totemsrp.c 121 KB

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  1. /*
  2. * Copyright (c) 2003-2006 MontaVista Software, Inc.
  3. * Copyright (c) 2006-2009 Red Hat, Inc.
  4. *
  5. * All rights reserved.
  6. *
  7. * Author: Steven Dake (sdake@redhat.com)
  8. *
  9. * This software licensed under BSD license, the text of which follows:
  10. *
  11. * Redistribution and use in source and binary forms, with or without
  12. * modification, are permitted provided that the following conditions are met:
  13. *
  14. * - Redistributions of source code must retain the above copyright notice,
  15. * this list of conditions and the following disclaimer.
  16. * - Redistributions in binary form must reproduce the above copyright notice,
  17. * this list of conditions and the following disclaimer in the documentation
  18. * and/or other materials provided with the distribution.
  19. * - Neither the name of the MontaVista Software, Inc. nor the names of its
  20. * contributors may be used to endorse or promote products derived from this
  21. * software without specific prior written permission.
  22. *
  23. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  24. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  25. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  26. * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
  27. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  28. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  29. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
  30. * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
  31. * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  32. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
  33. * THE POSSIBILITY OF SUCH DAMAGE.
  34. */
  35. /*
  36. * The first version of this code was based upon Yair Amir's PhD thesis:
  37. * http://www.cs.jhu.edu/~yairamir/phd.ps) (ch4,5).
  38. *
  39. * The current version of totemsrp implements the Totem protocol specified in:
  40. * http://citeseer.ist.psu.edu/amir95totem.html
  41. *
  42. * The deviations from the above published protocols are:
  43. * - encryption of message contents with SOBER128
  44. * - authentication of meessage contents with SHA1/HMAC
  45. * - token hold mode where token doesn't rotate on unused ring - reduces cpu
  46. * usage on 1.6ghz xeon from 35% to less then .1 % as measured by top
  47. */
  48. #include <config.h>
  49. #include <assert.h>
  50. #ifdef HAVE_ALLOCA_H
  51. #include <alloca.h>
  52. #endif
  53. #include <sys/mman.h>
  54. #include <sys/types.h>
  55. #include <sys/stat.h>
  56. #include <sys/socket.h>
  57. #include <netdb.h>
  58. #include <sys/un.h>
  59. #include <sys/ioctl.h>
  60. #include <sys/param.h>
  61. #include <netinet/in.h>
  62. #include <arpa/inet.h>
  63. #include <unistd.h>
  64. #include <fcntl.h>
  65. #include <stdlib.h>
  66. #include <stdio.h>
  67. #include <errno.h>
  68. #include <sched.h>
  69. #include <time.h>
  70. #include <sys/time.h>
  71. #include <sys/poll.h>
  72. #include <limits.h>
  73. #include <corosync/swab.h>
  74. #include <corosync/cs_queue.h>
  75. #include <corosync/sq.h>
  76. #include <corosync/list.h>
  77. #include <corosync/hdb.h>
  78. #include <corosync/totem/coropoll.h>
  79. #define LOGSYS_UTILS_ONLY 1
  80. #include <corosync/engine/logsys.h>
  81. #include "totemsrp.h"
  82. #include "totemrrp.h"
  83. #include "totemnet.h"
  84. #include "wthread.h"
  85. #include "crypto.h"
  86. #include "tlist.h"
  87. #define LOCALHOST_IP inet_addr("127.0.0.1")
  88. #define QUEUE_RTR_ITEMS_SIZE_MAX 16384 /* allow 16384 retransmit items */
  89. #define RETRANS_MESSAGE_QUEUE_SIZE_MAX 16384 /* allow 500 messages to be queued */
  90. #define RECEIVED_MESSAGE_QUEUE_SIZE_MAX 500 /* allow 500 messages to be queued */
  91. #define MAXIOVS 5
  92. #define RETRANSMIT_ENTRIES_MAX 30
  93. #define TOKEN_SIZE_MAX 64000 /* bytes */
  94. #define LEAVE_DUMMY_NODEID 0
  95. /*
  96. * Rollover handling:
  97. * SEQNO_START_MSG is the starting sequence number after a new configuration
  98. * This should remain zero, unless testing overflow in which case
  99. * 0x7ffff000 and 0xfffff000 are good starting values.
  100. *
  101. * SEQNO_START_TOKEN is the starting sequence number after a new configuration
  102. * for a token. This should remain zero, unless testing overflow in which
  103. * case 07fffff00 or 0xffffff00 are good starting values.
