output.c 17 KB

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  1. /* RxRPC packet transmission
  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. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  12. #include <linux/net.h>
  13. #include <linux/gfp.h>
  14. #include <linux/skbuff.h>
  15. #include <linux/export.h>
  16. #include <net/sock.h>
  17. #include <net/af_rxrpc.h>
  18. #include "ar-internal.h"
  19. struct rxrpc_ack_buffer {
  20. struct rxrpc_wire_header whdr;
  21. struct rxrpc_ackpacket ack;
  22. u8 acks[255];
  23. u8 pad[3];
  24. struct rxrpc_ackinfo ackinfo;
  25. };
  26. struct rxrpc_abort_buffer {
  27. struct rxrpc_wire_header whdr;
  28. __be32 abort_code;
  29. };
  30. static const char rxrpc_keepalive_string[] = "";
  31. /*
  32. * Increase Tx backoff on transmission failure and clear it on success.
  33. */
  34. static void rxrpc_tx_backoff(struct rxrpc_call *call, int ret)
  35. {
  36. if (ret < 0) {
  37. u16 tx_backoff = READ_ONCE(call->tx_backoff);
  38. if (tx_backoff < HZ)
  39. WRITE_ONCE(call->tx_backoff, tx_backoff + 1);
  40. } else {
  41. WRITE_ONCE(call->tx_backoff, 0);
  42. }
  43. }
  44. /*
  45. * Arrange for a keepalive ping a certain time after we last transmitted. This
  46. * lets the far side know we're still interested in this call and helps keep
  47. * the route through any intervening firewall open.
  48. *
  49. * Receiving a response to the ping will prevent the ->expect_rx_by timer from
  50. * expiring.
  51. */
  52. static void rxrpc_set_keepalive(struct rxrpc_call *call)
  53. {
  54. unsigned long now = jiffies, keepalive_at = call->next_rx_timo / 6;
  55. keepalive_at += now;
  56. WRITE_ONCE(call->keepalive_at, keepalive_at);
  57. rxrpc_reduce_call_timer(call, keepalive_at, now,
  58. rxrpc_timer_set_for_keepalive);
  59. }
  60. /*
  61. * Fill out an ACK packet.
  62. */
  63. static size_t rxrpc_fill_out_ack(struct rxrpc_connection *conn,
  64. struct rxrpc_call *call,
  65. struct rxrpc_ack_buffer *pkt,
  66. rxrpc_seq_t *_hard_ack,
  67. rxrpc_seq_t *_top,
  68. u8 reason)
  69. {
  70. rxrpc_serial_t serial;
  71. rxrpc_seq_t hard_ack, top, seq;
  72. int ix;
  73. u32 mtu, jmax;
  74. u8 *ackp = pkt->acks;
  75. /* Barrier against rxrpc_input_data(). */
  76. serial = call->ackr_serial;
  77. hard_ack = READ_ONCE(call->rx_hard_ack);
  78. top = smp_load_acquire(&call->rx_top);
  79. *_hard_ack = hard_ack;
  80. *_top = top;
  81. pkt->ack.bufferSpace = htons(8);
  82. pkt->ack.maxSkew = htons(call->ackr_skew);
  83. pkt->ack.firstPacket = htonl(hard_ack + 1);
  84. pkt->ack.previousPacket = htonl(call->ackr_prev_seq);
  85. pkt->ack.serial = htonl(serial);
  86. pkt->ack.reason = reason;
  87. pkt->ack.nAcks = top - hard_ack;
  88. if (reason == RXRPC_ACK_PING)
  89. pkt->whdr.flags |= RXRPC_REQUEST_ACK;
  90. if (after(top, hard_ack)) {
  91. seq = hard_ack + 1;
  92. do {
  93. ix = seq & RXRPC_RXTX_BUFF_MASK;
  94. if (call->rxtx_buffer[ix])
  95. *ackp++ = RXRPC_ACK_TYPE_ACK;
  96. else
  97. *ackp++ = RXRPC_ACK_TYPE_NACK;
  98. seq++;
  99. } while (before_eq(seq, top));
  100. }
  101. mtu = conn->params.peer->if_mtu;
  102. mtu -= conn->params.peer->hdrsize;
  103. jmax = (call->nr_jumbo_bad > 3) ? 1 : rxrpc_rx_jumbo_max;
  104. pkt->ackinfo.rxMTU = htonl(rxrpc_rx_mtu);
  105. pkt->ackinfo.maxMTU = htonl(mtu);
  106. pkt->ackinfo.rwind = htonl(call->rx_winsize);
  107. pkt->ackinfo.jumbo_max = htonl(jmax);
  108. *ackp++ = 0;
  109. *ackp++ = 0;
  110. *ackp++ = 0;
  111. return top - hard_ack + 3;
  112. }
  113. /*
  114. * Send an ACK call packet.
