icmp.c 28 KB

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  1. /*
  2. * NET3: Implementation of the ICMP protocol layer.
  3. *
  4. * Alan Cox, <alan@redhat.com>
  5. *
  6. * Version: $Id: icmp.c,v 1.85 2002/02/01 22:01:03 davem Exp $
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License
  10. * as published by the Free Software Foundation; either version
  11. * 2 of the License, or (at your option) any later version.
  12. *
  13. * Some of the function names and the icmp unreach table for this
  14. * module were derived from [icmp.c 1.0.11 06/02/93] by
  15. * Ross Biro, Fred N. van Kempen, Mark Evans, Alan Cox, Gerhard Koerting.
  16. * Other than that this module is a complete rewrite.
  17. *
  18. * Fixes:
  19. * Clemens Fruhwirth : introduce global icmp rate limiting
  20. * with icmp type masking ability instead
  21. * of broken per type icmp timeouts.
  22. * Mike Shaver : RFC1122 checks.
  23. * Alan Cox : Multicast ping reply as self.
  24. * Alan Cox : Fix atomicity lockup in ip_build_xmit
  25. * call.
  26. * Alan Cox : Added 216,128 byte paths to the MTU
  27. * code.
  28. * Martin Mares : RFC1812 checks.
  29. * Martin Mares : Can be configured to follow redirects
  30. * if acting as a router _without_ a
  31. * routing protocol (RFC 1812).
  32. * Martin Mares : Echo requests may be configured to
  33. * be ignored (RFC 1812).
  34. * Martin Mares : Limitation of ICMP error message
  35. * transmit rate (RFC 1812).
  36. * Martin Mares : TOS and Precedence set correctly
  37. * (RFC 1812).
  38. * Martin Mares : Now copying as much data from the
  39. * original packet as we can without
  40. * exceeding 576 bytes (RFC 1812).
  41. * Willy Konynenberg : Transparent proxying support.
  42. * Keith Owens : RFC1191 correction for 4.2BSD based
  43. * path MTU bug.
  44. * Thomas Quinot : ICMP Dest Unreach codes up to 15 are
  45. * valid (RFC 1812).
  46. * Andi Kleen : Check all packet lengths properly
  47. * and moved all kfree_skb() up to
  48. * icmp_rcv.
  49. * Andi Kleen : Move the rate limit bookkeeping
  50. * into the dest entry and use a token
  51. * bucket filter (thanks to ANK). Make
  52. * the rates sysctl configurable.
  53. * Yu Tianli : Fixed two ugly bugs in icmp_send
  54. * - IP option length was accounted wrongly
  55. * - ICMP header length was not accounted
  56. * at all.
  57. * Tristan Greaves : Added sysctl option to ignore bogus
  58. * broadcast responses from broken routers.
  59. *
  60. * To Fix:
  61. *
  62. * - Should use skb_pull() instead of all the manual checking.
  63. * This would also greatly simply some upper layer error handlers. --AK
  64. *
  65. */
  66. #include <linux/config.h>
  67. #include <linux/module.h>
  68. #include <linux/types.h>
  69. #include <linux/jiffies.h>
  70. #include <linux/kernel.h>
  71. #include <linux/fcntl.h>
  72. #include <linux/socket.h>
  73. #include <linux/in.h>
  74. #include <linux/inet.h>
  75. #include <linux/netdevice.h>
  76. #include <linux/string.h>
  77. #include <linux/netfilter_ipv4.h>
  78. #include <net/snmp.h>
  79. #include <net/ip.h>
  80. #include <net/route.h>
  81. #include <net/protocol.h>
  82. #include <net/icmp.h>
  83. #include <net/tcp.h>
  84. #include <net/udp.h>
  85. #include <net/raw.h>
  86. #include <linux/skbuff.h>
  87. #include <net/sock.h>
  88. #include <linux/errno.h>
  89. #include <linux/timer.h>
  90. #include <linux/init.h>
  91. #include <asm/system.h>
  92. #include <asm/uaccess.h>
  93. #include <net/checksum.h>
  94. /*
  95. * Build xmit assembly blocks
  96. */
  97. struct icmp_bxm {
  98. struct sk_buff *skb;
  99. int offset;
  100. int data_len;
  101. struct {
  102. struct icmphdr icmph;
  103. __u32 times[3];
  104. } data;
  105. int head_len;
  106. struct ip_options replyopts;
  107. unsigned char optbuf[40];
  108. };
  109. /*
  110. * Statistics
  111. */
  112. DEFINE_SNMP_STAT(struct icmp_mib, icmp_statistics);
  113. /* An array of errno for error messages from dest unreach. */
  114. /* RFC 1122: 3.2.2.1 States that NET_UNREACH, HOST_UNREACH and SR_FAILED MUST be considered 'transient errs'. */
  115. struct icmp_err icmp_err_convert[] = {
  116. {
  117. .errno = ENETUNREACH, /* ICMP_NET_UNREACH */
  118. .fatal = 0,
  119. },
  120. {