  104. *
  105. * SEQNO_START_MSG is the starting sequence number after a new configuration
  106. * This should remain zero, unless testing overflow in which case
  107. * 0x7ffff000 and 0xfffff000 are good values to start with
  108. */
  109. #define SEQNO_START_MSG 0x0
  110. #define SEQNO_START_TOKEN 0x0
  111. /*
  112. * These can be used ot test different rollover points
  113. * #define SEQNO_START_MSG 0xfffffe00
  114. * #define SEQNO_START_TOKEN 0xfffffe00
  115. */
  116. /*
  117. * These can be used to test the error recovery algorithms
  118. * #define TEST_DROP_ORF_TOKEN_PERCENTAGE 30
  119. * #define TEST_DROP_COMMIT_TOKEN_PERCENTAGE 30
  120. * #define TEST_DROP_MCAST_PERCENTAGE 50
  121. * #define TEST_RECOVERY_MSG_COUNT 300
  122. */
  123. /*
  124. * we compare incoming messages to determine if their endian is
  125. * different - if so convert them
  126. *
  127. * do not change
  128. */
  129. #define ENDIAN_LOCAL 0xff22
  130. enum message_type {
  131. MESSAGE_TYPE_ORF_TOKEN = 0, /* Ordering, Reliability, Flow (ORF) control Token */
  132. MESSAGE_TYPE_MCAST = 1, /* ring ordered multicast message */
  133. MESSAGE_TYPE_MEMB_MERGE_DETECT = 2, /* merge rings if there are available rings */
  134. MESSAGE_TYPE_MEMB_JOIN = 3, /* membership join message */
  135. MESSAGE_TYPE_MEMB_COMMIT_TOKEN = 4, /* membership commit token */
  136. MESSAGE_TYPE_TOKEN_HOLD_CANCEL = 5, /* cancel the holding of the token */
  137. };
  138. enum encapsulation_type {
  139. MESSAGE_ENCAPSULATED = 1,
  140. MESSAGE_NOT_ENCAPSULATED = 2
  141. };
  142. /*
  143. * New membership algorithm local variables
  144. */
  145. struct srp_addr {
  146. struct totem_ip_address addr[INTERFACE_MAX];
  147. };
  148. struct consensus_list_item {
  149. struct srp_addr addr;
  150. int set;
  151. };
  152. struct token_callback_instance {
  153. struct list_head list;
  154. int (*callback_fn) (enum totem_callback_token_type type, const void *);
  155. enum totem_callback_token_type callback_type;
  156. int delete;
  157. void *data;
  158. };
  159. struct totemsrp_socket {
  160. int mcast;
  161. int token;
  162. };
  163. struct message_header {
  164. char type;
  165. char encapsulated;
  166. unsigned short endian_detector;
  167. unsigned int nodeid;
  168. } __attribute__((packed));
  169. struct mcast {
  170. struct message_header header;
  171. struct srp_addr system_from;
  172. unsigned int seq;
  173. int this_seqno;
  174. struct memb_ring_id ring_id;
  175. unsigned int node_id;
  176. int guarantee;
  177. } __attribute__((packed));
  178. struct rtr_item {
  179. struct memb_ring_id ring_id;
  180. unsigned int seq;
  181. }__attribute__((packed));
  182. struct orf_token {
  183. struct message_header header;
  184. unsigned int seq;
  185. unsigned int token_seq;
  186. unsigned int aru;
  187. unsigned int aru_addr;
  188. struct memb_ring_id ring_id;
  189. unsigned int backlog;
  190. unsigned int fcc;
  191. int retrans_flg;
  192. int rtr_list_entries;
  193. struct rtr_item rtr_list[0];
  194. }__attribute__((packed));
  195. struct memb_join {
  196. struct message_header header;
  197. struct srp_addr system_from;
  198. unsigned int proc_list_entries;
  199. unsigned int failed_list_entries;
  200. unsigned long long ring_seq;
  201. unsigned char end_of_memb_join[0];
  202. /*
  203. * These parts of the data structure are dynamic:
  204. * struct srp_addr proc_list[];
  205. * struct srp_addr failed_list[];
  206. */
  207. } __attribute__((packed));
  208. struct memb_merge_detect {
  209. struct message_header header;
  210. struct srp_addr system_from;
  211. struct memb_ring_id ring_id;
  212. } __attribute__((packed));
  213. struct token_hold_cancel {
  214. struct message_header header;
  215. struct memb_ring_id ring_id;
  216. } __attribute__((packed));
  217. struct memb_commit_token_memb_entry {
  218. struct memb_ring_id ring_id;
  219. unsigned int aru;
  220. unsigned int high_delivered;
  221. unsigned int received_flg;
  222. }__attribute__((packed));
  223. struct memb_commit_token {
  224. struct message_header header;
  225. unsigned int token_seq;
  226. struct memb_ring_id ring_id;
  227. unsigned int retrans_flg;
  228. int memb_index;
  229. int addr_entries;
  230. unsigned char end_of_commit_token[0];
