ccid3.c 32 KB

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  1. /*
  2. * net/dccp/ccids/ccid3.c
  3. *
  4. * Copyright (c) 2005-7 The University of Waikato, Hamilton, New Zealand.
  5. * Copyright (c) 2005-7 Ian McDonald <ian.mcdonald@jandi.co.nz>
  6. *
  7. * An implementation of the DCCP protocol
  8. *
  9. * This code has been developed by the University of Waikato WAND
  10. * research group. For further information please see http://www.wand.net.nz/
  11. *
  12. * This code also uses code from Lulea University, rereleased as GPL by its
  13. * authors:
  14. * Copyright (c) 2003 Nils-Erik Mattsson, Joacim Haggmark, Magnus Erixzon
  15. *
  16. * Changes to meet Linux coding standards, to make it meet latest ccid3 draft
  17. * and to make it work as a loadable module in the DCCP stack written by
  18. * Arnaldo Carvalho de Melo <acme@conectiva.com.br>.
  19. *
  20. * Copyright (c) 2005 Arnaldo Carvalho de Melo <acme@conectiva.com.br>
  21. *
  22. * This program is free software; you can redistribute it and/or modify
  23. * it under the terms of the GNU General Public License as published by
  24. * the Free Software Foundation; either version 2 of the License, or
  25. * (at your option) any later version.
  26. *
  27. * This program is distributed in the hope that it will be useful,
  28. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  29. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  30. * GNU General Public License for more details.
  31. *
  32. * You should have received a copy of the GNU General Public License
  33. * along with this program; if not, write to the Free Software
  34. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  35. */
  36. #include "../ccid.h"
  37. #include "../dccp.h"
  38. #include "lib/packet_history.h"
  39. #include "lib/loss_interval.h"
  40. #include "lib/tfrc.h"
  41. #include "ccid3.h"
  42. #ifdef CONFIG_IP_DCCP_CCID3_DEBUG
  43. static int ccid3_debug;
  44. #define ccid3_pr_debug(format, a...) DCCP_PR_DEBUG(ccid3_debug, format, ##a)
  45. #else
  46. #define ccid3_pr_debug(format, a...)
  47. #endif
  48. static struct dccp_tx_hist *ccid3_tx_hist;
  49. static struct dccp_rx_hist *ccid3_rx_hist;
  50. /*
  51. * Transmitter Half-Connection Routines
  52. */
  53. #ifdef CONFIG_IP_DCCP_CCID3_DEBUG
  54. static const char *ccid3_tx_state_name(enum ccid3_hc_tx_states state)
  55. {
  56. static char *ccid3_state_names[] = {
  57. [TFRC_SSTATE_NO_SENT] = "NO_SENT",
  58. [TFRC_SSTATE_NO_FBACK] = "NO_FBACK",
  59. [TFRC_SSTATE_FBACK] = "FBACK",
  60. [TFRC_SSTATE_TERM] = "TERM",
  61. };
  62. return ccid3_state_names[state];
  63. }
  64. #endif
  65. static void ccid3_hc_tx_set_state(struct sock *sk,
  66. enum ccid3_hc_tx_states state)
  67. {
  68. struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  69. enum ccid3_hc_tx_states oldstate = hctx->ccid3hctx_state;
  70. ccid3_pr_debug("%s(%p) %-8.8s -> %s\n",
  71. dccp_role(sk), sk, ccid3_tx_state_name(oldstate),
  72. ccid3_tx_state_name(state));
  73. WARN_ON(state == oldstate);
  74. hctx->ccid3hctx_state = state;
  75. }
  76. /*
  77. * Compute the initial sending rate X_init according to RFC 3390:
  78. * w_init = min(4 * MSS, max(2 * MSS, 4380 bytes))
  79. * X_init = w_init / RTT
  80. * For consistency with other parts of the code, X_init is scaled by 2^6.
  81. */
  82. static inline u64 rfc3390_initial_rate(struct sock *sk)
  83. {
  84. const struct dccp_sock *dp = dccp_sk(sk);
  85. const __u32 w_init = min(4 * dp->dccps_mss_cache,
  86. max(2 * dp->dccps_mss_cache, 4380U));
  87. return scaled_div(w_init << 6, ccid3_hc_tx_sk(sk)->ccid3hctx_rtt);
  88. }
  89. /*
  90. * Recalculate t_ipi and delta (should be called whenever X changes)
  91. */
  92. static inline void ccid3_update_send_interval(struct ccid3_hc_tx_sock *hctx)
  93. {
  94. /* Calculate new t_ipi = s / X_inst (X_inst is in 64 * bytes/second) */
  95. hctx->ccid3hctx_t_ipi = scaled_div32(((u64)hctx->ccid3hctx_s) << 6,
  96. hctx->ccid3hctx_x);
  97. /* Calculate new delta by delta = min(t_ipi / 2, t_gran / 2) */
  98. hctx->ccid3hctx_delta = min_t(u32, hctx->ccid3hctx_t_ipi / 2,
  99. TFRC_OPSYS_HALF_TIME_GRAN);
  100. ccid3_pr_debug("t_ipi=%u, delta=%u, s=%u, X=%u\n",
  101. hctx->ccid3hctx_t_ipi, hctx->ccid3hctx_delta,
  102. hctx->ccid3hctx_s, (unsigned)(hctx->ccid3hctx_x >> 6));
  103. }
  104. /**
  105. * ccid3_hc_tx_update_x - Update allowed sending rate X
  106. * @stamp: most recent time if available - can be left NULL.
  107. * This function tracks draft rfc3448bis, check there for latest details.
  108. *
  109. * Note: X and X_recv are both stored in units of 64 * bytes/second, to support
  110. * fine-grained resolution of sending rates. This requires scaling by 2^6
  111. * throughout the code. Only X_calc is unscaled (in bytes/second).
  112. *
  113. */
  114. static void ccid3_hc_tx_update_x(struct sock *sk, ktime_t *stamp)
  115. {
  116. struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  117. __u64 min_rate = 2 * hctx->ccid3hctx_x_recv;
  118. const __u64 old_x = hctx->ccid3hctx_x;
  119. ktime_t now = stamp? *stamp : ktime_get_real();
  120. /*
  121. * Handle IDLE periods: do not reduce below RFC3390 initial sending rate
  122. * when idling [RFC 4342, 5.1]. See also draft-ietf-dccp-rfc3448bis.
  123. * For consistency with X and X_recv, min_rate is also scaled by 2^6.