  115. */
  116. int rxrpc_send_ack_packet(struct rxrpc_call *call, bool ping,
  117. rxrpc_serial_t *_serial)
  118. {
  119. struct rxrpc_connection *conn;
  120. struct rxrpc_ack_buffer *pkt;
  121. struct msghdr msg;
  122. struct kvec iov[2];
  123. rxrpc_serial_t serial;
  124. rxrpc_seq_t hard_ack, top;
  125. size_t len, n;
  126. int ret;
  127. u8 reason;
  128. if (test_bit(RXRPC_CALL_DISCONNECTED, &call->flags))
  129. return -ECONNRESET;
  130. pkt = kzalloc(sizeof(*pkt), GFP_KERNEL);
  131. if (!pkt)
  132. return -ENOMEM;
  133. conn = call->conn;
  134. msg.msg_name = &call->peer->srx.transport;
  135. msg.msg_namelen = call->peer->srx.transport_len;
  136. msg.msg_control = NULL;
  137. msg.msg_controllen = 0;
  138. msg.msg_flags = 0;
  139. pkt->whdr.epoch = htonl(conn->proto.epoch);
  140. pkt->whdr.cid = htonl(call->cid);
  141. pkt->whdr.callNumber = htonl(call->call_id);
  142. pkt->whdr.seq = 0;
  143. pkt->whdr.type = RXRPC_PACKET_TYPE_ACK;
  144. pkt->whdr.flags = RXRPC_SLOW_START_OK | conn->out_clientflag;
  145. pkt->whdr.userStatus = 0;
  146. pkt->whdr.securityIndex = call->security_ix;
  147. pkt->whdr._rsvd = 0;
  148. pkt->whdr.serviceId = htons(call->service_id);
  149. spin_lock_bh(&call->lock);
  150. if (ping) {
  151. reason = RXRPC_ACK_PING;
  152. } else {
  153. reason = call->ackr_reason;
  154. if (!call->ackr_reason) {
  155. spin_unlock_bh(&call->lock);
  156. ret = 0;
  157. goto out;
  158. }
  159. call->ackr_reason = 0;
  160. }
  161. n = rxrpc_fill_out_ack(conn, call, pkt, &hard_ack, &top, reason);
  162. spin_unlock_bh(&call->lock);
  163. iov[0].iov_base = pkt;
  164. iov[0].iov_len = sizeof(pkt->whdr) + sizeof(pkt->ack) + n;
  165. iov[1].iov_base = &pkt->ackinfo;
  166. iov[1].iov_len = sizeof(pkt->ackinfo);
  167. len = iov[0].iov_len + iov[1].iov_len;
  168. serial = atomic_inc_return(&conn->serial);
  169. pkt->whdr.serial = htonl(serial);
  170. trace_rxrpc_tx_ack(call->debug_id, serial,
  171. ntohl(pkt->ack.firstPacket),
  172. ntohl(pkt->ack.serial),
  173. pkt->ack.reason, pkt->ack.nAcks);
  174. if (_serial)
  175. *_serial = serial;
  176. if (ping) {
  177. call->ping_serial = serial;
  178. smp_wmb();
  179. /* We need to stick a time in before we send the packet in case
  180. * the reply gets back before kernel_sendmsg() completes - but
  181. * asking UDP to send the packet can take a relatively long
  182. * time.