  231. /*
  232. * These parts of the data structure are dynamic:
  233. *
  234. * struct srp_addr addr[PROCESSOR_COUNT_MAX];
  235. * struct memb_commit_token_memb_entry memb_list[PROCESSOR_COUNT_MAX];
  236. */
  237. }__attribute__((packed));
  238. struct message_item {
  239. struct mcast *mcast;
  240. unsigned int msg_len;
  241. };
  242. struct sort_queue_item {
  243. struct mcast *mcast;
  244. unsigned int msg_len;
  245. };
  246. struct orf_token_mcast_thread_state {
  247. char iobuf[9000];
  248. prng_state prng_state;
  249. };
  250. enum memb_state {
  251. MEMB_STATE_OPERATIONAL = 1,
  252. MEMB_STATE_GATHER = 2,
  253. MEMB_STATE_COMMIT = 3,
  254. MEMB_STATE_RECOVERY = 4
  255. };
  256. struct totemsrp_instance {
  257. int iface_changes;
  258. int failed_to_recv;
  259. /*
  260. * Flow control mcasts and remcasts on last and current orf_token
  261. */
  262. int fcc_remcast_last;
  263. int fcc_mcast_last;
  264. int fcc_remcast_current;
  265. struct consensus_list_item consensus_list[PROCESSOR_COUNT_MAX];
  266. int consensus_list_entries;
  267. struct srp_addr my_id;
  268. struct srp_addr my_proc_list[PROCESSOR_COUNT_MAX];
  269. struct srp_addr my_failed_list[PROCESSOR_COUNT_MAX];
  270. struct srp_addr my_new_memb_list[PROCESSOR_COUNT_MAX];
  271. struct srp_addr my_trans_memb_list[PROCESSOR_COUNT_MAX];
  272. struct srp_addr my_memb_list[PROCESSOR_COUNT_MAX];
  273. struct srp_addr my_deliver_memb_list[PROCESSOR_COUNT_MAX];
  274. struct srp_addr my_left_memb_list[PROCESSOR_COUNT_MAX];
  275. int my_proc_list_entries;
  276. int my_failed_list_entries;
  277. int my_new_memb_entries;
  278. int my_trans_memb_entries;
  279. int my_memb_entries;
  280. int my_deliver_memb_entries;
  281. int my_left_memb_entries;
  282. struct memb_ring_id my_ring_id;
  283. struct memb_ring_id my_old_ring_id;
  284. int my_aru_count;
  285. int my_merge_detect_timeout_outstanding;
  286. unsigned int my_last_aru;
  287. int my_seq_unchanged;
  288. int my_received_flg;
  289. unsigned int my_high_seq_received;
  290. unsigned int my_install_seq;
  291. int my_rotation_counter;
  292. int my_set_retrans_flg;
  293. int my_retrans_flg_count;
  294. unsigned int my_high_ring_delivered;
  295. int heartbeat_timeout;
  296. /*
  297. * Queues used to order, deliver, and recover messages
  298. */
  299. struct cs_queue new_message_queue;
  300. struct cs_queue retrans_message_queue;
  301. struct sq regular_sort_queue;
  302. struct sq recovery_sort_queue;
  303. /*
  304. * Received up to and including
  305. */
  306. unsigned int my_aru;
  307. unsigned int my_high_delivered;
  308. struct list_head token_callback_received_listhead;
  309. struct list_head token_callback_sent_listhead;
  310. char orf_token_retransmit[TOKEN_SIZE_MAX];
  311. int orf_token_retransmit_size;
  312. unsigned int my_token_seq;
  313. /*
  314. * Timers
  315. */
  316. poll_timer_handle timer_pause_timeout;
  317. poll_timer_handle timer_orf_token_timeout;
  318. poll_timer_handle timer_orf_token_retransmit_timeout;
  319. poll_timer_handle timer_orf_token_hold_retransmit_timeout;
  320. poll_timer_handle timer_merge_detect_timeout;
  321. poll_timer_handle memb_timer_state_gather_join_timeout;
  322. poll_timer_handle memb_timer_state_gather_consensus_timeout;
  323. poll_timer_handle memb_timer_state_commit_timeout;
  324. poll_timer_handle timer_heartbeat_timeout;
  325. /*
  326. * Function and data used to log messages
  327. */
  328. int totemsrp_log_level_security;
  329. int totemsrp_log_level_error;
  330. int totemsrp_log_level_warning;
  331. int totemsrp_log_level_notice;
  332. int totemsrp_log_level_debug;
  333. int totemsrp_subsys_id;
  334. void (*totemsrp_log_printf) (
  335. unsigned int rec_ident,
  336. const char *function,
  337. const char *file,
  338. int line,
  339. const char *format, ...)__attribute__((format(printf, 5, 6)));;
  340. enum memb_state memb_state;
  341. //TODO struct srp_addr next_memb;
  342. hdb_handle_t totemsrp_poll_handle;
  343. struct totem_ip_address mcast_address;
  344. void (*totemsrp_deliver_fn) (
  345. unsigned int nodeid,
  346. const void *msg,
  347. unsigned int msg_len,
  348. int endian_conversion_required);
  349. void (*totemsrp_confchg_fn) (