  121. .errno = EHOSTUNREACH, /* ICMP_HOST_UNREACH */
  122. .fatal = 0,
  123. },
  124. {
  125. .errno = ENOPROTOOPT /* ICMP_PROT_UNREACH */,
  126. .fatal = 1,
  127. },
  128. {
  129. .errno = ECONNREFUSED, /* ICMP_PORT_UNREACH */
  130. .fatal = 1,
  131. },
  132. {
  133. .errno = EMSGSIZE, /* ICMP_FRAG_NEEDED */
  134. .fatal = 0,
  135. },
  136. {
  137. .errno = EOPNOTSUPP, /* ICMP_SR_FAILED */
  138. .fatal = 0,
  139. },
  140. {
  141. .errno = ENETUNREACH, /* ICMP_NET_UNKNOWN */
  142. .fatal = 1,
  143. },
  144. {
  145. .errno = EHOSTDOWN, /* ICMP_HOST_UNKNOWN */
  146. .fatal = 1,
  147. },
  148. {
  149. .errno = ENONET, /* ICMP_HOST_ISOLATED */
  150. .fatal = 1,
  151. },
  152. {
  153. .errno = ENETUNREACH, /* ICMP_NET_ANO */
  154. .fatal = 1,
  155. },
  156. {
  157. .errno = EHOSTUNREACH, /* ICMP_HOST_ANO */
  158. .fatal = 1,
  159. },
  160. {
  161. .errno = ENETUNREACH, /* ICMP_NET_UNR_TOS */
  162. .fatal = 0,
  163. },
  164. {
  165. .errno = EHOSTUNREACH, /* ICMP_HOST_UNR_TOS */
  166. .fatal = 0,
  167. },
  168. {
  169. .errno = EHOSTUNREACH, /* ICMP_PKT_FILTERED */
  170. .fatal = 1,
  171. },
  172. {
  173. .errno = EHOSTUNREACH, /* ICMP_PREC_VIOLATION */
  174. .fatal = 1,
  175. },
  176. {
  177. .errno = EHOSTUNREACH, /* ICMP_PREC_CUTOFF */
  178. .fatal = 1,
  179. },
  180. };
  181. /* Control parameters for ECHO replies. */
  182. int sysctl_icmp_echo_ignore_all;
  183. int sysctl_icmp_echo_ignore_broadcasts;
  184. /* Control parameter - ignore bogus broadcast responses? */
  185. int sysctl_icmp_ignore_bogus_error_responses;
  186. /*
  187. * Configurable global rate limit.
  188. *
  189. * ratelimit defines tokens/packet consumed for dst->rate_token bucket
  190. * ratemask defines which icmp types are ratelimited by setting
  191. * it's bit position.
  192. *
  193. * default:
  194. * dest unreachable (3), source quench (4),
  195. * time exceeded (11), parameter problem (12)
  196. */
  197. int sysctl_icmp_ratelimit = 1 * HZ;
  198. int sysctl_icmp_ratemask = 0x1818;
  199. int sysctl_icmp_errors_use_inbound_ifaddr;
  200. /*
  201. * ICMP control array. This specifies what to do with each ICMP.
  202. */
  203. struct icmp_control {
  204. int output_entry; /* Field for increment on output */
  205. int input_entry; /* Field for increment on input */
  206. void (*handler)(struct sk_buff *skb);
  207. short error; /* This ICMP is classed as an error message */
  208. };
  209. static struct icmp_control icmp_pointers[NR_ICMP_TYPES+1];
  210. /*
  211. * The ICMP socket(s). This is the most convenient way to flow control
  212. * our ICMP output as well as maintain a clean interface throughout
  213. * all layers. All Socketless IP sends will soon be gone.
  214. *
  215. * On SMP we have one ICMP socket per-cpu.
  216. */
  217. static DEFINE_PER_CPU(struct socket *, __icmp_socket) = NULL;
  218. #define icmp_socket __get_cpu_var(__icmp_socket)
  219. static __inline__ int icmp_xmit_lock(void)
  220. {
  221. local_bh_disable();
  222. if (unlikely(!spin_trylock(&icmp_socket->sk->sk_lock.slock))) {
  223. /* This can happen if the output path signals a
  224. * dst_link_failure() for an outgoing ICMP packet.
  225. */
  226. local_bh_enable();
  227. return 1;
  228. }
  229. return 0;
  230. }
  231. static void icmp_xmit_unlock(void)
  232. {
  233. spin_unlock_bh(&icmp_socket->sk->sk_lock.slock);
  234. }
  235. /*
  236. * Send an ICMP frame.
  237. */
  238. /*
  239. * Check transmit rate limitation for given message.
  240. * The rate information is held in the destination cache now.
  241. * This function is generic and could be used for other purposes
  242. * too. It uses a Token bucket filter as suggested by Alexey Kuznetsov.
  243. *
  244. * Note that the same dst_entry fields are modified by functions in
  245. * route.c too, but these work for packet destinations while xrlim_allow
  246. * works for icmp destinations. This means the rate limiting information
  247. * for one "ip object" is shared - and these ICMPs are twice limited:
  248. * by source and by destination.
  249. *
  250. * RFC 1812: 4.3.2.8 SHOULD be able to limit error message rate
  251. * SHOULD allow setting of rate limits
  252. *
  253. * Shared between ICMPv4 and ICMPv6.