  183. */
  184. call->ping_time = ktime_get_real();
  185. set_bit(RXRPC_CALL_PINGING, &call->flags);
  186. trace_rxrpc_rtt_tx(call, rxrpc_rtt_tx_ping, serial);
  187. }
  188. ret = kernel_sendmsg(conn->params.local->socket, &msg, iov, 2, len);
  189. conn->params.peer->last_tx_at = ktime_get_seconds();
  190. if (ret < 0)
  191. trace_rxrpc_tx_fail(call->debug_id, serial, ret,
  192. rxrpc_tx_point_call_ack);
  193. else
  194. trace_rxrpc_tx_packet(call->debug_id, &pkt->whdr,
  195. rxrpc_tx_point_call_ack);
  196. rxrpc_tx_backoff(call, ret);
  197. if (call->state < RXRPC_CALL_COMPLETE) {
  198. if (ret < 0) {
  199. if (ping)
  200. clear_bit(RXRPC_CALL_PINGING, &call->flags);
  201. rxrpc_propose_ACK(call, pkt->ack.reason,
  202. ntohs(pkt->ack.maxSkew),
  203. ntohl(pkt->ack.serial),
  204. false, true,
  205. rxrpc_propose_ack_retry_tx);
  206. } else {
  207. spin_lock_bh(&call->lock);
  208. if (after(hard_ack, call->ackr_consumed))
  209. call->ackr_consumed = hard_ack;
  210. if (after(top, call->ackr_seen))
  211. call->ackr_seen = top;
  212. spin_unlock_bh(&call->lock);
  213. }
  214. rxrpc_set_keepalive(call);
  215. }
  216. out:
  217. kfree(pkt);
  218. return ret;
  219. }
  220. /*
  221. * Send an ABORT call packet.
  222. */
  223. int rxrpc_send_abort_packet(struct rxrpc_call *call)
  224. {
  225. struct rxrpc_connection *conn;
  226. struct rxrpc_abort_buffer pkt;
  227. struct msghdr msg;
  228. struct kvec iov[1];
  229. rxrpc_serial_t serial;
  230. int ret;
  231. /* Don't bother sending aborts for a client call once the server has
  232. * hard-ACK'd all of its request data. After that point, we're not
  233. * going to stop the operation proceeding, and whilst we might limit
  234. * the reply, it's not worth it if we can send a new call on the same
  235. * channel instead, thereby closing off this call.
  236. */
  237. if (rxrpc_is_client_call(call) &&
  238. test_bit(RXRPC_CALL_TX_LAST, &call->flags))
  239. return 0;
  240. if (test_bit(RXRPC_CALL_DISCONNECTED, &call->flags))
  241. return -ECONNRESET;
  242. conn = call->conn;
  243. msg.msg_name = &call->peer->srx.transport;
  244. msg.msg_namelen = call->peer->srx.transport_len;
  245. msg.msg_control = NULL;
  246. msg.msg_controllen = 0;
  247. msg.msg_flags = 0;
  248. pkt.whdr.epoch = htonl(conn->proto.epoch);
  249. pkt.whdr.cid = htonl(call->cid);
  250. pkt.whdr.callNumber = htonl(call->call_id);
  251. pkt.whdr.seq = 0;
  252. pkt.whdr.type = RXRPC_PACKET_TYPE_ABORT;
  253. pkt.whdr.flags = conn->out_clientflag;
  254. pkt.whdr.userStatus = 0;
  255. pkt.whdr.securityIndex = call->security_ix;
  256. pkt.whdr._rsvd = 0;
  257. pkt.whdr.serviceId = htons(call->service_id);
  258. pkt.abort_code = htonl(call->abort_code);
  259. iov[0].iov_base = &pkt;
  260. iov[0].iov_len = sizeof(pkt);
  261. serial = atomic_inc_return(&conn->serial);
  262. pkt.whdr.serial = htonl(serial);
  263. ret = kernel_sendmsg(conn->params.local->socket,
  264. &msg, iov, 1, sizeof(pkt));
  265. conn->params.peer->last_tx_at = ktime_get_seconds();
  266. if (ret < 0)
  267. trace_rxrpc_tx_fail(call->debug_id, serial, ret,
  268. rxrpc_tx_point_call_abort);
  269. else
  270. trace_rxrpc_tx_packet(call->debug_id, &pkt.whdr,
  271. rxrpc_tx_point_call_abort);
  272. rxrpc_tx_backoff(call, ret);
  273. return ret;
  274. }
  275. /*
