ccid2.c 23 KB

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  1. /*
  2. * net/dccp/ccids/ccid2.c
  3. *
  4. * Copyright (c) 2005, 2006 Andrea Bittau <a.bittau@cs.ucl.ac.uk>
  5. *
  6. * Changes to meet Linux coding standards, and DCCP infrastructure fixes.
  7. *
  8. * Copyright (c) 2006 Arnaldo Carvalho de Melo <acme@conectiva.com.br>
  9. *
  10. * This program is free software; you can redistribute it and/or modify
  11. * it under the terms of the GNU General Public License as published by
  12. * the Free Software Foundation; either version 2 of the License, or
  13. * (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  23. */
  24. /*
  25. * This implementation should follow RFC 4341
  26. */
  27. #include "../ccid.h"
  28. #include "../dccp.h"
  29. #include "ccid2.h"
  30. #ifdef CONFIG_IP_DCCP_CCID2_DEBUG
  31. static int ccid2_debug;
  32. #define ccid2_pr_debug(format, a...) DCCP_PR_DEBUG(ccid2_debug, format, ##a)
  33. static void ccid2_hc_tx_check_sanity(const struct ccid2_hc_tx_sock *hctx)
  34. {
  35. int len = 0;
  36. int pipe = 0;
  37. struct ccid2_seq *seqp = hctx->ccid2hctx_seqh;
  38. /* there is data in the chain */
  39. if (seqp != hctx->ccid2hctx_seqt) {
  40. seqp = seqp->ccid2s_prev;
  41. len++;
  42. if (!seqp->ccid2s_acked)
  43. pipe++;
  44. while (seqp != hctx->ccid2hctx_seqt) {
  45. struct ccid2_seq *prev = seqp->ccid2s_prev;
  46. len++;
  47. if (!prev->ccid2s_acked)
  48. pipe++;
  49. /* packets are sent sequentially */
  50. BUG_ON(dccp_delta_seqno(seqp->ccid2s_seq,
  51. prev->ccid2s_seq ) >= 0);
  52. BUG_ON(time_before(seqp->ccid2s_sent,
  53. prev->ccid2s_sent));
  54. seqp = prev;
  55. }
  56. }
  57. BUG_ON(pipe != hctx->ccid2hctx_pipe);
  58. ccid2_pr_debug("len of chain=%d\n", len);
  59. do {
  60. seqp = seqp->ccid2s_prev;
  61. len++;
  62. } while (seqp != hctx->ccid2hctx_seqh);
  63. ccid2_pr_debug("total len=%d\n", len);
  64. BUG_ON(len != hctx->ccid2hctx_seqbufc * CCID2_SEQBUF_LEN);
  65. }
  66. #else
  67. #define ccid2_pr_debug(format, a...)
  68. #define ccid2_hc_tx_check_sanity(hctx)
  69. #endif
  70. static int ccid2_hc_tx_alloc_seq(struct ccid2_hc_tx_sock *hctx)
  71. {
  72. struct ccid2_seq *seqp;
  73. int i;
  74. /* check if we have space to preserve the pointer to the buffer */
  75. if (hctx->ccid2hctx_seqbufc >= (sizeof(hctx->ccid2hctx_seqbuf) /
  76. sizeof(struct ccid2_seq*)))
  77. return -ENOMEM;
  78. /* allocate buffer and initialize linked list */
  79. seqp = kmalloc(CCID2_SEQBUF_LEN * sizeof(struct ccid2_seq), gfp_any());
  80. if (seqp == NULL)
  81. return -ENOMEM;
  82. for (i = 0; i < (CCID2_SEQBUF_LEN - 1); i++) {
  83. seqp[i].ccid2s_next = &seqp[i + 1];
  84. seqp[i + 1].ccid2s_prev = &seqp[i];
  85. }
  86. seqp[CCID2_SEQBUF_LEN - 1].ccid2s_next = seqp;
  87. seqp->ccid2s_prev = &seqp[CCID2_SEQBUF_LEN - 1];
  88. /* This is the first allocation. Initiate the head and tail. */
  89. if (hctx->ccid2hctx_seqbufc == 0)
  90. hctx->ccid2hctx_seqh = hctx->ccid2hctx_seqt = seqp;
  91. else {
  92. /* link the existing list with the one we just created */
  93. hctx->ccid2hctx_seqh->ccid2s_next = seqp;