  124. */
  125. if (unlikely(hctx->ccid3hctx_idle)) {
  126. min_rate = rfc3390_initial_rate(sk);
  127. min_rate = max(min_rate, 2 * hctx->ccid3hctx_x_recv);
  128. }
  129. if (hctx->ccid3hctx_p > 0) {
  130. hctx->ccid3hctx_x = min(((__u64)hctx->ccid3hctx_x_calc) << 6,
  131. min_rate);
  132. hctx->ccid3hctx_x = max(hctx->ccid3hctx_x,
  133. (((__u64)hctx->ccid3hctx_s) << 6) /
  134. TFRC_T_MBI);
  135. } else if (ktime_us_delta(now, hctx->ccid3hctx_t_ld)
  136. - (s64)hctx->ccid3hctx_rtt >= 0) {
  137. hctx->ccid3hctx_x =
  138. max(min(2 * hctx->ccid3hctx_x, min_rate),
  139. scaled_div(((__u64)hctx->ccid3hctx_s) << 6,
  140. hctx->ccid3hctx_rtt));
  141. hctx->ccid3hctx_t_ld = now;
  142. }
  143. if (hctx->ccid3hctx_x != old_x) {
  144. ccid3_pr_debug("X_prev=%u, X_now=%u, X_calc=%u, "
  145. "X_recv=%u\n", (unsigned)(old_x >> 6),
  146. (unsigned)(hctx->ccid3hctx_x >> 6),
  147. hctx->ccid3hctx_x_calc,
  148. (unsigned)(hctx->ccid3hctx_x_recv >> 6));
  149. ccid3_update_send_interval(hctx);
  150. }
  151. }
  152. /*
  153. * Track the mean packet size `s' (cf. RFC 4342, 5.3 and RFC 3448, 4.1)
  154. * @len: DCCP packet payload size in bytes
  155. */
  156. static inline void ccid3_hc_tx_update_s(struct ccid3_hc_tx_sock *hctx, int len)
  157. {
  158. const u16 old_s = hctx->ccid3hctx_s;
  159. hctx->ccid3hctx_s = old_s == 0 ? len : (9 * old_s + len) / 10;
  160. if (hctx->ccid3hctx_s != old_s)
  161. ccid3_update_send_interval(hctx);
  162. }
  163. /*
  164. * Update Window Counter using the algorithm from [RFC 4342, 8.1].
  165. * The algorithm is not applicable if RTT < 4 microseconds.
  166. */
  167. static inline void ccid3_hc_tx_update_win_count(struct ccid3_hc_tx_sock *hctx,
  168. ktime_t now)
  169. {
  170. u32 quarter_rtts;
  171. if (unlikely(hctx->ccid3hctx_rtt < 4)) /* avoid divide-by-zero */
  172. return;
  173. quarter_rtts = ktime_us_delta(now, hctx->ccid3hctx_t_last_win_count);
  174. quarter_rtts /= hctx->ccid3hctx_rtt / 4;
  175. if (quarter_rtts > 0) {
  176. hctx->ccid3hctx_t_last_win_count = now;
  177. hctx->ccid3hctx_last_win_count += min_t(u32, quarter_rtts, 5);
  178. hctx->ccid3hctx_last_win_count &= 0xF; /* mod 16 */
  179. }
  180. }
  181. static void ccid3_hc_tx_no_feedback_timer(unsigned long data)
  182. {
  183. struct sock *sk = (struct sock *)data;
  184. struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  185. unsigned long t_nfb = USEC_PER_SEC / 5;
  186. bh_lock_sock(sk);
  187. if (sock_owned_by_user(sk)) {
  188. /* Try again later. */
  189. /* XXX: set some sensible MIB */
  190. goto restart_timer;
  191. }
  192. ccid3_pr_debug("%s(%p, state=%s) - entry \n", dccp_role(sk), sk,
  193. ccid3_tx_state_name(hctx->ccid3hctx_state));
  194. hctx->ccid3hctx_idle = 1;
  195. switch (hctx->ccid3hctx_state) {
  196. case TFRC_SSTATE_NO_FBACK:
  197. /* RFC 3448, 4.4: Halve send rate directly */
  198. hctx->ccid3hctx_x = max(hctx->ccid3hctx_x / 2,
  199. (((__u64)hctx->ccid3hctx_s) << 6) /
  200. TFRC_T_MBI);
  201. ccid3_pr_debug("%s(%p, state=%s), updated tx rate to %u "
  202. "bytes/s\n", dccp_role(sk), sk,
  203. ccid3_tx_state_name(hctx->ccid3hctx_state),
  204. (unsigned)(hctx->ccid3hctx_x >> 6));
  205. /* The value of R is still undefined and so we can not recompute
  206. * the timout value. Keep initial value as per [RFC 4342, 5]. */
  207. t_nfb = TFRC_INITIAL_TIMEOUT;
  208. ccid3_update_send_interval(hctx);
  209. break;
  210. case TFRC_SSTATE_FBACK:
  211. /*
  212. * Modify the cached value of X_recv [RFC 3448, 4.4]
  213. *
  214. * If (p == 0 || X_calc > 2 * X_recv)
  215. * X_recv = max(X_recv / 2, s / (2 * t_mbi));
  216. * Else
  217. * X_recv = X_calc / 4;
  218. *
  219. * Note that X_recv is scaled by 2^6 while X_calc is not
  220. */
  221. BUG_ON(hctx->ccid3hctx_p && !hctx->ccid3hctx_x_calc);
  222. if (hctx->ccid3hctx_p == 0 ||
  223. (hctx->ccid3hctx_x_calc > (hctx->ccid3hctx_x_recv >> 5))) {
  224. hctx->ccid3hctx_x_recv =
  225. max(hctx->ccid3hctx_x_recv / 2,
  226. (((__u64)hctx->ccid3hctx_s) << 6) /
  227. (2 * TFRC_T_MBI));
  228. } else {
  229. hctx->ccid3hctx_x_recv = hctx->ccid3hctx_x_calc;
  230. hctx->ccid3hctx_x_recv <<= 4;
  231. }
  232. /* Now recalculate X [RFC 3448, 4.3, step (4)] */
  233. ccid3_hc_tx_update_x(sk, NULL);
  234. /*
  235. * Schedule no feedback timer to expire in
  236. * max(t_RTO, 2 * s/X) = max(t_RTO, 2 * t_ipi)
  237. * See comments in packet_recv() regarding the value of t_RTO.