  276. * send a packet through the transport endpoint
  277. */
  278. int rxrpc_send_data_packet(struct rxrpc_call *call, struct sk_buff *skb,
  279. bool retrans)
  280. {
  281. struct rxrpc_connection *conn = call->conn;
  282. struct rxrpc_wire_header whdr;
  283. struct rxrpc_skb_priv *sp = rxrpc_skb(skb);
  284. struct msghdr msg;
  285. struct kvec iov[2];
  286. rxrpc_serial_t serial;
  287. size_t len;
  288. bool lost = false;
  289. int ret, opt;
  290. _enter(",{%d}", skb->len);
  291. /* Each transmission of a Tx packet needs a new serial number */
  292. serial = atomic_inc_return(&conn->serial);
  293. whdr.epoch = htonl(conn->proto.epoch);
  294. whdr.cid = htonl(call->cid);
  295. whdr.callNumber = htonl(call->call_id);
  296. whdr.seq = htonl(sp->hdr.seq);
  297. whdr.serial = htonl(serial);
  298. whdr.type = RXRPC_PACKET_TYPE_DATA;
  299. whdr.flags = sp->hdr.flags;
  300. whdr.userStatus = 0;
  301. whdr.securityIndex = call->security_ix;
  302. whdr._rsvd = htons(sp->hdr._rsvd);
  303. whdr.serviceId = htons(call->service_id);
  304. if (test_bit(RXRPC_CONN_PROBING_FOR_UPGRADE, &conn->flags) &&
  305. sp->hdr.seq == 1)
  306. whdr.userStatus = RXRPC_USERSTATUS_SERVICE_UPGRADE;
  307. iov[0].iov_base = &whdr;
  308. iov[0].iov_len = sizeof(whdr);
  309. iov[1].iov_base = skb->head;
  310. iov[1].iov_len = skb->len;
  311. len = iov[0].iov_len + iov[1].iov_len;
  312. msg.msg_name = &call->peer->srx.transport;
  313. msg.msg_namelen = call->peer->srx.transport_len;
  314. msg.msg_control = NULL;
  315. msg.msg_controllen = 0;
  316. msg.msg_flags = 0;
  317. /* If our RTT cache needs working on, request an ACK. Also request
  318. * ACKs if a DATA packet appears to have been lost.
  319. *
  320. * However, we mustn't request an ACK on the last reply packet of a
  321. * service call, lest OpenAFS incorrectly send us an ACK with some
  322. * soft-ACKs in it and then never follow up with a proper hard ACK.
  323. */
  324. if ((!(sp->hdr.flags & RXRPC_LAST_PACKET) ||
  325. rxrpc_to_server(sp)
  326. ) &&
  327. (test_and_clear_bit(RXRPC_CALL_EV_ACK_LOST, &call->events) ||
  328. retrans ||
  329. call->cong_mode == RXRPC_CALL_SLOW_START ||
  330. (call->peer->rtt_usage < 3 && sp->hdr.seq & 1) ||
  331. ktime_before(ktime_add_ms(call->peer->rtt_last_req, 1000),
  332. ktime_get_real())))
  333. whdr.flags |= RXRPC_REQUEST_ACK;
  334. if (IS_ENABLED(CONFIG_AF_RXRPC_INJECT_LOSS)) {
  335. static int lose;
  336. if ((lose++ & 7) == 7) {
  337. ret = 0;
  338. lost = true;
  339. goto done;
  340. }
  341. }
  342. _proto("Tx DATA %%%u { #%u }", serial, sp->hdr.seq);
  343. /* send the packet with the don't fragment bit set if we currently
  344. * think it's small enough */
  345. if (iov[1].iov_len >= call->peer->maxdata)
  346. goto send_fragmentable;
  347. down_read(&conn->params.local->defrag_sem);
  348. sp->hdr.serial = serial;
  349. smp_wmb(); /* Set serial before timestamp */
  350. skb->tstamp = ktime_get_real();
  351. /* send the packet by UDP
  352. * - returns -EMSGSIZE if UDP would have to fragment the packet
  353. * to go out of the interface
  354. * - in which case, we'll have processed the ICMP error
  355. * message and update the peer record
  356. */
  357. ret = kernel_sendmsg(conn->params.local->socket, &msg, iov, 2, len);
  358. conn->params.peer->last_tx_at = ktime_get_seconds();