  350. enum totem_configuration_type configuration_type,
  351. const unsigned int *member_list, size_t member_list_entries,
  352. const unsigned int *left_list, size_t left_list_entries,
  353. const unsigned int *joined_list, size_t joined_list_entries,
  354. const struct memb_ring_id *ring_id);
  355. void (*totemsrp_service_ready_fn) (void);
  356. int global_seqno;
  357. int my_token_held;
  358. unsigned long long token_ring_id_seq;
  359. unsigned int last_released;
  360. unsigned int set_aru;
  361. int old_ring_state_saved;
  362. int old_ring_state_aru;
  363. unsigned int old_ring_state_high_seq_received;
  364. unsigned int my_last_seq;
  365. struct timeval tv_old;
  366. void *totemrrp_context;
  367. struct totem_config *totem_config;
  368. unsigned int use_heartbeat;
  369. unsigned int my_trc;
  370. unsigned int my_pbl;
  371. unsigned int my_cbl;
  372. unsigned long long int pause_timestamp;
  373. struct memb_commit_token *commit_token;
  374. totemsrp_stats_t stats;
  375. uint32_t orf_token_discard;
  376. void * token_recv_event_handle;
  377. void * token_sent_event_handle;
  378. char commit_token_storage[9000];
  379. };
  380. struct message_handlers {
  381. int count;
  382. int (*handler_functions[6]) (
  383. struct totemsrp_instance *instance,
  384. const void *msg,
  385. size_t msg_len,
  386. int endian_conversion_needed);
  387. };
  388. /*
  389. * forward decls
  390. */
  391. static int message_handler_orf_token (
  392. struct totemsrp_instance *instance,
  393. const void *msg,
  394. size_t msg_len,
  395. int endian_conversion_needed);
  396. static int message_handler_mcast (
  397. struct totemsrp_instance *instance,
  398. const void *msg,
  399. size_t msg_len,
  400. int endian_conversion_needed);
  401. static int message_handler_memb_merge_detect (
  402. struct totemsrp_instance *instance,
  403. const void *msg,
  404. size_t msg_len,
  405. int endian_conversion_needed);
  406. static int message_handler_memb_join (
  407. struct totemsrp_instance *instance,
  408. const void *msg,
  409. size_t msg_len,
  410. int endian_conversion_needed);
  411. static int message_handler_memb_commit_token (
  412. struct totemsrp_instance *instance,
  413. const void *msg,
  414. size_t msg_len,
  415. int endian_conversion_needed);
  416. static int message_handler_token_hold_cancel (
  417. struct totemsrp_instance *instance,
  418. const void *msg,
  419. size_t msg_len,
  420. int endian_conversion_needed);
  421. static void totemsrp_instance_initialize (struct totemsrp_instance *instance);
  422. static unsigned int main_msgs_missing (void);
  423. static void main_token_seqid_get (
  424. const void *msg,
  425. unsigned int *seqid,
  426. unsigned int *token_is);
  427. static void srp_addr_copy (struct srp_addr *dest, const struct srp_addr *src);
  428. static void srp_addr_to_nodeid (
  429. unsigned int *nodeid_out,
  430. struct srp_addr *srp_addr_in,
  431. unsigned int entries);
  432. static int srp_addr_equal (const struct srp_addr *a, const struct srp_addr *b);
  433. static void memb_leave_message_send (struct totemsrp_instance *instance);
  434. static void memb_ring_id_create_or_load (struct totemsrp_instance *, struct memb_ring_id *);
  435. static void token_callbacks_execute (struct totemsrp_instance *instance, enum totem_callback_token_type type);
  436. static void memb_state_gather_enter (struct totemsrp_instance *instance, int gather_from);
  437. static void messages_deliver_to_app (struct totemsrp_instance *instance, int skip, unsigned int end_point);
  438. static int orf_token_mcast (struct totemsrp_instance *instance, struct orf_token *oken,
  439. int fcc_mcasts_allowed);
  440. static void messages_free (struct totemsrp_instance *instance, unsigned int token_aru);
  441. static void memb_ring_id_set_and_store (struct totemsrp_instance *instance,
  442. const struct memb_ring_id *ring_id);
  443. static void target_set_completed (void *context);
  444. static void memb_state_commit_token_update (struct totemsrp_instance *instance);
  445. static void memb_state_commit_token_target_set (struct totemsrp_instance *instance);
  446. static int memb_state_commit_token_send (struct totemsrp_instance *instance);
