toybox/toys/pending/ip.c
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   1/* ip.c - Show / manipulate routing, devices, policy routing and tunnels.
   2 *
   3 * Copyright 2014 Sameer Prakash Pradhan <sameer.p.pradhan@gmail.com>
   4 * Copyright 2014 Ranjan Kumar <ranjankumar.bth@gmail.com>
   5 * Copyright 2014 Rajni Kant <rajnikant12345@gmail.com>
   6 * Copyright 2014 Bilal Qureshi <bilal.jmi@gmail.com>
   7 *
   8 * No Standard.
   9 *
  10USE_IP(NEWTOY(ip, NULL, TOYFLAG_SBIN))
  11USE_IP(OLDTOY(ipaddr, ip, TOYFLAG_SBIN))
  12USE_IP(OLDTOY(iplink, ip, TOYFLAG_SBIN))
  13USE_IP(OLDTOY(iproute, ip, TOYFLAG_SBIN))
  14USE_IP(OLDTOY(iprule, ip, TOYFLAG_SBIN))
  15USE_IP(OLDTOY(iptunnel, ip, TOYFLAG_SBIN))
  16
  17config IP
  18  bool "ip"
  19  default n
  20  help
  21    usage: ip [ OPTIONS ] OBJECT { COMMAND }
  22
  23    Show / manipulate routing, devices, policy routing and tunnels.
  24
  25    where OBJECT := {address | link | route | rule | tunnel}
  26    OPTIONS := { -f[amily] { inet | inet6 | link } | -o[neline] }
  27*/
  28#define FOR_ip
  29#include "toys.h"
  30#include <linux/netlink.h>
  31#include <linux/rtnetlink.h>
  32#include <linux/if_ether.h>
  33#include <linux/if_addr.h>
  34#include <net/if_arp.h>
  35#include <ifaddrs.h>
  36#include <fnmatch.h>
  37#include <linux/ip.h> // Centos 7.2 EOL June 30 2024
  38#include <linux/if_tunnel.h>
  39
  40#ifndef IP_DF
  41#define IP_DF 0x4000  /* don't fragment flag. */
  42#endif
  43
  44GLOBALS(
  45  char stats, singleline, flush, *filter_dev, gbuf[8192];
  46  int sockfd, connected, from_ok, route_cmd;
  47  int8_t addressfamily, is_addr;
  48)
  49
  50struct arglist {
  51  char *name;
  52  int idx;
  53};
  54
  55static struct 
  56{
  57  int ifindex, scope, scopemask, up, to;
  58  char *label, *addr;
  59} addrinfo;
  60
  61struct linkdata  {
  62  struct linkdata *next, *prev;
  63  int flags, iface_idx, mtu, txqueuelen, parent,iface_type;
  64  char qdiscpline[IFNAMSIZ+1], state[IFNAMSIZ+1], type[IFNAMSIZ+1],
  65       iface[IFNAMSIZ+1], laddr[64], bcast[64];
  66  struct  rtnl_link_stats rt_stat;
  67}*linfo;
  68
  69typedef int (*cmdobj)(char **argv);
  70
  71#define MESG_LEN 8192
  72
  73// For "/etc/iproute2/RPDB_tables"
  74enum {
  75  RPDB_rtdsfield = 1,
  76  RPDB_rtprotos = 2,
  77  RPDB_rtrealms = 3,
  78  RPDB_rtscopes = 4,
  79  RPDB_rttables = 5
  80};
  81
  82#define RPDB_ENTRIES 256
  83static int8_t rttable_init;
  84static int8_t rtprotos_init;
  85static int8_t rtdsfield_init;
  86static int8_t rtscope_init;
  87static int8_t rtrealms_init;
  88
  89static struct arglist *rt_dsfield[RPDB_ENTRIES];
  90static struct arglist *rt_protos[RPDB_ENTRIES];
  91static struct arglist *rt_tables[RPDB_ENTRIES];
  92static struct arglist *rt_realms[RPDB_ENTRIES];
  93static struct arglist *rt_scope[RPDB_ENTRIES];
  94
  95static struct arglist rtmtypes[] = { {"none", RTN_UNSPEC},
  96  {"unicast", RTN_UNICAST}, {"local", RTN_LOCAL},
  97  {"broadcast", RTN_BROADCAST}, {"anycast", RTN_ANYCAST},
  98  {"multicast", RTN_MULTICAST}, {"blackhole", RTN_BLACKHOLE},
  99  {"unreachable", RTN_UNREACHABLE}, {"prohibit", RTN_PROHIBIT},
 100  {"throw", RTN_THROW}, {"nat", RTN_NAT},
 101  {"xresolve", RTN_XRESOLVE}, {NULL, -1}
 102};
 103
 104static int filter_nlmesg(int (*fun)(struct nlmsghdr *mhdr, char **), char **);
 105static int  ipaddr_print(struct linkdata *, int flg);
 106
 107// extended route attribute metrics.
 108static const char *mx_names[RTAX_MAX + 1] = {
 109    [RTAX_MTU] = "mtu",
 110    [RTAX_WINDOW] = "window",
 111    [RTAX_RTT] = "rtt",
 112    [RTAX_RTTVAR] = "rttvar",
 113    [RTAX_SSTHRESH] = "ssthresh",
 114    [RTAX_CWND] = "cwnd",
 115    [RTAX_ADVMSS] = "advmss",
 116    [RTAX_REORDERING] = "reordering",
 117    [RTAX_HOPLIMIT] = "hoplimit",
 118    [RTAX_INITCWND] = "initcwnd",
 119    [RTAX_FEATURES] = "features",
 120    [RTAX_RTO_MIN] = "rto_min",
 121    [RTAX_INITRWND] = "initrwnd",
 122    [RTAX_QUICKACK] = "quickack",
 123    [RTAX_CC_ALGO] = "congctl"};
 124
 125// ===========================================================================
 126// Common Code for IP Options (like: addr, link, route etc.)
 127// ===========================================================================
 128static int substring_to_idx(char *str, struct arglist *list)
 129{
 130  struct arglist *alist;
 131  int len;
 132
 133  if (!str) return -1;
 134  len = strlen(str);
 135
 136  for (alist = list; alist->name; alist++)
 137    if (!memcmp(str, alist->name, len)) return alist->idx;
 138  return -1;
 139}
 140
 141static int string_to_idx(char *str, struct arglist *list)
 142{
 143  struct arglist *alist;
 144
 145  if (!str) return -1;
 146  for (alist = list; alist->name; alist++)
 147    if (!strcmp(str, alist->name)) return alist->idx;
 148  return -1;
 149}
 150
 151static char *idx_to_string(int idx, struct arglist *list)
 152{
 153  struct arglist *alist;
 154
 155  if (idx < 0) return NULL;
 156  for (alist = list; alist->name; alist++)
 157    if (idx == alist->idx) return alist->name;
 158  return NULL;
 159}
 160
 161static void send_nlmesg(int type, int flags, int family,
 162    void *buf, int blen)
 163{
 164  struct {
 165    struct nlmsghdr nlh;
 166    struct rtgenmsg g;
 167  } req;
 168
 169  if (!buf) {
 170    memset(&req, 0, sizeof(req));
 171    req.nlh.nlmsg_len = sizeof(req);
 172    req.nlh.nlmsg_type = type;
 173    req.nlh.nlmsg_flags = flags;
 174    req.g.rtgen_family = family;
 175    buf = &req;
 176    blen = sizeof(req);
 177  }
 178  if (send(TT.sockfd , (void*)buf, blen, 0) < 0)
 179    perror_exit("Unable to send data on socket.");
 180}
 181
 182// Parse /etc/iproute2/RPDB_tables and prepare list.
 183static void parseRPDB(char *fname, struct arglist **list, int32_t size)
 184{
 185  FILE *fp = fopen(fname, "r");
 186  char *line = 0;
 187  size_t l = 0;
 188  ssize_t len;
 189
 190  if (!fp) return;
 191  while ((len = getline(&line, &l, fp)) > 0) {
 192    char *ptr = line;
 193    int32_t idx;
 194
 195    while (*ptr == ' ' || *ptr == '\t') ptr++;
 196    if (*ptr == 0 || *ptr == '#' || *ptr == '\n') continue;
 197    if ((sscanf(ptr, "0x%x %s\n", &idx, toybuf) != 2) &&
 198        (sscanf(ptr, "0x%x %s #", &idx, toybuf) != 2) &&
 199        (sscanf(ptr, "%d %s\n", &idx, toybuf) != 2) &&
 200        (sscanf(ptr, "%d %s #", &idx, toybuf) != 2)) {
 201      error_msg("corrupt %s", fname);
 202      break;
 203    }
 204    if (idx >= 0 && idx < size) {
 205      int index = idx & (size-1);
 206      if (list[index]) free(list[index]->name);
 207      else list[index] = xzalloc(sizeof(struct arglist));
 208      list[index]->idx = idx;
 209      list[index]->name = xstrdup(toybuf);
 210    }
 211  }
 212  free(line);
 213  fclose(fp);
 214}
 215
 216static void free_alist(struct arglist **list)
 217{
 218  int i;
 219  for (i = 0;i<RPDB_ENTRIES;i++) {
 220    if (list[i]) {
 221      free(list[i]->name);
 222      free(list[i]);
 223    }
 224  }
 225}
 226
 227static void init_arglist(struct arglist **list,int value, char* name)
 228{
 229  if (!list[value]) list[value] =  xzalloc(sizeof(struct arglist));
 230  list[value]->idx = value;
 231  list[value]->name = xstrdup(name);
 232}
 233
 234static struct arglist **getlist(u_int8_t whichDB)
 235{
 236  struct arglist **alist;
 237
 238  switch (whichDB) {
 239    case RPDB_rtdsfield:
 240      alist = rt_dsfield;
 241      if (!rtdsfield_init) {
 242        rtdsfield_init = 1;
 243        parseRPDB("/etc/iproute2/rt_dsfield", alist, ARRAY_LEN(rt_dsfield));
 244      }
 245      break;
 246    case RPDB_rtprotos:
 247      alist = rt_protos;
 248      if (!rttable_init) {
 249        rtprotos_init = 1;
 250        init_arglist(rt_protos,0,"none");
 251        init_arglist(rt_protos,1,"redirect");
 252        init_arglist(rt_protos,2,"kernel");
 253        init_arglist(rt_protos,3,"boot");
 254        init_arglist(rt_protos,4,"static");
 255        init_arglist(rt_protos,8,"gated");
 256        init_arglist(rt_protos,9,"ra");
 257        init_arglist(rt_protos,10,"mrt");
 258        init_arglist(rt_protos,11,"zebra");
 259        init_arglist(rt_protos,12,"bird");
 260        parseRPDB("/etc/iproute2/rt_protos", alist, ARRAY_LEN(rt_protos));
 261      }
 262      break;
 263    case RPDB_rtrealms:
 264      alist = rt_realms;
 265      if (!rtrealms_init) {
 266        rtrealms_init = 1;
 267        init_arglist(rt_realms,0,"unspec");
 268        parseRPDB("/etc/iproute2/rt_realms", alist, ARRAY_LEN(rt_realms));
 269      }
 270      break;
 271    case RPDB_rtscopes:
 272      alist = rt_scope;
 273      if (!rtscope_init) {
 274        rtscope_init = 1;
 275        init_arglist(rt_scope,0,"global");
 276        init_arglist(rt_scope,200,"site");
 277        init_arglist(rt_scope,253,"link");
 278        init_arglist(rt_scope,254,"host");
 279        init_arglist(rt_scope,255,"nowhere");
 280        parseRPDB("/etc/iproute2/rt_scopes", alist, ARRAY_LEN(rt_scope));
 281      }
 282      break;
 283    case RPDB_rttables:
 284      alist = rt_tables;
 285      if (!rttable_init) {
 286        rttable_init = 1;
 287        init_arglist(rt_tables,RT_TABLE_DEFAULT,"default");
 288        init_arglist(rt_tables,RT_TABLE_MAIN,"main");
 289        init_arglist(rt_tables,RT_TABLE_LOCAL,"local");
 290        parseRPDB("/etc/iproute2/rt_tables", alist, ARRAY_LEN(rt_tables));
 291      }
 292      break;
 293    default: 
 294      error_exit("wrong database");
 295      break; // Unreachable code.
 296  }
 297  return alist;
 298}
 299
 300/*
 301 * Parse RPBD tables (if not parsed already).
 302 * return RPDB table name as per idx.
 303 */
 304static char *namefromRPDB(int idx, u_int8_t whichDB)
 305{
 306  struct arglist **alist;
 307
 308  if (idx < 0 || idx >= RPDB_ENTRIES) {
 309    snprintf(toybuf, RPDB_ENTRIES, "%u", idx);
 310    return toybuf;
 311  }
 312
 313  alist = getlist(whichDB);
 314
 315  if (alist[idx] && alist[idx]->name) return alist[idx]->name;
 316
 317  if (whichDB == RPDB_rtdsfield) snprintf(toybuf, RPDB_ENTRIES, "0x%02x", idx);
 318  else snprintf(toybuf, RPDB_ENTRIES, "%u", idx);
 319
 320  return toybuf;
 321}
 322
 323static int idxfromRPDB(char *name, u_int8_t whichDB)
 324{
 325  struct arglist **alist;
 326  long i = 0;
 327  char *ptr = NULL;
 328
 329  for (alist = getlist(whichDB); i < RPDB_ENTRIES; i++) {
 330    if (!alist[i] || !alist[i]->name) continue;
 331    if (!strcmp(alist[i]->name, name)) return i;
 332  }
 333  i = strtol(name, &ptr, 0);
 334  if (errno || (ptr && *ptr) || i < 0 || i > 255)
 335    return -1;
 336  return i;
 337}
 338
 339static char *rtmtype_idx2str(u_int8_t idx)
 340{
 341  char *name = idx_to_string(idx, rtmtypes);
 342
 343  if (!name) snprintf(toybuf, RPDB_ENTRIES, "%u", idx);
 344  else snprintf(toybuf, sizeof(toybuf), "%s", name);
 345  return toybuf;
 346}
 347
 348static int rtmtype_str2idx(char *name)
 349{
 350  int idx = string_to_idx(name, rtmtypes);
 351
 352  if (idx < 0) return atolx_range(name, 0, 255);
 353  return idx;
 354}
 355
 356/*
 357 * Used to get the prefix value in binary form.
 358 * For IPv4: non-standard parsing used; as 10.10 will be treated as 10.10.0.0
 359 * unlike inet_aton which is 10.0.0.10
 360 */
 361static int get_prefix(uint32_t *addr, uint8_t *af, char *name, int family)
 362{
 363  if (family == AF_PACKET) error_exit("'%s' may be inet prefix", name);
 364  if (!memcmp(name, "default", strlen(name))
 365      || !memcmp(name, "all", strlen(name))
 366      || !memcmp(name, "any", strlen(name))) {
 367    *af = family;
 368    return 0;
 369  }
 370  if (strchr(name, ':')) {
 371    *af = AF_INET6;
 372    if (family != AF_UNSPEC && family != AF_INET6) return 1;
 373    if (inet_pton(AF_INET6, name, (void *)addr) != 1) 
 374      return 1;
 375  } else { // for IPv4.
 376    char *ptr = name;
 377    uint8_t count = 0;
 378
 379    *af = AF_INET;
 380    if (family != AF_UNSPEC && family != AF_INET) return 1;
 381    while (*ptr) {
 382      int val, len = 0;
 383
 384      if (*ptr == '.') ptr++;
 385      sscanf(ptr, "%d%n", &val, &len);
 386      if (!len || len > 3 || val < 0 || val > 255 || count > 3) return 1;
 387      ptr += len;
 388      ((uint8_t*)addr)[count++] = val;
 389    }
 390  }
 391  return 0;
 392}
 393
 394/*
 395 * Used to calculate netmask, which can be in the form of
 396 * either 255.255.255.0 or 24 or default or any or all strings.
 397 */
 398static int get_nmask_prefix(uint32_t *netmask, uint8_t af,
 399    char *name, uint8_t family)
 400{
 401  char *ptr;
 402  uint32_t naddr[4] = {0,};
 403  uint64_t plen;
 404  uint8_t naf = AF_UNSPEC;
 405
 406  *netmask = (af == AF_INET6) ? 128 : 32; // set default netmask
 407  plen = strtoul(name, &ptr, 0);
 408
 409  if (!ptr || ptr == name || *ptr || !plen || plen > *netmask) {
 410    if (get_prefix(naddr, &naf, name, family)) return -1;
 411    if (naf == AF_INET) {
 412      uint32_t mask = htonl(*naddr), host = ~mask;
 413      if (host & (host + 1)) return -1;
 414      for (plen = 0; mask; mask <<= 1) ++plen;
 415      if (plen > 32) return -1;
 416    }
 417  }
 418  *netmask = plen;
 419  return 0;
 420}
 421
 422/*
 423 * Parse prefix, which will be in form of
 424 * either default or default/default or default/24 or default/255.255.255.0
 425 * or 10.20.30.40 or 10.20.30.40/default or 10.20.30.40/24
 426 * or 10.20.30.40/255.255.255.0
 427 */
 428static void parse_prefix(uint32_t *addr, uint32_t *netmask, uint8_t *len,
 429    char *name, int family)
 430{
 431  uint8_t af = AF_UNSPEC;
 432  char *slash = strchr(name, '/');
 433
 434  if (slash) *slash = 0;
 435  if (get_prefix(addr, &af, name, family)) error_exit("Invalid prefix");
 436
 437  if (slash) { // grab netmask.