  238. */
  239. t_nfb = max(hctx->ccid3hctx_t_rto, 2 * hctx->ccid3hctx_t_ipi);
  240. break;
  241. case TFRC_SSTATE_NO_SENT:
  242. DCCP_BUG("%s(%p) - Illegal state NO_SENT", dccp_role(sk), sk);
  243. /* fall through */
  244. case TFRC_SSTATE_TERM:
  245. goto out;
  246. }
  247. restart_timer:
  248. sk_reset_timer(sk, &hctx->ccid3hctx_no_feedback_timer,
  249. jiffies + usecs_to_jiffies(t_nfb));
  250. out:
  251. bh_unlock_sock(sk);
  252. sock_put(sk);
  253. }
  254. /*
  255. * returns
  256. * > 0: delay (in msecs) that should pass before actually sending
  257. * = 0: can send immediately
  258. * < 0: error condition; do not send packet
  259. */
  260. static int ccid3_hc_tx_send_packet(struct sock *sk, struct sk_buff *skb)
  261. {
  262. struct dccp_sock *dp = dccp_sk(sk);
  263. struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  264. ktime_t now = ktime_get_real();
  265. s64 delay;
  266. BUG_ON(hctx == NULL);
  267. /*
  268. * This function is called only for Data and DataAck packets. Sending
  269. * zero-sized Data(Ack)s is theoretically possible, but for congestion
  270. * control this case is pathological - ignore it.
  271. */
  272. if (unlikely(skb->len == 0))
  273. return -EBADMSG;
  274. switch (hctx->ccid3hctx_state) {
  275. case TFRC_SSTATE_NO_SENT:
  276. sk_reset_timer(sk, &hctx->ccid3hctx_no_feedback_timer,
  277. (jiffies +
  278. usecs_to_jiffies(TFRC_INITIAL_TIMEOUT)));
  279. hctx->ccid3hctx_last_win_count = 0;
  280. hctx->ccid3hctx_t_last_win_count = now;
  281. /* Set t_0 for initial packet */
  282. hctx->ccid3hctx_t_nom = now;
  283. hctx->ccid3hctx_s = skb->len;
  284. /*
  285. * Use initial RTT sample when available: recommended by erratum
  286. * to RFC 4342. This implements the initialisation procedure of
  287. * draft rfc3448bis, section 4.2. Remember, X is scaled by 2^6.
  288. */
  289. if (dp->dccps_syn_rtt) {
  290. ccid3_pr_debug("SYN RTT = %uus\n", dp->dccps_syn_rtt);
  291. hctx->ccid3hctx_rtt = dp->dccps_syn_rtt;
  292. hctx->ccid3hctx_x = rfc3390_initial_rate(sk);
  293. hctx->ccid3hctx_t_ld = now;
  294. } else {
  295. /* Sender does not have RTT sample: X = MSS/second */
  296. hctx->ccid3hctx_x = dp->dccps_mss_cache;
  297. hctx->ccid3hctx_x <<= 6;
  298. }
  299. ccid3_update_send_interval(hctx);
  300. ccid3_hc_tx_set_state(sk, TFRC_SSTATE_NO_FBACK);
  301. break;
  302. case TFRC_SSTATE_NO_FBACK:
  303. case TFRC_SSTATE_FBACK:
  304. delay = ktime_us_delta(hctx->ccid3hctx_t_nom, now);
  305. ccid3_pr_debug("delay=%ld\n", (long)delay);
  306. /*
  307. * Scheduling of packet transmissions [RFC 3448, 4.6]
  308. *
  309. * if (t_now > t_nom - delta)
  310. * // send the packet now
  311. * else
  312. * // send the packet in (t_nom - t_now) milliseconds.
  313. */
  314. if (delay - (s64)hctx->ccid3hctx_delta >= 1000)
  315. return (u32)delay / 1000L;
  316. ccid3_hc_tx_update_win_count(hctx, now);
  317. break;
  318. case TFRC_SSTATE_TERM:
  319. DCCP_BUG("%s(%p) - Illegal state TERM", dccp_role(sk), sk);
  320. return -EINVAL;
  321. }
  322. /* prepare to send now (add options etc.) */
  323. dp->dccps_hc_tx_insert_options = 1;
  324. DCCP_SKB_CB(skb)->dccpd_ccval = hctx->ccid3hctx_last_win_count;
  325. hctx->ccid3hctx_idle = 0;
  326. /* set the nominal send time for the next following packet */
  327. hctx->ccid3hctx_t_nom = ktime_add_us(hctx->ccid3hctx_t_nom,
  328. hctx->ccid3hctx_t_ipi);
  329. return 0;
  330. }
  331. static void ccid3_hc_tx_packet_sent(struct sock *sk, int more,
  332. unsigned int len)
  333. {
  334. struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  335. struct dccp_tx_hist_entry *packet;
  336. BUG_ON(hctx == NULL);
  337. ccid3_hc_tx_update_s(hctx, len);
  338. packet = dccp_tx_hist_entry_new(ccid3_tx_hist, GFP_ATOMIC);
  339. if (unlikely(packet == NULL)) {
  340. DCCP_CRIT("packet history - out of memory!");
  341. return;
  342. }
  343. dccp_tx_hist_add_entry(&hctx->ccid3hctx_hist, packet);
  344. packet->dccphtx_tstamp = ktime_get_real();
  345. packet->dccphtx_seqno = dccp_sk(sk)->dccps_gss;