  447. static int memb_state_commit_token_send_recovery (struct totemsrp_instance *instance, struct memb_commit_token *memb_commit_token);
  448. static void memb_state_commit_token_create (struct totemsrp_instance *instance);
  449. static int token_hold_cancel_send (struct totemsrp_instance *instance);
  450. static void orf_token_endian_convert (const struct orf_token *in, struct orf_token *out);
  451. static void memb_commit_token_endian_convert (const struct memb_commit_token *in, struct memb_commit_token *out);
  452. static void memb_join_endian_convert (const struct memb_join *in, struct memb_join *out);
  453. static void mcast_endian_convert (const struct mcast *in, struct mcast *out);
  454. static void memb_merge_detect_endian_convert (
  455. const struct memb_merge_detect *in,
  456. struct memb_merge_detect *out);
  457. static void srp_addr_copy_endian_convert (struct srp_addr *out, const struct srp_addr *in);
  458. static void timer_function_orf_token_timeout (void *data);
  459. static void timer_function_pause_timeout (void *data);
  460. static void timer_function_heartbeat_timeout (void *data);
  461. static void timer_function_token_retransmit_timeout (void *data);
  462. static void timer_function_token_hold_retransmit_timeout (void *data);
  463. static void timer_function_merge_detect_timeout (void *data);
  464. static void *totemsrp_buffer_alloc (struct totemsrp_instance *instance);
  465. static void totemsrp_buffer_release (struct totemsrp_instance *instance, void *ptr);
  466. void main_deliver_fn (
  467. void *context,
  468. const void *msg,
  469. unsigned int msg_len);
  470. void main_iface_change_fn (
  471. void *context,
  472. const struct totem_ip_address *iface_address,
  473. unsigned int iface_no);
  474. struct message_handlers totemsrp_message_handlers = {
  475. 6,
  476. {
  477. message_handler_orf_token,
  478. message_handler_mcast,
  479. message_handler_memb_merge_detect,
  480. message_handler_memb_join,
  481. message_handler_memb_commit_token,
  482. message_handler_token_hold_cancel
  483. }
  484. };
  485. static const char *rundir = NULL;
  486. #define log_printf(level, format, args...) \
  487. do { \
  488. instance->totemsrp_log_printf ( \
  489. LOGSYS_ENCODE_RECID(level, \
  490. instance->totemsrp_subsys_id, \
  491. LOGSYS_RECID_LOG), \
  492. __FUNCTION__, __FILE__, __LINE__, \
  493. format, ##args); \
  494. } while (0);
  495. static void totemsrp_instance_initialize (struct totemsrp_instance *instance)
  496. {
  497. memset (instance, 0, sizeof (struct totemsrp_instance));
  498. list_init (&instance->token_callback_received_listhead);
  499. list_init (&instance->token_callback_sent_listhead);
  500. instance->my_received_flg = 1;
  501. instance->my_token_seq = SEQNO_START_TOKEN - 1;
  502. instance->memb_state = MEMB_STATE_OPERATIONAL;
  503. instance->set_aru = -1;
  504. instance->my_aru = SEQNO_START_MSG;
  505. instance->my_high_seq_received = SEQNO_START_MSG;
  506. instance->my_high_delivered = SEQNO_START_MSG;
  507. instance->orf_token_discard = 0;
  508. instance->commit_token = (struct memb_commit_token *)instance->commit_token_storage;
  509. }
  510. static void main_token_seqid_get (
  511. const void *msg,
  512. unsigned int *seqid,
  513. unsigned int *token_is)
  514. {
  515. const struct orf_token *token = msg;
  516. *seqid = 0;
  517. *token_is = 0;
  518. if (token->header.type == MESSAGE_TYPE_ORF_TOKEN) {
  519. *seqid = token->token_seq;
  520. *token_is = 1;
  521. }
  522. }
  523. static unsigned int main_msgs_missing (void)
  524. {
  525. // TODO
  526. return (0);
  527. }
  528. static int pause_flush (struct totemsrp_instance *instance)
  529. {
  530. uint64_t now_msec;
  531. uint64_t timestamp_msec;
  532. int res = 0;
  533. now_msec = (timerlist_nano_current_get () / TIMERLIST_NS_IN_MSEC);
  534. timestamp_msec = instance->pause_timestamp / TIMERLIST_NS_IN_MSEC;
  535. if ((now_msec - timestamp_msec) > (instance->totem_config->token_timeout / 2)) {
  536. log_printf (instance->totemsrp_log_level_notice,
  537. "Process pause detected for %d ms, flushing membership messages.\n", (unsigned int)(now_msec - timestamp_msec));
  538. /*
  539. * -1 indicates an error from recvmsg
  540. */
  541. do {
  542. res = totemrrp_mcast_recv_empty (instance->totemrrp_context);
