blob: 27e281c93266c904b2771dd5d7311466d4116211 [file] [log] [blame]
"Robert P. J. Day"63fc1a92006-07-02 19:47:05 +00001/* vi: set sw=4 ts=4: */
Rob Landleyad8071f2005-04-30 03:49:37 +00002/*
3 * RFC3927 ZeroConf IPv4 Link-Local addressing
4 * (see <http://www.zeroconf.org/>)
5 *
6 * Copyright (C) 2003 by Arthur van Hoff (avh@strangeberry.com)
7 * Copyright (C) 2004 by David Brownell
8 *
Bernhard Reutner-Fischer86f5c992006-01-22 22:55:11 +00009 * Licensed under the GPL v2 or later, see the file LICENSE in this tarball.
Rob Landleyad8071f2005-04-30 03:49:37 +000010 */
11
12/*
Rob Landleyad8071f2005-04-30 03:49:37 +000013 * ZCIP just manages the 169.254.*.* addresses. That network is not
14 * routed at the IP level, though various proxies or bridges can
15 * certainly be used. Its naming is built over multicast DNS.
16 */
17
Denis Vlasenko87d80dc2006-09-03 12:20:36 +000018//#define DEBUG
Rob Landleye3752e52005-05-03 03:28:55 +000019
20// TODO:
21// - more real-world usage/testing, especially daemon mode
22// - kernel packet filters to reduce scheduling noise
23// - avoid silent script failures, especially under load...
24// - link status monitoring (restart on link-up; stop on link-down)
25
Rob Landley53433b32006-06-22 22:28:29 +000026#include "busybox.h"
Rob Landleyad8071f2005-04-30 03:49:37 +000027#include <syslog.h>
28#include <poll.h>
Rob Landleyad8071f2005-04-30 03:49:37 +000029#include <sys/wait.h>
Rob Landleyad8071f2005-04-30 03:49:37 +000030#include <netinet/ether.h>
31#include <net/ethernet.h>
32#include <net/if.h>
33#include <net/if_arp.h>
34
35#include <linux/if_packet.h>
36#include <linux/sockios.h>
Rob Landleye3752e52005-05-03 03:28:55 +000037
Rob Landleyad8071f2005-04-30 03:49:37 +000038
Bernhard Reutner-Fischerec351c32005-12-13 10:28:25 +000039struct arp_packet {
Rob Landleyad8071f2005-04-30 03:49:37 +000040 struct ether_header hdr;
Denis Vlasenko87d80dc2006-09-03 12:20:36 +000041 struct ether_arp arp;
Bernhard Reutner-Fischer86f5c992006-01-22 22:55:11 +000042} ATTRIBUTE_PACKED;
Rob Landleyad8071f2005-04-30 03:49:37 +000043
Rob Landleybc68cd12006-03-10 19:22:06 +000044enum {
Rob Landleyad8071f2005-04-30 03:49:37 +000045/* 169.254.0.0 */
Rob Landleybc68cd12006-03-10 19:22:06 +000046 LINKLOCAL_ADDR = 0xa9fe0000,
Rob Landleyad8071f2005-04-30 03:49:37 +000047
48/* protocol timeout parameters, specified in seconds */
Rob Landleybc68cd12006-03-10 19:22:06 +000049 PROBE_WAIT = 1,
50 PROBE_MIN = 1,
51 PROBE_MAX = 2,
52 PROBE_NUM = 3,
53 MAX_CONFLICTS = 10,
54 RATE_LIMIT_INTERVAL = 60,
55 ANNOUNCE_WAIT = 2,
56 ANNOUNCE_NUM = 2,
57 ANNOUNCE_INTERVAL = 2,
58 DEFEND_INTERVAL = 10
59};
Rob Landleyad8071f2005-04-30 03:49:37 +000060
Denis Vlasenko87d80dc2006-09-03 12:20:36 +000061/* States during the configuration process. */
62enum {
63 PROBE = 0,
64 RATE_LIMIT_PROBE,
65 ANNOUNCE,
66 MONITOR,
67 DEFEND
68};
Rob Landleyad8071f2005-04-30 03:49:37 +000069
Denis Vlasenkoaf906a32006-09-03 12:29:53 +000070#define VDBG(fmt,args...) \
Rob Landleye3752e52005-05-03 03:28:55 +000071 do { } while (0)
Rob Landleye3752e52005-05-03 03:28:55 +000072
Denis Vlasenko67b23e62006-10-03 21:00:06 +000073static unsigned opts;
Denis Vlasenkoa9abecd2006-09-03 12:28:32 +000074#define FOREGROUND (opts & 1)
75#define QUIT (opts & 2)
76
Rob Landleye3752e52005-05-03 03:28:55 +000077/**
Rob Landleyad8071f2005-04-30 03:49:37 +000078 * Pick a random link local IP address on 169.254/16, except that
79 * the first and last 256 addresses are reserved.
