; i<sizeof(order); i++) {
 277      int j = order[i];
 278
 279      if (j < 0) xprintf("\n%10c", ' ');
 280      else xprintf("%s:%llu ", label[j], val[j]);
 281    }
 282  }
 283  xputc('\n');
 284
 285  if(!ioctl(TT.sockfd, SIOCGIFMAP, &ifre) && (ifre.ifr_map.irq ||
 286      ifre.ifr_map.mem_start || ifre.ifr_map.dma || ifre.ifr_map.base_addr))
 287  {
 288    xprintf("%10c", ' ');
 289    if(ifre.ifr_map.irq) xprintf("Interrupt:%d ", ifre.ifr_map.irq);
 290    if(ifre.ifr_map.base_addr >= 0x100) // IO_MAP_INDEX
 291      xprintf("Base address:0x%x ", ifre.ifr_map.base_addr);
 292    if(ifre.ifr_map.mem_start)
 293      xprintf("Memory:%lx-%lx ", ifre.ifr_map.mem_start, ifre.ifr_map.mem_end);
 294    if(ifre.ifr_map.dma) xprintf("DMA chan:%x ", ifre.ifr_map.dma);
 295    xputc('\n');
 296  }
 297  xputc('\n');
 298}
 299
 300static void show_iface(char *iface_name)
 301{
 302  char *name;
 303  struct string_list *ifaces = 0, *sl;
 304  int i, j;
 305  FILE *fp;
 306
 307  fp = xfopen("/proc/net/dev", "r");
 308
 309  for (i=0; fgets(toybuf, sizeof(toybuf), fp); i++) {
 310    char *buf = toybuf;
 311    unsigned long long val[17];
 312
 313    if (i<2) continue;
 314
 315    while (isspace(*buf)) buf++;
 316    name = strsep(&buf, ":");
 317    if(!buf) error_exit("bad name %s", name);
 318
 319    errno = 0;
 320    for (j=0; j<16 && !errno; j++) val[j] = strtoll(buf, &buf, 0);
 321    if (errno) perror_exit("bad %s at %s", name, buf);
 322
 323    if (iface_name) {
 324      if (!strcmp(iface_name, name)) {
 325        display_ifconfig(iface_name, 1, val);
 326
 327        return;
 328      }
 329    } else {
 330      sl = xmalloc(sizeof(*sl)+strlen(name)+1);
 331      strcpy(sl->str, name);
 332      sl->next = ifaces;
 333      ifaces = sl;
 334
 335      display_ifconfig(sl->str, toys.optflags & FLAG_a, val);
 336    }
 337  }
 338  fclose(fp);
 339
 340  if (iface_name) display_ifconfig(iface_name, 1, 0);
 341  else {
 342    struct ifconf ifcon;
 343    struct ifreq *ifre;
 344    int num;
 345
 346    // Loop until buffer's big enough
 347    ifcon.ifc_buf = NULL;
 348    for (num = 30;;num += 10) {
 349      ifcon.ifc_len = sizeof(struct ifreq)*num;
 350      ifcon.ifc_buf = xrealloc(ifcon.ifc_buf, ifcon.ifc_len);
 351      xioctl(TT.sockfd, SIOCGIFCONF, &ifcon);
 352      if (ifcon.ifc_len != sizeof(struct ifreq)*num) break;
 353    }
 354
 355    ifre = ifcon.ifc_req;
 356    for(num = 0; num < ifcon.ifc_len && ifre; num += sizeof(struct ifreq), ifre++)
 357    {
 358      // Skip duplicates
 359      for(sl = ifaces; sl; sl = sl->next)
 360        if(!strcmp(sl->str, ifre->ifr_name)) break;
 361
 362      if(!sl) display_ifconfig(ifre->ifr_name, toys.optflags & FLAG_a, 0);
 363    }
 364
 365    free(ifcon.ifc_buf);
 366  }
 367
 368  llist_traverse(ifaces, free);
 369}
 370
 371// Encode offset and size of field into an int, and make result negative
 372#define IFREQ_OFFSZ(x) -(int)((offsetof(struct ifreq, x)<<16) + sizeof(ifre.x))
 373
 374void ifconfig_main(void)
 375{
 376  char **argv = toys.optargs;
 377  struct ifreq ifre;
 378  int i;
 379
 380  TT.sockfd = xsocket(AF_INET, SOCK_DGRAM, 0);