  346. packet->dccphtx_rtt = hctx->ccid3hctx_rtt;
  347. packet->dccphtx_sent = 1;
  348. }
  349. static void ccid3_hc_tx_packet_recv(struct sock *sk, struct sk_buff *skb)
  350. {
  351. struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  352. struct ccid3_options_received *opt_recv;
  353. struct dccp_tx_hist_entry *packet;
  354. ktime_t now;
  355. unsigned long t_nfb;
  356. u32 pinv, r_sample;
  357. BUG_ON(hctx == NULL);
  358. /* we are only interested in ACKs */
  359. if (!(DCCP_SKB_CB(skb)->dccpd_type == DCCP_PKT_ACK ||
  360. DCCP_SKB_CB(skb)->dccpd_type == DCCP_PKT_DATAACK))
  361. return;
  362. opt_recv = &hctx->ccid3hctx_options_received;
  363. switch (hctx->ccid3hctx_state) {
  364. case TFRC_SSTATE_NO_FBACK:
  365. case TFRC_SSTATE_FBACK:
  366. /* get packet from history to look up t_recvdata */
  367. packet = dccp_tx_hist_find_entry(&hctx->ccid3hctx_hist,
  368. DCCP_SKB_CB(skb)->dccpd_ack_seq);
  369. if (unlikely(packet == NULL)) {
  370. DCCP_WARN("%s(%p), seqno %llu(%s) doesn't exist "
  371. "in history!\n", dccp_role(sk), sk,
  372. (unsigned long long)DCCP_SKB_CB(skb)->dccpd_ack_seq,
  373. dccp_packet_name(DCCP_SKB_CB(skb)->dccpd_type));
  374. return;
  375. }
  376. /* Update receive rate in units of 64 * bytes/second */
  377. hctx->ccid3hctx_x_recv = opt_recv->ccid3or_receive_rate;
  378. hctx->ccid3hctx_x_recv <<= 6;
  379. /* Update loss event rate */
  380. pinv = opt_recv->ccid3or_loss_event_rate;
  381. if (pinv == ~0U || pinv == 0) /* see RFC 4342, 8.5 */
  382. hctx->ccid3hctx_p = 0;
  383. else /* can not exceed 100% */
  384. hctx->ccid3hctx_p = 1000000 / pinv;
  385. now = ktime_get_real();
  386. /*
  387. * Calculate new round trip sample as per [RFC 3448, 4.3] by
  388. * R_sample = (now - t_recvdata) - t_elapsed
  389. */
  390. r_sample = dccp_sample_rtt(sk, ktime_us_delta(now, packet->dccphtx_tstamp));
  391. /*
  392. * Update RTT estimate by
  393. * If (No feedback recv)
  394. * R = R_sample;
  395. * Else
  396. * R = q * R + (1 - q) * R_sample;
  397. *
  398. * q is a constant, RFC 3448 recomments 0.9
  399. */
  400. if (hctx->ccid3hctx_state == TFRC_SSTATE_NO_FBACK) {
  401. /*
  402. * Larger Initial Windows [RFC 4342, sec. 5]
  403. */
  404. hctx->ccid3hctx_rtt = r_sample;
  405. hctx->ccid3hctx_x = rfc3390_initial_rate(sk);
  406. hctx->ccid3hctx_t_ld = now;
  407. ccid3_update_send_interval(hctx);
  408. ccid3_pr_debug("%s(%p), s=%u, MSS=%u, "
  409. "R_sample=%uus, X=%u\n", dccp_role(sk),
  410. sk, hctx->ccid3hctx_s,
  411. dccp_sk(sk)->dccps_mss_cache, r_sample,
  412. (unsigned)(hctx->ccid3hctx_x >> 6));
  413. ccid3_hc_tx_set_state(sk, TFRC_SSTATE_FBACK);
  414. } else {
  415. hctx->ccid3hctx_rtt = (9 * hctx->ccid3hctx_rtt +
  416. r_sample) / 10;
  417. /* Update sending rate (step 4 of [RFC 3448, 4.3]) */
  418. if (hctx->ccid3hctx_p > 0)
  419. hctx->ccid3hctx_x_calc =
  420. tfrc_calc_x(hctx->ccid3hctx_s,
  421. hctx->ccid3hctx_rtt,
  422. hctx->ccid3hctx_p);
  423. ccid3_hc_tx_update_x(sk, &now);
  424. ccid3_pr_debug("%s(%p), RTT=%uus (sample=%uus), s=%u, "
  425. "p=%u, X_calc=%u, X_recv=%u, X=%u\n",
  426. dccp_role(sk),
  427. sk, hctx->ccid3hctx_rtt, r_sample,
  428. hctx->ccid3hctx_s, hctx->ccid3hctx_p,
  429. hctx->ccid3hctx_x_calc,
  430. (unsigned)(hctx->ccid3hctx_x_recv >> 6),
  431. (unsigned)(hctx->ccid3hctx_x >> 6));
  432. }
  433. /* unschedule no feedback timer */
  434. sk_stop_timer(sk, &hctx->ccid3hctx_no_feedback_timer);
  435. /* remove all packets older than the one acked from history */
  436. dccp_tx_hist_purge_older(ccid3_tx_hist,
  437. &hctx->ccid3hctx_hist, packet);
  438. /*
  439. * As we have calculated new ipi, delta, t_nom it is possible
  440. * that we now can send a packet, so wake up dccp_wait_for_ccid
  441. */
  442. sk->sk_write_space(sk);
  443. /*
  444. * Update timeout interval for the nofeedback timer.
  445. * We use a configuration option to increase the lower bound.
  446. * This can help avoid triggering the nofeedback timer too
  447. * often ('spinning') on LANs with small RTTs.