  254. */
  255. #define XRLIM_BURST_FACTOR 6
  256. int xrlim_allow(struct dst_entry *dst, int timeout)
  257. {
  258. unsigned long now;
  259. int rc = 0;
  260. now = jiffies;
  261. dst->rate_tokens += now - dst->rate_last;
  262. dst->rate_last = now;
  263. if (dst->rate_tokens > XRLIM_BURST_FACTOR * timeout)
  264. dst->rate_tokens = XRLIM_BURST_FACTOR * timeout;
  265. if (dst->rate_tokens >= timeout) {
  266. dst->rate_tokens -= timeout;
  267. rc = 1;
  268. }
  269. return rc;
  270. }
  271. static inline int icmpv4_xrlim_allow(struct rtable *rt, int type, int code)
  272. {
  273. struct dst_entry *dst = &rt->u.dst;
  274. int rc = 1;
  275. if (type > NR_ICMP_TYPES)
  276. goto out;
  277. /* Don't limit PMTU discovery. */
  278. if (type == ICMP_DEST_UNREACH && code == ICMP_FRAG_NEEDED)
  279. goto out;
  280. /* No rate limit on loopback */
  281. if (dst->dev && (dst->dev->flags&IFF_LOOPBACK))
  282. goto out;
  283. /* Limit if icmp type is enabled in ratemask. */
  284. if ((1 << type) & sysctl_icmp_ratemask)
  285. rc = xrlim_allow(dst, sysctl_icmp_ratelimit);
  286. out:
  287. return rc;
  288. }
  289. /*
  290. * Maintain the counters used in the SNMP statistics for outgoing ICMP
  291. */
  292. static void icmp_out_count(int type)
  293. {
  294. if (type <= NR_ICMP_TYPES) {
  295. ICMP_INC_STATS(icmp_pointers[type].output_entry);
  296. ICMP_INC_STATS(ICMP_MIB_OUTMSGS);
  297. }
  298. }
  299. /*
  300. * Checksum each fragment, and on the first include the headers and final
  301. * checksum.
  302. */
  303. static int icmp_glue_bits(void *from, char *to, int offset, int len, int odd,
  304. struct sk_buff *skb)
  305. {
  306. struct icmp_bxm *icmp_param = (struct icmp_bxm *)from;
  307. unsigned int csum;
  308. csum = skb_copy_and_csum_bits(icmp_param->skb,
  309. icmp_param->offset + offset,
  310. to, len, 0);
  311. skb->csum = csum_block_add(skb->csum, csum, odd);
  312. if (icmp_pointers[icmp_param->data.icmph.type].error)
  313. nf_ct_attach(skb, icmp_param->skb);
  314. return 0;
  315. }
  316. static void icmp_push_reply(struct icmp_bxm *icmp_param,
  317. struct ipcm_cookie *ipc, struct rtable *rt)
  318. {
  319. struct sk_buff *skb;
  320. ip_append_data(icmp_socket->sk, icmp_glue_bits, icmp_param,
  321. icmp_param->data_len+icmp_param->head_len,
  322. icmp_param->head_len,
  323. ipc, rt, MSG_DONTWAIT);
  324. if ((skb = skb_peek(&icmp_socket->sk->sk_write_queue)) != NULL) {
  325. struct icmphdr *icmph = skb->h.icmph;
  326. unsigned int csum = 0;
  327. struct sk_buff *skb1;
  328. skb_queue_walk(&icmp_socket->sk->sk_write_queue, skb1) {
  329. csum = csum_add(csum, skb1->csum);
  330. }
  331. csum = csum_partial_copy_nocheck((void *)&icmp_param->data,
  332. (char *)icmph,
  333. icmp_param->head_len, csum);
  334. icmph->checksum = csum_fold(csum);
  335. skb->ip_summed = CHECKSUM_NONE;
  336. ip_push_pending_frames(icmp_socket->sk);
  337. }
  338. }
  339. /*
  340. * Driving logic for building and sending ICMP messages.
  341. */
  342. static void icmp_reply(struct icmp_bxm *icmp_param, struct sk_buff *skb)
  343. {
  344. struct sock *sk = icmp_socket->sk;
  345. struct inet_sock *inet = inet_sk(sk);
  346. struct ipcm_cookie ipc;
  347. struct rtable *rt = (struct rtable *)skb->dst;
  348. u32 daddr;
  349. if (ip_options_echo(&icmp_param->replyopts, skb))
  350. goto out;
  351. if (icmp_xmit_lock())
  352. return;
  353. icmp_param->data.icmph.checksum = 0;
  354. icmp_out_count(icmp_param->data.icmph.type);
  355. inet->tos = skb->nh.iph->tos;
  356. daddr = ipc.addr = rt->rt_src;
  357. ipc.opt = NULL;
  358. if (icmp_param->replyopts.optlen) {
  359. ipc.opt = &icmp_param->replyopts;
  360. if (ipc.opt->srr)
  361. daddr = icmp_param->replyopts.faddr;
  362. }
  363. {
  364. struct flowi fl = { .nl_u = { .ip4_u =
  365. { .daddr = daddr,
  366. .saddr = rt->rt_spec_dst,
  367. .tos = RT_TOS(skb->nh.iph->tos) } },
  368. .proto = IPPROTO_ICMP };
  369. if (ip_route_output_key(&rt, &fl))
  370. goto out_unlock;
  371. }
  372. if (icmpv4_xrlim_allow(rt, icmp_param->data.icmph.type,
  373. icmp_param->data.icmph.code))
  374. icmp_push_reply(icmp_param, &ipc, rt);
  375. ip_rt_put(rt);
  376. out_unlock:
  377. icmp_xmit_unlock();
  378. out:;
  379. }
  380. /*
  381. * Send an ICMP message in response to a situation
  382. *
  383. * RFC 1122: 3.2.2 MUST send at least the IP header and 8 bytes of header.
  384. * MAY send more (we do).
  385. * MUST NOT change this header information.
  386. * MUST NOT reply to a multicast/broadcast IP address.
  387. * MUST NOT reply to a multicast/broadcast MAC address.
