peer_event.c 6.4 KB

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  1. /* Peer event handling, typically ICMP messages.
  2. *
  3. * Copyright (C) 2007 Red Hat, Inc. All Rights Reserved.
  4. * Written by David Howells (dhowells@redhat.com)
  5. *
  6. * This program is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU General Public License
  8. * as published by the Free Software Foundation; either version
  9. * 2 of the License, or (at your option) any later version.
  10. */
  11. #include <linux/module.h>
  12. #include <linux/net.h>
  13. #include <linux/skbuff.h>
  14. #include <linux/errqueue.h>
  15. #include <linux/udp.h>
  16. #include <linux/in.h>
  17. #include <linux/in6.h>
  18. #include <linux/icmp.h>
  19. #include <net/sock.h>
  20. #include <net/af_rxrpc.h>
  21. #include <net/ip.h>
  22. #include "ar-internal.h"
  23. static void rxrpc_store_error(struct rxrpc_peer *, struct sock_exterr_skb *);
  24. /*
  25. * Find the peer associated with an ICMP packet.
  26. */
  27. static struct rxrpc_peer *rxrpc_lookup_peer_icmp_rcu(struct rxrpc_local *local,
  28. const struct sk_buff *skb)
  29. {
  30. struct sock_exterr_skb *serr = SKB_EXT_ERR(skb);
  31. struct sockaddr_rxrpc srx;
  32. _enter("");
  33. memset(&srx, 0, sizeof(srx));
  34. srx.transport_type = local->srx.transport_type;
  35. srx.transport.family = local->srx.transport.family;
  36. /* Can we see an ICMP4 packet on an ICMP6 listening socket? and vice
  37. * versa?
  38. */
  39. switch (srx.transport.family) {
  40. case AF_INET:
  41. srx.transport.sin.sin_port = serr->port;
  42. srx.transport_len = sizeof(struct sockaddr_in);
  43. switch (serr->ee.ee_origin) {
  44. case SO_EE_ORIGIN_ICMP:
  45. _net("Rx ICMP");
  46. memcpy(&srx.transport.sin.sin_addr,
  47. skb_network_header(skb) + serr->addr_offset,
  48. sizeof(struct in_addr));
  49. break;
  50. case SO_EE_ORIGIN_ICMP6:
  51. _net("Rx ICMP6 on v4 sock");
  52. memcpy(&srx.transport.sin.sin_addr,
  53. skb_network_header(skb) + serr->addr_offset + 12,
  54. sizeof(struct in_addr));
  55. break;
  56. default:
  57. memcpy(&srx.transport.sin.sin_addr, &ip_hdr(skb)->saddr,
  58. sizeof(struct in_addr));
  59. break;
  60. }
  61. break;
  62. default:
  63. BUG();
  64. }
  65. return rxrpc_lookup_peer_rcu(local, &srx);
  66. }
  67. /*
  68. * Handle an MTU/fragmentation problem.
  69. */
  70. static void rxrpc_adjust_mtu(struct rxrpc_peer *peer, struct sock_exterr_skb *serr)
  71. {
  72. u32 mtu = serr->ee.ee_info;
  73. _net("Rx ICMP Fragmentation Needed (%d)", mtu);
  74. /* wind down the local interface MTU */
  75. if (mtu > 0 && peer->if_mtu == 65535 && mtu < peer->if_mtu) {
  76. peer->if_mtu = mtu;
  77. _net("I/F MTU %u", mtu);
  78. }
  79. if (mtu == 0) {
  80. /* they didn't give us a size, estimate one */
  81. mtu = peer->if_mtu;
  82. if (mtu > 1500) {
  83. mtu >>= 1;
  84. if (mtu < 1500)
  85. mtu = 1500;
  86. } else {
  87. mtu -= 100;
  88. if (mtu < peer->hdrsize)
  89. mtu = peer->hdrsize + 4;
  90. }
  91. }
  92. if (mtu < peer->mtu) {
  93. spin_lock_bh(&peer->lock);
  94. peer->mtu = mtu;
  95. peer->maxdata = peer->mtu - peer->hdrsize;
  96. spin_unlock_bh(&peer->lock);
  97. _net("Net MTU %u (maxdata %u)",
  98. peer->mtu, peer->maxdata);
  99. }
  100. }
  101. /*
  102. * Handle an error received on the local endpoint.