  94. seqp->ccid2s_prev = hctx->ccid2hctx_seqh;
  95. hctx->ccid2hctx_seqt->ccid2s_prev = &seqp[CCID2_SEQBUF_LEN - 1];
  96. seqp[CCID2_SEQBUF_LEN - 1].ccid2s_next = hctx->ccid2hctx_seqt;
  97. }
  98. /* store the original pointer to the buffer so we can free it */
  99. hctx->ccid2hctx_seqbuf[hctx->ccid2hctx_seqbufc] = seqp;
  100. hctx->ccid2hctx_seqbufc++;
  101. return 0;
  102. }
  103. static int ccid2_hc_tx_send_packet(struct sock *sk, struct sk_buff *skb)
  104. {
  105. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  106. ccid2_pr_debug("pipe=%d cwnd=%d\n", hctx->ccid2hctx_pipe,
  107. hctx->ccid2hctx_cwnd);
  108. if (hctx->ccid2hctx_pipe < hctx->ccid2hctx_cwnd) {
  109. /* OK we can send... make sure previous packet was sent off */
  110. if (!hctx->ccid2hctx_sendwait) {
  111. hctx->ccid2hctx_sendwait = 1;
  112. return 0;
  113. }
  114. }
  115. return 1; /* XXX CCID should dequeue when ready instead of polling */
  116. }
  117. static void ccid2_change_l_ack_ratio(struct sock *sk, u32 val)
  118. {
  119. struct dccp_sock *dp = dccp_sk(sk);
  120. u32 max_ratio = DIV_ROUND_UP(ccid2_hc_tx_sk(sk)->ccid2hctx_cwnd, 2);
  121. /*
  122. * Ensure that Ack Ratio does not exceed ceil(cwnd/2), which is (2) from
  123. * RFC 4341, 6.1.2. We ignore the statement that Ack Ratio 2 is always
  124. * acceptable since this causes starvation/deadlock whenever cwnd < 2.
  125. * The same problem arises when Ack Ratio is 0 (ie. Ack Ratio disabled).
  126. */
  127. if (val == 0 || val > max_ratio) {
  128. DCCP_WARN("Limiting Ack Ratio (%u) to %u\n", val, max_ratio);
  129. val = max_ratio;
  130. }
  131. if (val > 0xFFFF) /* RFC 4340, 11.3 */
  132. val = 0xFFFF;
  133. if (val == dp->dccps_l_ack_ratio)
  134. return;
  135. ccid2_pr_debug("changing local ack ratio to %u\n", val);
  136. dp->dccps_l_ack_ratio = val;
  137. }
  138. static void ccid2_change_srtt(struct ccid2_hc_tx_sock *hctx, long val)
  139. {
  140. ccid2_pr_debug("change SRTT to %ld\n", val);
  141. hctx->ccid2hctx_srtt = val;
  142. }
  143. static void ccid2_change_pipe(struct ccid2_hc_tx_sock *hctx, long val)
  144. {
  145. hctx->ccid2hctx_pipe = val;
  146. }
  147. static void ccid2_start_rto_timer(struct sock *sk);
  148. static void ccid2_hc_tx_rto_expire(unsigned long data)
  149. {
  150. struct sock *sk = (struct sock *)data;
  151. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  152. long s;
  153. bh_lock_sock(sk);
  154. if (sock_owned_by_user(sk)) {
  155. sk_reset_timer(sk, &hctx->ccid2hctx_rtotimer,
  156. jiffies + HZ / 5);
  157. goto out;
  158. }
  159. ccid2_pr_debug("RTO_EXPIRE\n");
  160. ccid2_hc_tx_check_sanity(hctx);
  161. /* back-off timer */
  162. hctx->ccid2hctx_rto <<= 1;
  163. s = hctx->ccid2hctx_rto / HZ;
  164. if (s > 60)
  165. hctx->ccid2hctx_rto = 60 * HZ;
  166. ccid2_start_rto_timer(sk);
  167. /* adjust pipe, cwnd etc */
  168. ccid2_change_pipe(hctx, 0);
  169. hctx->ccid2hctx_ssthresh = hctx->ccid2hctx_cwnd / 2;
  170. if (hctx->ccid2hctx_ssthresh < 2)
  171. hctx->ccid2hctx_ssthresh = 2;
  172. hctx->ccid2hctx_cwnd = 1;
  173. /* clear state about stuff we sent */
  174. hctx->ccid2hctx_seqt = hctx->ccid2hctx_seqh;