 438    if (get_nmask_prefix(netmask, af, slash+1, family))
 439      error_exit("Invalid prefix");
 440    *slash ='/';
 441  }
 442  else if (af == AF_INET && *addr) *netmask = 32;
 443  else if (af == AF_INET6 && (*addr || *(addr+3))) *netmask = 128;
 444
 445  if (!*addr && !slash && !af) *len = 0;
 446  else *len = (af == AF_INET6) ? 16 : 4;
 447}
 448
 449/*
 450 * Add a route attribute to a buffer; this is primarily used for extended
 451 * attributes which get collected in a separate buffer from the normal route
 452 * attributes and later get added to the main rtm message.
 453 */
 454static void add_varlen_rtattr_to_buffer(struct rtattr *rta, int maxlen,
 455                                        int type, void *data, int alen) {
 456  struct rtattr *subrta;
 457  int len = RTA_LENGTH(alen);
 458  if (RTA_ALIGN(rta->rta_len) + RTA_ALIGN(len) > maxlen) {
 459      error_exit("RTA exceeds max length %d", maxlen);
 460  }
 461  subrta = (struct rtattr*)(((char*)rta) + RTA_ALIGN(rta->rta_len));
 462  subrta->rta_type = type;
 463  subrta->rta_len = len;
 464  if (alen) {
 465    memcpy(RTA_DATA(subrta), data, alen);
 466  }
 467  rta->rta_len = NLMSG_ALIGN(rta->rta_len) + RTA_ALIGN(len);
 468}
 469
 470static void add_uint32_rtattr_to_buffer(struct rtattr *rta, int maxlen,
 471                                        int type, uint32_t attr) {
 472  add_varlen_rtattr_to_buffer(rta, maxlen, type, (char*)&attr, sizeof(attr));
 473}
 474
 475/*
 476 * Add a route attribute to a RTM message.
 477 */
 478static void add_string_to_rtattr(struct nlmsghdr *n, int maxlen,
 479    int type, void *data, int alen)
 480{
 481  int len = RTA_LENGTH(alen);
 482  struct rtattr *rta;
 483
 484  if ((int)(NLMSG_ALIGN(n->nlmsg_len) + len) > maxlen) return;
 485  rta = (struct rtattr*)(((char*)n) + NLMSG_ALIGN(n->nlmsg_len));
 486  rta->rta_type = type;
 487  rta->rta_len = len;
 488  memcpy(RTA_DATA(rta), data, alen);
 489  n->nlmsg_len = NLMSG_ALIGN(n->nlmsg_len) + len;
 490}
 491
 492
 493
 494// ===========================================================================
 495// Code for ip link.
 496// ===========================================================================
 497#ifndef NLMSG_TAIL
 498#define NLMSG_TAIL(nmsg) \
 499  ((struct rtattr *) (((void *) (nmsg)) + NLMSG_ALIGN((nmsg)->nlmsg_len)))
 500#endif
 501
 502static uint32_t get_ifaceindex(char *name, int ext)
 503{
 504  struct if_nameindex *if_ni, *i;
 505  int index = -1;
 506
 507  if_ni = if_nameindex();
 508  if (!if_ni) perror_exit("if_nameindex");
 509
 510  for (i = if_ni; i->if_index && i->if_name; i++)
 511    if (!strcmp(name, i->if_name)) { 
 512      index = i->if_index; 
 513      break;
 514    }
 515  if_freenameindex(if_ni);
 516  if (index == -1 && ext) perror_exit("can't find device '%s'", name);
 517  return index;
 518}
 519
 520static void fill_hwaddr(char *arg, int len, unsigned char *address)
 521{
 522  int count = 0, val, length;
 523
 524  while (count < len) {
 525    val = length = 0;
 526    if (!arg) error_exit("bad hw-addr '%s'", "");
 527    if (*arg == ':') arg++, count++;
 528    sscanf(arg, "%2x%n", &val, &length);
 529    if (!length || length > 2)
 530      error_exit("bad hw-addr '%s'", arg);
 531    arg += length;
 532    count += length;
 533    *address++ = val;
 534  }
 535}
 536
 537// Multimach = 1, single match = 0
 538static char *get_flag_string(struct arglist *aflags, int flags, int ismulti)
 539{
 540  struct arglist *p = aflags;
 541  char *out = NULL, *tmp = NULL;
 542
 543  for (; p->name; p++) {
 544    int test = (ismulti ? p->idx & flags : 0) || p->idx == flags;
 545    if (test) { // flags can be zero
 546      tmp = out ? xmprintf("%s,%s", out, p->name) : xmprintf("%s", p->name);
 547      if (out) free(out);
 548      out = tmp;
 549    }
 550  }
 551  return out;
 552}
 553
 554static void vlan_parse_opt(char **argv, struct nlmsghdr *n, unsigned int size)
 555{
 556  struct arglist vlan_optlist[] = {{"id", 0}, {"protocol", 1}, 
 557    {"reorder_hdr", 2}, {"gvrp", 3}, {NULL,-1}};
 558  struct arglist vlan_protolist[] = {{"802.1q", 0}, {"802.1ad", 1}, {NULL,-1}};
 559  struct arglist on_off[] = { {"on", 0}, {"off", 1}, {NULL,-1}};
 560  int idx;
 561  struct ifla_vlan_flags flags;
 562
 563  memset(&flags, 0, sizeof(flags));
 564  for (; *argv; argv++) {
 565    int param, proto;
 566
 567    if ((idx = substring_to_idx(*argv++, vlan_optlist)) == -1) help_exit(0);
 568    switch (idx) {
 569      case 0: // ARG_id
 570        if (!*argv) help_exit(0);
 571        param = atolx(*argv);
 572        add_string_to_rtattr(n, size, IFLA_VLAN_ID, &param, sizeof(param));
 573        break;
 574      case 1: // ARG_protocol
 575        if (!*argv) error_exit("Invalid vlan id.");
 576        if ((idx = substring_to_idx(*argv, vlan_protolist)) == -1) help_exit(0);
 577        if (!idx) proto = ETH_P_8021Q; // PROTO_8021Q - 0
 578        else if (idx == 1) proto = 0x88A8; // ETH Protocol - 8021AD
 579        // IFLA VLAN PROTOCOL - 5
 580        add_string_to_rtattr(n, size, 5, &proto, sizeof(proto));
 581        break;
 582      case 2: // ARG_reorder_hdr
 583      case 3: // ARG_gvrp
 584        if ((param = substring_to_idx(*argv, on_off)) == -1) help_exit(0);
 585
 586        flags.mask |= (idx -1); // VLAN FLAG REORDER Header              
 587        flags.flags &= ~(idx -1); // VLAN FLAG REORDER Header            
 588        if (!param) flags.flags |= (idx -1); // VLAN FLAG REORDER Header
 589        break;
 590    }
 591  }
 592  if (flags.mask) 
 593    add_string_to_rtattr(n, size, IFLA_VLAN_FLAGS, &flags, sizeof(flags));
 594}
 595
 596static int linkupdate(char **argv)
 597{
 598  struct {
 599    struct nlmsghdr mhdr;
 600    struct ifinfomsg info;
 601    char buf[1024];
 602  } request;  
 603  char *name, *dev, *type, *link, *addr;
 604  struct rtattr *attr = NULL;
 605  int len = 0, add = (*argv[-1] == 'a') ? 1 : 0;
 606
 607  name = dev = type = link = addr = NULL;
 608  for (; *argv; argv++) {
 609    struct arglist objectlist[] = { {"type", 0}, {"name", 1}, {"link", 2}, 
 610      {"address", 3}, {NULL,-1}};
 611    uint8_t idx = substring_to_idx(*argv, objectlist);
 612
 613    if (!idx) {
 614      type = *++argv;
 615      break;
 616    }
 617    else if (idx == 1) dev = name = *++argv;
 618    else if (idx == 2) link = *++argv;
 619    else if (idx == 3) addr = *++argv;
 620    else if (!dev) name = dev = *argv;
 621  }
 622
 623  if (!name && !add)
 624    error_exit("Not enough information: \"dev\" argument is required.\n");
 625  else if (!type  && add)
 626    error_exit("Not enough information: \"type\" argument is required.\n");
 627
 628  memset(&request, 0, sizeof(request));
 629  request.mhdr.nlmsg_len = NLMSG_LENGTH(sizeof(struct ifinfomsg));
 630  request.mhdr.nlmsg_flags = NLM_F_REQUEST|NLM_F_ACK;
 631  if (add) {
 632    request.mhdr.nlmsg_flags |= NLM_F_CREATE|NLM_F_EXCL;
 633    request.mhdr.nlmsg_type = RTM_NEWLINK;
 634  } else {
 635    request.mhdr.nlmsg_type = RTM_DELLINK;
 636    request.info.ifi_index = get_ifaceindex(name, 1);
 637  }
 638  request.info.ifi_family = AF_UNSPEC;
 639  attr = NLMSG_TAIL(&request.mhdr);
 640  if (type) {
 641    add_string_to_rtattr(&request.mhdr, sizeof(request),
 642        IFLA_LINKINFO, NULL, 0);
 643    add_string_to_rtattr(&request.mhdr, sizeof(request),
 644        IFLA_INFO_KIND, type, strlen(type));
 645    if (!strcmp(type, "vlan")) {
 646      struct rtattr *data = NLMSG_TAIL(&request.mhdr);
 647      add_string_to_rtattr(&request.mhdr, sizeof(request), 
 648          IFLA_INFO_DATA, NULL, 0);
 649      vlan_parse_opt(++argv, &request.mhdr, sizeof(request));
 650      data->rta_len = (void *)NLMSG_TAIL(&request.mhdr) - (void *)data;
 651    }
 652    attr->rta_len = (void *)NLMSG_TAIL(&request.mhdr) - (void *)attr;
 653  }
 654
 655  if (link) {
 656    uint32_t idx = get_ifaceindex(link, 1);
 657    add_string_to_rtattr(&request.mhdr, sizeof(request), 
 658        IFLA_LINK, &idx, sizeof(uint32_t));
 659  }
 660  if (addr) {
 661    char abuf[IF_NAMESIZE] = {0,};
 662
 663    fill_hwaddr(addr, IF_NAMESIZE, (unsigned char *)abuf);
 664    add_string_to_rtattr(&request.mhdr, sizeof(request), 
 665        IFLA_ADDRESS, abuf, strlen(abuf));
 666  }
 667  if (!name) {
 668    snprintf(toybuf, IFNAMSIZ, "%s%d", type, 0);
 669    for (len = 1; ; len++) {
 670      if (!get_ifaceindex(toybuf, 0)) break;
 671      snprintf(toybuf, IFNAMSIZ, "%s%d", type, len);
 672    }
 673    name = toybuf;
 674  }
 675  len = strlen(name) + 1;
 676  if (len < 2 || len > IFNAMSIZ) error_exit("Invalid device name.");
 677  add_string_to_rtattr(&request.mhdr, sizeof(request), IFLA_IFNAME, name, len);
 678
 679  send_nlmesg(0, 0, 0, (void *)&request, request.mhdr.nlmsg_len);
 680  return (filter_nlmesg(NULL,NULL));
 681}
 682
 683static int link_set(char **argv)
 684{
 685  struct arglist cmd_objectlist[] = {{"up", 0}, {"down", 1}, {"arp", 2}, 
 686    {"multicast", 3}, {"dynamic", 4}, {"name", 5}, {"txqueuelen", 6}, 
 687    {"mtu", 7},{"address", 8}, {"broadcast", 9}, {NULL,-1}};
 688  int case_flags[] = {IFF_NOARP,IFF_MULTICAST,IFF_DYNAMIC};
 689  struct ifreq req;
 690  int idx, flags = 0, masks = 0xffff, fd;
 691
 692  memset(&req, 0, sizeof(req));
 693  if (!*argv) error_exit("\"dev\" missing");
 694  xstrncpy(req.ifr_name, *argv, IF_NAMESIZE);
 695  fd = xsocket(AF_INET, SOCK_DGRAM, 0);
 696  xioctl(fd, SIOCGIFINDEX, &req);
 697  for (++argv; *argv;) {
 698    if ((idx = substring_to_idx(*argv++, cmd_objectlist)) == -1) help_exit(0);
 699    switch(idx) {
 700      case 0:
 701        flags |= IFF_UP; break;
 702      case 1:
 703        masks &= ~IFF_UP; break;
 704      case 2:
 705      case 3:
 706      case 4:
 707        if (!*argv) help_exit(0);
 708        else if (!strcmp(*argv, "on")) {
 709          if (idx == 2) {
 710            masks &= ~case_flags[idx-2];
 711            flags &= ~case_flags[idx-2];
 712          } else flags |= case_flags[idx-2];
 713        } else if (!strcmp(*argv,"off")) {
 714          if (idx == 2) {
 715            masks |= case_flags[idx-2];
 716            flags |= case_flags[idx-2];
 717          } else masks &= ~case_flags[idx-2];
 718        } else help_exit(0);
 719        ++argv;
 720        break;
 721      case 5:
 722        xstrncpy(req.ifr_ifru.ifru_newname, *argv, IF_NAMESIZE);
 723        xioctl(fd, SIOCSIFNAME, &req);
 724        xstrncpy(req.ifr_name, *argv++, IF_NAMESIZE);
 725        xioctl(fd, SIOCGIFINDEX, &req);
 726        break;
 727      case 6:
 728        req.ifr_ifru.ifru_ivalue = atolx(*argv++);
 729        xioctl(fd, SIOCSIFTXQLEN, &req);
 730        break;
 731      case 7:
 732        req.ifr_ifru.ifru_mtu = atolx(*argv++);
 733        xioctl(fd, SIOCSIFMTU, &req);
 734        break;
 735      case 8:
 736        xioctl(fd, SIOCGIFHWADDR, &req);
 737        fill_hwaddr(*argv++, IF_NAMESIZE, 
 738            (unsigned char *)(req.ifr_hwaddr.sa_data));
 739        xioctl(fd, SIOCSIFHWADDR, &req);
 740        break;
 741      case 9:
 742        xioctl(fd, SIOCGIFHWADDR, &req);
 743        fill_hwaddr(*argv++, IF_NAMESIZE,
 744            (unsigned char *)(req.ifr_hwaddr.sa_data));
 745        xioctl(fd, SIOCSIFHWBROADCAST, &req);
 746        break;
 747    }
 748  }
 749  xioctl(fd, SIOCGIFFLAGS, &req);
 750  req.ifr_ifru.ifru_flags |= flags;
 751  req.ifr_ifru.ifru_flags &= masks;
 752  xioctl(fd, SIOCSIFFLAGS, &req);
 753  xclose(fd);
 754  return 0;
 755}
 756
 757static void print_stats(struct  rtnl_link_stats *rtstat)
 758{
 759  char *line_feed = (!TT.singleline ? "\n    " : " ");
 760
 761  if (TT.stats > 0) {
 762    xprintf("    RX: bytes  packets  errors  "
 763        "dropped  overrun  mcast%s%-10u %-8u %-7u %-8u %-8u %-8u\n",
 764        line_feed, rtstat->rx_bytes, rtstat->rx_packets, rtstat->rx_errors,
 765        rtstat->rx_dropped, rtstat->rx_over_errors, rtstat->multicast);
 766    if (TT.stats > 1) {
 767      xprintf("    RX: errors  length  crc  "
 768          "frame  fifo  missed%s%-10u %-8u %-7u %-8u %-8u %-8u\n",
 769          line_feed, rtstat->rx_errors, rtstat->rx_length_errors,
 770          rtstat->rx_crc_errors, rtstat->rx_frame_errors,
 771          rtstat->rx_fifo_errors, rtstat->rx_missed_errors);
 772    }
 773    xprintf("    TX: bytes  packets  errors  "
 774        "dropped  carrier  collsns%s%-10u %-8u %-7u %-8u %-8u %-8u\n",
 775        line_feed, rtstat->tx_bytes, rtstat->tx_packets, rtstat->tx_errors,
 776        rtstat->tx_dropped, rtstat->tx_carrier_errors, rtstat->collisions);
 777    if (TT.stats > 1) {
 778      xprintf("    TX: errors  aborted  fifo  window  "
 779          "heartbeat%s%-10u %-8u %-7u %-8u %-8u\n",
 780          line_feed, rtstat->tx_errors, rtstat->tx_aborted_errors,
 781          rtstat->tx_fifo_errors, rtstat->tx_window_errors, 
 782          rtstat->tx_heartbeat_errors);
 783    }
 784  }
 785}
 786
 787static int print_link_output(struct linkdata *link)
 788{
 789  char *line_feed = " ", *flags,*peer = "brd";
 790  struct arglist iface_flags[] = {{"",0},{"UP", IFF_UP}, 
 791    {"BROADCAST", IFF_BROADCAST}, {"DEBUG", IFF_DEBUG},
 792    {"LOOPBACK", IFF_LOOPBACK}, {"POINTOPOINT", IFF_POINTOPOINT},
 793    {"NOTRAILERS", IFF_NOTRAILERS}, {"RUNNING", IFF_RUNNING},
 794    {"NOARP", IFF_NOARP}, {"PROMISC",IFF_PROMISC},
 795    {"ALLMULTI", IFF_ALLMULTI}, {"MASTER", IFF_MASTER}, {"SLAVE", IFF_SLAVE},
 796    {"MULTICAST", IFF_MULTICAST}, {"PORTSEL", IFF_PORTSEL},
 797    {"AUTOMEDIA", IFF_AUTOMEDIA}, {"DYNAMIC", IFF_DYNAMIC}, {NULL,-1}};
 798
 799  if (link->parent != -1) {
 800    int fd = 0;
 801    struct ifreq req;