  448. */
  449. hctx->ccid3hctx_t_rto = max_t(u32, 4 * hctx->ccid3hctx_rtt,
  450. CONFIG_IP_DCCP_CCID3_RTO *
  451. (USEC_PER_SEC/1000));
  452. /*
  453. * Schedule no feedback timer to expire in
  454. * max(t_RTO, 2 * s/X) = max(t_RTO, 2 * t_ipi)
  455. */
  456. t_nfb = max(hctx->ccid3hctx_t_rto, 2 * hctx->ccid3hctx_t_ipi);
  457. ccid3_pr_debug("%s(%p), Scheduled no feedback timer to "
  458. "expire in %lu jiffies (%luus)\n",
  459. dccp_role(sk),
  460. sk, usecs_to_jiffies(t_nfb), t_nfb);
  461. sk_reset_timer(sk, &hctx->ccid3hctx_no_feedback_timer,
  462. jiffies + usecs_to_jiffies(t_nfb));
  463. /* set idle flag */
  464. hctx->ccid3hctx_idle = 1;
  465. break;
  466. case TFRC_SSTATE_NO_SENT: /* fall through */
  467. case TFRC_SSTATE_TERM: /* ignore feedback when closing */
  468. break;
  469. }
  470. }
  471. static int ccid3_hc_tx_parse_options(struct sock *sk, unsigned char option,
  472. unsigned char len, u16 idx,
  473. unsigned char *value)
  474. {
  475. int rc = 0;
  476. const struct dccp_sock *dp = dccp_sk(sk);
  477. struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  478. struct ccid3_options_received *opt_recv;
  479. BUG_ON(hctx == NULL);
  480. opt_recv = &hctx->ccid3hctx_options_received;
  481. if (opt_recv->ccid3or_seqno != dp->dccps_gsr) {
  482. opt_recv->ccid3or_seqno = dp->dccps_gsr;
  483. opt_recv->ccid3or_loss_event_rate = ~0;
  484. opt_recv->ccid3or_loss_intervals_idx = 0;
  485. opt_recv->ccid3or_loss_intervals_len = 0;
  486. opt_recv->ccid3or_receive_rate = 0;
  487. }
  488. switch (option) {
  489. case TFRC_OPT_LOSS_EVENT_RATE:
  490. if (unlikely(len != 4)) {
  491. DCCP_WARN("%s(%p), invalid len %d "
  492. "for TFRC_OPT_LOSS_EVENT_RATE\n",
  493. dccp_role(sk), sk, len);
  494. rc = -EINVAL;
  495. } else {
  496. opt_recv->ccid3or_loss_event_rate =
  497. ntohl(*(__be32 *)value);
  498. ccid3_pr_debug("%s(%p), LOSS_EVENT_RATE=%u\n",
  499. dccp_role(sk), sk,
  500. opt_recv->ccid3or_loss_event_rate);
  501. }
  502. break;
  503. case TFRC_OPT_LOSS_INTERVALS:
  504. opt_recv->ccid3or_loss_intervals_idx = idx;
  505. opt_recv->ccid3or_loss_intervals_len = len;
  506. ccid3_pr_debug("%s(%p), LOSS_INTERVALS=(%u, %u)\n",
  507. dccp_role(sk), sk,
  508. opt_recv->ccid3or_loss_intervals_idx,
  509. opt_recv->ccid3or_loss_intervals_len);
  510. break;
  511. case TFRC_OPT_RECEIVE_RATE:
  512. if (unlikely(len != 4)) {
  513. DCCP_WARN("%s(%p), invalid len %d "
  514. "for TFRC_OPT_RECEIVE_RATE\n",
  515. dccp_role(sk), sk, len);
  516. rc = -EINVAL;
  517. } else {
  518. opt_recv->ccid3or_receive_rate =
  519. ntohl(*(__be32 *)value);
  520. ccid3_pr_debug("%s(%p), RECEIVE_RATE=%u\n",
  521. dccp_role(sk), sk,
  522. opt_recv->ccid3or_receive_rate);
  523. }
  524. break;
  525. }
  526. return rc;
  527. }
  528. static int ccid3_hc_tx_init(struct ccid *ccid, struct sock *sk)
  529. {
  530. struct ccid3_hc_tx_sock *hctx = ccid_priv(ccid);
  531. hctx->ccid3hctx_s = 0;
  532. hctx->ccid3hctx_rtt = 0;
  533. hctx->ccid3hctx_state = TFRC_SSTATE_NO_SENT;
  534. INIT_LIST_HEAD(&hctx->ccid3hctx_hist);
  535. hctx->ccid3hctx_no_feedback_timer.function =
  536. ccid3_hc_tx_no_feedback_timer;
  537. hctx->ccid3hctx_no_feedback_timer.data = (unsigned long)sk;
  538. init_timer(&hctx->ccid3hctx_no_feedback_timer);
  539. return 0;
  540. }
  541. static void ccid3_hc_tx_exit(struct sock *sk)
  542. {
  543. struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  544. BUG_ON(hctx == NULL);
  545. ccid3_hc_tx_set_state(sk, TFRC_SSTATE_TERM);
  546. sk_stop_timer(sk, &hctx->ccid3hctx_no_feedback_timer);
  547. /* Empty packet history */
  548. dccp_tx_hist_purge(ccid3_tx_hist, &hctx->ccid3hctx_hist);
  549. }
  550. static void ccid3_hc_tx_get_info(struct sock *sk, struct tcp_info *info)
  551. {
  552. const struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  553. /* Listen socks doesn't have a private CCID block */
  554. if (sk->sk_state == DCCP_LISTEN)
  555. return;
  556. BUG_ON(hctx == NULL);
  557. info->tcpi_rto = hctx->ccid3hctx_t_rto;
  558. info->tcpi_rtt = hctx->ccid3hctx_rtt;
  559. }
  560. static int ccid3_hc_tx_getsockopt(struct sock *sk, const int optname, int len,
  561. u32 __user *optval, int __user *optlen)
  562. {
  563. const struct ccid3_hc_tx_sock *hctx = ccid3_hc_tx_sk(sk);
  564. const void *val;
  565. /* Listen socks doesn't have a private CCID block */
  566. if (sk->sk_state == DCCP_LISTEN)
  567. return -EINVAL;
  568. switch (optname) {
  569. case DCCP_SOCKOPT_CCID_TX_INFO:
  570. if (len < sizeof(hctx->ccid3hctx_tfrc))
  571. return -EINVAL;
  572. len = sizeof(hctx->ccid3hctx_tfrc);
  573. val = &hctx->ccid3hctx_tfrc;
  574. break;