80 */
Rob Landley53433b32006-06-22 22:28:29 +000081static void pick(struct in_addr *ip)
Rob Landleyad8071f2005-04-30 03:49:37 +000082{
Denis Vlasenkoaf906a32006-09-03 12:29:53 +000083 unsigned tmp;
Rob Landleyad8071f2005-04-30 03:49:37 +000084
85 /* use cheaper math than lrand48() mod N */
86 do {
87 tmp = (lrand48() >> 16) & IN_CLASSB_HOST;
88 } while (tmp > (IN_CLASSB_HOST - 0x0200));
89 ip->s_addr = htonl((LINKLOCAL_ADDR + 0x0100) + tmp);
90}
91
Denis Vlasenkoaf906a32006-09-03 12:29:53 +000092/* TODO: we need a flag to direct bb_[p]error_msg output to stderr. */
93
Rob Landleye3752e52005-05-03 03:28:55 +000094/**
Rob Landleyad8071f2005-04-30 03:49:37 +000095 * Broadcast an ARP packet.
96 */
Denis Vlasenkoaf906a32006-09-03 12:29:53 +000097static void arp(int fd, struct sockaddr *saddr, int op,
Rob Landleyad8071f2005-04-30 03:49:37 +000098 const struct ether_addr *source_addr, struct in_addr source_ip,
99 const struct ether_addr *target_addr, struct in_addr target_ip)
100{
101 struct arp_packet p;
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000102 memset(&p, 0, sizeof(p));
Rob Landleyad8071f2005-04-30 03:49:37 +0000103
Rob Landleye3752e52005-05-03 03:28:55 +0000104 // ether header
Rob Landleyad8071f2005-04-30 03:49:37 +0000105 p.hdr.ether_type = htons(ETHERTYPE_ARP);
106 memcpy(p.hdr.ether_shost, source_addr, ETH_ALEN);
107 memset(p.hdr.ether_dhost, 0xff, ETH_ALEN);
108
Rob Landleye3752e52005-05-03 03:28:55 +0000109 // arp request
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000110 p.arp.arp_hrd = htons(ARPHRD_ETHER);
111 p.arp.arp_pro = htons(ETHERTYPE_IP);
112 p.arp.arp_hln = ETH_ALEN;
113 p.arp.arp_pln = 4;
114 p.arp.arp_op = htons(op);
115 memcpy(&p.arp.arp_sha, source_addr, ETH_ALEN);
116 memcpy(&p.arp.arp_spa, &source_ip, sizeof (p.arp.arp_spa));
117 memcpy(&p.arp.arp_tha, target_addr, ETH_ALEN);
118 memcpy(&p.arp.arp_tpa, &target_ip, sizeof (p.arp.arp_tpa));
Rob Landleyad8071f2005-04-30 03:49:37 +0000119
Rob Landleye3752e52005-05-03 03:28:55 +0000120 // send it
Rob Landleyad8071f2005-04-30 03:49:37 +0000121 if (sendto(fd, &p, sizeof (p), 0, saddr, sizeof (*saddr)) < 0) {
Denis Vlasenko3538b9a2006-09-06 18:36:50 +0000122 bb_perror_msg("sendto");
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000123 //return -errno;
Rob Landleyad8071f2005-04-30 03:49:37 +0000124 }
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000125 // Currently all callers ignore errors, that's why returns are
126 // commented out...