 802
 803    memset(&req, 0, sizeof(req));
 804    if_indextoname( link->parent,req.ifr_ifrn.ifrn_name);
 805    fd = xsocket(AF_INET, SOCK_DGRAM, 0);
 806    if (ioctl(fd, SIOCGIFTXQLEN, &req)) perror("");
 807    else link->txqueuelen = req.ifr_ifru.ifru_ivalue;
 808    xclose(fd);
 809  }
 810
 811  if (TT.is_addr && addrinfo.label && fnmatch(addrinfo.label, link->iface, 0))
 812    return 0;
 813
 814
 815  if (!(flags = get_flag_string(iface_flags, link->flags, 1)))
 816    error_exit("Invalid data.");    
 817  if (!TT.singleline) line_feed="\n    ";
 818  if (link->parent != -1) {
 819    char iface[IF_NAMESIZE];
 820
 821    if (!if_indextoname(link->parent, iface)) perror_exit(NULL);
 822    sprintf(toybuf,"%s@%s", link->iface, iface);
 823  }
 824  if (link->flags & IFF_POINTOPOINT) peer = "peer";
 825  if (TT.is_addr && TT.singleline && TT.addressfamily)
 826    xprintf("%d: %s", link->iface_idx,
 827        ((link->parent == -1) ? link->iface : toybuf));
 828  else xprintf("%d: %s: <%s> mtu %d qdisc %s state %s qlen %d",
 829      link->iface_idx, ((link->parent == -1) ? link->iface : toybuf), flags,
 830      link->mtu, link->qdiscpline, link->state, link->txqueuelen);
 831
 832  if (!TT.addressfamily || TT.addressfamily == AF_PACKET)
 833    xprintf("%slink/%s %s %s %s",
 834        line_feed, link->type, link->laddr, peer ,link->bcast);
 835
 836  xputc('\n');
 837
 838  //user can specify stats flag two times
 839  //one for stats and other for erros e.g. -s and -s -s
 840  print_stats(&link->rt_stat);
 841  free(flags);
 842
 843  return 0;
 844}
 845
 846static void fill_address(void *p, char *ip)
 847{
 848  unsigned char *ptr = (unsigned char*)p;
 849  snprintf(ip, 64, " %02x:%02x:%02x:%02x:%02x:%02x",
 850      ptr[0], ptr[1], ptr[2], ptr[3], ptr[4], ptr[5]);
 851}
 852
 853static int get_link_info(struct nlmsghdr* h,struct linkdata* link,char **argv)
 854{
 855  struct ifinfomsg *iface = NLMSG_DATA(h);
 856  struct rtattr *attr = IFLA_RTA(iface);
 857  int len = h->nlmsg_len - NLMSG_LENGTH(sizeof(*iface));
 858  struct arglist hwtypes[]={{"generic",0},{"ether",ARPHRD_ETHER},
 859    {"loopback", ARPHRD_LOOPBACK},{"sit",ARPHRD_SIT},
 860#ifdef ARPHRD_INFINIBAND
 861    {"infiniband",ARPHRD_INFINIBAND},
 862#endif
 863#ifdef ARPHRD_IEEE802_TR
 864    {"ieee802",ARPHRD_IEEE802}, {"tr",ARPHRD_IEEE802_TR},
 865#else
 866    {"tr",ARPHRD_IEEE802},
 867#endif
 868#ifdef ARPHRD_IEEE80211
 869    {"ieee802.11",ARPHRD_IEEE80211},
 870#endif
 871#ifdef ARPHRD_IEEE1394
 872    {"ieee1394",ARPHRD_IEEE1394},
 873#endif
 874    {"irda",ARPHRD_IRDA},{"slip",ARPHRD_SLIP},{"cslip",ARPHRD_CSLIP},
 875    {"slip6",ARPHRD_SLIP6}, {"cslip6",ARPHRD_CSLIP6}, {"ppp",ARPHRD_PPP},
 876    {"ipip",ARPHRD_TUNNEL}, {"tunnel6",ARPHRD_TUNNEL6},
 877    {"gre",ARPHRD_IPGRE},
 878#ifdef ARPHRD_VOID
 879    {"void",ARPHRD_VOID},
 880#endif
 881    {NULL,-1}};
 882  char *lname = get_flag_string(hwtypes, iface->ifi_type, 0);
 883
 884  link->next = link->prev = 0;
 885  link->iface_type = iface->ifi_type;
 886  if (!lname) error_exit("Invalid link.");
 887  xstrncpy(link->type, lname, IFNAMSIZ);
 888  free(lname);
 889  link->iface_idx = iface->ifi_index;
 890  link->flags = iface->ifi_flags;
 891  if (*argv && !strcasecmp("up",*argv) && !(link->flags & IFF_UP)) return 1;
 892  link->parent =  -1;
 893  for (; RTA_OK(attr, len); attr = RTA_NEXT(attr, len)) {
 894    switch(attr->rta_type) {
 895      case IFLA_IFNAME:
 896        snprintf(link->iface, IFNAMSIZ, "%s",(char *) RTA_DATA(attr));
 897        break;
 898      case IFLA_ADDRESS:
 899        if ( iface->ifi_type== ARPHRD_TUNNEL ||
 900            iface->ifi_type == ARPHRD_SIT ||
 901            iface->ifi_type == ARPHRD_IPGRE)
 902          inet_ntop(AF_INET, RTA_DATA(attr), link->laddr, 64);
 903        else fill_address(RTA_DATA(attr), link->laddr);
 904        break;
 905      case IFLA_BROADCAST:
 906        if (iface->ifi_type== ARPHRD_TUNNEL ||
 907            iface->ifi_type == ARPHRD_SIT ||
 908            iface->ifi_type == ARPHRD_IPGRE)
 909          inet_ntop(AF_INET, RTA_DATA(attr), link->bcast, 64);
 910        else  fill_address(RTA_DATA(attr), link->bcast);
 911        break;
 912      case IFLA_MTU:
 913        link->mtu = *((int*)(RTA_DATA(attr)));
 914        break;
 915      case IFLA_QDISC:
 916        snprintf(link->qdiscpline, IFNAMSIZ, "%s", (char *) RTA_DATA(attr));
 917        break;
 918      case IFLA_STATS  :
 919        link->rt_stat = *((struct rtnl_link_stats*) RTA_DATA(attr));
 920        break;
 921      case IFLA_LINK:
 922        link->parent = *((int*)(RTA_DATA(attr)));
 923        break;
 924      case IFLA_TXQLEN:
 925        link->txqueuelen = *((int*)(RTA_DATA(attr)));
 926        break;
 927      case IFLA_OPERSTATE: 
 928        {
 929          struct arglist flags[]={{"UNKNOWN", 0}, {"NOTPRESENT", 1}, 
 930            {"DOWN", 2}, {"LOWERLAYERDOWN", 3}, {"TESTING", 4}, 
 931            {"DORMANT", 5}, {"UP", 6}, {NULL, -1}};
 932          if (!(lname = get_flag_string(flags, *((int*)(RTA_DATA(attr))), 0)))
 933            error_exit("Invalid state.");
 934          xstrncpy(link->state, lname,IFNAMSIZ);
 935          free(lname);
 936        }
 937        break;
 938      default: break;
 939    }
 940  }
 941  return 0;
 942}
 943
 944static int display_link_info(struct nlmsghdr *mhdr, char **argv)
 945{
 946  struct linkdata link;
 947
 948  if (!get_link_info(mhdr, &link, argv)) {
 949    if (TT.is_addr) {
 950      struct linkdata *lnk = xzalloc(sizeof(struct linkdata));
 951      memcpy(lnk, &link, sizeof(struct linkdata));
 952      dlist_add_nomalloc((struct double_list **)&linfo,
 953          (struct double_list *)lnk);
 954    }
 955    else print_link_output(&link);
 956  }
 957  return 0;
 958}
 959
 960static int link_show(char **argv)
 961{
 962  struct {
 963    struct nlmsghdr mhdr;
 964    struct ifinfomsg info;
 965  } request;
 966  uint32_t index = 0;
 967
 968  if (*argv && strcasecmp("up",*argv)) index = get_ifaceindex(*argv, 1);
 969  memset(&request, 0, sizeof(request));
 970  request.mhdr.nlmsg_len = NLMSG_LENGTH(sizeof(struct ifinfomsg));
 971  request.mhdr.nlmsg_flags = NLM_F_REQUEST|NLM_F_ACK;
 972  if (!index) request.mhdr.nlmsg_flags |= NLM_F_ROOT|NLM_F_MATCH;
 973  else request.info.ifi_change =  0xffffffff; // used in single operation
 974  request.mhdr.nlmsg_type = RTM_GETLINK;
 975  request.info.ifi_index = index;
 976  request.info.ifi_family = AF_UNSPEC;
 977  send_nlmesg(0, 0, 0, (void*)&request, sizeof(request));
 978  return (filter_nlmesg(display_link_info, argv));
 979}
 980
 981static int iplink(char **argv)
 982{
 983  int idx;
 984  cmdobj ipcmd, cmdobjlist[] = {linkupdate, link_set, link_show};
 985  struct arglist cmd_objectlist[] = {{"add", 0}, {"delete", 0},
 986    {"set", 1}, {"show", 2}, {"list", 2}, {"lst", 2}, {NULL,-1}};
 987
 988  if (!*argv) idx = 2;
 989  else if ((idx = substring_to_idx(*argv++, cmd_objectlist)) == -1)
 990    help_exit(0);
 991  ipcmd = cmdobjlist[idx];
 992  return ipcmd(argv);
 993}
 994
 995// ===========================================================================
 996// Code for ip addr.
 997// ===========================================================================
 998
 999static int print_addrinfo(struct nlmsghdr *h, int flag_l)
1000{
1001  struct rtattr *rta, *rta_tb[IFA_MAX+1] = {0,};
1002  char *family = toybuf, *scope = toybuf+256, *label = toybuf+512,
1003       *brd = toybuf+768, *peer = toybuf+1024, *any = toybuf+1280,
1004       lbuf[INET6_ADDRSTRLEN] = {0,}, lbuf_ifa[INET6_ADDRSTRLEN] = {0,};
1005  struct ifaddrmsg *ifa = NLMSG_DATA(h);
1006  int len;
1007
1008  if ((len = h->nlmsg_len - NLMSG_LENGTH(sizeof(*ifa))) < 0) {
1009    error_msg("wrong nlmsg len %d", len);
1010    return 0;
1011  }
1012
1013  for (rta = IFA_RTA(ifa); RTA_OK(rta, len); rta=RTA_NEXT(rta, len))
1014    if (rta->rta_type <= IFA_MAX) rta_tb[rta->rta_type] = rta;
1015
1016  if (!rta_tb[IFA_LOCAL]) rta_tb[IFA_LOCAL] = rta_tb[IFA_ADDRESS];
1017  if (!rta_tb[IFA_ADDRESS]) rta_tb[IFA_ADDRESS] = rta_tb[IFA_LOCAL];
1018  if ((addrinfo.scope ^ ifa->ifa_scope)&addrinfo.scopemask) return 0;
1019  if (addrinfo.ifindex && addrinfo.ifindex != ifa->ifa_index) return 0;
1020
1021  if (flag_l && addrinfo.label && ifa->ifa_family == AF_INET6) return 0;
1022  if ((rta_tb[IFA_LABEL])) {
1023    xstrncpy(label, RTA_DATA(rta_tb[IFA_LABEL]), 256);
1024    label[255] = '\0';
1025    if (addrinfo.label && fnmatch(addrinfo.label, label, 0))
1026      return 0;
1027  }
1028
1029  if (TT.flush) {
1030    if (ifa->ifa_index == addrinfo.ifindex) {
1031      h->nlmsg_type = RTM_DELADDR;
1032      h->nlmsg_flags = NLM_F_REQUEST;
1033      send_nlmesg(RTM_DELADDR, 0, 0, h, h->nlmsg_len);
1034      return 0;
1035    }
1036  }
1037
1038  if (h->nlmsg_type == RTM_DELADDR) printf("Deleted ");
1039
1040  if (TT.singleline) {
1041    if (!if_indextoname(ifa->ifa_index, lbuf)) perror_exit(NULL);
1042    printf("%u: %s",ifa->ifa_index, lbuf);
1043  }
1044
1045  sprintf(scope, " scope %s ", namefromRPDB(ifa->ifa_scope, RPDB_rtscopes));
1046
1047  if (ifa->ifa_family == AF_INET) strcpy(family, "    inet ");
1048  else if (ifa->ifa_family == AF_INET6) strcpy(family, "    inet6 ");
1049  else sprintf(family, "    family %d", ifa->ifa_family);
1050
1051  if (rta_tb[IFA_LOCAL]) {
1052    if (!inet_ntop(ifa->ifa_family, RTA_DATA(rta_tb[IFA_LOCAL]),
1053          lbuf, sizeof(lbuf))) perror_exit("inet");
1054
1055    sprintf(family+strlen(family), lbuf, strlen(lbuf));
1056    if (!rta_tb[IFA_ADDRESS] || !memcmp(RTA_DATA(rta_tb[IFA_ADDRESS]),
1057          RTA_DATA(rta_tb[IFA_LOCAL]), 4))
1058      sprintf(family+strlen(family), "/%d ", ifa->ifa_prefixlen);
1059    else {
1060      if (!inet_ntop(ifa->ifa_family, RTA_DATA(rta_tb[IFA_ADDRESS]),
1061            lbuf_ifa, sizeof(lbuf_ifa))) perror_exit("inet");
1062      sprintf(peer, " peer %s/%d ", lbuf_ifa, ifa->ifa_prefixlen);
1063    }
1064  }
1065
1066  if (addrinfo.to && strcmp(addrinfo.addr, lbuf))
1067    return 0;
1068
1069  if (rta_tb[IFA_BROADCAST]) {
1070    if (!inet_ntop(ifa->ifa_family, RTA_DATA(rta_tb[IFA_BROADCAST]),
1071          lbuf, sizeof(lbuf))) perror_exit("inet");
1072    sprintf(brd, " brd %s", lbuf);
1073  }else brd = "";
1074
1075  if (rta_tb[IFA_ANYCAST]) {
1076    if (!inet_ntop(ifa->ifa_family, RTA_DATA(rta_tb[IFA_ANYCAST]),
1077          lbuf, sizeof(lbuf))) perror_exit("inet");
1078    sprintf(any, " any %s", lbuf);
1079  }
1080
1081  if (ifa->ifa_family == AF_INET)
1082    printf("%s%s%s%s%s %c", family, brd, peer, scope, label,
1083        (TT.singleline? '\0' : '\n'));
1084  else printf("%s%s %c", family, scope, (TT.singleline? '\0' : '\n'));
1085  if (TT.singleline && (ifa->ifa_family == AF_INET)) xputc('\n');
1086
1087  if (rta_tb[IFA_CACHEINFO]) {
1088    struct ifa_cacheinfo *ci = RTA_DATA(rta_tb[IFA_CACHEINFO]);
1089
1090    printf("%c      valid_lft ", (TT.singleline? '\\' : '\0'));
1091    if (ci->ifa_valid ==  0xFFFFFFFFU) printf("forever");
1092    else printf("%usec", ci->ifa_valid);
1093    printf(" preferred_lft ");
1094    if (ci->ifa_prefered ==  0xFFFFFFFFU) printf("forever");
1095    else printf("%dsec", ci->ifa_prefered);
1096    xputc('\n');
1097  }
1098  return 0;
1099}
1100
1101static int ipaddrupdate(char **argv)
1102{
1103  int length, cmd = !memcmp("add", argv[-1], strlen(argv[-1]))
1104    ? RTM_NEWADDR: RTM_DELADDR;
1105  int idx = 0,length_brd = 0, length_peer = 0,length_any = 0,length_local = 0,
1106      scoped = 0;
1107  char *dev = NULL,*label = NULL, reply[8192];
1108
1109  struct nlmsghdr *addr_ptr = NULL;
1110  struct nlmsgerr *err = NULL;
1111  struct arglist cmd_objectlist[] = {{"dev",0}, {"peer", 1},
1112    {"remote", 2}, {"broadcast", 3}, {"brd", 4}, {"label", 5},
1113    {"anycast", 6},{"scope", 7}, {"local", 8}, {NULL, -1}};
1114  struct {
1115    struct nlmsghdr nlm;
1116    struct ifaddrmsg ifadd;
1117    char buf[256];
1118  } req;
1119  typedef struct {
1120    int family, bytelen, bitlen;
1121    __u32  data[8];
1122  } option_data;
1123  option_data local;
1124
1125  memset(&req, 0, sizeof(req));
1126  req.nlm.nlmsg_len = NLMSG_LENGTH(sizeof(struct ifaddrmsg));
1127  req.nlm.nlmsg_flags = NLM_F_REQUEST|NLM_F_ACK;
1128  req.nlm.nlmsg_type = cmd;
1129  req.ifadd.ifa_family = TT.addressfamily;
1130
1131  while (*argv) {
1132    idx = substring_to_idx(*argv, cmd_objectlist);
1133    if (idx >= 0)
1134      if (!*++argv)
1135        error_exit("Incomplete Command line");
1136    switch(idx) {
1137      case 0:
1138        dev = *argv;
1139        break;
1140      case 1:
1141      case 2:
1142        {
1143          uint32_t addr[4] = {0,}, netmask = 0;
1144          uint8_t len = 0;
1145          parse_prefix(addr, &netmask, &len, *argv,
1146              req.ifadd.ifa_family);
1147          if (len)
1148            req.ifadd.ifa_family = ((len == 4) ? AF_INET : AF_INET6);
1149          length_peer = len;
1150          add_string_to_rtattr(&req.nlm, sizeof(req),
1151              IFA_ADDRESS, addr, len);
1152          req.ifadd.ifa_prefixlen = netmask;
1153        }
1154        break;
1155      case 3:
1156      case 4:
1157        if (*argv[0] == '+') {
1158          length_brd = -1;
1159        } else if (*argv[0] == '-') {
1160          length_brd = -2;
1161        } else {
1162          uint32_t addr[4] = {0,};
1163          uint8_t af = AF_UNSPEC;
1164
1165          if (get_prefix(addr, &af, *argv, req.ifadd.ifa_family))
1166            error_exit("Invalid prefix");
1167
1168          length_brd = ((af == AF_INET6) ? 16 : 4);
1169          if (req.ifadd.ifa_family == AF_UNSPEC)