  575. default:
  576. return -ENOPROTOOPT;
  577. }
  578. if (put_user(len, optlen) || copy_to_user(optval, val, len))
  579. return -EFAULT;
  580. return 0;
  581. }
  582. /*
  583. * Receiver Half-Connection Routines
  584. */
  585. #ifdef CONFIG_IP_DCCP_CCID3_DEBUG
  586. static const char *ccid3_rx_state_name(enum ccid3_hc_rx_states state)
  587. {
  588. static char *ccid3_rx_state_names[] = {
  589. [TFRC_RSTATE_NO_DATA] = "NO_DATA",
  590. [TFRC_RSTATE_DATA] = "DATA",
  591. [TFRC_RSTATE_TERM] = "TERM",
  592. };
  593. return ccid3_rx_state_names[state];
  594. }
  595. #endif
  596. static void ccid3_hc_rx_set_state(struct sock *sk,
  597. enum ccid3_hc_rx_states state)
  598. {
  599. struct ccid3_hc_rx_sock *hcrx = ccid3_hc_rx_sk(sk);
  600. enum ccid3_hc_rx_states oldstate = hcrx->ccid3hcrx_state;
  601. ccid3_pr_debug("%s(%p) %-8.8s -> %s\n",
  602. dccp_role(sk), sk, ccid3_rx_state_name(oldstate),
  603. ccid3_rx_state_name(state));
  604. WARN_ON(state == oldstate);
  605. hcrx->ccid3hcrx_state = state;
  606. }
  607. static inline void ccid3_hc_rx_update_s(struct ccid3_hc_rx_sock *hcrx, int len)
  608. {
  609. if (unlikely(len == 0)) /* don't update on empty packets (e.g. ACKs) */
  610. ccid3_pr_debug("Packet payload length is 0 - not updating\n");
  611. else
  612. hcrx->ccid3hcrx_s = hcrx->ccid3hcrx_s == 0 ? len :
  613. (9 * hcrx->ccid3hcrx_s + len) / 10;
  614. }
  615. static void ccid3_hc_rx_send_feedback(struct sock *sk)
  616. {
  617. struct ccid3_hc_rx_sock *hcrx = ccid3_hc_rx_sk(sk);
  618. struct dccp_sock *dp = dccp_sk(sk);
  619. struct dccp_rx_hist_entry *packet;
  620. ktime_t now;
  621. suseconds_t delta;
  622. ccid3_pr_debug("%s(%p) - entry \n", dccp_role(sk), sk);
  623. now = ktime_get_real();
  624. switch (hcrx->ccid3hcrx_state) {
  625. case TFRC_RSTATE_NO_DATA:
  626. hcrx->ccid3hcrx_x_recv = 0;
  627. break;
  628. case TFRC_RSTATE_DATA:
  629. delta = ktime_us_delta(now,
  630. hcrx->ccid3hcrx_tstamp_last_feedback);
  631. DCCP_BUG_ON(delta < 0);
  632. hcrx->ccid3hcrx_x_recv =
  633. scaled_div32(hcrx->ccid3hcrx_bytes_recv, delta);
  634. break;
  635. case TFRC_RSTATE_TERM:
  636. DCCP_BUG("%s(%p) - Illegal state TERM", dccp_role(sk), sk);
  637. return;
  638. }
  639. packet = dccp_rx_hist_find_data_packet(&hcrx->ccid3hcrx_hist);
  640. if (unlikely(packet == NULL)) {
  641. DCCP_WARN("%s(%p), no data packet in history!\n",
  642. dccp_role(sk), sk);
  643. return;
  644. }
  645. hcrx->ccid3hcrx_tstamp_last_feedback = now;
  646. hcrx->ccid3hcrx_ccval_last_counter = packet->dccphrx_ccval;
  647. hcrx->ccid3hcrx_bytes_recv = 0;
  648. /* Elapsed time information [RFC 4340, 13.2] in units of 10 * usecs */
  649. delta = ktime_us_delta(now, packet->dccphrx_tstamp);
  650. DCCP_BUG_ON(delta < 0);
  651. hcrx->ccid3hcrx_elapsed_time = delta / 10;
  652. if (hcrx->ccid3hcrx_p == 0)
  653. hcrx->ccid3hcrx_pinv = ~0U; /* see RFC 4342, 8.5 */
  654. else if (hcrx->ccid3hcrx_p > 1000000) {
  655. DCCP_WARN("p (%u) > 100%%\n", hcrx->ccid3hcrx_p);
  656. hcrx->ccid3hcrx_pinv = 1; /* use 100% in this case */
  657. } else
  658. hcrx->ccid3hcrx_pinv = 1000000 / hcrx->ccid3hcrx_p;
  659. dp->dccps_hc_rx_insert_options = 1;
  660. dccp_send_ack(sk);
  661. }
  662. static int ccid3_hc_rx_insert_options(struct sock *sk, struct sk_buff *skb)
  663. {
  664. const struct ccid3_hc_rx_sock *hcrx = ccid3_hc_rx_sk(sk);
  665. __be32 x_recv, pinv;
  666. BUG_ON(hcrx == NULL);
  667. if (!(sk->sk_state == DCCP_OPEN || sk->sk_state == DCCP_PARTOPEN))
  668. return 0;
  669. DCCP_SKB_CB(skb)->dccpd_ccval = hcrx->ccid3hcrx_ccval_last_counter;
  670. if (dccp_packet_without_ack(skb))
  671. return 0;
  672. x_recv = htonl(hcrx->ccid3hcrx_x_recv);
  673. pinv = htonl(hcrx->ccid3hcrx_pinv);
  674. if ((hcrx->ccid3hcrx_elapsed_time != 0 &&
  675. dccp_insert_option_elapsed_time(sk, skb,
  676. hcrx->ccid3hcrx_elapsed_time)) ||
  677. dccp_insert_option_timestamp(sk, skb) ||
  678. dccp_insert_option(sk, skb, TFRC_OPT_LOSS_EVENT_RATE,
  679. &pinv, sizeof(pinv)) ||
  680. dccp_insert_option(sk, skb, TFRC_OPT_RECEIVE_RATE,
  681. &x_recv, sizeof(x_recv)))
  682. return -1;
  683. return 0;
  684. }
  685. static int ccid3_hc_rx_detect_loss(struct sock *sk,
  686. struct dccp_rx_hist_entry *packet)
  687. {
  688. struct ccid3_hc_rx_sock *hcrx = ccid3_hc_rx_sk(sk);
  689. struct dccp_rx_hist_entry *rx_hist =
  690. dccp_rx_hist_head(&hcrx->ccid3hcrx_hist);
  691. u64 seqno = packet->dccphrx_seqno;
  692. u64 tmp_seqno;
  693. int loss = 0;
  694. u8 ccval;
  695. tmp_seqno = hcrx->ccid3hcrx_seqno_nonloss;
  696. if (!rx_hist ||
  697. follows48(packet->dccphrx_seqno, hcrx->ccid3hcrx_seqno_nonloss)) {