  175. hctx->ccid2hctx_ssacks = 0;
  176. hctx->ccid2hctx_acks = 0;
  177. /* clear ack ratio state. */
  178. hctx->ccid2hctx_rpseq = 0;
  179. hctx->ccid2hctx_rpdupack = -1;
  180. ccid2_change_l_ack_ratio(sk, 1);
  181. ccid2_hc_tx_check_sanity(hctx);
  182. out:
  183. bh_unlock_sock(sk);
  184. sock_put(sk);
  185. }
  186. static void ccid2_start_rto_timer(struct sock *sk)
  187. {
  188. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  189. ccid2_pr_debug("setting RTO timeout=%ld\n", hctx->ccid2hctx_rto);
  190. BUG_ON(timer_pending(&hctx->ccid2hctx_rtotimer));
  191. sk_reset_timer(sk, &hctx->ccid2hctx_rtotimer,
  192. jiffies + hctx->ccid2hctx_rto);
  193. }
  194. static void ccid2_hc_tx_packet_sent(struct sock *sk, int more, unsigned int len)
  195. {
  196. struct dccp_sock *dp = dccp_sk(sk);
  197. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  198. struct ccid2_seq *next;
  199. u64 seq;
  200. ccid2_hc_tx_check_sanity(hctx);
  201. BUG_ON(!hctx->ccid2hctx_sendwait);
  202. hctx->ccid2hctx_sendwait = 0;
  203. ccid2_change_pipe(hctx, hctx->ccid2hctx_pipe + 1);
  204. BUG_ON(hctx->ccid2hctx_pipe < 0);
  205. /* There is an issue. What if another packet is sent between
  206. * packet_send() and packet_sent(). Then the sequence number would be
  207. * wrong.
  208. * -sorbo.
  209. */
  210. seq = dp->dccps_gss;
  211. hctx->ccid2hctx_seqh->ccid2s_seq = seq;
  212. hctx->ccid2hctx_seqh->ccid2s_acked = 0;
  213. hctx->ccid2hctx_seqh->ccid2s_sent = jiffies;
  214. next = hctx->ccid2hctx_seqh->ccid2s_next;
  215. /* check if we need to alloc more space */
  216. if (next == hctx->ccid2hctx_seqt) {
  217. if (ccid2_hc_tx_alloc_seq(hctx)) {
  218. DCCP_CRIT("packet history - out of memory!");
  219. /* FIXME: find a more graceful way to bail out */
  220. return;
  221. }
  222. next = hctx->ccid2hctx_seqh->ccid2s_next;
  223. BUG_ON(next == hctx->ccid2hctx_seqt);
  224. }
  225. hctx->ccid2hctx_seqh = next;
  226. ccid2_pr_debug("cwnd=%d pipe=%d\n", hctx->ccid2hctx_cwnd,
  227. hctx->ccid2hctx_pipe);
  228. /*
  229. * FIXME: The code below is broken and the variables have been removed
  230. * from the socket struct. The `ackloss' variable was always set to 0,
  231. * and with arsent there are several problems:
  232. * (i) it doesn't just count the number of Acks, but all sent packets;
  233. * (ii) it is expressed in # of packets, not # of windows, so the
  234. * comparison below uses the wrong formula: Appendix A of RFC 4341
  235. * comes up with the number K = cwnd / (R^2 - R) of consecutive windows
  236. * of data with no lost or marked Ack packets. If arsent were the # of
  237. * consecutive Acks received without loss, then Ack Ratio needs to be
  238. * decreased by 1 when
  239. * arsent >= K * cwnd / R = cwnd^2 / (R^3 - R^2)
  240. * where cwnd / R is the number of Acks received per window of data
  241. * (cf. RFC 4341, App. A). The problems are that
  242. * - arsent counts other packets as well;
  243. * - the comparison uses a formula different from RFC 4341;
  244. * - computing a cubic/quadratic equation each time is too complicated.
  245. * Hence a different algorithm is needed.