1170            req.ifadd.ifa_family = af;
1171          add_string_to_rtattr(&req.nlm, sizeof(req),
1172              IFA_BROADCAST, &addr, length_brd);
1173        }
1174        break;
1175      case 5:
1176        label = *argv;
1177        add_string_to_rtattr(&req.nlm, sizeof(req),
1178            IFA_LABEL, label, strlen(label) + 1);
1179        break;
1180      case 6:
1181        {
1182          uint32_t addr[4] = {0,};
1183          uint8_t af = AF_UNSPEC;
1184
1185          if (get_prefix(addr, &af, *argv, req.ifadd.ifa_family))
1186            error_exit("Invalid prefix");
1187          length_any = ((af == AF_INET6) ? 16 : 4);
1188          if (req.ifadd.ifa_family == AF_UNSPEC)
1189            req.ifadd.ifa_family = af;
1190          add_string_to_rtattr(&req.nlm, sizeof(req),
1191              IFA_ANYCAST, &addr, length_any);
1192        }
1193        break;
1194      case 7:
1195        {
1196          int scope = idxfromRPDB(*argv, RPDB_rtscopes);
1197          if (scope < 0) error_exit("wrong scope '%s'", *argv);
1198          req.ifadd.ifa_scope = scope;
1199          scoped = 1;
1200        }
1201        break;
1202      default:
1203        {
1204          //local is by default
1205          uint32_t addr[8] = {0,}, netmask = 0;
1206          uint8_t len = 0;
1207
1208          parse_prefix(addr, &netmask, &len, *argv,
1209              req.ifadd.ifa_family);
1210          if (len)
1211            req.ifadd.ifa_family = ((len == 4) ? AF_INET : AF_INET6);
1212          length_local = len;
1213          local.bitlen = netmask;
1214          local.bytelen = len;
1215          memcpy(local.data, addr, sizeof(local.data));
1216          local.family = req.ifadd.ifa_family;
1217          add_string_to_rtattr(&req.nlm, sizeof(req),
1218              IFA_LOCAL, &local.data, local.bytelen);
1219        }
1220        break;
1221    }
1222    argv++;
1223  }
1224  if (!dev) error_exit("need \"dev \" argument");
1225  if (label && strncmp(dev, label, strlen(dev)) != 0)
1226    error_exit("\"dev\" (%s) must match \"label\" (%s)", dev, label);
1227
1228  if (length_peer == 0 && length_local && cmd != RTM_DELADDR){
1229    add_string_to_rtattr(&req.nlm, sizeof(req),
1230        IFA_ADDRESS, &local.data, local.bytelen);
1231  }
1232
1233  if (length_brd < 0 && cmd != RTM_DELADDR){
1234    int i;
1235
1236    if (req.ifadd.ifa_family != AF_INET)
1237      error_exit("broadcast can be set only for IPv4 addresses");
1238
1239    if (local.bitlen <= 30) {
1240      for (i = 31; i >= local.bitlen; i--) {
1241        if (length_brd == -1)
1242          local.data[0] |= htonl(1<<(31-i));
1243        else
1244          local.data[0] &= ~htonl(1<<(31-i));
1245      }
1246      add_string_to_rtattr(&req.nlm, sizeof(req),
1247          IFA_BROADCAST, &local.data, local.bytelen);
1248      length_brd = local.bytelen;
1249    }
1250  }
1251  if (req.ifadd.ifa_prefixlen == 0)
1252    req.ifadd.ifa_prefixlen = local.bitlen;
1253  if (!scoped && (cmd != RTM_DELADDR) && (local.family == AF_INET)
1254      && (local.bytelen >= 1 && *(uint8_t*)&local.data == 127))
1255    req.ifadd.ifa_scope = RT_SCOPE_HOST;
1256  req.ifadd.ifa_index = get_ifaceindex(dev, 1);
1257
1258  send_nlmesg(RTM_NEWADDR, 0, AF_UNSPEC, (void *)&req, req.nlm.nlmsg_len);
1259  length = recv(TT.sockfd, reply, sizeof(reply), 0);
1260  addr_ptr = (struct nlmsghdr *) reply;
1261  for (; NLMSG_OK(addr_ptr, length); addr_ptr = NLMSG_NEXT(addr_ptr, length)) {
1262    if (addr_ptr->nlmsg_type == NLMSG_DONE)
1263      return 1;
1264    if (addr_ptr->nlmsg_type == NLMSG_ERROR)
1265      err = (struct nlmsgerr*) NLMSG_DATA(addr_ptr);
1266    if (err && err->error) {
1267      errno = -err->error;
1268      perror_exit("RTNETLINK answers:");
1269    }
1270  }
1271  return 0;
1272}
1273
1274static int ipaddr_listflush(char **argv)
1275{
1276  int idx; uint32_t netmask = 0, found = 0;
1277  char *tmp = NULL, *name = NULL;
1278  struct double_list *dlist;
1279  struct arglist cmd_objectlist[] = {{"to", 0}, {"scope", 1}, {"up", 2},
1280    {"label", 3}, {"dev", 4}, {NULL, -1}};
1281
1282  TT.flush = *argv[-1] == 'f' ? 1 : 0;
1283  memset(&addrinfo, 0, sizeof(addrinfo));
1284
1285  if (TT.flush) {
1286    if (!*argv)
1287      error_exit("Incomplete command for \"flush\"");
1288    if (TT.addressfamily == AF_PACKET)
1289      error_exit("Can't flush link Addresses");
1290  }
1291  addrinfo.scope = -1;
1292  while (*argv) {
1293    switch (idx = substring_to_idx(*argv, cmd_objectlist)) {
1294      case 0: 
1295        {// ADDR_TO
1296          if (!*++argv) error_exit("Incomplete Command line");
1297          else if (!strcmp(*argv, "0")) return 0;
1298          uint32_t addr[4] = {0,};
1299          uint8_t len = 0;
1300
1301          addrinfo.to = 1;
1302          parse_prefix(addr, &netmask, &len, *argv, TT.addressfamily);
1303          if (len)
1304            TT.addressfamily = ((len == 4) ? AF_INET : AF_INET6);
1305          addrinfo.addr  = strtok(*argv, "/");
1306        }
1307        break;
1308      case 1: // ADDR_SCOPE
1309        {
1310          int scope = 0;
1311          if (!*++argv) error_exit("Incomplete Command line");
1312          name = *argv;
1313
1314          addrinfo.scopemask = -1;
1315          if (isdigit(**argv)) {
1316            int idx = atolx(*argv);
1317
1318            name = xstrdup(namefromRPDB(idx, RPDB_rtscopes));
1319          }
1320          if ((scope = idxfromRPDB(name, RPDB_rtscopes)) < 0) {
1321            if (strcmp(name, "all"))
1322              error_exit("wrong scope '%s'", name);
1323            scope = RT_SCOPE_NOWHERE;
1324            addrinfo.scopemask = 0;
1325          }
1326
1327          if (isdigit(**argv))
1328            free(name);
1329          addrinfo.scope = scope;
1330        }
1331        break;       
1332      case 2: // ADDR_UP
1333        addrinfo.up = 1;
1334        break;            
1335      case 3: // ADDR_LABEL
1336        if (!*++argv) error_exit("Incomplete Command line");
1337        addrinfo.label = *argv;
1338        break;
1339      case 4: // ADDR_DEV
1340        if (!*++argv) error_exit("Incomplete Command line");
1341
1342      default:                               
1343        if (TT.filter_dev)
1344          error_exit("Either \"dev\" is duplicate or %s is garbage",
1345              *argv);
1346        TT.filter_dev = *argv;
1347        break;
1348    }
1349    argv++;
1350  }
1351
1352  link_show(&tmp);
1353  while ( linfo && (dlist = dlist_pop(&linfo))){    
1354    struct linkdata *tmp  = (struct linkdata*) dlist;
1355    char *temp = &tmp->iface[0];
1356
1357    if (TT.filter_dev && strcmp(TT.filter_dev, temp))
1358      continue;
1359    found = 1;
1360    if (TT.flush && addrinfo.label) ipaddr_print( tmp, 0);
1361    if (addrinfo.up && !(tmp->flags & IFF_UP)){
1362      ipaddr_print(tmp, 0);
1363      continue;
1364    }
1365    if (addrinfo.label){
1366      if ( fnmatch(addrinfo.label, temp, 0)) {
1367        ipaddr_print(tmp, 1);
1368        continue;
1369      }      
1370    }
1371    if (!TT.addressfamily && ! TT.flush ) print_link_output(tmp);
1372
1373    ipaddr_print(tmp, 0);
1374    free(tmp);
1375  }
1376  if (TT.filter_dev && !found)
1377    error_exit("Device \"%s\" doesn't exist. \n", TT.filter_dev);
1378  return 0;
1379}
1380
1381static int ipaddr_print( struct linkdata *link, int flag_l)
1382{
1383  struct nlmsghdr *addr_ptr;
1384  int ip_match = 0;
1385
1386  addrinfo.ifindex = link->iface_idx;
1387  send_nlmesg(RTM_GETADDR, NLM_F_ROOT|NLM_F_MATCH|NLM_F_REQUEST,
1388      AF_UNSPEC, NULL, 0);
1389  if (TT.addressfamily == AF_PACKET) print_link_output(link);
1390
1391  if (addrinfo.label){
1392    char *col = strchr(addrinfo.label, ':');
1393    if (!col && (fnmatch(addrinfo.label, &link->iface[0], 0)))
1394      return 0;
1395  }
1396
1397  while (1){
1398    int len = recv(TT.sockfd, TT.gbuf, sizeof(TT.gbuf), 0);
1399    addr_ptr = (struct nlmsghdr *)TT.gbuf;
1400    struct ifaddrmsg *addressInfo = NLMSG_DATA(addr_ptr);
1401    char lbuf[INET6_ADDRSTRLEN];
1402    struct rtattr *rta, *rta_tb[IFA_MAX+1] = {0,};
1403
1404    int len1 = addr_ptr->nlmsg_len - NLMSG_LENGTH(sizeof(*addressInfo));
1405    if (len1 > 0) {
1406      for (; NLMSG_OK(addr_ptr, len); addr_ptr = NLMSG_NEXT(addr_ptr, len)) {
1407        addressInfo = NLMSG_DATA(addr_ptr);
1408        if (TT.addressfamily && TT.addressfamily != addressInfo->ifa_family)
1409          continue;
1410        if (addrinfo.ifindex && addrinfo.ifindex != addressInfo->ifa_index)
1411          continue;
1412
1413        if (addrinfo.to) {        
1414          memset(rta_tb, 0, sizeof(rta_tb));
1415          int rt_len = IFA_PAYLOAD(addr_ptr);
1416          for (rta = IFA_RTA(addressInfo); RTA_OK(rta, rt_len); rta=RTA_NEXT(rta, rt_len)) {
1417            if (rta->rta_type <= IFA_MAX) rta_tb[rta->rta_type] = rta;
1418          }
1419          if (!rta_tb[IFA_LOCAL]) rta_tb[IFA_LOCAL] = rta_tb[IFA_ADDRESS];
1420          if (rta_tb[IFA_LOCAL]) {
1421            if (!inet_ntop(TT.addressfamily, RTA_DATA(rta_tb[IFA_LOCAL]),
1422                  lbuf, sizeof(lbuf))) perror_exit("inet");
1423            if (strcmp(addrinfo.addr, lbuf))
1424              continue;
1425            ip_match=1;
1426          }
1427          if (!ip_match)
1428            continue;
1429        }
1430
1431        if (!TT.flush){
1432          if (addrinfo.scope != -1 && TT.addressfamily && TT.addressfamily ==
1433              addressInfo->ifa_family &&
1434              (addrinfo.ifindex == addressInfo->ifa_index)) {
1435            if ((addrinfo.scope ^ addressInfo->ifa_scope) & addrinfo.scopemask)
1436              continue;
1437            else if (addrinfo.up && (link->flags & IFF_UP))
1438              print_link_output(link);
1439            else if (!addrinfo.up) print_link_output(link);
1440          }
1441          if (TT.addressfamily &&
1442              (addrinfo.ifindex == addressInfo->ifa_index) &&
1443              (addrinfo.scope == -1)){
1444            if (addrinfo.up && (link->flags & IFF_UP))
1445              print_link_output(link);
1446            else if (!addrinfo.up) print_link_output(link);
1447          }
1448        }
1449
1450        for (; NLMSG_OK(addr_ptr, len); addr_ptr = NLMSG_NEXT(addr_ptr, len)) {
1451          if (addr_ptr->nlmsg_type == RTM_NEWADDR)
1452            print_addrinfo(addr_ptr, flag_l);
1453          if ((addr_ptr->nlmsg_type == NLMSG_DONE) ||
1454              (addr_ptr->nlmsg_type == NLMSG_ERROR) ||
1455              (TT.flush && addrinfo.to))
1456            goto ret_stop;          
1457        }
1458        if ((addr_ptr->nlmsg_type == NLMSG_DONE) ||
1459            (addr_ptr->nlmsg_type == NLMSG_ERROR))
1460          break;
1461      }
1462    }
1463    else
1464      return 0;
1465  }
1466
1467ret_stop:
1468  return 0;
1469}
1470
1471static int ipaddr(char **argv)
1472{
1473  int    idx;
1474  cmdobj ipcmd, cmdobjlist[] = {ipaddrupdate, ipaddr_listflush};
1475  struct arglist cmd_objectlist[] = { {"add", 0}, {"delete", 0},
1476    {"list", 1},{"show", 1},{"lst", 1}, {"flush", 1}, {NULL,-1}};
1477
1478  TT.is_addr++;
1479  if (!*argv) idx = 1;
1480  else if ((idx = substring_to_idx(*argv++, cmd_objectlist)) == -1)
1481    help_exit(0);
1482
1483  ipcmd = cmdobjlist[idx];
1484  return ipcmd(argv);
1485}
1486
1487// ===========================================================================
1488// code for ip route
1489// ===========================================================================
1490struct I_data {
1491  unsigned char family;
1492  uint32_t addr[8] , netmask ;
1493  uint8_t len ;
1494};
1495
1496struct {
1497  int tb,idev,odev,proto;
1498  struct I_data rvia, rdst, mdst, rsrc, msrc;
1499} gfilter;
1500
1501static void show_iproute_help(void)
1502{
1503  error_exit("\n\n" \
1504       "iproute { list | flush } SELECTOR\n" \
1505       "iproute get ADDRESS [from ADDRESS iif STRING]\n" \
1506       "        [oif STRING]\n" \
1507       "iproute { add | del | change | append | replace | test } ROUTE\n" \
1508       "        SELECTOR := [root PREFIX] [match PREFIX] [proto RTPROTO]\n" \
1509       "        ROUTE := [TYPE] PREFIX [proto RTPROTO] [metric METRIC]");
1510}
1511
1512static void print_rta_metrics(char* out, const struct rtattr *mxattr)
1513{
1514  int32_t tvar = RTA_PAYLOAD(mxattr);
1515  struct rtattr *rta, *mxrta[RTAX_MAX+1] = {0,};
1516  unsigned int mxlock = 0;
1517  int i;
1518
1519  for (rta = RTA_DATA(mxattr); RTA_OK(rta, tvar); rta=RTA_NEXT(rta, tvar))
1520    if (rta->rta_type <= RTA_MAX) mxrta[rta->rta_type] = rta;
1521
1522  if (mxrta[RTAX_LOCK])
1523    mxlock = *(u_int32_t *)RTA_DATA(mxrta[RTAX_LOCK]);
1524
1525  for (i = 2; i <= RTAX_MAX; i++) {
1526    uint32_t val = 0;
1527
1528    if (mxrta[i] == NULL && !(mxlock & (1 << i)))
1529      continue;
1530
1531    if (mxrta[i] != NULL && i != RTAX_CC_ALGO)
1532      val = *(u_int32_t *)RTA_DATA(mxrta[i]);
1533
1534    if (i == RTAX_HOPLIMIT && (int)val == -1)
1535      continue;
1536
1537    if (i < sizeof(mx_names)/sizeof(char *) && mx_names[i])
1538      sprintf(out, "%s%s ", out, mx_names[i]);
1539    else
1540      sprintf(out, "%smetric %d ", out, i);
1541
1542    if (mxlock & (1<<i))
1543      sprintf(out, "%slock ", out);
1544
1545    switch (i) {
1546      case RTAX_RTT:
1547      case RTAX_RTTVAR:
1548      case RTAX_RTO_MIN:
1549        if (i == RTAX_RTT)
1550          val /= 8;
1551        else if (i == RTAX_RTTVAR)
1552          val /= 4;
1553
1554        if (val >= 1000)
1555          sprintf(out, "%s%gs ", out, val / 1e3);
1556        else
1557          sprintf(out, "%s%ums ", out, val);
1558        break;
1559