  698. hcrx->ccid3hcrx_seqno_nonloss = seqno;
  699. hcrx->ccid3hcrx_ccval_nonloss = packet->dccphrx_ccval;
  700. goto detect_out;
  701. }
  702. while (dccp_delta_seqno(hcrx->ccid3hcrx_seqno_nonloss, seqno)
  703. > TFRC_RECV_NUM_LATE_LOSS) {
  704. loss = 1;
  705. dccp_li_update_li(sk,
  706. &hcrx->ccid3hcrx_li_hist,
  707. &hcrx->ccid3hcrx_hist,
  708. hcrx->ccid3hcrx_tstamp_last_feedback,
  709. hcrx->ccid3hcrx_s,
  710. hcrx->ccid3hcrx_bytes_recv,
  711. hcrx->ccid3hcrx_x_recv,
  712. hcrx->ccid3hcrx_seqno_nonloss,
  713. hcrx->ccid3hcrx_ccval_nonloss);
  714. tmp_seqno = hcrx->ccid3hcrx_seqno_nonloss;
  715. dccp_inc_seqno(&tmp_seqno);
  716. hcrx->ccid3hcrx_seqno_nonloss = tmp_seqno;
  717. dccp_inc_seqno(&tmp_seqno);
  718. while (dccp_rx_hist_find_entry(&hcrx->ccid3hcrx_hist,
  719. tmp_seqno, &ccval)) {
  720. hcrx->ccid3hcrx_seqno_nonloss = tmp_seqno;
  721. hcrx->ccid3hcrx_ccval_nonloss = ccval;
  722. dccp_inc_seqno(&tmp_seqno);
  723. }
  724. }
  725. /* FIXME - this code could be simplified with above while */
  726. /* but works at moment */
  727. if (follows48(packet->dccphrx_seqno, hcrx->ccid3hcrx_seqno_nonloss)) {
  728. hcrx->ccid3hcrx_seqno_nonloss = seqno;
  729. hcrx->ccid3hcrx_ccval_nonloss = packet->dccphrx_ccval;
  730. }
  731. detect_out:
  732. dccp_rx_hist_add_packet(ccid3_rx_hist, &hcrx->ccid3hcrx_hist,
  733. &hcrx->ccid3hcrx_li_hist, packet,
  734. hcrx->ccid3hcrx_seqno_nonloss);
  735. return loss;
  736. }
  737. static void ccid3_hc_rx_packet_recv(struct sock *sk, struct sk_buff *skb)
  738. {
  739. struct ccid3_hc_rx_sock *hcrx = ccid3_hc_rx_sk(sk);
  740. const struct dccp_options_received *opt_recv;
  741. struct dccp_rx_hist_entry *packet;
  742. u32 p_prev, r_sample, rtt_prev;
  743. int loss, payload_size;
  744. ktime_t now;
  745. BUG_ON(hcrx == NULL);
  746. opt_recv = &dccp_sk(sk)->dccps_options_received;
  747. switch (DCCP_SKB_CB(skb)->dccpd_type) {
  748. case DCCP_PKT_ACK:
  749. if (hcrx->ccid3hcrx_state == TFRC_RSTATE_NO_DATA)
  750. return;
  751. case DCCP_PKT_DATAACK:
  752. if (opt_recv->dccpor_timestamp_echo == 0)
  753. break;
  754. r_sample = dccp_timestamp() - opt_recv->dccpor_timestamp_echo;
  755. rtt_prev = hcrx->ccid3hcrx_rtt;
  756. r_sample = dccp_sample_rtt(sk, 10 * r_sample);
  757. if (hcrx->ccid3hcrx_state == TFRC_RSTATE_NO_DATA)
  758. hcrx->ccid3hcrx_rtt = r_sample;
  759. else
  760. hcrx->ccid3hcrx_rtt = (hcrx->ccid3hcrx_rtt * 9) / 10 +
  761. r_sample / 10;
  762. if (rtt_prev != hcrx->ccid3hcrx_rtt)
  763. ccid3_pr_debug("%s(%p), New RTT=%uus, elapsed time=%u\n",
  764. dccp_role(sk), sk, hcrx->ccid3hcrx_rtt,
  765. opt_recv->dccpor_elapsed_time);
  766. break;
  767. case DCCP_PKT_DATA:
  768. break;
  769. default: /* We're not interested in other packet types, move along */
  770. return;
  771. }
  772. packet = dccp_rx_hist_entry_new(ccid3_rx_hist, opt_recv->dccpor_ndp,
  773. skb, GFP_ATOMIC);
  774. if (unlikely(packet == NULL)) {
  775. DCCP_WARN("%s(%p), Not enough mem to add rx packet "
  776. "to history, consider it lost!\n", dccp_role(sk), sk);
  777. return;
  778. }
  779. loss = ccid3_hc_rx_detect_loss(sk, packet);
  780. if (DCCP_SKB_CB(skb)->dccpd_type == DCCP_PKT_ACK)
  781. return;
  782. payload_size = skb->len - dccp_hdr(skb)->dccph_doff * 4;
  783. ccid3_hc_rx_update_s(hcrx, payload_size);
  784. switch (hcrx->ccid3hcrx_state) {
  785. case TFRC_RSTATE_NO_DATA:
  786. ccid3_pr_debug("%s(%p, state=%s), skb=%p, sending initial "
  787. "feedback\n", dccp_role(sk), sk,
  788. dccp_state_name(sk->sk_state), skb);
  789. ccid3_hc_rx_send_feedback(sk);
  790. ccid3_hc_rx_set_state(sk, TFRC_RSTATE_DATA);
  791. return;
  792. case TFRC_RSTATE_DATA:
  793. hcrx->ccid3hcrx_bytes_recv += payload_size;
  794. if (loss)
  795. break;
  796. now = ktime_get_real();
  797. if ((ktime_us_delta(now, hcrx->ccid3hcrx_tstamp_last_ack) -
  798. (s64)hcrx->ccid3hcrx_rtt) >= 0) {
  799. hcrx->ccid3hcrx_tstamp_last_ack = now;
  800. ccid3_hc_rx_send_feedback(sk);
  801. }
  802. return;
  803. case TFRC_RSTATE_TERM:
  804. DCCP_BUG("%s(%p) - Illegal state TERM", dccp_role(sk), sk);
  805. return;
  806. }
  807. /* Dealing with packet loss */
  808. ccid3_pr_debug("%s(%p, state=%s), data loss! Reacting...\n",
  809. dccp_role(sk), sk, dccp_state_name(sk->sk_state));
  810. p_prev = hcrx->ccid3hcrx_p;
  811. /* Calculate loss event rate */
  812. if (!list_empty(&hcrx->ccid3hcrx_li_hist)) {
  813. u32 i_mean = dccp_li_hist_calc_i_mean(&hcrx->ccid3hcrx_li_hist);
  814. /* Scaling up by 1000000 as fixed decimal */
  815. if (i_mean != 0)
  816. hcrx->ccid3hcrx_p = 1000000 / i_mean;
  817. } else
  818. DCCP_BUG("empty loss history");