  246. */
  247. #if 0
  248. /* Ack Ratio. Need to maintain a concept of how many windows we sent */
  249. hctx->ccid2hctx_arsent++;
  250. /* We had an ack loss in this window... */
  251. if (hctx->ccid2hctx_ackloss) {
  252. if (hctx->ccid2hctx_arsent >= hctx->ccid2hctx_cwnd) {
  253. hctx->ccid2hctx_arsent = 0;
  254. hctx->ccid2hctx_ackloss = 0;
  255. }
  256. } else {
  257. /* No acks lost up to now... */
  258. /* decrease ack ratio if enough packets were sent */
  259. if (dp->dccps_l_ack_ratio > 1) {
  260. /* XXX don't calculate denominator each time */
  261. int denom = dp->dccps_l_ack_ratio * dp->dccps_l_ack_ratio -
  262. dp->dccps_l_ack_ratio;
  263. denom = hctx->ccid2hctx_cwnd * hctx->ccid2hctx_cwnd / denom;
  264. if (hctx->ccid2hctx_arsent >= denom) {
  265. ccid2_change_l_ack_ratio(sk, dp->dccps_l_ack_ratio - 1);
  266. hctx->ccid2hctx_arsent = 0;
  267. }
  268. } else {
  269. /* we can't increase ack ratio further [1] */
  270. hctx->ccid2hctx_arsent = 0; /* or maybe set it to cwnd*/
  271. }
  272. }
  273. #endif
  274. /* setup RTO timer */
  275. if (!timer_pending(&hctx->ccid2hctx_rtotimer))
  276. ccid2_start_rto_timer(sk);
  277. #ifdef CONFIG_IP_DCCP_CCID2_DEBUG
  278. ccid2_pr_debug("pipe=%d\n", hctx->ccid2hctx_pipe);
  279. ccid2_pr_debug("Sent: seq=%llu\n", (unsigned long long)seq);
  280. do {
  281. struct ccid2_seq *seqp = hctx->ccid2hctx_seqt;
  282. while (seqp != hctx->ccid2hctx_seqh) {
  283. ccid2_pr_debug("out seq=%llu acked=%d time=%lu\n",
  284. (unsigned long long)seqp->ccid2s_seq,
  285. seqp->ccid2s_acked, seqp->ccid2s_sent);
  286. seqp = seqp->ccid2s_next;
  287. }
  288. } while (0);
  289. ccid2_pr_debug("=========\n");
  290. ccid2_hc_tx_check_sanity(hctx);
  291. #endif
  292. }
  293. /* XXX Lame code duplication!
  294. * returns -1 if none was found.
  295. * else returns the next offset to use in the function call.
  296. */
  297. static int ccid2_ackvector(struct sock *sk, struct sk_buff *skb, int offset,
  298. unsigned char **vec, unsigned char *veclen)
  299. {
  300. const struct dccp_hdr *dh = dccp_hdr(skb);
  301. unsigned char *options = (unsigned char *)dh + dccp_hdr_len(skb);
  302. unsigned char *opt_ptr;
  303. const unsigned char *opt_end = (unsigned char *)dh +
  304. (dh->dccph_doff * 4);
  305. unsigned char opt, len;
  306. unsigned char *value;
  307. BUG_ON(offset < 0);
  308. options += offset;
  309. opt_ptr = options;
  310. if (opt_ptr >= opt_end)
  311. return -1;
  312. while (opt_ptr != opt_end) {
  313. opt = *opt_ptr++;
  314. len = 0;
  315. value = NULL;
  316. /* Check if this isn't a single byte option */
  317. if (opt > DCCPO_MAX_RESERVED) {
  318. if (opt_ptr == opt_end)
  319. goto out_invalid_option;
  320. len = *opt_ptr++;
  321. if (len < 3)
  322. goto out_invalid_option;
  323. /*
  324. * Remove the type and len fields, leaving
  325. * just the value size
  326. */
  327. len -= 2;
  328. value = opt_ptr;
  329. opt_ptr += len;
  330. if (opt_ptr > opt_end)
  331. goto out_invalid_option;
  332. }
  333. switch (opt) {
  334. case DCCPO_ACK_VECTOR_0:
  335. case DCCPO_ACK_VECTOR_1:
  336. *vec = value;
  337. *veclen = len;
  338. return offset + (opt_ptr - options);
  339. }
  340. }
  341. return -1;
  342. out_invalid_option:
  343. DCCP_BUG("Invalid option - this should not happen (previous parsing)!");
  344. return -1;
  345. }