1560      case RTAX_CC_ALGO:
1561        sprintf(out, "%scongestion %s ", out, (const char*)RTA_DATA(mxrta[i]));
1562        break;
1563
1564      default:
1565        sprintf(out, "%s%u ", out, val);
1566        break;
1567    }
1568  }
1569}
1570
1571static int display_route_info(struct nlmsghdr *mhdr, char **argv)
1572{
1573  char *inetval = NULL, out[1024] = {0};
1574  struct rtmsg *msg = NLMSG_DATA(mhdr);
1575  struct rtattr *rta, *attr[RTA_MAX+1] = {0,};
1576  int32_t tvar, msglen = mhdr->nlmsg_len - NLMSG_LENGTH(sizeof(struct rtmsg));
1577  int hlen = ((msg->rtm_family == AF_INET) ? 32
1578      : ((msg->rtm_family == AF_INET6) ? 128 : -1));
1579
1580  if (mhdr->nlmsg_type != RTM_NEWROUTE) return 0;
1581  if (msglen < 0) return 1;
1582
1583  if (msg->rtm_family == AF_INET6) {
1584    if (gfilter.tb) {
1585      if (gfilter.tb < 0) {
1586        if (!(msg->rtm_flags & RTM_F_CLONED)) return 0;
1587      } else {
1588        if (msg->rtm_flags & RTM_F_CLONED) return 0;
1589        if (gfilter.tb == RT_TABLE_LOCAL && msg->rtm_type != RTN_LOCAL)
1590          return 0;
1591        else if (gfilter.tb == RT_TABLE_MAIN && msg->rtm_type == RTN_LOCAL)
1592          return 0;
1593      }
1594    }
1595  }
1596  else if (gfilter.tb > 0 && gfilter.tb != msg->rtm_table) return 0;
1597
1598  if (gfilter.proto && (msg->rtm_protocol != gfilter.proto)) return 0;
1599
1600
1601  if (gfilter.rdst.family && (msg->rtm_family != gfilter.rdst.family ||
1602        gfilter.rdst.netmask > msg->rtm_dst_len)) return 0;
1603  if (gfilter.mdst.family && (msg->rtm_family != gfilter.mdst.family
1604        || (gfilter.mdst.netmask < msg->rtm_dst_len))) return 0;
1605  if (gfilter.rsrc.family && (msg->rtm_family != gfilter.rsrc.family
1606        || gfilter.rsrc.netmask > msg->rtm_src_len)) return 0;
1607  if (gfilter.msrc.family && (msg->rtm_family != gfilter.msrc.family
1608        || (gfilter.msrc.netmask < msg->rtm_src_len))) return 0;
1609  tvar = msglen;
1610
1611  for (rta = RTM_RTA(msg); RTA_OK(rta, tvar); rta=RTA_NEXT(rta, tvar))
1612    if (rta->rta_type <= RTA_MAX) attr[rta->rta_type] = rta;
1613
1614  if (msg->rtm_type != RTN_UNICAST)
1615    sprintf(out,"%s%s ", out,rtmtype_idx2str(msg->rtm_type));
1616  if (attr[RTA_DST]) {
1617    inetval = (char *)inet_ntop(msg->rtm_family, RTA_DATA(attr[RTA_DST]),
1618        toybuf, sizeof(toybuf));
1619    if (gfilter.rdst.family &&
1620        memcmp(RTA_DATA(attr[RTA_DST]), &gfilter.rdst.addr, gfilter.rdst.len))
1621      return 0;
1622    if (gfilter.mdst.family &&
1623        memcmp(RTA_DATA(attr[RTA_DST]), &gfilter.mdst.addr, gfilter.mdst.len))
1624      return 0;
1625    sprintf(out,"%s%s",out,inetval);
1626  }
1627  if (msg->rtm_dst_len) sprintf(out,"%s/%d ", out,msg->rtm_dst_len);
1628  else sprintf(out,"%s%s",out,"default ");
1629
1630  if (attr[RTA_SRC]) {
1631    inetval = (char *)inet_ntop(msg->rtm_family, RTA_DATA(attr[RTA_SRC]),
1632        toybuf, sizeof(toybuf));
1633    if (gfilter.rsrc.family &&
1634        memcmp(RTA_DATA(attr[RTA_SRC]), &gfilter.rsrc.addr, gfilter.rsrc.len))
1635      return 0;
1636    if (gfilter.msrc.family &&
1637        memcmp(RTA_DATA(attr[RTA_SRC]), &gfilter.msrc.addr, gfilter.msrc.len))
1638      return 0;
1639    sprintf(out, "%s from %s", out, inetval);
1640  }
1641  if (msg->rtm_src_len) sprintf(out, "%s/%d ", out, msg->rtm_src_len);
1642
1643  if (attr[RTA_GATEWAY]) {
1644    inetval = (char *)inet_ntop(msg->rtm_family, RTA_DATA(attr[RTA_GATEWAY]),
1645        toybuf, sizeof(toybuf));
1646    sprintf(out, "%s via %s ", out, inetval);
1647  }
1648  if (gfilter.rvia.family) {
1649    char tmp[256];
1650
1651    if (!attr[RTA_GATEWAY]) return 0;
1652    if (strcmp((char *)inet_ntop(msg->rtm_family, gfilter.rvia.addr,
1653            tmp, sizeof(tmp)), inetval)) return 0;
1654  }
1655
1656  if (gfilter.odev != 0) if (!attr[RTA_OIF]) return 0;
1657  if (attr[RTA_OIF]) {
1658    if (gfilter.odev !=0 && gfilter.odev != *(int*)RTA_DATA(attr[RTA_OIF]))
1659      return 0;
1660    sprintf(out, "%s dev %s ", out, 
1661        if_indextoname(*(int*)RTA_DATA(attr[RTA_OIF]), toybuf));
1662  }
1663
1664  if (attr[RTA_PREFSRC] && hlen) {
1665    inetval = (char *)inet_ntop(msg->rtm_family, RTA_DATA(attr[RTA_PREFSRC]),
1666        toybuf, sizeof(toybuf));
1667    sprintf(out, "%s src %s ", out, inetval);
1668  }
1669  if (attr[RTA_PRIORITY])
1670    sprintf(out, "%s metric %d ", out, *(uint32_t*)RTA_DATA(attr[RTA_PRIORITY]));
1671  if (msg->rtm_family == AF_INET6) {
1672    struct rta_cacheinfo *ci = NULL;
1673    if (attr[RTA_CACHEINFO]) ci = RTA_DATA(attr[RTA_CACHEINFO]);
1674    if ((msg->rtm_flags & RTM_F_CLONED) || (ci && ci->rta_expires)) {
1675      if (msg->rtm_flags & RTM_F_CLONED) sprintf(out, "%s%s    cache ",
1676          out, (!TT.singleline ? "\n" : " "));
1677      if (ci && ci->rta_expires) {
1678        int hz = 0;
1679        FILE *fp = xfopen("/proc/net/psched","r");
1680
1681        if (fp) {
1682          unsigned int nom, denom;
1683
1684          if (fscanf(fp, "%*08x%*08x%08x%08x", &nom, &denom) == 2)
1685            if (nom == 1000000)
1686              hz = denom;
1687          fclose(fp);
1688        }
1689        if (!hz) hz = sysconf(_SC_CLK_TCK);
1690        sprintf(out, "%s expires %dsec", out, ci->rta_expires /hz);
1691      }
1692      if (ci && ci->rta_error) sprintf(out, "%s error %d", out, ci->rta_error);
1693    }
1694    else if (ci && ci->rta_error)
1695      sprintf(out, "%s error %d", out, ci->rta_error);
1696  }
1697  if (attr[RTA_IIF] && !gfilter.idev)
1698    sprintf(out, "%s iif %s", out, 
1699        if_indextoname(*(int*)RTA_DATA(attr[RTA_IIF]), toybuf));
1700
1701  if (attr[RTA_METRICS])
1702    print_rta_metrics(out, attr[RTA_METRICS]);
1703
1704  if (TT.flush || (TT.connected && !TT.from_ok)) 
1705    memcpy(toybuf, (void*)mhdr,mhdr->nlmsg_len);
1706
1707  if (TT.flush) {
1708    int sockfd = 0;
1709    struct nlmsghdr* mhdr = (struct nlmsghdr*)toybuf;
1710    struct rtmsg *msg = NLMSG_DATA(mhdr);
1711    int tvar, msglen = mhdr->nlmsg_len - NLMSG_LENGTH(sizeof(struct rtmsg));
1712    struct rtattr *rta, *attr[RTA_MAX+1] = {0,};
1713
1714    tvar = msglen;
1715    for (rta = RTM_RTA(msg); RTA_OK(rta, tvar); rta=RTA_NEXT(rta, tvar))
1716      if (rta->rta_type <= RTA_MAX) attr[rta->rta_type] = rta;
1717
1718    if (msg->rtm_family == AF_INET6
1719        && !msg->rtm_dst_len
1720        && msg->rtm_type == RTN_UNREACHABLE
1721        && attr[RTA_PRIORITY]
1722        && *(int*)RTA_DATA(attr[RTA_PRIORITY]) == -1)
1723      return 0;
1724
1725    mhdr->nlmsg_flags = NLM_F_REQUEST | NLM_F_ACK;
1726    mhdr->nlmsg_type  = RTM_DELROUTE;
1727    mhdr->nlmsg_pid = 0;
1728    sockfd = xsocket(AF_NETLINK, SOCK_RAW, NETLINK_ROUTE);
1729    if (send(sockfd , (void*)mhdr, mhdr->nlmsg_len, 0) < 0)
1730      perror_exit("Unable to send data on socket.");
1731
1732    while (1) {
1733      struct nlmsghdr *mhdr;
1734      int msglen = recv(sockfd, toybuf, sizeof(toybuf), 0);
1735
1736      if ((msglen < 0) && (errno == EINTR || errno == EAGAIN)) continue;
1737      else if (msglen < 0) {
1738        error_msg("netlink receive error %s", strerror(errno));
1739        xclose(sockfd);
1740        return 1;
1741      } else if (!msglen) {
1742        error_msg("EOF on netlink");
1743        xclose(sockfd);
1744        return 1;
1745      }
1746
1747      for (mhdr = (struct nlmsghdr*)toybuf; NLMSG_OK(mhdr, msglen);
1748          mhdr = NLMSG_NEXT(mhdr, msglen)) {
1749        switch (mhdr->nlmsg_type) {
1750          case NLMSG_DONE:
1751            xclose(sockfd);
1752            return 0;
1753          case NLMSG_ERROR:
1754            {
1755              struct nlmsgerr *merr = (struct nlmsgerr*)NLMSG_DATA(mhdr);
1756
1757              if (merr->error == 0)  { xclose(sockfd); return 0; }
1758              if (mhdr->nlmsg_len < NLMSG_LENGTH(sizeof(struct nlmsgerr)))
1759                error_msg("ERROR truncated");
1760              else {
1761                errno = -merr->error;
1762                perror_msg("RTNETLINK answers");
1763              }
1764              xclose(sockfd);
1765              return 1;
1766            }
1767          default:
1768            break;
1769        }
1770      } // End of for loop.
1771    } // End of while loop.
1772
1773    xclose(sockfd);
1774  } else printf("%s\n",out);
1775  return 0;
1776}
1777
1778static int route_get(char **argv)
1779{
1780  int idx, flag;
1781  struct arglist cmd_objectlist[] = {{"from", 0}, {"iif", 1}, {"oif", 2}, 
1782    {"dev", 3}, {"notify", 4}, {"connected", 5}, {"to", 6}, {NULL, -1}};
1783  char *idev = NULL, *odev = NULL;
1784  struct {
1785    struct nlmsghdr mhdr;
1786    struct rtmsg msg;
1787    char buf[1024];
1788  } request;
1789
1790  memset(&request, 0, sizeof(request));
1791  request.mhdr.nlmsg_len = NLMSG_LENGTH(sizeof(struct rtmsg));
1792  request.mhdr.nlmsg_flags = NLM_F_REQUEST | NLM_F_ACK;
1793  request.mhdr.nlmsg_type = RTM_GETROUTE;
1794  request.msg.rtm_family = AF_UNSPEC;
1795
1796  for (; *argv; argv++) {
1797    switch(idx = substring_to_idx(*argv, cmd_objectlist)) {
1798      case 0: TT.from_ok = 1; // dst address
1799      case 6: argv++; //fallthrough
1800      default: 
1801              {
1802                uint32_t addr[8] = {0,}, netmask = 0;
1803                uint8_t len = 0;
1804
1805                if (!*argv) error_exit("'%s': Missing Prefix", argv[-1]);
1806                parse_prefix(addr, &netmask, &len, *argv, request.msg.rtm_family);
1807                if (len) request.msg.rtm_family = ((len == 4) ? AF_INET : AF_INET6);
1808                netmask = (request.msg.rtm_family == AF_INET6) ? 128 : 32;
1809                if (!idx) request.msg.rtm_src_len = netmask;
1810                else request.msg.rtm_dst_len = netmask;
1811                add_string_to_rtattr(&request.mhdr, sizeof(request),
1812                    (!idx ? RTA_SRC : RTA_DST), addr, len);
1813                break;
1814              }
1815      case 1:
1816      case 2:
1817      case 3:
1818              if (!*++argv) show_iproute_help();
1819              if (idx == 1) idev = *argv, flag = RTA_IIF;
1820              else odev = *argv, flag = RTA_OIF;
1821              idx = get_ifaceindex(*argv, 1);
1822              add_string_to_rtattr(&request.mhdr, sizeof(request),
1823                  flag, (char*)&idx, sizeof(idx));
1824              break;
1825      case 4:
1826              request.msg.rtm_flags |= RTM_F_NOTIFY;
1827              break;
1828      case 5:
1829              TT.connected = 1;
1830              break;
1831    }
1832  }
1833  if (!request.msg.rtm_dst_len) 
1834    error_exit("need at least destination address");
1835
1836  send_nlmesg(0, 0, 0, &request, sizeof(request));
1837  filter_nlmesg(display_route_info, NULL);
1838
1839  if (TT.connected && !TT.from_ok) {
1840    struct nlmsghdr *mhdr = (struct nlmsghdr*)toybuf;
1841    struct rtmsg *msg = NLMSG_DATA(mhdr);
1842    int tvar, msglen = mhdr->nlmsg_len - NLMSG_LENGTH(sizeof(struct rtmsg));
1843    struct rtattr *rta, *attr[RTA_MAX+1] = {0,};
1844
1845    if (mhdr->nlmsg_type != RTM_NEWROUTE) error_exit("not a route?");
1846    if (msglen < 0) error_exit("wrong len %d", msglen);
1847
1848    tvar = msglen;
1849    for (rta = RTM_RTA(msg); RTA_OK(rta, tvar); rta=RTA_NEXT(rta, tvar))
1850      if (rta->rta_type <= RTA_MAX) attr[rta->rta_type] = rta;
1851
1852    if (attr[RTA_PREFSRC]) {
1853      attr[RTA_PREFSRC]->rta_type = RTA_SRC;
1854      msg->rtm_src_len = 8*RTA_PAYLOAD(attr[RTA_PREFSRC]);
1855    } else if (!attr[RTA_SRC]) error_exit("can't connect the route");
1856
1857    if (!odev && attr[RTA_OIF]) attr[RTA_OIF]->rta_type = 0;
1858    if (attr[RTA_GATEWAY]) attr[RTA_GATEWAY]->rta_type = 0;
1859    if (!idev && attr[RTA_IIF]) attr[RTA_IIF]->rta_type = 0;
1860    mhdr->nlmsg_flags = NLM_F_REQUEST | NLM_F_ACK;
1861    mhdr->nlmsg_type  = RTM_GETROUTE;
1862    mhdr->nlmsg_pid = 0;
1863    xclose(TT.sockfd);
1864    TT.sockfd = xsocket(AF_NETLINK, SOCK_RAW, NETLINK_ROUTE);
1865    send_nlmesg(0, 0, 0, mhdr, mhdr->nlmsg_len);
1866    filter_nlmesg(display_route_info, NULL);
1867  }
1868  return 0;
1869}
1870
1871static int route_show_flush(char **argv)
1872{
1873  struct arglist cmd_objectlist[] = {{"protocol", 0}, {"dev", 1}, {"oif", 2},
1874    {"iif", 3}, {"via", 4}, {"table", 5}, {"cache", 6}, {"from", 7}, 
1875    {"to", 8}, {"all", 9}, {"root", 10}, {"match", 11}, {"exact", 12}, 
1876    {"main", 13}, {NULL,-1}};
1877  int family = TT.addressfamily, idx;
1878  struct {
1879    struct nlmsghdr mhdr;
1880    struct rtmsg msg;
1881  } request;
1882
1883  if (*argv[-1] == 'f') TT.flush = 1;
1884  if (TT.flush && !*argv) show_iproute_help();
1885
1886  gfilter.tb = RT_TABLE_MAIN;
1887  for (; *argv; argv++) {
1888    switch (idx = substring_to_idx(*argv, cmd_objectlist)) {
1889      case 0:
1890        if (!*++argv) show_iproute_help();
1891        if ((idx = idxfromRPDB(*argv,RPDB_rtprotos)) < 0)
1892          error_exit("Invalid argument protocol.");
1893        gfilter.proto = idx;
1894        break;
1895      case 1:
1896      case 2:
1897      case 3:
1898        {
1899          if (!*++argv) show_iproute_help();
1900          int dev = get_ifaceindex(*argv, 1);
1901
1902          if (idx == 3) gfilter.idev = dev;
1903          else gfilter.odev = dev;        
1904        }
1905        break;
1906      case 4:
1907        if (!*++argv) show_iproute_help();
1908        parse_prefix(gfilter.rvia.addr, &gfilter.rvia.netmask,
1909            &gfilter.rvia.len, *argv, gfilter.rvia.family);
1910        if (gfilter.rvia.len)
1911          gfilter.rvia.family = ((gfilter.rvia.len == 4) ?