127 //return 0;
Rob Landleyad8071f2005-04-30 03:49:37 +0000128}
129
Rob Landleye3752e52005-05-03 03:28:55 +0000130/**
Rob Landleyad8071f2005-04-30 03:49:37 +0000131 * Run a script.
132 */
Rob Landley53433b32006-06-22 22:28:29 +0000133static int run(char *script, char *arg, char *intf, struct in_addr *ip)
Rob Landleyad8071f2005-04-30 03:49:37 +0000134{
135 int pid, status;
136 char *why;
137
Denis Vlasenkoa9abecd2006-09-03 12:28:32 +0000138 if(1) { //always true: if (script != NULL)
Rob Landleye3752e52005-05-03 03:28:55 +0000139 VDBG("%s run %s %s\n", intf, script, arg);
Rob Landleyad8071f2005-04-30 03:49:37 +0000140 if (ip != NULL) {
141 char *addr = inet_ntoa(*ip);
Rob Landleye3752e52005-05-03 03:28:55 +0000142 setenv("ip", addr, 1);
Denis Vlasenko3538b9a2006-09-06 18:36:50 +0000143 bb_info_msg("%s %s %s", arg, intf, addr);
Rob Landleyad8071f2005-04-30 03:49:37 +0000144 }
145
146 pid = vfork();
Rob Landleye3752e52005-05-03 03:28:55 +0000147 if (pid < 0) { // error
Rob Landleyad8071f2005-04-30 03:49:37 +0000148 why = "vfork";
149 goto bad;
Rob Landleye3752e52005-05-03 03:28:55 +0000150 } else if (pid == 0) { // child
Rob Landleyad8071f2005-04-30 03:49:37 +0000151 execl(script, script, arg, NULL);
Denis Vlasenko3538b9a2006-09-06 18:36:50 +0000152 bb_perror_msg("execl");
Rob Landleye3752e52005-05-03 03:28:55 +0000153 _exit(EXIT_FAILURE);
Tim Rikerc1ef7bd2006-01-25 00:08:53 +0000154 }
Rob Landleyad8071f2005-04-30 03:49:37 +0000155
156 if (waitpid(pid, &status, 0) <= 0) {
157 why = "waitpid";
158 goto bad;
159 }
160 if (WEXITSTATUS(status) != 0) {
Denis Vlasenko3538b9a2006-09-06 18:36:50 +0000161 bb_error_msg("script %s failed, exit=%d",
162 script, WEXITSTATUS(status));
Rob Landleyad8071f2005-04-30 03:49:37 +0000163 return -errno;
164 }
165 }
166 return 0;
167bad:
168 status = -errno;
Denis Vlasenko3538b9a2006-09-06 18:36:50 +0000169 bb_perror_msg("%s %s, %s", arg, intf, why);
Rob Landleyad8071f2005-04-30 03:49:37 +0000170 return status;
171}
172
Rob Landleye3752e52005-05-03 03:28:55 +0000173
174/**
Rob Landleyad8071f2005-04-30 03:49:37 +0000175 * Return milliseconds of random delay, up to "secs" seconds.
176 */
Rob Landley88621d72006-08-29 19:41:06 +0000177static unsigned ATTRIBUTE_ALWAYS_INLINE ms_rdelay(unsigned secs)
Rob Landleyad8071f2005-04-30 03:49:37 +0000178{
179 return lrand48() % (secs * 1000);
180}
181
Rob Landleye3752e52005-05-03 03:28:55 +0000182/**
Rob Landleyad8071f2005-04-30 03:49:37 +0000183 * main program
184 */
Bernhard Reutner-Fischer38d66152005-10-21 10:43:11 +0000185
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000186/* Used to be auto variables on main() stack, but
187 * most of them were zero-inited. Moving them to bss
188 * is more space-efficient.