  543. } while (res == -1);
  544. }
  545. return (res);
  546. }
  547. static int token_event_stats_collector (enum totem_callback_token_type type, const void *void_instance)
  548. {
  549. struct totemsrp_instance *instance = (struct totemsrp_instance *)void_instance;
  550. uint32_t time_now;
  551. unsigned long long nano_secs = timerlist_nano_current_get ();
  552. time_now = (nano_secs / TIMERLIST_NS_IN_MSEC);
  553. if (type == TOTEM_CALLBACK_TOKEN_RECEIVED) {
  554. /* incr latest token the index */
  555. if (instance->stats.latest_token == (TOTEM_TOKEN_STATS_MAX - 1))
  556. instance->stats.latest_token = 0;
  557. else
  558. instance->stats.latest_token++;
  559. if (instance->stats.earliest_token == instance->stats.latest_token) {
  560. /* we have filled up the array, start overwriting */
  561. if (instance->stats.earliest_token == (TOTEM_TOKEN_STATS_MAX - 1))
  562. instance->stats.earliest_token = 0;
  563. else
  564. instance->stats.earliest_token++;
  565. instance->stats.token[instance->stats.earliest_token].rx = 0;
  566. instance->stats.token[instance->stats.earliest_token].tx = 0;
  567. instance->stats.token[instance->stats.earliest_token].backlog_calc = 0;
  568. }
  569. instance->stats.token[instance->stats.latest_token].rx = time_now;
  570. instance->stats.token[instance->stats.latest_token].tx = 0; /* in case we drop the token */
  571. } else {
  572. instance->stats.token[instance->stats.latest_token].tx = time_now;
  573. }
  574. return 0;
  575. }
  576. /*
  577. * Exported interfaces
  578. */
  579. int totemsrp_initialize (
  580. hdb_handle_t poll_handle,
  581. void **srp_context,
  582. struct totem_config *totem_config,
  583. totemmrp_stats_t *stats,
  584. void (*deliver_fn) (
  585. unsigned int nodeid,
  586. const void *msg,
  587. unsigned int msg_len,
  588. int endian_conversion_required),
  589. void (*confchg_fn) (
  590. enum totem_configuration_type configuration_type,
  591. const unsigned int *member_list, size_t member_list_entries,
  592. const unsigned int *left_list, size_t left_list_entries,
  593. const unsigned int *joined_list, size_t joined_list_entries,
  594. const struct memb_ring_id *ring_id))
  595. {
  596. struct totemsrp_instance *instance;
  597. unsigned int res;
  598. instance = malloc (sizeof (struct totemsrp_instance));
  599. if (instance == NULL) {
  600. goto error_exit;
  601. }
  602. rundir = getenv ("COROSYNC_RUN_DIR");
  603. if (rundir == NULL) {
  604. rundir = LOCALSTATEDIR "/lib/corosync";
  605. }
  606. res = mkdir (rundir, 0700);
  607. if (res == -1 && errno != EEXIST) {
  608. goto error_destroy;
  609. }
  610. res = chdir (rundir);
  611. if (res == -1) {
  612. goto error_destroy;
  613. }
  614. totemsrp_instance_initialize (instance);
  615. stats->srp = &instance->stats;
  616. instance->stats.latest_token = 0;
  617. instance->stats.earliest_token = 0;
  618. instance->totem_config = totem_config;
  619. /*
  620. * Configure logging
  621. */
  622. instance->totemsrp_log_level_security = totem_config->totem_logging_configuration.log_level_security;
  623. instance->totemsrp_log_level_error = totem_config->totem_logging_configuration.log_level_error;
  624. instance->totemsrp_log_level_warning = totem_config->totem_logging_configuration.log_level_warning;
  625. instance->totemsrp_log_level_notice = totem_config->totem_logging_configuration.log_level_notice;
  626. instance->totemsrp_log_level_debug = totem_config->totem_logging_configuration.log_level_debug;
  627. instance->totemsrp_subsys_id = totem_config->totem_logging_configuration.log_subsys_id;
  628. instance->totemsrp_log_printf = totem_config->totem_logging_configuration.log_printf;
  629. /*
  630. * Initialize local variables for totemsrp
  631. */
  632. totemip_copy (&instance->mcast_address, &totem_config->interfaces[0].mcast_addr);
  633. /*
  634. * Display totem configuration
  635. */
  636. log_printf (instance->totemsrp_log_level_debug,
  637. "Token Timeout (%d ms) retransmit timeout (%d ms)\n",
  638. totem_config->token_timeout, totem_config->token_retransmit_timeout);
  639. log_printf (instance->totemsrp_log_level_debug,
  640. "token hold (%d ms) retransmits before loss (%d retrans)\n",
  641. totem_config->token_hold_timeout, totem_config->token_retransmits_before_loss_const);