  346. static void ccid2_hc_tx_kill_rto_timer(struct sock *sk)
  347. {
  348. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  349. sk_stop_timer(sk, &hctx->ccid2hctx_rtotimer);
  350. ccid2_pr_debug("deleted RTO timer\n");
  351. }
  352. static inline void ccid2_new_ack(struct sock *sk,
  353. struct ccid2_seq *seqp,
  354. unsigned int *maxincr)
  355. {
  356. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  357. /* slow start */
  358. if (hctx->ccid2hctx_cwnd < hctx->ccid2hctx_ssthresh) {
  359. hctx->ccid2hctx_acks = 0;
  360. /* We can increase cwnd at most maxincr [ack_ratio/2] */
  361. if (*maxincr) {
  362. /* increase every 2 acks */
  363. hctx->ccid2hctx_ssacks++;
  364. if (hctx->ccid2hctx_ssacks == 2) {
  365. hctx->ccid2hctx_cwnd++;
  366. hctx->ccid2hctx_ssacks = 0;
  367. *maxincr = *maxincr - 1;
  368. }
  369. } else {
  370. /* increased cwnd enough for this single ack */
  371. hctx->ccid2hctx_ssacks = 0;
  372. }
  373. } else {
  374. hctx->ccid2hctx_ssacks = 0;
  375. hctx->ccid2hctx_acks++;
  376. if (hctx->ccid2hctx_acks >= hctx->ccid2hctx_cwnd) {
  377. hctx->ccid2hctx_cwnd++;
  378. hctx->ccid2hctx_acks = 0;
  379. }
  380. }
  381. /* update RTO */
  382. if (hctx->ccid2hctx_srtt == -1 ||
  383. time_after(jiffies, hctx->ccid2hctx_lastrtt + hctx->ccid2hctx_srtt)) {
  384. unsigned long r = (long)jiffies - (long)seqp->ccid2s_sent;
  385. int s;
  386. /* first measurement */
  387. if (hctx->ccid2hctx_srtt == -1) {
  388. ccid2_pr_debug("R: %lu Time=%lu seq=%llu\n",
  389. r, jiffies,
  390. (unsigned long long)seqp->ccid2s_seq);
  391. ccid2_change_srtt(hctx, r);
  392. hctx->ccid2hctx_rttvar = r >> 1;
  393. } else {
  394. /* RTTVAR */
  395. long tmp = hctx->ccid2hctx_srtt - r;
  396. long srtt;
  397. if (tmp < 0)
  398. tmp *= -1;
  399. tmp >>= 2;
  400. hctx->ccid2hctx_rttvar *= 3;
  401. hctx->ccid2hctx_rttvar >>= 2;
  402. hctx->ccid2hctx_rttvar += tmp;
  403. /* SRTT */
  404. srtt = hctx->ccid2hctx_srtt;
  405. srtt *= 7;
  406. srtt >>= 3;
  407. tmp = r >> 3;
  408. srtt += tmp;
  409. ccid2_change_srtt(hctx, srtt);
  410. }
  411. s = hctx->ccid2hctx_rttvar << 2;
  412. /* clock granularity is 1 when based on jiffies */
  413. if (!s)
  414. s = 1;
  415. hctx->ccid2hctx_rto = hctx->ccid2hctx_srtt + s;
  416. /* must be at least a second */
  417. s = hctx->ccid2hctx_rto / HZ;
  418. /* DCCP doesn't require this [but I like it cuz my code sux] */
  419. #if 1
  420. if (s < 1)
  421. hctx->ccid2hctx_rto = HZ;
  422. #endif
  423. /* max 60 seconds */
  424. if (s > 60)
  425. hctx->ccid2hctx_rto = HZ * 60;
  426. hctx->ccid2hctx_lastrtt = jiffies;
  427. ccid2_pr_debug("srtt: %ld rttvar: %ld rto: %ld (HZ=%d) R=%lu\n",
  428. hctx->ccid2hctx_srtt, hctx->ccid2hctx_rttvar,
  429. hctx->ccid2hctx_rto, HZ, r);
  430. }
  431. /* we got a new ack, so re-start RTO timer */
  432. ccid2_hc_tx_kill_rto_timer(sk);
  433. ccid2_start_rto_timer(sk);
  434. }
  435. static void ccid2_hc_tx_dec_pipe(struct sock *sk)
  436. {
  437. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  438. ccid2_change_pipe(hctx, hctx->ccid2hctx_pipe-1);
  439. BUG_ON(hctx->ccid2hctx_pipe < 0);
  440. if (hctx->ccid2hctx_pipe == 0)
  441. ccid2_hc_tx_kill_rto_timer(sk);
  442. }
  443. static void ccid2_congestion_event(struct sock *sk, struct ccid2_seq *seqp)
  444. {
  445. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  446. if (time_before(seqp->ccid2s_sent, hctx->ccid2hctx_last_cong)) {