  819. if (hcrx->ccid3hcrx_p > p_prev) {
  820. ccid3_hc_rx_send_feedback(sk);
  821. return;
  822. }
  823. }
  824. static int ccid3_hc_rx_init(struct ccid *ccid, struct sock *sk)
  825. {
  826. struct ccid3_hc_rx_sock *hcrx = ccid_priv(ccid);
  827. ccid3_pr_debug("entry\n");
  828. hcrx->ccid3hcrx_state = TFRC_RSTATE_NO_DATA;
  829. INIT_LIST_HEAD(&hcrx->ccid3hcrx_hist);
  830. INIT_LIST_HEAD(&hcrx->ccid3hcrx_li_hist);
  831. hcrx->ccid3hcrx_tstamp_last_feedback =
  832. hcrx->ccid3hcrx_tstamp_last_ack = ktime_get_real();
  833. hcrx->ccid3hcrx_s = 0;
  834. hcrx->ccid3hcrx_rtt = 0;
  835. return 0;
  836. }
  837. static void ccid3_hc_rx_exit(struct sock *sk)
  838. {
  839. struct ccid3_hc_rx_sock *hcrx = ccid3_hc_rx_sk(sk);
  840. BUG_ON(hcrx == NULL);
  841. ccid3_hc_rx_set_state(sk, TFRC_RSTATE_TERM);
  842. /* Empty packet history */
  843. dccp_rx_hist_purge(ccid3_rx_hist, &hcrx->ccid3hcrx_hist);
  844. /* Empty loss interval history */
  845. dccp_li_hist_purge(&hcrx->ccid3hcrx_li_hist);
  846. }
  847. static void ccid3_hc_rx_get_info(struct sock *sk, struct tcp_info *info)
  848. {
  849. const struct ccid3_hc_rx_sock *hcrx = ccid3_hc_rx_sk(sk);
  850. /* Listen socks doesn't have a private CCID block */
  851. if (sk->sk_state == DCCP_LISTEN)
  852. return;
  853. BUG_ON(hcrx == NULL);
  854. info->tcpi_ca_state = hcrx->ccid3hcrx_state;
  855. info->tcpi_options |= TCPI_OPT_TIMESTAMPS;
  856. info->tcpi_rcv_rtt = hcrx->ccid3hcrx_rtt;
  857. }
  858. static int ccid3_hc_rx_getsockopt(struct sock *sk, const int optname, int len,
  859. u32 __user *optval, int __user *optlen)
  860. {
  861. const struct ccid3_hc_rx_sock *hcrx = ccid3_hc_rx_sk(sk);
  862. const void *val;
  863. /* Listen socks doesn't have a private CCID block */
  864. if (sk->sk_state == DCCP_LISTEN)
  865. return -EINVAL;
  866. switch (optname) {
  867. case DCCP_SOCKOPT_CCID_RX_INFO:
  868. if (len < sizeof(hcrx->ccid3hcrx_tfrc))
  869. return -EINVAL;
  870. len = sizeof(hcrx->ccid3hcrx_tfrc);
  871. val = &hcrx->ccid3hcrx_tfrc;
  872. break;
  873. default:
  874. return -ENOPROTOOPT;
  875. }
  876. if (put_user(len, optlen) || copy_to_user(optval, val, len))
  877. return -EFAULT;
  878. return 0;
  879. }
  880. static struct ccid_operations ccid3 = {
  881. .ccid_id = DCCPC_CCID3,
  882. .ccid_name = "ccid3",
  883. .ccid_owner = THIS_MODULE,
  884. .ccid_hc_tx_obj_size = sizeof(struct ccid3_hc_tx_sock),
  885. .ccid_hc_tx_init = ccid3_hc_tx_init,
  886. .ccid_hc_tx_exit = ccid3_hc_tx_exit,
  887. .ccid_hc_tx_send_packet = ccid3_hc_tx_send_packet,
  888. .ccid_hc_tx_packet_sent = ccid3_hc_tx_packet_sent,
  889. .ccid_hc_tx_packet_recv = ccid3_hc_tx_packet_recv,
  890. .ccid_hc_tx_parse_options = ccid3_hc_tx_parse_options,
  891. .ccid_hc_rx_obj_size = sizeof(struct ccid3_hc_rx_sock),
  892. .ccid_hc_rx_init = ccid3_hc_rx_init,
  893. .ccid_hc_rx_exit = ccid3_hc_rx_exit,
  894. .ccid_hc_rx_insert_options = ccid3_hc_rx_insert_options,
  895. .ccid_hc_rx_packet_recv = ccid3_hc_rx_packet_recv,
  896. .ccid_hc_rx_get_info = ccid3_hc_rx_get_info,
  897. .ccid_hc_tx_get_info = ccid3_hc_tx_get_info,
  898. .ccid_hc_rx_getsockopt = ccid3_hc_rx_getsockopt,
  899. .ccid_hc_tx_getsockopt = ccid3_hc_tx_getsockopt,
  900. };
  901. #ifdef CONFIG_IP_DCCP_CCID3_DEBUG
  902. module_param(ccid3_debug, int, 0444);
  903. MODULE_PARM_DESC(ccid3_debug, "Enable debug messages");
  904. #endif
  905. static __init int ccid3_module_init(void)
  906. {
  907. int rc = -ENOBUFS;
  908. ccid3_rx_hist = dccp_rx_hist_new("ccid3");
  909. if (ccid3_rx_hist == NULL)
  910. goto out;
  911. ccid3_tx_hist = dccp_tx_hist_new("ccid3");
  912. if (ccid3_tx_hist == NULL)
  913. goto out_free_rx;
  914. rc = ccid_register(&ccid3);
  915. if (rc != 0)
  916. goto out_free_tx;
  917. out:
  918. return rc;
  919. out_free_tx:
  920. dccp_tx_hist_delete(ccid3_tx_hist);
  921. ccid3_tx_hist = NULL;
  922. out_free_rx:
  923. dccp_rx_hist_delete(ccid3_rx_hist);
  924. ccid3_rx_hist = NULL;
  925. goto out;
  926. }
  927. module_init(ccid3_module_init);
  928. static __exit void ccid3_module_exit(void)
  929. {
  930. ccid_unregister(&ccid3);
  931. if (ccid3_tx_hist != NULL) {
  932. dccp_tx_hist_delete(ccid3_tx_hist);
  933. ccid3_tx_hist = NULL;
  934. }
  935. if (ccid3_rx_hist != NULL) {
  936. dccp_rx_hist_delete(ccid3_rx_hist);
  937. ccid3_rx_hist = NULL;
  938. }
  939. }
  940. module_exit(ccid3_module_exit);
  941. MODULE_AUTHOR("Ian McDonald <ian.mcdonald@jandi.co.nz>, "
  942. "Arnaldo Carvalho de Melo <acme@ghostprotocols.net>");
  943. MODULE_DESCRIPTION("DCCP TFRC CCID3 CCID");
  944. MODULE_LICENSE("GPL");
  945. MODULE_ALIAS("net-dccp-ccid-3");