189 */
190static const struct in_addr null_ip; // = { 0 };
191static const struct ether_addr null_addr; // = { {0, 0, 0, 0, 0, 0} };
192
193static struct sockaddr saddr; // memset(0);
194static struct in_addr ip; // = { 0 };
195static struct ifreq ifr; //memset(0);
196
197static char *intf; // = NULL;
198static char *script; // = NULL;
199static suseconds_t timeout; // = 0; // milliseconds
200static unsigned conflicts; // = 0;
201static unsigned nprobes; // = 0;
202static unsigned nclaims; // = 0;
203static int ready; // = 0;
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000204static int verbose; // = 0;
205static int state = PROBE;
206
Rob Landleyad8071f2005-04-30 03:49:37 +0000207int zcip_main(int argc, char *argv[])
208{
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000209 struct ether_addr eth_addr;
Rob Landleyad8071f2005-04-30 03:49:37 +0000210 char *why;
Rob Landleyad8071f2005-04-30 03:49:37 +0000211 int fd;
Denis Vlasenko035aae52006-09-03 12:23:56 +0000212
Rob Landleye3752e52005-05-03 03:28:55 +0000213 // parse commandline: prog [options] ifname script
Denis Vlasenko65dbd872006-09-03 12:27:25 +0000214 char *r_opt;
Denis Vlasenko67b23e62006-10-03 21:00:06 +0000215 opt_complementary = "vv:vf"; // -v accumulates and implies -f
216 opts = getopt32(argc, argv, "fqr:v", &r_opt, &verbose);
Denis Vlasenko3538b9a2006-09-06 18:36:50 +0000217 if (!FOREGROUND) {
218 /* Do it early, before all bb_xx_msg calls */
219 logmode = LOGMODE_SYSLOG;
Denis Vlasenko8f8f2682006-10-03 21:00:43 +0000220 openlog(applet_name, 0, LOG_DAEMON);
Denis Vlasenko3538b9a2006-09-06 18:36:50 +0000221 }
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000222 if (opts & 4) { // -r n.n.n.n
Denis Vlasenko65dbd872006-09-03 12:27:25 +0000223 if (inet_aton(r_opt, &ip) == 0
224 || (ntohl(ip.s_addr) & IN_CLASSB_NET) != LINKLOCAL_ADDR) {
225 bb_error_msg_and_die("invalid link address");
Rob Landleye3752e52005-05-03 03:28:55 +0000226 }
Rob Landleyad8071f2005-04-30 03:49:37 +0000227 }
Denis Vlasenko65dbd872006-09-03 12:27:25 +0000228 argc -= optind;
229 argv += optind;
230 if (argc != 2)
Rob Landley53433b32006-06-22 22:28:29 +0000231 bb_show_usage();
Denis Vlasenko65dbd872006-09-03 12:27:25 +0000232 intf = argv[0];
233 script = argv[1];
234 setenv("interface", intf, 1);
Rob Landleyad8071f2005-04-30 03:49:37 +0000235
Rob Landleye3752e52005-05-03 03:28:55 +0000236 // initialize the interface (modprobe, ifup, etc)
Rob Landleyad8071f2005-04-30 03:49:37 +0000237 if (run(script, "init", intf, NULL) < 0)
238 return EXIT_FAILURE;
239
Rob Landleye3752e52005-05-03 03:28:55 +0000240 // initialize saddr
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000241 //memset(&saddr, 0, sizeof (saddr));
Rob Landley768945b2006-06-25 00:34:52 +0000242 safe_strncpy(saddr.sa_data, intf, sizeof (saddr.sa_data));
Rob Landleyad8071f2005-04-30 03:49:37 +0000243
Rob Landleye3752e52005-05-03 03:28:55 +0000244 // open an ARP socket
Denis Vlasenko035aae52006-09-03 12:23:56 +0000245 fd = xsocket(PF_PACKET, SOCK_PACKET, htons(ETH_P_ARP));
246 // bind to the interface's ARP socket
Denis Vlasenko65dbd872006-09-03 12:27:25 +0000247 xbind(fd, &saddr, sizeof (saddr));
Denis Vlasenko035aae52006-09-03 12:23:56 +0000248
249 // get the interface's ethernet address
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000250 //memset(&ifr, 0, sizeof (ifr));
Denis Vlasenko035aae52006-09-03 12:23:56 +0000251 strncpy(ifr.ifr_name, intf, sizeof (ifr.ifr_name));
252 if (ioctl(fd, SIOCGIFHWADDR, &ifr) < 0) {
Denis Vlasenko65dbd872006-09-03 12:27:25 +0000253 bb_perror_msg_and_die("get ethernet address");
Rob Landleyad8071f2005-04-30 03:49:37 +0000254 }
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000255 memcpy(&eth_addr, &ifr.ifr_hwaddr.sa_data, ETH_ALEN);
Rob Landleyad8071f2005-04-30 03:49:37 +0000256
Denis Vlasenko035aae52006-09-03 12:23:56 +0000257 // start with some stable ip address, either a function of
258 // the hardware address or else the last address we used.