  388. * MUST reply to only the first fragment.
  389. */
  390. void icmp_send(struct sk_buff *skb_in, int type, int code, u32 info)
  391. {
  392. struct iphdr *iph;
  393. int room;
  394. struct icmp_bxm icmp_param;
  395. struct rtable *rt = (struct rtable *)skb_in->dst;
  396. struct ipcm_cookie ipc;
  397. u32 saddr;
  398. u8 tos;
  399. if (!rt)
  400. goto out;
  401. /*
  402. * Find the original header. It is expected to be valid, of course.
  403. * Check this, icmp_send is called from the most obscure devices
  404. * sometimes.
  405. */
  406. iph = skb_in->nh.iph;
  407. if ((u8 *)iph < skb_in->head || (u8 *)(iph + 1) > skb_in->tail)
  408. goto out;
  409. /*
  410. * No replies to physical multicast/broadcast
  411. */
  412. if (skb_in->pkt_type != PACKET_HOST)
  413. goto out;
  414. /*
  415. * Now check at the protocol level
  416. */
  417. if (rt->rt_flags & (RTCF_BROADCAST | RTCF_MULTICAST))
  418. goto out;
  419. /*
  420. * Only reply to fragment 0. We byte re-order the constant
  421. * mask for efficiency.
  422. */
  423. if (iph->frag_off & htons(IP_OFFSET))
  424. goto out;
  425. /*
  426. * If we send an ICMP error to an ICMP error a mess would result..
  427. */
  428. if (icmp_pointers[type].error) {
  429. /*
  430. * We are an error, check if we are replying to an
  431. * ICMP error
  432. */
  433. if (iph->protocol == IPPROTO_ICMP) {
  434. u8 _inner_type, *itp;
  435. itp = skb_header_pointer(skb_in,
  436. skb_in->nh.raw +
  437. (iph->ihl << 2) +
  438. offsetof(struct icmphdr,
  439. type) -
  440. skb_in->data,
  441. sizeof(_inner_type),
  442. &_inner_type);
  443. if (itp == NULL)
  444. goto out;
  445. /*
  446. * Assume any unknown ICMP type is an error. This
  447. * isn't specified by the RFC, but think about it..
  448. */
  449. if (*itp > NR_ICMP_TYPES ||
  450. icmp_pointers[*itp].error)
  451. goto out;
  452. }
  453. }
  454. if (icmp_xmit_lock())
  455. return;
  456. /*
  457. * Construct source address and options.
  458. */
  459. saddr = iph->daddr;
  460. if (!(rt->rt_flags & RTCF_LOCAL)) {
  461. if (sysctl_icmp_errors_use_inbound_ifaddr)
  462. saddr = inet_select_addr(skb_in->dev, 0, RT_SCOPE_LINK);
  463. else
  464. saddr = 0;
  465. }
  466. tos = icmp_pointers[type].error ? ((iph->tos & IPTOS_TOS_MASK) |
  467. IPTOS_PREC_INTERNETCONTROL) :
  468. iph->tos;
  469. if (ip_options_echo(&icmp_param.replyopts, skb_in))
  470. goto ende;
  471. /*
  472. * Prepare data for ICMP header.
  473. */
  474. icmp_param.data.icmph.type = type;
  475. icmp_param.data.icmph.code = code;
  476. icmp_param.data.icmph.un.gateway = info;
  477. icmp_param.data.icmph.checksum = 0;
  478. icmp_param.skb = skb_in;
  479. icmp_param.offset = skb_in->nh.raw - skb_in->data;
  480. icmp_out_count(icmp_param.data.icmph.type);
  481. inet_sk(icmp_socket->sk)->tos = tos;
  482. ipc.addr = iph->saddr;
  483. ipc.opt = &icmp_param.replyopts;
  484. {
  485. struct flowi fl = {
  486. .nl_u = {
  487. .ip4_u = {
  488. .daddr = icmp_param.replyopts.srr ?
  489. icmp_param.replyopts.faddr :
  490. iph->saddr,
  491. .saddr = saddr,
  492. .tos = RT_TOS(tos)
  493. }
  494. },
  495. .proto = IPPROTO_ICMP,
  496. .uli_u = {
  497. .icmpt = {
  498. .type = type,
  499. .code = code
  500. }
  501. }
  502. };
  503. if (ip_route_output_key(&rt, &fl))
  504. goto out_unlock;
  505. }
  506. if (!icmpv4_xrlim_allow(rt, type, code))
  507. goto ende;
  508. /* RFC says return as much as we can without exceeding 576 bytes. */
  509. room = dst_mtu(&rt->u.dst);
  510. if (room > 576)
  511. room = 576;
  512. room -= sizeof(struct iphdr) + icmp_param.replyopts.optlen;
  513. room -= sizeof(struct icmphdr);
  514. icmp_param.data_len = skb_in->len - icmp_param.offset;
  515. if (icmp_param.data_len > room)
  516. icmp_param.data_len = room;
  517. icmp_param.head_len = sizeof(struct icmphdr);
  518. icmp_push_reply(&icmp_param, &ipc, rt);
  519. ende:
  520. ip_rt_put(rt);
  521. out_unlock:
  522. icmp_xmit_unlock();
  523. out:;
  524. }
  525. /*
  526. * Handle ICMP_DEST_UNREACH, ICMP_TIME_EXCEED, and ICMP_QUENCH.