  103. */
  104. void rxrpc_error_report(struct sock *sk)
  105. {
  106. struct sock_exterr_skb *serr;
  107. struct rxrpc_local *local = sk->sk_user_data;
  108. struct rxrpc_peer *peer;
  109. struct sk_buff *skb;
  110. _enter("%p{%d}", sk, local->debug_id);
  111. skb = sock_dequeue_err_skb(sk);
  112. if (!skb) {
  113. _leave("UDP socket errqueue empty");
  114. return;
  115. }
  116. serr = SKB_EXT_ERR(skb);
  117. if (!skb->len && serr->ee.ee_origin == SO_EE_ORIGIN_TIMESTAMPING) {
  118. _leave("UDP empty message");
  119. kfree_skb(skb);
  120. return;
  121. }
  122. rxrpc_new_skb(skb);
  123. rcu_read_lock();
  124. peer = rxrpc_lookup_peer_icmp_rcu(local, skb);
  125. if (peer && !rxrpc_get_peer_maybe(peer))
  126. peer = NULL;
  127. if (!peer) {
  128. rcu_read_unlock();
  129. rxrpc_free_skb(skb);
  130. _leave(" [no peer]");
  131. return;
  132. }
  133. if ((serr->ee.ee_origin == SO_EE_ORIGIN_ICMP &&
  134. serr->ee.ee_type == ICMP_DEST_UNREACH &&
  135. serr->ee.ee_code == ICMP_FRAG_NEEDED)) {
  136. rxrpc_adjust_mtu(peer, serr);
  137. rcu_read_unlock();
  138. rxrpc_free_skb(skb);
  139. rxrpc_put_peer(peer);
  140. _leave(" [MTU update]");
  141. return;
  142. }
  143. rxrpc_store_error(peer, serr);
  144. rcu_read_unlock();
  145. rxrpc_free_skb(skb);
  146. /* The ref we obtained is passed off to the work item */
  147. rxrpc_queue_work(&peer->error_distributor);
  148. _leave("");
  149. }
  150. /*
  151. * Map an error report to error codes on the peer record.
  152. */
  153. static void rxrpc_store_error(struct rxrpc_peer *peer,
  154. struct sock_exterr_skb *serr)
  155. {
  156. struct sock_extended_err *ee;
  157. int err;
  158. _enter("");
  159. ee = &serr->ee;
  160. _net("Rx Error o=%d t=%d c=%d e=%d",
  161. ee->ee_origin, ee->ee_type, ee->ee_code, ee->ee_errno);
  162. err = ee->ee_errno;
  163. switch (ee->ee_origin) {
  164. case SO_EE_ORIGIN_ICMP:
  165. switch (ee->ee_type) {
  166. case ICMP_DEST_UNREACH:
  167. switch (ee->ee_code) {
  168. case ICMP_NET_UNREACH:
  169. _net("Rx Received ICMP Network Unreachable");
  170. break;
  171. case ICMP_HOST_UNREACH:
  172. _net("Rx Received ICMP Host Unreachable");
  173. break;
  174. case ICMP_PORT_UNREACH:
  175. _net("Rx Received ICMP Port Unreachable");
  176. break;
  177. case ICMP_NET_UNKNOWN:
  178. _net("Rx Received ICMP Unknown Network");
  179. break;
  180. case ICMP_HOST_UNKNOWN:
  181. _net("Rx Received ICMP Unknown Host");
  182. break;
  183. default:
  184. _net("Rx Received ICMP DestUnreach code=%u",
  185. ee->ee_code);
  186. break;
  187. }
  188. break;
  189. case ICMP_TIME_EXCEEDED:
  190. _net("Rx Received ICMP TTL Exceeded");
  191. break;
  192. default:
  193. _proto("Rx Received ICMP error { type=%u code=%u }",
  194. ee->ee_type, ee->ee_code);
  195. break;
  196. }
  197. break;
  198. case SO_EE_ORIGIN_NONE:
  199. case SO_EE_ORIGIN_LOCAL:
  200. _proto("Rx Received local error { error=%d }", err);
  201. err += RXRPC_LOCAL_ERROR_OFFSET;
  202. break;
  203. case SO_EE_ORIGIN_ICMP6:
  204. default:
  205. _proto("Rx Received error report { orig=%u }", ee->ee_origin);
  206. break;
  207. }
  208. peer->error_report = err;
  209. }
  210. /*
  211. * Distribute an error that occurred on a peer
  212. */
  213. void rxrpc_peer_error_distributor(struct work_struct *work)
  214. {
  215. struct rxrpc_peer *peer =
  216. container_of(work, struct rxrpc_peer, error_distributor);
  217. struct rxrpc_call *call;
  218. int error_report;
  219. _enter("");
  220. error_report = READ_ONCE(peer->error_report);
  221. _debug("ISSUE ERROR %d", error_report);
  222. spin_lock_bh(&peer->lock);
  223. while (!hlist_empty(&peer->error_targets)) {
  224. call = hlist_entry(peer->error_targets.first,
  225. struct rxrpc_call, error_link);
  226. hlist_del_init(&call->error_link);
  227. write_lock(&call->state_lock);
  228. if (call->state != RXRPC_CALL_COMPLETE &&
  229. call->state < RXRPC_CALL_NETWORK_ERROR) {
  230. call->error_report = error_report;
  231. call->state = RXRPC_CALL_NETWORK_ERROR;
  232. set_bit(RXRPC_CALL_EV_RCVD_ERROR, &call->events);
  233. rxrpc_queue_call(call);
  234. }
  235. write_unlock(&call->state_lock);
  236. }
  237. spin_unlock_bh(&peer->lock);
  238. rxrpc_put_peer(peer);
  239. _leave("");
  240. }