 381  if(toys.optc < 2) {
 382    show_iface(*argv);
 383    return;
 384  }
 385
 386  // Open interface
 387  memset(&ifre, 0, sizeof(struct ifreq));
 388  xstrncpy(ifre.ifr_name, *argv, IFNAMSIZ);
 389
 390  // Perform operations on interface
 391  while(*++argv) {
 392    // Table of known operations
 393    struct argh {
 394      char *name;
 395      int on, off; // set, clear
 396    } try[] = {
 397      {0, IFF_UP|IFF_RUNNING, SIOCSIFADDR},
 398      {"up", IFF_UP|IFF_RUNNING, 0},
 399      {"down", 0, IFF_UP},
 400      {"arp", 0, IFF_NOARP},
 401      {"promisc", IFF_PROMISC, 0},
 402      {"allmulti", IFF_ALLMULTI, 0},
 403      {"multicast", IFF_MULTICAST, 0},
 404      {"pointopoint", IFF_POINTOPOINT, SIOCSIFDSTADDR},
 405      {"broadcast", IFF_BROADCAST, SIOCSIFBRDADDR},
 406      {"netmask", 0, SIOCSIFNETMASK},
 407      {"dstaddr", 0, SIOCSIFDSTADDR},
 408      {"mtu", IFREQ_OFFSZ(ifr_mtu), SIOCSIFMTU},
 409      {"rename", IFREQ_OFFSZ(ifr_newname), SIOCSIFNAME},
 410      {"keepalive", IFREQ_OFFSZ(ifr_data), SIOCDEVPRIVATE}, // SIOCSKEEPALIVE
 411      {"outfill", IFREQ_OFFSZ(ifr_data), SIOCDEVPRIVATE+2}, // SIOCSOUTFILL
 412      {"metric", IFREQ_OFFSZ(ifr_metric), SIOCSIFMETRIC},
 413      {"txqueuelen", IFREQ_OFFSZ(ifr_qlen), SIOCSIFTXQLEN},
 414      {"mem_start", IFREQ_OFFSZ(ifr_map.mem_start), SIOCSIFMAP},
 415      {"io_addr", IFREQ_OFFSZ(ifr_map.base_addr), SIOCSIFMAP},
 416      {"irq", IFREQ_OFFSZ(ifr_map.irq), SIOCSIFMAP},
 417      {"inet", 0, 0},
 418      {"inet6", 0, 0}
 419    };
 420    char *s = *argv;
 421    int rev = (*s == '-');
 422
 423    s += rev;
 424
 425    // "set hardware address" is oddball enough to special case
 426    if (!strcmp(*argv, "hw")) {
 427      char *hw_addr, *ptr, *p;
 428      struct sockaddr *sock = &ifre.ifr_hwaddr;
 429      int count = 6;
 430
 431      ptr = p = (char *)sock->sa_data;
 432      memset(sock, 0, sizeof(struct sockaddr));
 433      if (argv[1]) {
 434        if (!strcmp("ether", *++argv)) sock->sa_family = ARPHRD_ETHER;
 435        else if (!strcmp("infiniband", *argv)) {
 436          sock->sa_family = ARPHRD_INFINIBAND;
 437          count = 20;
 438          p = ptr = toybuf;
 439        }
 440      }
 441      if (!sock->sa_family || !argv[1]) help_exit("bad hw '%s'", *argv);
 442      hw_addr = *++argv;
 443
 444      // Parse and verify address.
 445      while (*hw_addr && (p-ptr) < count) {
 446        int val, len = 0;
 447
 448        if (*hw_addr == ':') hw_addr++;
 449        sscanf(hw_addr, "%2x%n", &val, &len);
 450        if (!len || len > 2) break; // 1 nibble can be set e.g. C2:79:38:95:D:A 
 451        hw_addr += len;
 452        *p++ = val;
 453      }
 454
 455      if ((p-ptr) != count || *hw_addr)
 456        error_exit("bad hw-addr '%s'", *argv);
 457
 458      // the linux kernel's "struct sockaddr" (include/linux/socket.h in the
 459      // kernel source) only has 14 bytes of sa_data, and an infiniband address
 460      // is 20. So if we go through the ioctl, the kernel will truncate
 461      // infiniband addresses, meaning we have to go through sysfs instead.