  527. */
  528. static void icmp_unreach(struct sk_buff *skb)
  529. {
  530. struct iphdr *iph;
  531. struct icmphdr *icmph;
  532. int hash, protocol;
  533. struct net_protocol *ipprot;
  534. struct sock *raw_sk;
  535. u32 info = 0;
  536. /*
  537. * Incomplete header ?
  538. * Only checks for the IP header, there should be an
  539. * additional check for longer headers in upper levels.
  540. */
  541. if (!pskb_may_pull(skb, sizeof(struct iphdr)))
  542. goto out_err;
  543. icmph = skb->h.icmph;
  544. iph = (struct iphdr *)skb->data;
  545. if (iph->ihl < 5) /* Mangled header, drop. */
  546. goto out_err;
  547. if (icmph->type == ICMP_DEST_UNREACH) {
  548. switch (icmph->code & 15) {
  549. case ICMP_NET_UNREACH:
  550. case ICMP_HOST_UNREACH:
  551. case ICMP_PROT_UNREACH:
  552. case ICMP_PORT_UNREACH:
  553. break;
  554. case ICMP_FRAG_NEEDED:
  555. if (ipv4_config.no_pmtu_disc) {
  556. LIMIT_NETDEBUG(
  557. printk(KERN_INFO "ICMP: %u.%u.%u.%u: "
  558. "fragmentation needed "
  559. "and DF set.\n",
  560. NIPQUAD(iph->daddr)));
  561. } else {
  562. info = ip_rt_frag_needed(iph,
  563. ntohs(icmph->un.frag.mtu));
  564. if (!info)
  565. goto out;
  566. }
  567. break;
  568. case ICMP_SR_FAILED:
  569. LIMIT_NETDEBUG(
  570. printk(KERN_INFO "ICMP: %u.%u.%u.%u: Source "
  571. "Route Failed.\n",
  572. NIPQUAD(iph->daddr)));
  573. break;
  574. default:
  575. break;
  576. }
  577. if (icmph->code > NR_ICMP_UNREACH)
  578. goto out;
  579. } else if (icmph->type == ICMP_PARAMETERPROB)
  580. info = ntohl(icmph->un.gateway) >> 24;
  581. /*
  582. * Throw it at our lower layers
  583. *
  584. * RFC 1122: 3.2.2 MUST extract the protocol ID from the passed
  585. * header.
  586. * RFC 1122: 3.2.2.1 MUST pass ICMP unreach messages to the
  587. * transport layer.
  588. * RFC 1122: 3.2.2.2 MUST pass ICMP time expired messages to
  589. * transport layer.
  590. */
  591. /*
  592. * Check the other end isnt violating RFC 1122. Some routers send
  593. * bogus responses to broadcast frames. If you see this message
  594. * first check your netmask matches at both ends, if it does then
  595. * get the other vendor to fix their kit.
  596. */
  597. if (!sysctl_icmp_ignore_bogus_error_responses &&
  598. inet_addr_type(iph->daddr) == RTN_BROADCAST) {
  599. if (net_ratelimit())
  600. printk(KERN_WARNING "%u.%u.%u.%u sent an invalid ICMP "
  601. "type %u, code %u "
  602. "error to a broadcast: %u.%u.%u.%u on %s\n",
  603. NIPQUAD(skb->nh.iph->saddr),
  604. icmph->type, icmph->code,
  605. NIPQUAD(iph->daddr),
  606. skb->dev->name);
  607. goto out;
  608. }
  609. /* Checkin full IP header plus 8 bytes of protocol to
  610. * avoid additional coding at protocol handlers.
  611. */
  612. if (!pskb_may_pull(skb, iph->ihl * 4 + 8))
  613. goto out;
  614. iph = (struct iphdr *)skb->data;
  615. protocol = iph->protocol;
  616. /*
  617. * Deliver ICMP message to raw sockets. Pretty useless feature?
  618. */
  619. /* Note: See raw.c and net/raw.h, RAWV4_HTABLE_SIZE==MAX_INET_PROTOS */
  620. hash = protocol & (MAX_INET_PROTOS - 1);
  621. read_lock(&raw_v4_lock);
  622. if ((raw_sk = sk_head(&raw_v4_htable[hash])) != NULL) {
  623. while ((raw_sk = __raw_v4_lookup(raw_sk, protocol, iph->daddr,
  624. iph->saddr,
  625. skb->dev->ifindex)) != NULL) {
  626. raw_err(raw_sk, skb, info);
  627. raw_sk = sk_next(raw_sk);
  628. iph = (struct iphdr *)skb->data;
  629. }
  630. }
  631. read_unlock(&raw_v4_lock);
  632. rcu_read_lock();
  633. ipprot = rcu_dereference(inet_protos[hash]);
  634. if (ipprot && ipprot->err_handler)
  635. ipprot->err_handler(skb, info);
  636. rcu_read_unlock();
  637. out:
  638. return;
  639. out_err:
  640. ICMP_INC_STATS_BH(ICMP_MIB_INERRORS);
  641. goto out;
  642. }
  643. /*
  644. * Handle ICMP_REDIRECT.
  645. */
  646. static void icmp_redirect(struct sk_buff *skb)
  647. {
  648. struct iphdr *iph;
  649. unsigned long ip;
  650. if (skb->len < sizeof(struct iphdr))
  651. goto out_err;
  652. /*
  653. * Get the copied header of the packet that caused the redirect
  654. */
  655. if (!pskb_may_pull(skb, sizeof(struct iphdr)))
  656. goto out;
  657. iph = (struct iphdr *)skb->data;
  658. ip = iph->daddr;
  659. switch (skb->h.icmph->code & 7) {
  660. case ICMP_REDIR_NET:
  661. case ICMP_REDIR_NETTOS:
  662. /*
  663. * As per RFC recommendations now handle it as a host redirect.