259 // NOTE: the sequence of addresses we try changes only
260 // depending on when we detect conflicts.
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000261 // (SVID 3 bogon: who says that "short" is always 16 bits?)
262 seed48( (unsigned short*)&ifr.ifr_hwaddr.sa_data );
Denis Vlasenko035aae52006-09-03 12:23:56 +0000263 if (ip.s_addr == 0)
264 pick(&ip);
Rob Landleyad8071f2005-04-30 03:49:37 +0000265
Rob Landleye3752e52005-05-03 03:28:55 +0000266 // FIXME cases to handle:
267 // - zcip already running!
268 // - link already has local address... just defend/update
Rob Landleyad8071f2005-04-30 03:49:37 +0000269
Rob Landleye3752e52005-05-03 03:28:55 +0000270 // daemonize now; don't delay system startup
Denis Vlasenko65dbd872006-09-03 12:27:25 +0000271 if (!FOREGROUND) {
Denis Vlasenko3538b9a2006-09-06 18:36:50 +0000272 setsid();
273 xdaemon(0, 0);
274 bb_info_msg("start, interface %s", intf);
Rob Landleyad8071f2005-04-30 03:49:37 +0000275 }
276
Rob Landleye3752e52005-05-03 03:28:55 +0000277 // run the dynamic address negotiation protocol,
278 // restarting after address conflicts:
279 // - start with some address we want to try
280 // - short random delay
281 // - arp probes to see if another host else uses it
282 // - arp announcements that we're claiming it
283 // - use it
284 // - defend it, within limits
Rob Landleyad8071f2005-04-30 03:49:37 +0000285 while (1) {
286 struct pollfd fds[1];
287 struct timeval tv1;
288 struct arp_packet p;
289
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000290 int source_ip_conflict = 0;
291 int target_ip_conflict = 0;
292
Rob Landleyad8071f2005-04-30 03:49:37 +0000293 fds[0].fd = fd;
294 fds[0].events = POLLIN;
295 fds[0].revents = 0;
296
Tim Rikerc1ef7bd2006-01-25 00:08:53 +0000297 // poll, being ready to adjust current timeout
Rob Landley00c051e2006-06-30 14:05:19 +0000298 if (!timeout) {
Rob Landleyad8071f2005-04-30 03:49:37 +0000299 timeout = ms_rdelay(PROBE_WAIT);
Rob Landleye3752e52005-05-03 03:28:55 +0000300 // FIXME setsockopt(fd, SO_ATTACH_FILTER, ...) to
301 // make the kernel filter out all packets except
302 // ones we'd care about.