1912              AF_INET : AF_INET6);
1913        break;
1914      case 5:
1915        if (!*++argv) show_iproute_help();
1916        idx = substring_to_idx(*argv, cmd_objectlist);
1917        if (idx == 6) gfilter.tb = -1;
1918        else if (idx == 9) gfilter.tb = 0;
1919        else if (idx != 13) {
1920          if ((gfilter.tb = idxfromRPDB(*argv, RPDB_rttables)) < 0)
1921            error_exit("table %s is invalid.", *argv);
1922        }
1923        break;
1924      case 6:
1925        gfilter.tb = -1;
1926        break;
1927      case 7:
1928        if (!*++argv) show_iproute_help();
1929        idx = substring_to_idx(*argv, cmd_objectlist);
1930        if (idx < 0)  if (!*++argv) show_iproute_help();
1931        if (idx == 10)
1932           if (!*++argv) show_iproute_help();
1933          parse_prefix(gfilter.rsrc.addr, &gfilter.rsrc.netmask,
1934              &gfilter.rsrc.len, *argv, gfilter.rsrc.family);
1935        if (gfilter.rsrc.len)
1936          gfilter.rsrc.family = ((gfilter.rsrc.len == 4) ?
1937              AF_INET : AF_INET6);
1938        else {
1939          if ((idx == 12 ||idx == 11) && !*++argv) show_iproute_help();
1940          parse_prefix(gfilter.msrc.addr, &gfilter.msrc.netmask,
1941              &gfilter.msrc.len, *argv, gfilter.msrc.family);
1942          if (gfilter.msrc.len)
1943            gfilter.msrc.family = ((gfilter.msrc.len == 4) ?
1944                AF_INET : AF_INET6);
1945          if (idx != 11) gfilter.rsrc = gfilter.msrc;
1946        }
1947        break;
1948      case 8:
1949        idx = substring_to_idx(*argv, cmd_objectlist);
1950        if (idx != -1 && !*++argv) show_iproute_help();
1951      default: // fallthrough
1952        if (idx == 10) {
1953          if (!*++argv) show_iproute_help();
1954          parse_prefix(gfilter.rdst.addr, &gfilter.rdst.netmask,
1955              &gfilter.rdst.len, *argv, gfilter.rdst.family);
1956        if (gfilter.rdst.len)
1957          gfilter.rdst.family = ((gfilter.rdst.len == 4) ?
1958              AF_INET : AF_INET6);
1959        }
1960        else {
1961          if ((idx == 12 ||idx == 11) && !*++argv) show_iproute_help();
1962          parse_prefix(gfilter.mdst.addr, &gfilter.mdst.netmask,
1963              &gfilter.mdst.len, *argv, gfilter.mdst.family);
1964          if (gfilter.mdst.len)
1965            gfilter.mdst.family = ((gfilter.mdst.len == 4) ?
1966                AF_INET : AF_INET6);
1967          if (idx != 11) gfilter.rdst = gfilter.mdst;
1968        }
1969        break;
1970    }
1971  }
1972  if (family == AF_UNSPEC && gfilter.tb) family = AF_INET;
1973
1974  if (TT.flush) {
1975    if (gfilter.tb < 0) { // flush table cache
1976      if (family != AF_INET6) {
1977        FILE *fp = xfopen("/proc/sys/net/ipv4/route/flush", "w");
1978
1979        if (fwrite("-1",1,2,fp) < 2) error_exit("can't flush routing cache");
1980        fclose(fp);
1981      }
1982      if (family == AF_INET) return 0;
1983    }
1984  }
1985
1986  memset(&request, 0, sizeof (request));
1987  request.mhdr.nlmsg_len = NLMSG_LENGTH(sizeof (struct rtmsg));
1988  request.mhdr.nlmsg_flags = NLM_F_REQUEST;
1989  request.mhdr.nlmsg_flags |= NLM_F_ROOT | NLM_F_MATCH;
1990  request.mhdr.nlmsg_type = RTM_GETROUTE;
1991  request.msg.rtm_family = family;
1992  if (gfilter.tb < 0) request.msg.rtm_flags = RTM_F_CLONED;
1993  send_nlmesg(0, 0, 0, (void*)&request, sizeof (request));
1994  return (filter_nlmesg(display_route_info, NULL));
1995}
1996
1997static int route_update(char **argv, unsigned int route_flags)
1998{
1999  char mxbuf[256], *d = NULL;
2000  struct rtattr *mxrta = (void*)mxbuf;
2001  unsigned mxlock = 0, ok = 0;
2002  int idx;
2003  uint32_t addr[8] = {0,}, netmask = 0;
2004  uint8_t len = 0;
2005
2006  struct arglist cmd_objectlist[] = {{"src", 0}, {"via", 1}, {"mtu", 2},
2007    {"lock", 3}, {"protocol", 4}, {"table", 5}, {"dev", 6}, {"oif", 7},
2008    {"to", 8}, {"metric", 9}, {NULL,-1}
2009  };
2010  enum {
2011    gtwy_ok = 1,
2012    dst_ok = 2,
2013    proto_ok = 4,
2014    type_ok = 8
2015  };
2016  struct {
2017    struct nlmsghdr hdr;
2018    struct rtmsg msg;
2019    char buf[1024];
2020  } req;
2021
2022  memset(&req, 0, sizeof(req));
2023  req.hdr.nlmsg_len = NLMSG_LENGTH(sizeof(struct rtmsg));
2024  req.hdr.nlmsg_flags = NLM_F_ACK| NLM_F_REQUEST | route_flags;
2025  req.hdr.nlmsg_type = TT.route_cmd;
2026  req.msg.rtm_family = AF_UNSPEC;
2027  req.msg.rtm_table = RT_TABLE_MAIN;
2028  req.msg.rtm_scope = RT_SCOPE_NOWHERE;
2029
2030  if (TT.route_cmd != RTM_DELROUTE) {
2031    req.msg.rtm_protocol = RTPROT_BOOT;
2032    req.msg.rtm_scope = RT_SCOPE_UNIVERSE;
2033    req.msg.rtm_type = RTN_UNICAST;
2034  }
2035
2036  mxrta->rta_type = RTA_METRICS;
2037  mxrta->rta_len = RTA_LENGTH(0);
2038
2039  for (; *argv; argv++) {
2040    idx = substring_to_idx(*argv, cmd_objectlist);
2041    if (!idx) {
2042      if (!*++argv) show_iproute_help();
2043      parse_prefix(addr, &netmask, &len, *argv, req.msg.rtm_family);
2044      if (len) req.msg.rtm_family = ((len == 4) ? AF_INET : AF_INET6);
2045      add_string_to_rtattr(&req.hdr, sizeof(req), RTA_PREFSRC, addr, len);
2046    } else if (idx == 1) {
2047      ok |= gtwy_ok;
2048      if (!*++argv) show_iproute_help();
2049      parse_prefix(addr, &netmask, &len, *argv, req.msg.rtm_family);
2050      if (len) req.msg.rtm_family = ((len == 4) ? AF_INET : AF_INET6);
2051      add_string_to_rtattr(&req.hdr, sizeof(req),RTA_GATEWAY, addr, len);
2052    } else if (idx == 2) {
2053      if (!*++argv) show_iproute_help();
2054      if (substring_to_idx(*argv, cmd_objectlist ) == 3) {
2055        mxlock |= (1 << RTAX_MTU);
2056        if (!*++argv) show_iproute_help();
2057      }
2058      idx = atolx(*argv);
2059      add_uint32_rtattr_to_buffer(mxrta, sizeof(mxbuf), RTAX_MTU, idx);
2060    } else if (idx == 4) {
2061      if (!*++argv) show_iproute_help();
2062      if ((idx = idxfromRPDB(*argv,RPDB_rtprotos)) < 0)
2063      error_exit("Invalid argument protocol %s.",*argv);
2064      req.msg.rtm_protocol = idx;
2065      ok |= proto_ok;
2066    } else if (idx == 5) {
2067      if (!*++argv) show_iproute_help();
2068      req.msg.rtm_table = idxfromRPDB(*argv, RPDB_rttables);
2069    } else if (idx == 6 || idx == 7) {
2070      if (!*++argv) show_iproute_help();
2071      d = *argv;
2072    } else if (idx == 9) {
2073      unsigned long metric;
2074      unsigned int res;
2075      char* ptr;
2076      if (!*++argv) show_iproute_help();
2077      metric = strtoul(*argv, &ptr, 0);
2078      if (!(!*ptr && metric <= 0xFFFFFFFFUL)) 
2079        error_exit("Invalid argument metric %s.",*argv);
2080      else
2081        res = metric;
2082      add_string_to_rtattr(&req.hdr, sizeof(req),
2083          RTA_PRIORITY, (char*)&res, sizeof(res));
2084    } else {
2085      if (idx == 8)
2086        if (!*++argv) show_iproute_help();
2087      idx = substring_to_idx(*argv,rtmtypes);
2088      if (idx != -1) {
2089        if (!*++argv) show_iproute_help();
2090        req.msg.rtm_type = idx;
2091        ok |= type_ok;
2092      }
2093      if (ok & dst_ok) error_exit("Duplicate argument 'to'");
2094      parse_prefix(addr, &netmask, &len, *argv, req.msg.rtm_family);
2095      if (len) req.msg.rtm_family = ((len == 4) ? AF_INET : AF_INET6);
2096      req.msg.rtm_dst_len = netmask;
2097      ok |= dst_ok;
2098      if (len) add_string_to_rtattr(&req.hdr, sizeof(req),RTA_DST, addr, len);
2099    }
2100  }
2101
2102  if (d) {
2103    idx = get_ifaceindex(d,1);
2104    add_string_to_rtattr(&req.hdr, sizeof(req),
2105        RTA_OIF, (char*)&idx, sizeof(idx));
2106  }
2107  if (mxrta->rta_len > RTA_LENGTH(0)) {
2108    if (mxlock)
2109      add_uint32_rtattr_to_buffer(mxrta, sizeof(mxbuf), RTAX_LOCK, mxlock);
2110    add_string_to_rtattr(&req.hdr, sizeof(req),
2111        RTA_METRICS, RTA_DATA(mxrta), RTA_PAYLOAD(mxrta));
2112  }
2113
2114  if (req.msg.rtm_type == RTN_LOCAL || req.msg.rtm_type == RTN_NAT)
2115    req.msg.rtm_scope = RT_SCOPE_HOST;
2116  else if (req.msg.rtm_type == RTN_BROADCAST||req.msg.rtm_type == RTN_MULTICAST
2117      || req.msg.rtm_type == RTN_ANYCAST)
2118    req.msg.rtm_scope = RT_SCOPE_LINK;
2119  else if (req.msg.rtm_type == RTN_UNICAST || req.msg.rtm_type == RTN_UNSPEC) {
2120    if (TT.route_cmd == RTM_DELROUTE)
2121      req.msg.rtm_scope = RT_SCOPE_NOWHERE;
2122    else if (!(ok & gtwy_ok))
2123      req.msg.rtm_scope = RT_SCOPE_LINK;
2124  }
2125  if (req.msg.rtm_family == AF_UNSPEC) req.msg.rtm_family = AF_INET;
2126  send_nlmesg(0, 0, 0, &req, sizeof(req));
2127  filter_nlmesg(NULL, NULL);
2128  return 0;
2129}
2130
2131static int iproute(char **argv)
2132{
2133  int idx = 1;
2134  struct arglist cmd_objectlist1[] = {{"add", 0}, {"append", 1},{"change", 2},
2135    {"chg", 3},{"delete",4}, {"get", 5}, {"list", 6}, {"show", 7},
2136    {"prepend", 8},{"replace", 9},{"test", 10}, {"flush", 11},{NULL,-1}};
2137
2138  TT.route_cmd = RTM_NEWROUTE;
2139  switch (idx = substring_to_idx(*argv , cmd_objectlist1)) {
2140    case 0: // add
2141      return route_update(++argv , NLM_F_CREATE|NLM_F_EXCL);
2142    case 1: // append
2143      return route_update(++argv , NLM_F_CREATE|NLM_F_APPEND);
2144    case 2: // change
2145    case 3: // chg
2146      return route_update(++argv , NLM_F_REPLACE);
2147    case 4: // delete
2148      TT.route_cmd = RTM_DELROUTE;
2149      return route_update(++argv , RTM_DELROUTE);
2150    case 5:
2151      return route_get(++argv);
2152    case 6:
2153    case 7:
2154      return route_show_flush(++argv);
2155    case 8: // prepend
2156      return route_update(++argv , NLM_F_CREATE);
2157    case 9: // replace
2158      return route_update(++argv ,  NLM_F_CREATE|NLM_F_REPLACE);
2159    case 10: // test
2160      return route_update(++argv , NLM_F_EXCL);
2161    case 11: // flush
2162      return route_show_flush(++argv);
2163    default:
2164      if (!*argv) return route_show_flush(argv);
2165      else show_iproute_help();
2166  }
2167  return 0; // non reachable code.
2168}
2169
2170
2171// ===========================================================================
2172// code for ip rule.
2173// ===========================================================================
2174static void show_iprule_help(void)
2175{
2176  error_exit("usage: ip rule [ list | add | del ] SELECTOR ACTION\n"
2177    "SELECTOR := [ from PREFIX ] [ to PREFIX ] [pref NUMBER] [ tos TOS ]\n"
2178    "            [ fwmark FWMARK] [ dev/iif STRING ] [type TYPE]\n"
2179    "ACTION := [ table TABLE_ID ] [ realms [SRCREALM/]DSTREALM ]");
2180}
2181
2182static int ruleupdate(char **argv)
2183{
2184  int8_t idx, tflag = 0, opt = (*argv[-1] == 'a') ? RTM_NEWRULE : RTM_DELRULE;
2185  struct arglist options[] = {{"from", 0}, {"to", 1}, {"preference", 2},
2186    {"order", 2}, {"priority", 2}, {"tos", 3}, {"dsfield", 3}, {"fwmark", 4},
2187    {"realms", 5}, {"table", 6}, {"lookup", 6}, {"dev", 7}, {"iif", 7},
2188    {"nat", 8}, {"map-to", 8}, {"type", 9}, {"help", 10}, {NULL, -1}};
2189  struct {
2190    struct nlmsghdr mhdr;
2191    struct rtmsg    msg;
2192    char buf[1024];
2193  } request;
2194
2195  memset(&request, 0, sizeof(request));
2196  request.mhdr.nlmsg_type = opt;
2197  request.mhdr.nlmsg_len = NLMSG_LENGTH(sizeof(struct rtmsg));
2198  request.mhdr.nlmsg_flags = NLM_F_REQUEST | NLM_F_ACK |
2199    ((opt == RTM_DELRULE) ? 0 : NLM_F_CREATE | NLM_F_EXCL);
2200  request.msg.rtm_family = TT.addressfamily;
2201  request.msg.rtm_protocol = RTPROT_BOOT;
2202  request.msg.rtm_scope = RT_SCOPE_UNIVERSE;
2203  request.msg.rtm_table = 0;
2204  request.msg.rtm_type = ((opt == RTM_DELRULE) ? RTN_UNSPEC : RTN_UNICAST);
2205
2206  for (; *argv; argv++) {
2207    switch ((idx = substring_to_idx(*argv, options))) {
2208      case 0:
2209      case 1: 
2210        { // e.g. from IP/Netmask and to IP/Netmask.