  664. */
  665. case ICMP_REDIR_HOST:
  666. case ICMP_REDIR_HOSTTOS:
  667. ip_rt_redirect(skb->nh.iph->saddr, ip, skb->h.icmph->un.gateway,
  668. iph->saddr, iph->tos, skb->dev);
  669. break;
  670. }
  671. out:
  672. return;
  673. out_err:
  674. ICMP_INC_STATS_BH(ICMP_MIB_INERRORS);
  675. goto out;
  676. }
  677. /*
  678. * Handle ICMP_ECHO ("ping") requests.
  679. *
  680. * RFC 1122: 3.2.2.6 MUST have an echo server that answers ICMP echo
  681. * requests.
  682. * RFC 1122: 3.2.2.6 Data received in the ICMP_ECHO request MUST be
  683. * included in the reply.
  684. * RFC 1812: 4.3.3.6 SHOULD have a config option for silently ignoring
  685. * echo requests, MUST have default=NOT.
  686. * See also WRT handling of options once they are done and working.
  687. */
  688. static void icmp_echo(struct sk_buff *skb)
  689. {
  690. if (!sysctl_icmp_echo_ignore_all) {
  691. struct icmp_bxm icmp_param;
  692. icmp_param.data.icmph = *skb->h.icmph;
  693. icmp_param.data.icmph.type = ICMP_ECHOREPLY;
  694. icmp_param.skb = skb;
  695. icmp_param.offset = 0;
  696. icmp_param.data_len = skb->len;
  697. icmp_param.head_len = sizeof(struct icmphdr);
  698. icmp_reply(&icmp_param, skb);
  699. }
  700. }
  701. /*
  702. * Handle ICMP Timestamp requests.
  703. * RFC 1122: 3.2.2.8 MAY implement ICMP timestamp requests.
  704. * SHOULD be in the kernel for minimum random latency.
  705. * MUST be accurate to a few minutes.
  706. * MUST be updated at least at 15Hz.
  707. */
  708. static void icmp_timestamp(struct sk_buff *skb)
  709. {
  710. struct timeval tv;
  711. struct icmp_bxm icmp_param;
  712. /*
  713. * Too short.
  714. */
  715. if (skb->len < 4)
  716. goto out_err;
  717. /*
  718. * Fill in the current time as ms since midnight UT:
  719. */
  720. do_gettimeofday(&tv);
  721. icmp_param.data.times[1] = htonl((tv.tv_sec % 86400) * 1000 +
  722. tv.tv_usec / 1000);
  723. icmp_param.data.times[2] = icmp_param.data.times[1];
  724. if (skb_copy_bits(skb, 0, &icmp_param.data.times[0], 4))
  725. BUG();
  726. icmp_param.data.icmph = *skb->h.icmph;
  727. icmp_param.data.icmph.type = ICMP_TIMESTAMPREPLY;
  728. icmp_param.data.icmph.code = 0;
  729. icmp_param.skb = skb;
  730. icmp_param.offset = 0;
  731. icmp_param.data_len = 0;
  732. icmp_param.head_len = sizeof(struct icmphdr) + 12;
  733. icmp_reply(&icmp_param, skb);
  734. out:
  735. return;
  736. out_err:
  737. ICMP_INC_STATS_BH(ICMP_MIB_INERRORS);
  738. goto out;
  739. }
  740. /*
  741. * Handle ICMP_ADDRESS_MASK requests. (RFC950)
  742. *
  743. * RFC1122 (3.2.2.9). A host MUST only send replies to
  744. * ADDRESS_MASK requests if it's been configured as an address mask
  745. * agent. Receiving a request doesn't constitute implicit permission to
  746. * act as one. Of course, implementing this correctly requires (SHOULD)
  747. * a way to turn the functionality on and off. Another one for sysctl(),
  748. * I guess. -- MS
  749. *
  750. * RFC1812 (4.3.3.9). A router MUST implement it.
  751. * A router SHOULD have switch turning it on/off.
  752. * This switch MUST be ON by default.
  753. *
  754. * Gratuitous replies, zero-source replies are not implemented,
  755. * that complies with RFC. DO NOT implement them!!! All the idea
  756. * of broadcast addrmask replies as specified in RFC950 is broken.
  757. * The problem is that it is not uncommon to have several prefixes
  758. * on one physical interface. Moreover, addrmask agent can even be
  759. * not aware of existing another prefixes.
  760. * If source is zero, addrmask agent cannot choose correct prefix.
  761. * Gratuitous mask announcements suffer from the same problem.
  762. * RFC1812 explains it, but still allows to use ADDRMASK,
  763. * that is pretty silly. --ANK
  764. *
  765. * All these rules are so bizarre, that I removed kernel addrmask
  766. * support at all. It is wrong, it is obsolete, nobody uses it in
  767. * any case. --ANK
  768. *
  769. * Furthermore you can do it with a usermode address agent program
  770. * anyway...
  771. */
  772. static void icmp_address(struct sk_buff *skb)
  773. {
  774. #if 0
  775. if (net_ratelimit())
  776. printk(KERN_DEBUG "a guy asks for address mask. Who is it?\n");
  777. #endif
  778. }
  779. /*
  780. * RFC1812 (4.3.3.9). A router SHOULD listen all replies, and complain
  781. * loudly if an inconsistency is found.