Rob Landleyad8071f2005-04-30 03:49:37 +0000303 }
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000304 // set tv1 to the point in time when we timeout
Rob Landley00c051e2006-06-30 14:05:19 +0000305 gettimeofday(&tv1, NULL);
306 tv1.tv_usec += (timeout % 1000) * 1000;
307 while (tv1.tv_usec > 1000000) {
308 tv1.tv_usec -= 1000000;
309 tv1.tv_sec++;
310 }
311 tv1.tv_sec += timeout / 1000;
Denis Vlasenko9213a9e2006-09-17 16:28:10 +0000312
Rob Landleye3752e52005-05-03 03:28:55 +0000313 VDBG("...wait %ld %s nprobes=%d, nclaims=%d\n",
314 timeout, intf, nprobes, nclaims);
Rob Landleyad8071f2005-04-30 03:49:37 +0000315 switch (poll(fds, 1, timeout)) {
316
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000317 // timeout
Rob Landleyad8071f2005-04-30 03:49:37 +0000318 case 0:
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000319 VDBG("state = %d\n", state);
320 switch (state) {
321 case PROBE:
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000322 // timeouts in the PROBE state mean no conflicting ARP packets
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000323 // have been received, so we can progress through the states
Rob Landleyad8071f2005-04-30 03:49:37 +0000324 if (nprobes < PROBE_NUM) {
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000325 nprobes++;
326 VDBG("probe/%d %s@%s\n",
327 nprobes, intf, inet_ntoa(ip));
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000328 arp(fd, &saddr, ARPOP_REQUEST,
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000329 &eth_addr, null_ip,
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000330 &null_addr, ip);
Rob Landleyad8071f2005-04-30 03:49:37 +0000331 timeout = PROBE_MIN * 1000;
332 timeout += ms_rdelay(PROBE_MAX
333 - PROBE_MIN);
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000334 }
335 else {
336 // Switch to announce state.
337 state = ANNOUNCE;
338 nclaims = 0;
339 VDBG("announce/%d %s@%s\n",
340 nclaims, intf, inet_ntoa(ip));
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000341 arp(fd, &saddr, ARPOP_REQUEST,
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000342 &eth_addr, ip,
343 &eth_addr, ip);
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000344 timeout = ANNOUNCE_INTERVAL * 1000;
345 }
346 break;
347 case RATE_LIMIT_PROBE:
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000348 // timeouts in the RATE_LIMIT_PROBE state mean no conflicting ARP packets
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000349 // have been received, so we can move immediately to the announce state
350 state = ANNOUNCE;
351 nclaims = 0;
Rob Landleye3752e52005-05-03 03:28:55 +0000352 VDBG("announce/%d %s@%s\n",
353 nclaims, intf, inet_ntoa(ip));
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000354 arp(fd, &saddr, ARPOP_REQUEST,
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000355 &eth_addr, ip,
356 &eth_addr, ip);
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000357 timeout = ANNOUNCE_INTERVAL * 1000;
358 break;
359 case ANNOUNCE:
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000360 // timeouts in the ANNOUNCE state mean no conflicting ARP packets
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000361 // have been received, so we can progress through the states
Rob Landleyad8071f2005-04-30 03:49:37 +0000362 if (nclaims < ANNOUNCE_NUM) {
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000363 nclaims++;
364 VDBG("announce/%d %s@%s\n",
365 nclaims, intf, inet_ntoa(ip));
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000366 arp(fd, &saddr, ARPOP_REQUEST,
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000367 &eth_addr, ip,
368 &eth_addr, ip);
Rob Landleyad8071f2005-04-30 03:49:37 +0000369 timeout = ANNOUNCE_INTERVAL * 1000;
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000370 }
371 else {
372 // Switch to monitor state.
373 state = MONITOR;
Rob Landleye3752e52005-05-03 03:28:55 +0000374 // link is ok to use earlier
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000375 // FIXME update filters
Rob Landleyad8071f2005-04-30 03:49:37 +0000376 run(script, "config", intf, &ip);
377 ready = 1;
378 conflicts = 0;
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000379 timeout = -1; // Never timeout in the monitor state.
Rob Landleyad8071f2005-04-30 03:49:37 +0000380
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000381 // NOTE: all other exit paths
Rob Landleye3752e52005-05-03 03:28:55 +0000382 // should deconfig ...
Denis Vlasenko65dbd872006-09-03 12:27:25 +0000383 if (QUIT)
Rob Landleyad8071f2005-04-30 03:49:37 +0000384 return EXIT_SUCCESS;
Rob Landleyad8071f2005-04-30 03:49:37 +0000385 }
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000386 break;
387 case DEFEND:
388 // We won! No ARP replies, so just go back to monitor.