  642. log_printf (instance->totemsrp_log_level_debug,
  643. "join (%d ms) send_join (%d ms) consensus (%d ms) merge (%d ms)\n",
  644. totem_config->join_timeout,
  645. totem_config->send_join_timeout,
  646. totem_config->consensus_timeout,
  647. totem_config->merge_timeout);
  648. log_printf (instance->totemsrp_log_level_debug,
  649. "downcheck (%d ms) fail to recv const (%d msgs)\n",
  650. totem_config->downcheck_timeout, totem_config->fail_to_recv_const);
  651. log_printf (instance->totemsrp_log_level_debug,
  652. "seqno unchanged const (%d rotations) Maximum network MTU %d\n", totem_config->seqno_unchanged_const, totem_config->net_mtu);
  653. log_printf (instance->totemsrp_log_level_debug,
  654. "window size per rotation (%d messages) maximum messages per rotation (%d messages)\n",
  655. totem_config->window_size, totem_config->max_messages);
  656. log_printf (instance->totemsrp_log_level_debug,
  657. "missed count const (%d messages)\n",
  658. totem_config->miss_count_const);
  659. log_printf (instance->totemsrp_log_level_debug,
  660. "send threads (%d threads)\n", totem_config->threads);
  661. log_printf (instance->totemsrp_log_level_debug,
  662. "RRP token expired timeout (%d ms)\n",
  663. totem_config->rrp_token_expired_timeout);
  664. log_printf (instance->totemsrp_log_level_debug,
  665. "RRP token problem counter (%d ms)\n",
  666. totem_config->rrp_problem_count_timeout);
  667. log_printf (instance->totemsrp_log_level_debug,
  668. "RRP threshold (%d problem count)\n",
  669. totem_config->rrp_problem_count_threshold);
  670. log_printf (instance->totemsrp_log_level_debug,
  671. "RRP mode set to %s.\n", instance->totem_config->rrp_mode);
  672. log_printf (instance->totemsrp_log_level_debug,
  673. "heartbeat_failures_allowed (%d)\n", totem_config->heartbeat_failures_allowed);
  674. log_printf (instance->totemsrp_log_level_debug,
  675. "max_network_delay (%d ms)\n", totem_config->max_network_delay);
  676. cs_queue_init (&instance->retrans_message_queue, RETRANS_MESSAGE_QUEUE_SIZE_MAX,
  677. sizeof (struct message_item));
  678. sq_init (&instance->regular_sort_queue,
  679. QUEUE_RTR_ITEMS_SIZE_MAX, sizeof (struct sort_queue_item), 0);
  680. sq_init (&instance->recovery_sort_queue,
  681. QUEUE_RTR_ITEMS_SIZE_MAX, sizeof (struct sort_queue_item), 0);
  682. instance->totemsrp_poll_handle = poll_handle;
  683. instance->totemsrp_deliver_fn = deliver_fn;
  684. instance->totemsrp_confchg_fn = confchg_fn;
  685. instance->use_heartbeat = 1;
  686. timer_function_pause_timeout (instance);
  687. if ( totem_config->heartbeat_failures_allowed == 0 ) {
  688. log_printf (instance->totemsrp_log_level_debug,
  689. "HeartBeat is Disabled. To enable set heartbeat_failures_allowed > 0\n");
  690. instance->use_heartbeat = 0;
  691. }
  692. if (instance->use_heartbeat) {
  693. instance->heartbeat_timeout
  694. = (totem_config->heartbeat_failures_allowed) * totem_config->token_retransmit_timeout
  695. + totem_config->max_network_delay;
  696. if (instance->heartbeat_timeout >= totem_config->token_timeout) {
  697. log_printf (instance->totemsrp_log_level_debug,
  698. "total heartbeat_timeout (%d ms) is not less than token timeout (%d ms)\n",
  699. instance->heartbeat_timeout,
  700. totem_config->token_timeout);
  701. log_printf (instance->totemsrp_log_level_debug,
  702. "heartbeat_timeout = heartbeat_failures_allowed * token_retransmit_timeout + max_network_delay\n");
  703. log_printf (instance->totemsrp_log_level_debug,
  704. "heartbeat timeout should be less than the token timeout. HeartBeat is Diabled !!\n");
  705. instance->use_heartbeat = 0;
  706. }
  707. else {
  708. log_printf (instance->totemsrp_log_level_debug,
  709. "total heartbeat_timeout (%d ms)\n", instance->heartbeat_timeout);
  710. }
  711. }
  712. totemrrp_initialize (
  713. poll_handle,
  714. &instance->totemrrp_context,
  715. totem_config,
  716. instance,
  717. main_deliver_fn,
  718. main_iface_change_fn,
  719. main_token_seqid_get,
  720. main_msgs_missing,
  721. target_set_completed);
  722. /*
  723. * Must have net_mtu adjusted by totemrrp_initialize first
  724. */
  725. cs_queue_init (&instance->new_message_queue,
  726. MESSAGE_QUEUE_MAX,
  727. sizeof (struct message_item));