  782. */
  783. static void icmp_address_reply(struct sk_buff *skb)
  784. {
  785. struct rtable *rt = (struct rtable *)skb->dst;
  786. struct net_device *dev = skb->dev;
  787. struct in_device *in_dev;
  788. struct in_ifaddr *ifa;
  789. if (skb->len < 4 || !(rt->rt_flags&RTCF_DIRECTSRC))
  790. goto out;
  791. in_dev = in_dev_get(dev);
  792. if (!in_dev)
  793. goto out;
  794. rcu_read_lock();
  795. if (in_dev->ifa_list &&
  796. IN_DEV_LOG_MARTIANS(in_dev) &&
  797. IN_DEV_FORWARD(in_dev)) {
  798. u32 _mask, *mp;
  799. mp = skb_header_pointer(skb, 0, sizeof(_mask), &_mask);
  800. if (mp == NULL)
  801. BUG();
  802. for (ifa = in_dev->ifa_list; ifa; ifa = ifa->ifa_next) {
  803. if (*mp == ifa->ifa_mask &&
  804. inet_ifa_match(rt->rt_src, ifa))
  805. break;
  806. }
  807. if (!ifa && net_ratelimit()) {
  808. printk(KERN_INFO "Wrong address mask %u.%u.%u.%u from "
  809. "%s/%u.%u.%u.%u\n",
  810. NIPQUAD(*mp), dev->name, NIPQUAD(rt->rt_src));
  811. }
  812. }
  813. rcu_read_unlock();
  814. in_dev_put(in_dev);
  815. out:;
  816. }
  817. static void icmp_discard(struct sk_buff *skb)
  818. {
  819. }
  820. /*
  821. * Deal with incoming ICMP packets.
  822. */
  823. int icmp_rcv(struct sk_buff *skb)
  824. {
  825. struct icmphdr *icmph;
  826. struct rtable *rt = (struct rtable *)skb->dst;
  827. ICMP_INC_STATS_BH(ICMP_MIB_INMSGS);
  828. switch (skb->ip_summed) {
  829. case CHECKSUM_HW:
  830. if (!(u16)csum_fold(skb->csum))
  831. break;
  832. NETDEBUG(if (net_ratelimit())
  833. printk(KERN_DEBUG "icmp v4 hw csum failure\n"));
  834. case CHECKSUM_NONE:
  835. if ((u16)csum_fold(skb_checksum(skb, 0, skb->len, 0)))
  836. goto error;
  837. default:;
  838. }
  839. if (!pskb_pull(skb, sizeof(struct icmphdr)))
  840. goto error;
  841. icmph = skb->h.icmph;
  842. /*
  843. * 18 is the highest 'known' ICMP type. Anything else is a mystery
  844. *
  845. * RFC 1122: 3.2.2 Unknown ICMP messages types MUST be silently
  846. * discarded.
  847. */
  848. if (icmph->type > NR_ICMP_TYPES)
  849. goto error;
  850. /*
  851. * Parse the ICMP message
  852. */
  853. if (rt->rt_flags & (RTCF_BROADCAST | RTCF_MULTICAST)) {
  854. /*
  855. * RFC 1122: 3.2.2.6 An ICMP_ECHO to broadcast MAY be
  856. * silently ignored (we let user decide with a sysctl).
  857. * RFC 1122: 3.2.2.8 An ICMP_TIMESTAMP MAY be silently
  858. * discarded if to broadcast/multicast.
  859. */
  860. if (icmph->type == ICMP_ECHO &&
  861. sysctl_icmp_echo_ignore_broadcasts) {
  862. goto error;
  863. }
  864. if (icmph->type != ICMP_ECHO &&
  865. icmph->type != ICMP_TIMESTAMP &&
  866. icmph->type != ICMP_ADDRESS &&
  867. icmph->type != ICMP_ADDRESSREPLY) {
  868. goto error;
  869. }
  870. }
  871. ICMP_INC_STATS_BH(icmp_pointers[icmph->type].input_entry);
  872. icmp_pointers[icmph->type].handler(skb);
  873. drop:
  874. kfree_skb(skb);
  875. return 0;
  876. error:
  877. ICMP_INC_STATS_BH(ICMP_MIB_INERRORS);
  878. goto drop;
  879. }
  880. /*
  881. * This table is the definition of how we handle ICMP.