389 state = MONITOR;
390 timeout = -1;
391 conflicts = 0;
392 break;
393 default:
394 // Invalid, should never happen. Restart the whole protocol.
395 state = PROBE;
396 pick(&ip);
397 timeout = 0;
398 nprobes = 0;
399 nclaims = 0;
400 break;
401 } // switch (state)
402 break; // case 0 (timeout)
Rob Landleye3752e52005-05-03 03:28:55 +0000403 // packets arriving
Rob Landleyad8071f2005-04-30 03:49:37 +0000404 case 1:
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000405 // We need to adjust the timeout in case we didn't receive
406 // a conflicting packet.
Rob Landleyad8071f2005-04-30 03:49:37 +0000407 if (timeout > 0) {
408 struct timeval tv2;
Rob Landleye3752e52005-05-03 03:28:55 +0000409
Rob Landleyad8071f2005-04-30 03:49:37 +0000410 gettimeofday(&tv2, NULL);
411 if (timercmp(&tv1, &tv2, <)) {
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000412 // Current time is greater than the expected timeout time.
413 // Should never happen.
414 VDBG("missed an expected timeout\n");
Paul Foxef81ce62006-03-29 23:01:33 +0000415 timeout = 0;
Rob Landleyad8071f2005-04-30 03:49:37 +0000416 } else {
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000417 VDBG("adjusting timeout\n");
Rob Landleyad8071f2005-04-30 03:49:37 +0000418 timersub(&tv1, &tv2, &tv1);
419 timeout = 1000 * tv1.tv_sec
420 + tv1.tv_usec / 1000;
421 }
422 }
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000423
Rob Landleyad8071f2005-04-30 03:49:37 +0000424 if ((fds[0].revents & POLLIN) == 0) {
425 if (fds[0].revents & POLLERR) {
Rob Landleye3752e52005-05-03 03:28:55 +0000426 // FIXME: links routinely go down;
427 // this shouldn't necessarily exit.
Denis Vlasenko65113e82006-09-03 12:31:59 +0000428 bb_error_msg("%s: poll error", intf);
Rob Landleyad8071f2005-04-30 03:49:37 +0000429 if (ready) {
Rob Landleye3752e52005-05-03 03:28:55 +0000430 run(script, "deconfig",
431 intf, &ip);
Rob Landleyad8071f2005-04-30 03:49:37 +0000432 }
433 return EXIT_FAILURE;
434 }
435 continue;
436 }
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000437
Rob Landleye3752e52005-05-03 03:28:55 +0000438 // read ARP packet
Rob Landleyad8071f2005-04-30 03:49:37 +0000439 if (recv(fd, &p, sizeof (p), 0) < 0) {
440 why = "recv";
441 goto bad;
442 }
443 if (p.hdr.ether_type != htons(ETHERTYPE_ARP))
444 continue;
Rob Landleye3752e52005-05-03 03:28:55 +0000445
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000446#ifdef DEBUG
447 {
448 struct ether_addr * sha = (struct ether_addr *) p.arp.arp_sha;
449 struct ether_addr * tha = (struct ether_addr *) p.arp.arp_tha;
450 struct in_addr * spa = (struct in_addr *) p.arp.arp_spa;
451 struct in_addr * tpa = (struct in_addr *) p.arp.arp_tpa;
452 VDBG("%s recv arp type=%d, op=%d,\n",
Rob Landleye3752e52005-05-03 03:28:55 +0000453 intf, ntohs(p.hdr.ether_type),
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000454 ntohs(p.arp.arp_op));
455 VDBG("\tsource=%s %s\n",
456 ether_ntoa(sha),
457 inet_ntoa(*spa));
458 VDBG("\ttarget=%s %s\n",
459 ether_ntoa(tha),
460 inet_ntoa(*tpa));
461 }
462#endif
463 if (p.arp.arp_op != htons(ARPOP_REQUEST)
464 && p.arp.arp_op != htons(ARPOP_REPLY))
Rob Landleyad8071f2005-04-30 03:49:37 +0000465 continue;
466
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000467 if (memcmp(p.arp.arp_spa, &ip.s_addr, sizeof(struct in_addr)) == 0 &&