  447. ccid2_pr_debug("Multiple losses in an RTT---treating as one\n");
  448. return;
  449. }
  450. hctx->ccid2hctx_last_cong = jiffies;
  451. hctx->ccid2hctx_cwnd = hctx->ccid2hctx_cwnd / 2 ? : 1U;
  452. hctx->ccid2hctx_ssthresh = max(hctx->ccid2hctx_cwnd, 2U);
  453. /* Avoid spurious timeouts resulting from Ack Ratio > cwnd */
  454. if (dccp_sk(sk)->dccps_l_ack_ratio > hctx->ccid2hctx_cwnd)
  455. ccid2_change_l_ack_ratio(sk, hctx->ccid2hctx_cwnd);
  456. }
  457. static void ccid2_hc_tx_packet_recv(struct sock *sk, struct sk_buff *skb)
  458. {
  459. struct dccp_sock *dp = dccp_sk(sk);
  460. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  461. u64 ackno, seqno;
  462. struct ccid2_seq *seqp;
  463. unsigned char *vector;
  464. unsigned char veclen;
  465. int offset = 0;
  466. int done = 0;
  467. unsigned int maxincr = 0;
  468. ccid2_hc_tx_check_sanity(hctx);
  469. /* check reverse path congestion */
  470. seqno = DCCP_SKB_CB(skb)->dccpd_seq;
  471. /* XXX this whole "algorithm" is broken. Need to fix it to keep track
  472. * of the seqnos of the dupacks so that rpseq and rpdupack are correct
  473. * -sorbo.
  474. */
  475. /* need to bootstrap */
  476. if (hctx->ccid2hctx_rpdupack == -1) {
  477. hctx->ccid2hctx_rpdupack = 0;
  478. hctx->ccid2hctx_rpseq = seqno;
  479. } else {
  480. /* check if packet is consecutive */
  481. if (dccp_delta_seqno(hctx->ccid2hctx_rpseq, seqno) == 1)
  482. hctx->ccid2hctx_rpseq = seqno;
  483. /* it's a later packet */
  484. else if (after48(seqno, hctx->ccid2hctx_rpseq)) {
  485. hctx->ccid2hctx_rpdupack++;
  486. /* check if we got enough dupacks */
  487. if (hctx->ccid2hctx_rpdupack >= NUMDUPACK) {
  488. hctx->ccid2hctx_rpdupack = -1; /* XXX lame */
  489. hctx->ccid2hctx_rpseq = 0;
  490. ccid2_change_l_ack_ratio(sk, 2 * dp->dccps_l_ack_ratio);
  491. }
  492. }
  493. }
  494. /* check forward path congestion */
  495. /* still didn't send out new data packets */
  496. if (hctx->ccid2hctx_seqh == hctx->ccid2hctx_seqt)
  497. return;
  498. switch (DCCP_SKB_CB(skb)->dccpd_type) {
  499. case DCCP_PKT_ACK:
  500. case DCCP_PKT_DATAACK:
  501. break;
  502. default:
  503. return;
  504. }
  505. ackno = DCCP_SKB_CB(skb)->dccpd_ack_seq;
  506. if (after48(ackno, hctx->ccid2hctx_high_ack))
  507. hctx->ccid2hctx_high_ack = ackno;
  508. seqp = hctx->ccid2hctx_seqt;
  509. while (before48(seqp->ccid2s_seq, ackno)) {
  510. seqp = seqp->ccid2s_next;
  511. if (seqp == hctx->ccid2hctx_seqh) {
  512. seqp = hctx->ccid2hctx_seqh->ccid2s_prev;
  513. break;
  514. }
  515. }
  516. /* If in slow-start, cwnd can increase at most Ack Ratio / 2 packets for
  517. * this single ack. I round up.
  518. * -sorbo.
  519. */
  520. maxincr = dp->dccps_l_ack_ratio >> 1;
  521. maxincr++;
  522. /* go through all ack vectors */
  523. while ((offset = ccid2_ackvector(sk, skb, offset,
  524. &vector, &veclen)) != -1) {
  525. /* go through this ack vector */
  526. while (veclen--) {
  527. const u8 rl = *vector & DCCP_ACKVEC_LEN_MASK;
  528. u64 ackno_end_rl = SUB48(ackno, rl);
  529. ccid2_pr_debug("ackvec start:%llu end:%llu\n",
  530. (unsigned long long)ackno,
  531. (unsigned long long)ackno_end_rl);
  532. /* if the seqno we are analyzing is larger than the
  533. * current ackno, then move towards the tail of our
  534. * seqnos.