2211          uint32_t addr[4] = {0,}, netmask = 0;
2212          uint8_t len = 0, *tmp;
2213
2214          if (!*++argv) error_exit("'%s': Missing Prefix", argv[-1]);
2215          parse_prefix(addr, &netmask, &len, *argv, request.msg.rtm_family);
2216
2217          tmp = idx ? &request.msg.rtm_dst_len : &request.msg.rtm_src_len;
2218          if (!netmask) *tmp = 0;
2219          else *tmp = netmask;
2220
2221          add_string_to_rtattr(&request.mhdr, sizeof(request),
2222              (idx ? RTA_DST : RTA_SRC), addr, len);
2223        }
2224        break;
2225      case 2:
2226      case 4: 
2227        { // e.g. Preference p# and fwmark MARK
2228          uint32_t pref;
2229          char *ptr;
2230
2231          if (!*++argv)
2232            error_exit("Missing %s", (idx == 2) ? "Preference" : "fwmark");
2233          pref = strtoul(*argv, &ptr, 0);
2234          if (!ptr || (ptr == *argv) || *ptr  || pref > 0xFFFFFFFFUL)
2235            error_exit("Invalid %s",  (idx == 2) ? "Preference" : "fwmark");
2236          add_string_to_rtattr(&request.mhdr, sizeof(request),
2237              ((idx == 2) ? RTA_PRIORITY : RTA_PROTOINFO),
2238              (void *)&pref, sizeof(uint32_t));
2239        }
2240        break;
2241      case 3:
2242        {
2243          uint32_t tos;
2244          if (!*++argv) error_exit("Missing TOS key");
2245          if ((tos = idxfromRPDB(*argv, RPDB_rtdsfield)) < 0)
2246            error_exit("Invalid TOS");
2247          request.msg.rtm_tos = tos;
2248        }
2249        break;
2250      case 5:
2251        { // e.g. realms FROM_realm/TO_realm
2252          uint32_t realms = 0;
2253          int ret;
2254          char *ptr;
2255
2256          if (!*++argv) error_exit("Missing REALMSID");
2257          if ((ptr = strchr(*argv, '/'))) {
2258            *ptr = 0;
2259            if ((ret = idxfromRPDB(*argv, RPDB_rtrealms)) < 0)
2260              error_exit("Invalid realms");
2261            realms = ret;
2262            realms <<= 16;
2263            *ptr++ = '/';
2264          } else ptr = *argv;
2265          if ((ret = idxfromRPDB(ptr, RPDB_rtrealms)) < 0)
2266            error_exit("Invalid realms");
2267          realms |= ret;
2268          add_string_to_rtattr(&request.mhdr, sizeof(request),
2269              RTA_FLOW, (void *)&realms, sizeof(uint32_t));
2270        }
2271        break;
2272      case 6:
2273        { // e.g. table tid/tableName
2274          int tid;
2275          if (!*++argv) error_exit("Missing TableID");
2276          if ((tid = idxfromRPDB(*argv, RPDB_rttables)) < 0)
2277            error_exit("Invalid TID");
2278          request.msg.rtm_table = tid;
2279          tflag = 1;
2280        }
2281        break;
2282      case 7:
2283        {
2284          if (!*++argv) error_exit("Missing dev/iif NAME");
2285          add_string_to_rtattr(&request.mhdr, sizeof(request),
2286              RTA_IIF, *argv, strlen(*argv)+1);
2287        }
2288        break;
2289      case 8:
2290        {
2291          uint32_t addr[4] = {0,};
2292          uint8_t af = AF_UNSPEC;
2293
2294          if (!*++argv) error_exit("Missing nat/map-to ADDRESS");
2295          if (get_prefix(addr, &af /* Un-used variable */, *argv, AF_INET))
2296            error_exit("Invalid mapping Address");
2297
2298          add_string_to_rtattr(&request.mhdr, sizeof(request),
2299              RTA_GATEWAY, addr, sizeof(uint32_t));
2300          request.msg.rtm_type = RTN_NAT;
2301        }
2302        break;
2303      case 9:
2304        {
2305          if (!*++argv) error_exit("TYPE Missing");
2306          request.msg.rtm_type = rtmtype_str2idx(*argv);
2307        }
2308        break;
2309      case 10: 
2310        show_iprule_help();
2311        break; // Unreachable code.
2312      default: 
2313        error_exit("Invalid argument '%s'", *argv);
2314        break; // Unreachable code.
2315    }
2316  }
2317
2318  if (!request.msg.rtm_family) request.msg.rtm_family = AF_INET;
2319  if (!tflag && opt == RTM_NEWRULE) request.msg.rtm_table = RT_TABLE_MAIN;
2320
2321  send_nlmesg(0, 0, 0, &request, sizeof(request));
2322  return (filter_nlmesg(NULL, NULL));
2323}
2324
2325static int show_rules(struct nlmsghdr *mhdr,
2326    char **argv __attribute__ ((__unused__)))
2327{
2328  struct rtmsg *msg = NLMSG_DATA(mhdr);
2329  struct rtattr *rta, *attr[RTA_MAX+1] = {0,};
2330  int32_t tvar, msglen = mhdr->nlmsg_len - NLMSG_LENGTH(sizeof(struct rtmsg));
2331  int hlen = ((msg->rtm_family == AF_INET) ? 32
2332      : ((msg->rtm_family == AF_INET6) ? 128 : -1));
2333
2334  if (mhdr->nlmsg_type != RTM_NEWRULE) return 0;
2335  if (msglen < 0) return 1;
2336
2337  tvar = msglen;
2338  for (rta = RTM_RTA(msg); RTA_OK(rta, tvar); rta=RTA_NEXT(rta, tvar))
2339    if (rta->rta_type <= RTA_MAX) attr[rta->rta_type] = rta;
2340
2341  if (tvar) error_msg("deficit %d, rtalen = %d!", tvar, rta->rta_len);
2342
2343  printf("%u:\tfrom ", attr[RTA_PRIORITY] ?
2344      *(unsigned *)RTA_DATA(attr[RTA_PRIORITY]) : 0);
2345
2346  if (attr[RTA_SRC]) {
2347    printf("%s", (msg->rtm_family == AF_INET || msg->rtm_family == AF_INET6)
2348        ? inet_ntop(msg->rtm_family, RTA_DATA(attr[RTA_SRC]),
2349          toybuf, sizeof(toybuf))
2350        : "???");
2351    (msg->rtm_src_len != hlen) ? printf("/%u", msg->rtm_src_len) : 0;
2352  } else msg->rtm_src_len ? printf("0/%d", msg->rtm_src_len) : printf("all");
2353
2354  xputc(' ');
2355  if (attr[RTA_DST]) {
2356    printf("to %s", (msg->rtm_family == AF_INET || msg->rtm_family == AF_INET6)
2357        ? inet_ntop(msg->rtm_family, RTA_DATA(attr[RTA_DST]),
2358          toybuf, sizeof(toybuf))  : "???");
2359    (msg->rtm_dst_len != hlen) ? printf("/%u", msg->rtm_dst_len) : xputc(' ');
2360  } else if (msg->rtm_dst_len)
2361    printf("to 0/%d ", msg->rtm_dst_len);
2362
2363  if (msg->rtm_tos)
2364    printf("tos %s ", namefromRPDB(msg->rtm_tos, RPDB_rtdsfield));
2365
2366  if (attr[RTA_PROTOINFO])
2367    printf("fwmark %#x ", *(uint32_t*)RTA_DATA(attr[RTA_PROTOINFO]));
2368
2369  if (attr[RTA_IIF]) printf("iif %s ", (char*)RTA_DATA(attr[RTA_IIF]));
2370
2371  if (msg->rtm_table)
2372    printf("lookup %s ", namefromRPDB(msg->rtm_table, RPDB_rttables));
2373
2374  if (attr[RTA_FLOW]) {
2375    u_int32_t from, to = *(u_int32_t *)RTA_DATA(attr[RTA_FLOW]);
2376    char *format = "realms %s/";
2377
2378    to = (from = (to >> 16)) & 0xFFFF;
2379    format = (from ? format: "%s");
2380    printf(format, namefromRPDB((from ? from : to), RPDB_rtrealms));
2381  }
2382
2383  if (msg->rtm_type == RTN_NAT) {
2384    if (!attr[RTA_GATEWAY]) printf("masquerade");
2385    else printf("map-to %s ", inet_ntop(msg->rtm_family,
2386          RTA_DATA(attr[RTA_GATEWAY]), toybuf, sizeof(toybuf)));
2387  } else if (msg->rtm_type != RTN_UNICAST)
2388    printf("%s", rtmtype_idx2str(msg->rtm_type));
2389
2390  xputc('\n');
2391  return 0;
2392}
2393
2394static int rulelist(char **argv)
2395{
2396  if (*argv) {
2397    error_msg("'ip rule show' does not take any arguments.");
2398    return 1;
2399  }
2400  send_nlmesg(RTM_GETRULE, NLM_F_ROOT | NLM_F_MATCH | NLM_F_REQUEST,
2401      ((TT.addressfamily != AF_UNSPEC) ? TT.addressfamily : AF_INET), NULL, 0);
2402  return filter_nlmesg(show_rules, argv);
2403}
2404
2405static int iprule(char **argv)
2406{
2407  int idx;
2408  struct arglist options[] = {{"add", 0}, {"delete", 0}, {"list", 1},
2409    {"show", 1}, {NULL, -1}};
2410  cmdobj ipcmd, cmdobjlist[] = {ruleupdate, rulelist};
2411
2412  if (!*argv) idx = 1;
2413  else if ((idx = substring_to_idx(*argv++, options)) == -1)
2414    show_iprule_help();
2415  ipcmd = cmdobjlist[idx];
2416  return ipcmd(argv);
2417}
2418//============================================================================
2419// code for ip tunnel.
2420//============================================================================
2421static void show_iptunnel_help(void)
2422{
2423  error_exit("usage: iptunnel { add | change | del | show } [NAME]\n"
2424    "           [mode { ipip | gre | sit }] [remote ADDR] [local ADDR]\n"
2425    "           [[i|o]seq] [[i|o]key KEY] [[i|o]csum] [ttl TTL]\n"
2426    "           [tos TOS] [[no]pmtudisc] [dev PHYS_DEV]");
2427}
2428
2429static int tnl_ioctl(char *dev, int rtype, struct ip_tunnel_parm *ptnl)
2430{
2431  struct ifreq req;
2432  int fd, ret = 0;
2433
2434  if ((rtype == SIOCCHGTUNNEL || rtype == SIOCDELTUNNEL) && *ptnl->name)
2435    xstrncpy(req.ifr_name, ptnl->name, IF_NAMESIZE);
2436  else xstrncpy(req.ifr_name, dev, IF_NAMESIZE);
2437
2438  if (rtype != SIOCGIFHWADDR) req.ifr_ifru.ifru_data = (void*)ptnl;
2439  fd = xsocket(AF_INET, SOCK_DGRAM, 0);
2440
2441  if (rtype == SIOCGETTUNNEL) ret = ioctl(fd, rtype, &req);
2442  else if (rtype == SIOCGIFHWADDR)
2443    ret = (ioctl(fd, rtype, &req) < 0) ? -1 : req.ifr_addr.sa_family;
2444  else xioctl(fd, rtype, &req);
2445
2446  close(fd);
2447  return ret;
2448}
2449
2450static int display_tunnel(struct ip_tunnel_parm *ptnl)
2451{
2452  char rmt_addr[64], lcl_addr[64], ikey_str[64], okey_str[64];
2453
2454  printf("%s: %s/ip", ptnl->name, ptnl->iph.protocol == IPPROTO_IPIP ? "ip" :
2455      (ptnl->iph.protocol == IPPROTO_GRE ? "gre" :
2456       (ptnl->iph.protocol == IPPROTO_IPV6 ? "ipv6" : "unknown")));
2457  printf("  remote %s  local %s ", ptnl->iph.daddr ?
2458      inet_ntop(AF_INET, &ptnl->iph.daddr, rmt_addr, sizeof(rmt_addr)) : "any",
2459      ptnl->iph.saddr ? inet_ntop(AF_INET, &ptnl->iph.saddr, lcl_addr,
2460        sizeof(lcl_addr)) : "any");
2461  if (ptnl->link) {
2462    struct ifreq req;
2463    int fd;
2464
2465    req.ifr_ifindex = ptnl->link;
2466    fd = xsocket(AF_INET, SOCK_DGRAM, 0);
2467    if (ioctl(fd, SIOCGIFNAME, &req) < 0) perror_msg("SIOCGIFNAME");
2468    else printf(" dev %s ", req.ifr_name);
2469    close(fd);
2470  }
2471  if (ptnl->iph.ttl) printf(" ttl %d ", ptnl->iph.ttl);
2472  else printf(" ttl inherit ");
2473
2474  if (ptnl->iph.tos) {
2475    printf(" tos");
2476    if (ptnl->iph.tos & 1) printf(" inherit");
2477    if (ptnl->iph.tos & ~1) printf("%c%s ", ptnl->iph.tos & 1 ? '/' : ' ',
2478        namefromRPDB((ptnl->iph.tos & ~1), RPDB_rtdsfield));
2479  }
2480  if (!(ptnl->iph.frag_off & htons(IP_DF))) printf(" nopmtudisc");
2481  inet_ntop(AF_INET, &ptnl->i_key, ikey_str, sizeof(ikey_str));
2482  if ((ptnl->i_flags & GRE_KEY) && (ptnl->o_flags & GRE_KEY)
2483      && ptnl->o_key == ptnl->i_key) printf(" key %s", ikey_str);
2484  else if ((ptnl->i_flags | ptnl->o_flags) & GRE_KEY) {
2485    inet_ntop(AF_INET, &ptnl->o_key, okey_str, sizeof(okey_str));
2486    if (ptnl->i_flags & GRE_KEY) printf(" ikey %s ", ikey_str);
2487    if (ptnl->o_flags & GRE_KEY) printf(" okey %s ", okey_str);
2488  }
2489  if (ptnl->i_flags & GRE_SEQ) printf("\n  Drop packets out of sequence.\n");
2490  if (ptnl->i_flags & GRE_CSUM)
2491    printf("\n  Checksum in received packet is required.");
2492  if (ptnl->o_flags & GRE_SEQ) printf("\n  Sequence packets on output.");
2493  if (ptnl->o_flags & GRE_CSUM) printf("\n  Checksum output packets.");
2494  xputc('\n');
2495  return 0;
2496}
2497
2498static int read_tunnel(struct ip_tunnel_parm *ptnl)
2499{
2500  int count = 0;
2501  char iface[IF_NAMESIZE];
2502  struct ip_tunnel_parm iptnl;
2503  FILE *fp = xfopen("/proc/net/dev", "r");
2504
2505  while (fgets(toybuf, sizeof(toybuf), fp)) {
2506    char *ptr;
2507    int ret;
2508
2509    if (count++ < 2) continue; // 1st two lines are header.