  882. */
  883. static struct icmp_control icmp_pointers[NR_ICMP_TYPES + 1] = {
  884. [ICMP_ECHOREPLY] = {
  885. .output_entry = ICMP_MIB_OUTECHOREPS,
  886. .input_entry = ICMP_MIB_INECHOREPS,
  887. .handler = icmp_discard,
  888. },
  889. [1] = {
  890. .output_entry = ICMP_MIB_DUMMY,
  891. .input_entry = ICMP_MIB_INERRORS,
  892. .handler = icmp_discard,
  893. .error = 1,
  894. },
  895. [2] = {
  896. .output_entry = ICMP_MIB_DUMMY,
  897. .input_entry = ICMP_MIB_INERRORS,
  898. .handler = icmp_discard,
  899. .error = 1,
  900. },
  901. [ICMP_DEST_UNREACH] = {
  902. .output_entry = ICMP_MIB_OUTDESTUNREACHS,
  903. .input_entry = ICMP_MIB_INDESTUNREACHS,
  904. .handler = icmp_unreach,
  905. .error = 1,
  906. },
  907. [ICMP_SOURCE_QUENCH] = {
  908. .output_entry = ICMP_MIB_OUTSRCQUENCHS,
  909. .input_entry = ICMP_MIB_INSRCQUENCHS,
  910. .handler = icmp_unreach,
  911. .error = 1,
  912. },
  913. [ICMP_REDIRECT] = {
  914. .output_entry = ICMP_MIB_OUTREDIRECTS,
  915. .input_entry = ICMP_MIB_INREDIRECTS,
  916. .handler = icmp_redirect,
  917. .error = 1,
  918. },
  919. [6] = {
  920. .output_entry = ICMP_MIB_DUMMY,
  921. .input_entry = ICMP_MIB_INERRORS,
  922. .handler = icmp_discard,
  923. .error = 1,
  924. },
  925. [7] = {
  926. .output_entry = ICMP_MIB_DUMMY,
  927. .input_entry = ICMP_MIB_INERRORS,
  928. .handler = icmp_discard,
  929. .error = 1,
  930. },
  931. [ICMP_ECHO] = {
  932. .output_entry = ICMP_MIB_OUTECHOS,
  933. .input_entry = ICMP_MIB_INECHOS,
  934. .handler = icmp_echo,
  935. },
  936. [9] = {
  937. .output_entry = ICMP_MIB_DUMMY,
  938. .input_entry = ICMP_MIB_INERRORS,
  939. .handler = icmp_discard,
  940. .error = 1,
  941. },
  942. [10] = {
  943. .output_entry = ICMP_MIB_DUMMY,
  944. .input_entry = ICMP_MIB_INERRORS,
  945. .handler = icmp_discard,
  946. .error = 1,
  947. },
  948. [ICMP_TIME_EXCEEDED] = {
  949. .output_entry = ICMP_MIB_OUTTIMEEXCDS,
  950. .input_entry = ICMP_MIB_INTIMEEXCDS,
  951. .handler = icmp_unreach,
  952. .error = 1,
  953. },
  954. [ICMP_PARAMETERPROB] = {
  955. .output_entry = ICMP_MIB_OUTPARMPROBS,
  956. .input_entry = ICMP_MIB_INPARMPROBS,
  957. .handler = icmp_unreach,
  958. .error = 1,
  959. },
  960. [ICMP_TIMESTAMP] = {
  961. .output_entry = ICMP_MIB_OUTTIMESTAMPS,
  962. .input_entry = ICMP_MIB_INTIMESTAMPS,
  963. .handler = icmp_timestamp,
  964. },
  965. [ICMP_TIMESTAMPREPLY] = {
  966. .output_entry = ICMP_MIB_OUTTIMESTAMPREPS,
  967. .input_entry = ICMP_MIB_INTIMESTAMPREPS,
  968. .handler = icmp_discard,
  969. },
  970. [ICMP_INFO_REQUEST] = {
  971. .output_entry = ICMP_MIB_DUMMY,
  972. .input_entry = ICMP_MIB_DUMMY,
  973. .handler = icmp_discard,
  974. },
  975. [ICMP_INFO_REPLY] = {
  976. .output_entry = ICMP_MIB_DUMMY,
  977. .input_entry = ICMP_MIB_DUMMY,
  978. .handler = icmp_discard,
  979. },
  980. [ICMP_ADDRESS] = {
  981. .output_entry = ICMP_MIB_OUTADDRMASKS,
  982. .input_entry = ICMP_MIB_INADDRMASKS,
  983. .handler = icmp_address,
  984. },
  985. [ICMP_ADDRESSREPLY] = {
  986. .output_entry = ICMP_MIB_OUTADDRMASKREPS,
  987. .input_entry = ICMP_MIB_INADDRMASKREPS,
  988. .handler = icmp_address_reply,
  989. },
  990. };
  991. void __init icmp_init(struct net_proto_family *ops)
  992. {
  993. struct inet_sock *inet;
  994. int i;
  995. for (i = 0; i < NR_CPUS; i++) {
  996. int err;
  997. if (!cpu_possible(i))
  998. continue;
  999. err = sock_create_kern(PF_INET, SOCK_RAW, IPPROTO_ICMP,
  1000. &per_cpu(__icmp_socket, i));
  1001. if (err < 0)
  1002. panic("Failed to create the ICMP control socket.\n");
  1003. per_cpu(__icmp_socket, i)->sk->sk_allocation = GFP_ATOMIC;
  1004. /* Enough space for 2 64K ICMP packets, including
  1005. * sk_buff struct overhead.
  1006. */
  1007. per_cpu(__icmp_socket, i)->sk->sk_sndbuf =
  1008. (2 * ((64 * 1024) + sizeof(struct sk_buff)));
  1009. inet = inet_sk(per_cpu(__icmp_socket, i)->sk);
  1010. inet->uc_ttl = -1;
  1011. inet->pmtudisc = IP_PMTUDISC_DONT;
  1012. /* Unhash it so that IP input processing does not even
  1013. * see it, we do not wish this socket to see incoming
  1014. * packets.
  1015. */
  1016. per_cpu(__icmp_socket, i)->sk->sk_prot->unhash(per_cpu(__icmp_socket, i)->sk);
  1017. }
  1018. }
  1019. EXPORT_SYMBOL(icmp_err_convert);
  1020. EXPORT_SYMBOL(icmp_send);
  1021. EXPORT_SYMBOL(icmp_statistics);
  1022. EXPORT_SYMBOL(xrlim_allow);