  535. */
  536. while (after48(seqp->ccid2s_seq, ackno)) {
  537. if (seqp == hctx->ccid2hctx_seqt) {
  538. done = 1;
  539. break;
  540. }
  541. seqp = seqp->ccid2s_prev;
  542. }
  543. if (done)
  544. break;
  545. /* check all seqnos in the range of the vector
  546. * run length
  547. */
  548. while (between48(seqp->ccid2s_seq,ackno_end_rl,ackno)) {
  549. const u8 state = *vector &
  550. DCCP_ACKVEC_STATE_MASK;
  551. /* new packet received or marked */
  552. if (state != DCCP_ACKVEC_STATE_NOT_RECEIVED &&
  553. !seqp->ccid2s_acked) {
  554. if (state ==
  555. DCCP_ACKVEC_STATE_ECN_MARKED) {
  556. ccid2_congestion_event(sk,
  557. seqp);
  558. } else
  559. ccid2_new_ack(sk, seqp,
  560. &maxincr);
  561. seqp->ccid2s_acked = 1;
  562. ccid2_pr_debug("Got ack for %llu\n",
  563. (unsigned long long)seqp->ccid2s_seq);
  564. ccid2_hc_tx_dec_pipe(sk);
  565. }
  566. if (seqp == hctx->ccid2hctx_seqt) {
  567. done = 1;
  568. break;
  569. }
  570. seqp = seqp->ccid2s_prev;
  571. }
  572. if (done)
  573. break;
  574. ackno = SUB48(ackno_end_rl, 1);
  575. vector++;
  576. }
  577. if (done)
  578. break;
  579. }
  580. /* The state about what is acked should be correct now
  581. * Check for NUMDUPACK
  582. */
  583. seqp = hctx->ccid2hctx_seqt;
  584. while (before48(seqp->ccid2s_seq, hctx->ccid2hctx_high_ack)) {
  585. seqp = seqp->ccid2s_next;
  586. if (seqp == hctx->ccid2hctx_seqh) {
  587. seqp = hctx->ccid2hctx_seqh->ccid2s_prev;
  588. break;
  589. }
  590. }
  591. done = 0;
  592. while (1) {
  593. if (seqp->ccid2s_acked) {
  594. done++;
  595. if (done == NUMDUPACK)
  596. break;
  597. }
  598. if (seqp == hctx->ccid2hctx_seqt)
  599. break;
  600. seqp = seqp->ccid2s_prev;
  601. }
  602. /* If there are at least 3 acknowledgements, anything unacknowledged
  603. * below the last sequence number is considered lost
  604. */
  605. if (done == NUMDUPACK) {
  606. struct ccid2_seq *last_acked = seqp;
  607. /* check for lost packets */
  608. while (1) {
  609. if (!seqp->ccid2s_acked) {
  610. ccid2_pr_debug("Packet lost: %llu\n",
  611. (unsigned long long)seqp->ccid2s_seq);
  612. /* XXX need to traverse from tail -> head in
  613. * order to detect multiple congestion events in
  614. * one ack vector.
  615. */
  616. ccid2_congestion_event(sk, seqp);
  617. ccid2_hc_tx_dec_pipe(sk);
  618. }
  619. if (seqp == hctx->ccid2hctx_seqt)
  620. break;
  621. seqp = seqp->ccid2s_prev;
  622. }
  623. hctx->ccid2hctx_seqt = last_acked;
  624. }
  625. /* trim acked packets in tail */
  626. while (hctx->ccid2hctx_seqt != hctx->ccid2hctx_seqh) {
  627. if (!hctx->ccid2hctx_seqt->ccid2s_acked)
  628. break;
  629. hctx->ccid2hctx_seqt = hctx->ccid2hctx_seqt->ccid2s_next;
  630. }
  631. ccid2_hc_tx_check_sanity(hctx);
  632. }
  633. static int ccid2_hc_tx_init(struct ccid *ccid, struct sock *sk)
  634. {
  635. struct ccid2_hc_tx_sock *hctx = ccid_priv(ccid);
  636. struct dccp_sock *dp = dccp_sk(sk);
  637. u32 max_ratio;
  638. /* RFC 4341, 5: initialise ssthresh to arbitrarily high (max) value */
  639. hctx->ccid2hctx_ssthresh = ~0U;
  640. /*
  641. * RFC 4341, 5: "The cwnd parameter is initialized to at most four
  642. * packets for new connections, following the rules from [RFC3390]".