 462      if (sock->sa_family == ARPHRD_INFINIBAND && !strchr(ifre.ifr_name, '/')) {
 463        int fd;
 464
 465        sprintf(toybuf, "/sys/class/net/%s/address", ifre.ifr_name);
 466        fd = xopen(toybuf, O_RDWR);
 467        xwrite(fd, *argv, strlen(*argv));
 468        close(fd);
 469      } else xioctl(TT.sockfd, SIOCSIFHWADDR, &ifre);
 470      continue;
 471
 472    // Add/remove ipv6 address to interface
 473
 474    } else if (!strcmp(*argv, "add") || !strcmp(*argv, "del")) {
 475      struct ifreq_inet6 {
 476        struct in6_addr addr;
 477        unsigned prefix;
 478        int index;
 479      } ifre6;
 480      int plen, fd6 = xsocket(AF_INET6, SOCK_DGRAM, 0);
 481
 482      if (!argv[1]) help_exit("%s", *argv);
 483
 484      plen = get_addrinfo(argv[1], AF_INET6, &ifre6.addr);
 485      if (plen < 0) plen = 128;
 486      xioctl(fd6, SIOCGIFINDEX, &ifre);
 487      ifre6.index = ifre.ifr_ifindex;
 488      ifre6.prefix = plen;
 489      xioctl(fd6, **(argv++)=='a' ? SIOCSIFADDR : SIOCDIFADDR, &ifre6);
 490
 491      close(fd6);
 492      continue;
 493    // Iterate through table to find/perform operation
 494    } else for (i = 0; i<ARRAY_LEN(try); i++) {
 495      struct argh *t = try+i;
 496      int on = t->on, off = t->off;
 497
 498      // First entry in list assigns address to interface (no command name)
 499      if (!t->name) {
 500        if (isdigit(**argv) || !strcmp(*argv, "default")) argv--;
 501        else continue;
 502      } else if (strcmp(t->name, s)) continue;
 503
 504      // Is this an SIOCSI entry?
 505      if ((off|0xff) == 0x89ff) {
 506        if (!rev) {
 507          if (!*++argv) error_exit("%s needs argument", t->name);
 508
 509          // Assign value to ifre field and call ioctl? (via IFREQ_OFFSZ.)
 510          if (on < 0) {
 511            void *dest = ((on = -on)>>16)+(char *)&ifre;
 512
 513            // If we're about to set mem_start/io_addr/irq, get other 2 first
 514            if (off == SIOCSIFMAP) xioctl(TT.sockfd, SIOCGIFMAP, &ifre);
 515            if (off == SIOCSIFNAME) xstrncpy(dest, *argv, on&0xffff);
 516            else poke(dest, strtoul(*argv, 0, 0), on&15);
 517            xioctl(TT.sockfd, off, &ifre);
 518            break;
 519          } else {
 520            struct sockaddr_in *si = (struct sockaddr_in *)&ifre.ifr_addr;
 521            int mask = -1;
 522
 523            si->sin_family = AF_INET;
 524
 525            if (!strcmp(*argv, "default")) si->sin_addr.s_addr = INADDR_ANY;
 526            else mask = get_addrinfo(*argv, AF_INET, &si->sin_addr);
 527            xioctl(TT.sockfd, off, &ifre);
 528
 529            // Handle /netmask
 530            if (mask >= 0) {
 531              // sin_addr probably isn't unaligned, but just in case...
 532              mask = htonl((~0)<<(32-mask));
 533              memcpy(&si->sin_addr, &mask, 4);
 534              xioctl(TT.sockfd, SIOCSIFNETMASK, &ifre);
 535            }
 536          }
 537        }
 538        off = 0;
 539      }
 540
 541      // Set flags
 542      if (on || off) {
 543        xioctl(TT.sockfd, SIOCGIFFLAGS, &ifre);
 544        ifre.ifr_flags &= ~(rev ? on : off);
 545        ifre.ifr_flags |= (rev ? off : on);
 546        xioctl(TT.sockfd, SIOCSIFFLAGS, &ifre);
 547      }
 548
 549      break;
 550    }
 551    if (i == ARRAY_LEN(try)) help_exit("bad argument '%s'", *argv);
 552  }
 553  close(TT.sockfd);
 554}
 555