2510
2511    ptr = strchr(toybuf, ':');
2512    if (!ptr || (*ptr++ = 0, sscanf(toybuf, "%s", iface) != 1))
2513      error_exit("invalid format of '/proc/net/dev'");
2514    if (*ptnl->name && strcmp(ptnl->name, iface)) continue;
2515    if ((ret = tnl_ioctl(iface, SIOCGIFHWADDR, &iptnl)) < 0) {
2516      error_msg("failed to get type of '%s'", iface);
2517      continue;
2518    }
2519    if (ret != ARPHRD_TUNNEL && ret !=  ARPHRD_SIT &&
2520        ret != ARPHRD_IPGRE) continue;
2521
2522    memset(&iptnl, 0, sizeof(iptnl));
2523    if (tnl_ioctl(iface, SIOCGETTUNNEL, &iptnl) < 0) continue;
2524    if ((ptnl->link && iptnl.link != ptnl->link) || (*ptnl->name &&
2525          strcmp(iptnl.name, ptnl->name)) || (ptnl->iph.daddr &&
2526          iptnl.iph.daddr != ptnl->iph.daddr) || (ptnl->iph.saddr &&
2527            iptnl.iph.saddr != ptnl->iph.saddr) || (ptnl->i_key &&
2528              iptnl.i_key != ptnl->i_key)) continue;
2529    display_tunnel(&iptnl);
2530  }
2531  fclose(fp);
2532  return 0;
2533}
2534
2535static void parse_iptunnel_args(struct ip_tunnel_parm *ptnl, char **argv, 
2536    int ipt_opt_idx)
2537{
2538  int idx;
2539  uint8_t af = AF_INET;
2540  uint32_t addr = 0;
2541  struct arglist opts[] = { {"mode", 0}, {"key", 1}, {"ikey", 2},
2542    {"okey", 3}, {"seq", 4}, {"iseq", 5}, {"oseq", 6}, {"csum", 7},
2543    {"icsum", 8}, {"ocsum", 9}, {"nopmtudisc", 10}, {"pmtudisc", 11},
2544    {"remote", 12}, {"local", 13},{"dev", 14}, {"ttl", 15}, {"tos", 16},
2545    {"dsfield", 17}, {"name", 18}, {NULL, -1} 
2546  };
2547
2548  ptnl->iph.version = 4; // The value indicates the version of IP (4 or 6)
2549  ptnl->iph.ihl = 5; // Minimum Internet Header Length
2550  // frag_off is measured in units of 8 octets (64 bits)
2551  ptnl->iph.frag_off = htons(IP_DF);
2552  if (*argv && ipt_opt_idx <= 2 && string_to_idx(*argv, opts) == -1) {
2553    xstrncpy(ptnl->name, *argv, IF_NAMESIZE);
2554    if (ipt_opt_idx == 1) {
2555      struct ip_tunnel_parm iptnl_old;
2556
2557      memset(&iptnl_old, 0, sizeof(iptnl_old));
2558      tnl_ioctl(ptnl->name, SIOCGETTUNNEL, &iptnl_old);
2559      *ptnl = iptnl_old;
2560    }
2561    argv++;
2562  }
2563  for (; *argv; argv++, addr = 0) {
2564    switch (idx = string_to_idx(*argv, opts)) {
2565      case 0:
2566        if (!*++argv) error_exit("mode is missing");
2567        if ((!strcmp("ipip", *argv) || !strcmp("ip/ip", *argv)))
2568          ptnl->iph.protocol = IPPROTO_IPIP;
2569        else if ((!strcmp("gre", *argv) || !strcmp("gre/ip", *argv)))
2570          ptnl->iph.protocol = IPPROTO_GRE;
2571        else if ((!strcmp("sit", *argv) || !strcmp("ipv6/ip", *argv)))
2572          ptnl->iph.protocol = IPPROTO_IPV6;
2573        else show_iptunnel_help();
2574        break;
2575      case 1:
2576      case 2:
2577      case 3:
2578        {
2579          struct addrinfo *info, hint;
2580          int ret;
2581
2582          if (!*++argv) error_exit("key value is missing");
2583          memset(&hint, 0, sizeof(hint));
2584          hint.ai_family = AF_INET;
2585          ret = getaddrinfo(*argv, NULL, &hint, &info);
2586          if (ret || !info) error_exit("invalid argument to key");
2587          freeaddrinfo(info);
2588
2589          if (strchr(*argv, '.')) {
2590            if (get_prefix(&addr, &af, *argv, AF_INET))
2591              error_exit("invalid key '%s'", *argv);
2592          } else {
2593            unsigned key_val;
2594
2595            sscanf(*argv, "%u", &key_val);
2596            addr = htonl(key_val);
2597          }
2598          if (idx == 1) {
2599            ptnl->i_flags |= GRE_KEY;
2600            ptnl->o_flags |= GRE_KEY;
2601            ptnl->i_key = ptnl->o_key = addr;
2602          } else if (idx == 2) {
2603            ptnl->i_flags |= GRE_KEY;
2604            ptnl->i_key = addr;
2605          } else {
2606            ptnl->o_flags |= GRE_KEY;
2607            ptnl->o_key = addr;
2608          }
2609        }
2610        break;
2611      case 4:
2612        ptnl->i_flags |= GRE_SEQ;
2613        ptnl->o_flags |= GRE_SEQ;
2614        break;
2615      case 5:
2616        ptnl->i_flags |= GRE_SEQ;
2617        break;
2618      case 6:
2619        ptnl->o_flags |= GRE_SEQ;
2620        break;
2621      case 7:
2622        ptnl->i_flags |= GRE_CSUM;
2623        ptnl->o_flags |= GRE_CSUM;
2624        break;
2625      case 8:
2626        ptnl->i_flags |= GRE_CSUM;
2627        break;
2628      case 9:
2629        ptnl->o_flags |= GRE_CSUM;
2630        break;
2631      case 10:
2632        ptnl->iph.frag_off = 0;
2633        break;
2634      case 11:
2635        ptnl->iph.frag_off = htons(IP_DF);
2636        break;
2637      case 12:
2638      case 13:
2639        if (!*++argv) error_exit("remote/local address is missing");
2640        if (get_prefix(&addr, &af, *argv, AF_INET))
2641          error_exit("invalid remote/local address '%s'", *argv);
2642        (idx == 12) ? (ptnl->iph.daddr = addr) : (ptnl->iph.saddr = addr);
2643        break;
2644      case 14:
2645        if (!*++argv) error_exit("device name is missing");
2646        else {
2647          struct ifreq req;
2648          int fd;
2649
2650          xstrncpy(req.ifr_name, *argv, IFNAMSIZ);
2651          fd = xsocket(AF_INET, SOCK_DGRAM, 0);
2652          xioctl(fd, SIOCGIFINDEX, &req);
2653          close(fd);
2654          ptnl->link = req.ifr_ifindex;
2655        }
2656        break;
2657      case 15:
2658        if (!*++argv) error_exit("ttl value is missing");
2659        if (strcmp(*argv, "inherit"))
2660          ptnl->iph.ttl = atolx_range(*argv, 0, 255);
2661        break;
2662      case 16:
2663      case 17:
2664        if (!*++argv) error_exit("tos value is missing");
2665        if (strcmp(*argv, "inherit")) {
2666          char *ptr;
2667          unsigned long tval = strtoul(*argv, &ptr, 16);
2668
2669          if (tval > 255) error_exit("invalid tos value '%s'", *argv);
2670          if (*ptr) {
2671            int ret;
2672
2673            if ((ret = idxfromRPDB(*argv, RPDB_rtdsfield)) < 0)
2674              error_exit("invalid tos value");
2675            ptnl->iph.tos = ret;
2676          } else ptnl->iph.tos = tval;
2677        } else ptnl->iph.tos = 1;
2678        break;
2679      case 18:
2680        if (*ptnl->name) error_exit("invalid tunnel");
2681        else {
2682          if (!*++argv) error_exit("name is missing");
2683          xstrncpy(ptnl->name, *argv, IF_NAMESIZE);
2684        }
2685        break;
2686      default:
2687        if (*ptnl->name) error_exit("invalid tunnel");
2688        xstrncpy(ptnl->name, *argv, IF_NAMESIZE);
2689        break;
2690    }
2691  }
2692  if (ptnl->iph.protocol == IPPROTO_IPIP ||
2693      ptnl->iph.protocol == IPPROTO_IPV6) {
2694    if ((ptnl->i_flags & GRE_KEY) || (ptnl->o_flags & GRE_KEY))
2695      error_exit("[i|o]key is allowed with gre only");
2696    if ((ptnl->i_flags & GRE_SEQ) || (ptnl->o_flags & GRE_SEQ))
2697      error_exit("[i|o]seq is allowed with gre only");
2698    if ((ptnl->i_flags & GRE_CSUM) || (ptnl->o_flags & GRE_CSUM))
2699      error_exit("[i|o]csum is allowed with gre only");
2700  }
2701  if (!ptnl->i_key && IN_MULTICAST(ntohl(ptnl->iph.daddr))) {
2702    ptnl->i_key = ptnl->iph.daddr;
2703    ptnl->i_flags |= GRE_KEY;
2704  }
2705  if (!ptnl->o_key && IN_MULTICAST(ntohl(ptnl->iph.daddr))) {
2706    ptnl->o_key = ptnl->iph.daddr;
2707    ptnl->o_flags |= GRE_KEY;
2708  }
2709  if (IN_MULTICAST(ntohl(ptnl->iph.daddr)) && !ptnl->iph.saddr)
2710    error_exit("broadcast tunnel requires a source address");
2711}
2712
2713static int tunnellist(char **argv)
2714{
2715  struct ip_tunnel_parm iptnl;
2716  int ret = 0;
2717
2718  memset(&iptnl, 0, sizeof(iptnl));
2719  parse_iptunnel_args(&iptnl, argv, 3);
2720
2721  if (iptnl.iph.protocol == IPPROTO_IPIP) 
2722    ret = tnl_ioctl(*iptnl.name ? iptnl.name : "tunl0", SIOCGETTUNNEL, &iptnl);
2723  else if (iptnl.iph.protocol == IPPROTO_GRE) 
2724    ret = tnl_ioctl(*iptnl.name ? iptnl.name : "gre0", SIOCGETTUNNEL, &iptnl);
2725  else if (iptnl.iph.protocol == IPPROTO_IPV6) 
2726    ret = tnl_ioctl(*iptnl.name ? iptnl.name : "sit0", SIOCGETTUNNEL, &iptnl);
2727  else return read_tunnel(&iptnl);
2728
2729  if (ret < 0) {
2730    perror_msg("SIOCGETTUNNEL");
2731    return ret;
2732  } else return display_tunnel(&iptnl);
2733}
2734
2735// Performing add, change, & delete tunnel action, according to passed req_type
2736static int tunnelupdate(char **argv)
2737{
2738  struct ip_tunnel_parm iptnl;
2739  int idx = 2, rtype = SIOCDELTUNNEL;
2740
2741  if (*argv[-1] == 'a') {
2742    idx = 0;
2743    rtype = SIOCADDTUNNEL;
2744  } else if (*argv[-1] == 'c') {
2745    idx = 1;
2746    rtype = SIOCCHGTUNNEL;
2747  }
2748
2749  memset(&iptnl, 0, sizeof(iptnl));
2750  parse_iptunnel_args(&iptnl, argv, idx);
2751  if (idx != 2 && iptnl.iph.ttl && !(iptnl.iph.frag_off))
2752    error_exit("ttl > 0 and nopmtudisc are incompatible");
2753  if (iptnl.iph.protocol == IPPROTO_IPIP)
2754    return (tnl_ioctl("tunl0", rtype, &iptnl) < 0) ? 1 : 0;
2755  else if (iptnl.iph.protocol == IPPROTO_GRE)
2756    return (tnl_ioctl("gre0", rtype, &iptnl) < 0) ? 1 : 0;
2757  else if (iptnl.iph.protocol == IPPROTO_IPV6)
2758    return (tnl_ioctl("sit0", rtype, &iptnl) < 0) ? 1 : 0;
2759  else {
2760    if (idx != 2) error_exit("invalid tunnel mode");
2761    return (tnl_ioctl(iptnl.name, rtype, &iptnl) < 0) ? 1 : 0;
2762  }
2763}
2764
2765static int iptunnel(char **argv)
2766{
2767  int idx;
2768  struct arglist opts[] = {{"add", 0}, {"change", 0}, {"del", 0},
2769    {"delete", 0}, {"show", 1}, {"list", 1}, {"lst", 1}, {NULL, -1}
2770  };
2771  cmdobj ipcmd, cmdobjlist[] = {tunnelupdate, tunnellist};
2772
2773  if (!*argv) idx = 1;
2774  else if ((idx = substring_to_idx(*argv++, opts)) == -1)
2775    show_iptunnel_help();
2776  ipcmd = cmdobjlist[idx];
2777  return ipcmd(argv);
2778}
2779
2780// ===========================================================================
2781// Common code, which is used for all ip options.
2782// ===========================================================================
2783
2784// Parse netlink messages and call input callback handler for action
2785static int filter_nlmesg(int (*fun)(struct nlmsghdr *mhdr, char **argv),
2786    char **argv)
2787{
2788  while (1) {
2789    struct nlmsghdr *mhdr;
2790    int msglen = recv(TT.sockfd, TT.gbuf, MESG_LEN, 0);
2791
2792    if ((msglen < 0) && (errno == EINTR || errno == EAGAIN)) continue;
2793    else if (msglen < 0) {
2794      error_msg("netlink receive error %s", strerror(errno));
2795      return 1;
2796    } else if (!msglen) {
2797      error_msg("EOF on netlink");
2798      return 1;
2799    }
2800
2801    for (mhdr = (struct nlmsghdr*)TT.gbuf; NLMSG_OK(mhdr, msglen);
2802        mhdr = NLMSG_NEXT(mhdr, msglen)) {
2803      int err;
2804      if (mhdr->nlmsg_pid != getpid())
2805        continue;
2806      switch (mhdr->nlmsg_type) {
2807        case NLMSG_DONE:
2808          return 0;
2809        case NLMSG_ERROR:
2810          {
2811            struct nlmsgerr *merr = (struct nlmsgerr*)NLMSG_DATA(mhdr);
2812
2813            if (merr->error == 0) return 0;
2814            if (mhdr->nlmsg_len < NLMSG_LENGTH(sizeof(struct nlmsgerr)))
2815              error_msg("ERROR truncated");
2816            else {
2817              errno = -merr->error;
2818              perror_msg("RTNETLINK answers");
2819            }
2820            return 1;
2821          }
2822        default:
2823          if (fun && (err = fun(mhdr, argv))) return err;
2824          break;
2825      }
2826    } // End of for loop.
2827  } // End of while loop.
2828  return 0;
2829}
2830
2831void ip_main(void)
2832{
2833  char **optargv = toys.argv;
2834  int idx, isip = !(toys.which->name[2]); //1 -> if only ip
2835  cmdobj ipcmd, cmdobjlist[] = {ipaddr, iplink, iproute, iprule, iptunnel};
2836
2837  for (++optargv; *optargv; ++optargv) {
2838    char *ptr = *optargv;
2839    struct arglist ip_options[] = {{"oneline", 0}, {"family",  1},
2840      {"4", 1}, {"6", 1}, {"0", 1}, {"stats", 2}, {NULL, -1}};
2841
2842    if (*ptr != '-') break;
2843    else if ((*(ptr+1) == '-') && (*(ptr+2))) ptr +=2;
2844    //escape "--" and stop ip arg parsing.
2845    else if ((*(ptr+1) == '-') && (!*(ptr+2))) {
2846      *ptr +=1;
2847      break;
2848    } else ptr +=1;
2849    switch (substring_to_idx(ptr, ip_options)) {
2850      case 0: TT.singleline = 1;
2851              break;
2852      case 1: {
2853                if (isdigit(*ptr)) {
2854                  long num = atolx(ptr);
2855                  if (num == 4) TT.addressfamily  = AF_INET;
2856                  else if (num == 6) TT.addressfamily  = AF_INET6;
2857                  else TT.addressfamily = AF_PACKET;
2858                } else {
2859                  struct arglist ip_aflist[] = {{"inet", AF_INET},
2860                    {"inet6", AF_INET6}, {"link", AF_PACKET}, {NULL, -1}};
2861
2862                  if (!*++optargv) help_exit(0);
2863                  if ((TT.addressfamily = string_to_idx(*optargv, ip_aflist)) == -1)
2864                    error_exit("wrong family '%s'", *optargv);
2865                }
2866              }
2867              break;
2868      case 2:
2869              TT.stats++;
2870              break;
2871      default: help_exit(0);
2872               break; // unreachable code.
2873    }
2874  }
2875
2876  TT.sockfd = xsocket(AF_NETLINK, SOCK_RAW, NETLINK_ROUTE);
2877
2878  if (isip) {// only for ip
2879    if (*optargv) {
2880      struct arglist ip_objectlist[] = { {"address", 0}, {"link", 1},
2881        {"route", 2}, {"rule", 3}, {"tunnel", 4}, {"tunl", 4}, {NULL, -1}};
2882
2883      if ((idx = substring_to_idx(*optargv, ip_objectlist)) == -1) help_exit(0);
2884      ipcmd = cmdobjlist[idx];
2885      toys.exitval = ipcmd(++optargv);
2886    } else help_exit(0);
2887  } else {
2888    struct arglist ip_objectlist[] = { {"ipaddr", 0}, {"iplink", 1},
2889      {"iproute", 2}, {"iprule", 3}, {"iptunnel", 4}, {NULL, -1}};
2890    if ((idx = string_to_idx(toys.which->name, ip_objectlist)) == -1)
2891      help_exit(0);
2892    ipcmd = cmdobjlist[idx];
2893    toys.exitval = ipcmd(optargv);
2894  }
2895  xclose(TT.sockfd);
2896  if (rtdsfield_init) free_alist(rt_dsfield);
2897  if (rtrealms_init) free_alist(rt_realms);
2898  if (rtscope_init) free_alist(rt_scope);
2899  if (rttable_init) free_alist(rt_tables);
2900  if (rtprotos_init) free_alist(rt_protos);
2901}
2902