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000468 memcmp(&eth_addr, &p.arp.arp_sha, ETH_ALEN) != 0) {
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000469 source_ip_conflict = 1;
470 }
471 if (memcmp(p.arp.arp_tpa, &ip.s_addr, sizeof(struct in_addr)) == 0 &&
472 p.arp.arp_op == htons(ARPOP_REQUEST) &&
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000473 memcmp(&eth_addr, &p.arp.arp_tha, ETH_ALEN) != 0) {
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000474 target_ip_conflict = 1;
475 }
Rob Landleyad8071f2005-04-30 03:49:37 +0000476
Denis Vlasenko9213a9e2006-09-17 16:28:10 +0000477 VDBG("state = %d, source ip conflict = %d, target ip conflict = %d\n",
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000478 state, source_ip_conflict, target_ip_conflict);
479 switch (state) {
480 case PROBE:
481 case ANNOUNCE:
482 // When probing or announcing, check for source IP conflicts
483 // and other hosts doing ARP probes (target IP conflicts).
484 if (source_ip_conflict || target_ip_conflict) {
485 conflicts++;
486 if (conflicts >= MAX_CONFLICTS) {
487 VDBG("%s ratelimit\n", intf);
488 timeout = RATE_LIMIT_INTERVAL * 1000;
489 state = RATE_LIMIT_PROBE;
Rob Landleyad8071f2005-04-30 03:49:37 +0000490 }
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000491
492 // restart the whole protocol
493 pick(&ip);
494 timeout = 0;
495 nprobes = 0;
496 nclaims = 0;
497 }
498 break;
499 case MONITOR:
500 // If a conflict, we try to defend with a single ARP probe.
501 if (source_ip_conflict) {
502 VDBG("monitor conflict -- defending\n");
503 state = DEFEND;
504 timeout = DEFEND_INTERVAL * 1000;
Denis Vlasenkoaf906a32006-09-03 12:29:53 +0000505 arp(fd, &saddr,
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000506 ARPOP_REQUEST,
Denis Vlasenko60e3dd62006-09-03 12:26:06 +0000507 &eth_addr, ip,
508 &eth_addr, ip);
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000509 }
510 break;
511 case DEFEND:
512 // Well, we tried. Start over (on conflict).
513 if (source_ip_conflict) {
514 state = PROBE;
515 VDBG("defend conflict -- starting over\n");
Rob Landleyad8071f2005-04-30 03:49:37 +0000516 ready = 0;
517 run(script, "deconfig", intf, &ip);
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000518
519 // restart the whole protocol
520 pick(&ip);
521 timeout = 0;
522 nprobes = 0;
523 nclaims = 0;
Rob Landleyad8071f2005-04-30 03:49:37 +0000524 }
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000525 break;
526 default:
527 // Invalid, should never happen. Restart the whole protocol.
528 VDBG("invalid state -- starting over\n");
529 state = PROBE;
Rob Landleyad8071f2005-04-30 03:49:37 +0000530 pick(&ip);
531 timeout = 0;
532 nprobes = 0;
533 nclaims = 0;
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000534 break;
535 } // switch state
Rob Landleyad8071f2005-04-30 03:49:37 +0000536
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000537 break; // case 1 (packets arriving)
Rob Landleyad8071f2005-04-30 03:49:37 +0000538 default:
539 why = "poll";
540 goto bad;
Denis Vlasenko87d80dc2006-09-03 12:20:36 +0000541 } // switch poll
Rob Landleyad8071f2005-04-30 03:49:37 +0000542 }
543bad:
Denis Vlasenko3538b9a2006-09-06 18:36:50 +0000544 bb_perror_msg("%s, %s", intf, why);
Rob Landleyad8071f2005-04-30 03:49:37 +0000545 return EXIT_FAILURE;
546}