  643. * We need to convert the bytes of RFC3390 into the packets of RFC 4341.
  644. */
  645. hctx->ccid2hctx_cwnd = min(4U, max(2U, 4380U / dp->dccps_mss_cache));
  646. /* Make sure that Ack Ratio is enabled and within bounds. */
  647. max_ratio = DIV_ROUND_UP(hctx->ccid2hctx_cwnd, 2);
  648. if (dp->dccps_l_ack_ratio == 0 || dp->dccps_l_ack_ratio > max_ratio)
  649. dp->dccps_l_ack_ratio = max_ratio;
  650. /* XXX init ~ to window size... */
  651. if (ccid2_hc_tx_alloc_seq(hctx))
  652. return -ENOMEM;
  653. hctx->ccid2hctx_rto = 3 * HZ;
  654. ccid2_change_srtt(hctx, -1);
  655. hctx->ccid2hctx_rttvar = -1;
  656. hctx->ccid2hctx_rpdupack = -1;
  657. hctx->ccid2hctx_last_cong = jiffies;
  658. setup_timer(&hctx->ccid2hctx_rtotimer, ccid2_hc_tx_rto_expire,
  659. (unsigned long)sk);
  660. ccid2_hc_tx_check_sanity(hctx);
  661. return 0;
  662. }
  663. static void ccid2_hc_tx_exit(struct sock *sk)
  664. {
  665. struct ccid2_hc_tx_sock *hctx = ccid2_hc_tx_sk(sk);
  666. int i;
  667. ccid2_hc_tx_kill_rto_timer(sk);
  668. for (i = 0; i < hctx->ccid2hctx_seqbufc; i++)
  669. kfree(hctx->ccid2hctx_seqbuf[i]);
  670. hctx->ccid2hctx_seqbufc = 0;
  671. }
  672. static void ccid2_hc_rx_packet_recv(struct sock *sk, struct sk_buff *skb)
  673. {
  674. const struct dccp_sock *dp = dccp_sk(sk);
  675. struct ccid2_hc_rx_sock *hcrx = ccid2_hc_rx_sk(sk);
  676. switch (DCCP_SKB_CB(skb)->dccpd_type) {
  677. case DCCP_PKT_DATA:
  678. case DCCP_PKT_DATAACK:
  679. hcrx->ccid2hcrx_data++;
  680. if (hcrx->ccid2hcrx_data >= dp->dccps_r_ack_ratio) {
  681. dccp_send_ack(sk);
  682. hcrx->ccid2hcrx_data = 0;
  683. }
  684. break;
  685. }
  686. }
  687. static struct ccid_operations ccid2 = {
  688. .ccid_id = DCCPC_CCID2,
  689. .ccid_name = "ccid2",
  690. .ccid_owner = THIS_MODULE,
  691. .ccid_hc_tx_obj_size = sizeof(struct ccid2_hc_tx_sock),
  692. .ccid_hc_tx_init = ccid2_hc_tx_init,
  693. .ccid_hc_tx_exit = ccid2_hc_tx_exit,
  694. .ccid_hc_tx_send_packet = ccid2_hc_tx_send_packet,
  695. .ccid_hc_tx_packet_sent = ccid2_hc_tx_packet_sent,
  696. .ccid_hc_tx_packet_recv = ccid2_hc_tx_packet_recv,
  697. .ccid_hc_rx_obj_size = sizeof(struct ccid2_hc_rx_sock),
  698. .ccid_hc_rx_packet_recv = ccid2_hc_rx_packet_recv,
  699. };
  700. #ifdef CONFIG_IP_DCCP_CCID2_DEBUG
  701. module_param(ccid2_debug, bool, 0444);
  702. MODULE_PARM_DESC(ccid2_debug, "Enable debug messages");
  703. #endif
  704. static __init int ccid2_module_init(void)
  705. {
  706. return ccid_register(&ccid2);
  707. }
  708. module_init(ccid2_module_init);
  709. static __exit void ccid2_module_exit(void)
  710. {
  711. ccid_unregister(&ccid2);
  712. }
  713. module_exit(ccid2_module_exit);
  714. MODULE_AUTHOR("Andrea Bittau <a.bittau@cs.ucl.ac.uk>");
  715. MODULE_DESCRIPTION("DCCP TCP-Like (CCID2) CCID");
  716. MODULE_LICENSE("GPL");
  717. MODULE_ALIAS("net-dccp-ccid-2");