  359. up_read(&conn->params.local->defrag_sem);
  360. if (ret < 0)
  361. trace_rxrpc_tx_fail(call->debug_id, serial, ret,
  362. rxrpc_tx_point_call_data_nofrag);
  363. else
  364. trace_rxrpc_tx_packet(call->debug_id, &whdr,
  365. rxrpc_tx_point_call_data_nofrag);
  366. rxrpc_tx_backoff(call, ret);
  367. if (ret == -EMSGSIZE)
  368. goto send_fragmentable;
  369. done:
  370. trace_rxrpc_tx_data(call, sp->hdr.seq, serial, whdr.flags,
  371. retrans, lost);
  372. if (ret >= 0) {
  373. if (whdr.flags & RXRPC_REQUEST_ACK) {
  374. call->peer->rtt_last_req = skb->tstamp;
  375. trace_rxrpc_rtt_tx(call, rxrpc_rtt_tx_data, serial);
  376. if (call->peer->rtt_usage > 1) {
  377. unsigned long nowj = jiffies, ack_lost_at;
  378. ack_lost_at = nsecs_to_jiffies(2 * call->peer->rtt);
  379. if (ack_lost_at < 1)
  380. ack_lost_at = 1;
  381. ack_lost_at += nowj;
  382. WRITE_ONCE(call->ack_lost_at, ack_lost_at);
  383. rxrpc_reduce_call_timer(call, ack_lost_at, nowj,
  384. rxrpc_timer_set_for_lost_ack);
  385. }
  386. }
  387. if (sp->hdr.seq == 1 &&
  388. !test_and_set_bit(RXRPC_CALL_BEGAN_RX_TIMER,
  389. &call->flags)) {
  390. unsigned long nowj = jiffies, expect_rx_by;
  391. expect_rx_by = nowj + call->next_rx_timo;
  392. WRITE_ONCE(call->expect_rx_by, expect_rx_by);
  393. rxrpc_reduce_call_timer(call, expect_rx_by, nowj,
  394. rxrpc_timer_set_for_normal);
  395. }
  396. rxrpc_set_keepalive(call);
  397. } else {
  398. /* Cancel the call if the initial transmission fails,
  399. * particularly if that's due to network routing issues that
  400. * aren't going away anytime soon. The layer above can arrange
  401. * the retransmission.
  402. */
  403. if (!test_and_set_bit(RXRPC_CALL_BEGAN_RX_TIMER, &call->flags))
  404. rxrpc_set_call_completion(call, RXRPC_CALL_LOCAL_ERROR,
  405. RX_USER_ABORT, ret);
  406. }
  407. _leave(" = %d [%u]", ret, call->peer->maxdata);
  408. return ret;
  409. send_fragmentable:
  410. /* attempt to send this message with fragmentation enabled */
  411. _debug("send fragment");
  412. down_write(&conn->params.local->defrag_sem);
  413. sp->hdr.serial = serial;
  414. smp_wmb(); /* Set serial before timestamp */
  415. skb->tstamp = ktime_get_real();
  416. switch (conn->params.local->srx.transport.family) {
  417. case AF_INET6:
  418. case AF_INET:
  419. opt = IP_PMTUDISC_DONT;
  420. kernel_setsockopt(conn->params.local->socket,
  421. SOL_IP, IP_MTU_DISCOVER,
  422. (char *)&opt, sizeof(opt));
  423. ret = kernel_sendmsg(conn->params.local->socket, &msg,
  424. iov, 2, len);
  425. conn->params.peer->last_tx_at = ktime_get_seconds();
  426. opt = IP_PMTUDISC_DO;
  427. kernel_setsockopt(conn->params.local->socket,
  428. SOL_IP, IP_MTU_DISCOVER,
  429. (char *)&opt, sizeof(opt));
  430. break;
  431. default:
  432. BUG();
  433. }
  434. if (ret < 0)
  435. trace_rxrpc_tx_fail(call->debug_id, serial, ret,
  436. rxrpc_tx_point_call_data_frag);
  437. else
  438. trace_rxrpc_tx_packet(call->debug_id, &whdr,
  439. rxrpc_tx_point_call_data_frag);
  440. rxrpc_tx_backoff(call, ret);
  441. up_write(&conn->params.local->defrag_sem);
  442. goto done;
  443. }
  444. /*
  445. * reject packets through the local endpoint
  446. */
  447. void rxrpc_reject_packets(struct rxrpc_local *local)
  448. {
  449. struct sockaddr_rxrpc srx;
  450. struct rxrpc_skb_priv *sp;
  451. struct rxrpc_wire_header whdr;
  452. struct sk_buff *skb;
  453. struct msghdr msg;
  454. struct kvec iov[2];
  455. size_t size;
  456. __be32 code;
  457. int ret, ioc;
  458. _enter("%d", local->debug_id);
  459. iov[0].iov_base = &whdr;
  460. iov[0].iov_len = sizeof(whdr);
  461. iov[1].iov_base = &code;
  462. iov[1].iov_len = sizeof(code);
  463. msg.msg_name = &srx.transport;
  464. msg.msg_control = NULL;
  465. msg.msg_controllen = 0;
  466. msg.msg_flags = 0;
  467. memset(&whdr, 0, sizeof(whdr));
  468. while ((skb = skb_dequeue(&local->reject_queue))) {
  469. rxrpc_see_skb(skb, rxrpc_skb_rx_seen);
  470. sp = rxrpc_skb(skb);
  471. switch (skb->mark) {
  472. case RXRPC_SKB_MARK_REJECT_BUSY:
  473. whdr.type = RXRPC_PACKET_TYPE_BUSY;
  474. size = sizeof(whdr);
  475. ioc = 1;
  476. break;
  477. case RXRPC_SKB_MARK_REJECT_ABORT:
  478. whdr.type = RXRPC_PACKET_TYPE_ABORT;
  479. code = htonl(skb->priority);
  480. size = sizeof(whdr) + sizeof(code);
  481. ioc = 2;
  482. break;
  483. default:
  484. rxrpc_free_skb(skb, rxrpc_skb_rx_freed);
  485. continue;
  486. }
  487. if (rxrpc_extract_addr_from_skb(local, &srx, skb) == 0) {
  488. msg.msg_namelen = srx.transport_len;
  489. whdr.epoch = htonl(sp->hdr.epoch);
  490. whdr.cid = htonl(sp->hdr.cid);
  491. whdr.callNumber = htonl(sp->hdr.callNumber);
  492. whdr.serviceId = htons(sp->hdr.serviceId);
  493. whdr.flags = sp->hdr.flags;
  494. whdr.flags ^= RXRPC_CLIENT_INITIATED;
  495. whdr.flags &= RXRPC_CLIENT_INITIATED;
  496. ret = kernel_sendmsg(local->socket, &msg,
  497. iov, ioc, size);
  498. if (ret < 0)
  499. trace_rxrpc_tx_fail(local->debug_id, 0, ret,
  500. rxrpc_tx_point_reject);
  501. else
  502. trace_rxrpc_tx_packet(local->debug_id, &whdr,
  503. rxrpc_tx_point_reject);
  504. }
  505. rxrpc_free_skb(skb, rxrpc_skb_rx_freed);
  506. }
  507. _leave("");
  508. }
  509. /*
  510. * Send a VERSION reply to a peer as a keepalive.
  511. */
  512. void rxrpc_send_keepalive(struct rxrpc_peer *peer)
  513. {
  514. struct rxrpc_wire_header whdr;
  515. struct msghdr msg;
  516. struct kvec iov[2];
  517. size_t len;
  518. int ret;
  519. _enter("");
  520. msg.msg_name = &peer->srx.transport;
  521. msg.msg_namelen = peer->srx.transport_len;
  522. msg.msg_control = NULL;
  523. msg.msg_controllen = 0;
  524. msg.msg_flags = 0;
  525. whdr.epoch = htonl(peer->local->rxnet->epoch);
  526. whdr.cid = 0;
  527. whdr.callNumber = 0;
  528. whdr.seq = 0;
  529. whdr.serial = 0;
  530. whdr.type = RXRPC_PACKET_TYPE_VERSION; /* Not client-initiated */
  531. whdr.flags = RXRPC_LAST_PACKET;
  532. whdr.userStatus = 0;
  533. whdr.securityIndex = 0;
  534. whdr._rsvd = 0;
  535. whdr.serviceId = 0;
  536. iov[0].iov_base = &whdr;
  537. iov[0].iov_len = sizeof(whdr);
  538. iov[1].iov_base = (char *)rxrpc_keepalive_string;
  539. iov[1].iov_len = sizeof(rxrpc_keepalive_string);
  540. len = iov[0].iov_len + iov[1].iov_len;
  541. _proto("Tx VERSION (keepalive)");
  542. ret = kernel_sendmsg(peer->local->socket, &msg, iov, 2, len);
  543. if (ret < 0)
  544. trace_rxrpc_tx_fail(peer->debug_id, 0, ret,
  545. rxrpc_tx_point_version_keepalive);
  546. else
  547. trace_rxrpc_tx_packet(peer->debug_id, &whdr,
  548. rxrpc_tx_point_version_keepalive);
  549. peer->last_tx_at = ktime_get_seconds();
  550. _leave("");
  551. }