  728. totemsrp_callback_token_create (instance,
  729. &instance->token_recv_event_handle,
  730. TOTEM_CALLBACK_TOKEN_RECEIVED,
  731. 0,
  732. token_event_stats_collector,
  733. instance);
  734. totemsrp_callback_token_create (instance,
  735. &instance->token_sent_event_handle,
  736. TOTEM_CALLBACK_TOKEN_SENT,
  737. 0,
  738. token_event_stats_collector,
  739. instance);
  740. *srp_context = instance;
  741. return (0);
  742. error_destroy:
  743. free (instance);
  744. error_exit:
  745. return (-1);
  746. }
  747. void totemsrp_finalize (
  748. void *srp_context)
  749. {
  750. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  751. memb_leave_message_send (instance);
  752. free (srp_context);
  753. }
  754. int totemsrp_ifaces_get (
  755. void *srp_context,
  756. unsigned int nodeid,
  757. struct totem_ip_address *interfaces,
  758. char ***status,
  759. unsigned int *iface_count)
  760. {
  761. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  762. int res = 0;
  763. unsigned int found = 0;
  764. unsigned int i;
  765. for (i = 0; i < instance->my_memb_entries; i++) {
  766. if (instance->my_memb_list[i].addr[0].nodeid == nodeid) {
  767. found = 1;
  768. break;
  769. }
  770. }
  771. if (found) {
  772. memcpy (interfaces, &instance->my_memb_list[i],
  773. sizeof (struct srp_addr));
  774. *iface_count = instance->totem_config->interface_count;
  775. goto finish;
  776. }
  777. for (i = 0; i < instance->my_left_memb_entries; i++) {
  778. if (instance->my_left_memb_list[i].addr[0].nodeid == nodeid) {
  779. found = 1;
  780. break;
  781. }
  782. }
  783. if (found) {
  784. memcpy (interfaces, &instance->my_left_memb_list[i],
  785. sizeof (struct srp_addr));
  786. *iface_count = instance->totem_config->interface_count;
  787. } else {
  788. res = -1;
  789. }
  790. finish:
  791. totemrrp_ifaces_get (instance->totemrrp_context, status, NULL);
  792. return (res);
  793. }
  794. int totemsrp_crypto_set (
  795. void *srp_context,
  796. unsigned int type)
  797. {
  798. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  799. int res;
  800. res = totemrrp_crypto_set(instance->totemrrp_context, type);
  801. return (res);
  802. }
  803. unsigned int totemsrp_my_nodeid_get (
  804. void *srp_context)
  805. {
  806. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  807. unsigned int res;
  808. res = instance->totem_config->interfaces[0].boundto.nodeid;
  809. return (res);
  810. }
  811. int totemsrp_my_family_get (
  812. void *srp_context)
  813. {
  814. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  815. int res;
  816. res = instance->totem_config->interfaces[0].boundto.family;
  817. return (res);
  818. }
  819. int totemsrp_ring_reenable (
  820. void *srp_context)
  821. {
  822. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  823. totemrrp_ring_reenable (instance->totemrrp_context);
  824. return (0);
  825. }
  826. /*
  827. * Set operations for use by the membership algorithm
  828. */
  829. static int srp_addr_equal (const struct srp_addr *a, const struct srp_addr *b)
  830. {
  831. unsigned int i;
  832. unsigned int res;
  833. for (i = 0; i < 1; i++) {
  834. res = totemip_equal (&a->addr[i], &b->addr[i]);
  835. if (res == 0) {
  836. return (0);
  837. }
  838. }
  839. return (1);
  840. }
  841. static void srp_addr_copy (struct srp_addr *dest, const struct srp_addr *src)
  842. {
  843. unsigned int i;
  844. for (i = 0; i < INTERFACE_MAX; i++) {
  845. totemip_copy (&dest->addr[i], &src->addr[i]);
  846. }
  847. }
  848. static void srp_addr_to_nodeid (
  849. unsigned int *nodeid_out,
  850. struct srp_addr *srp_addr_in,
  851. unsigned int entries)
  852. {
  853. unsigned int i;
  854. for (i = 0; i < entries; i++) {
  855. nodeid_out[i] = srp_addr_in[i].addr[0].nodeid;
  856. }
  857. }
  858. static void srp_addr_copy_endian_convert (struct srp_addr *out, const struct srp_addr *in)
  859. {
  860. int i;
  861. for (i = 0; i < INTERFACE_MAX; i++) {
  862. totemip_copy_endian_convert (&out->addr[i], &in->addr[i]);
  863. }
  864. }
  865. static void memb_consensus_reset (struct totemsrp_instance *instance)
  866. {
  867. instance->consensus_list_entries = 0;
  868. }
  869. static void memb_set_subtract (
  870. struct srp_addr *out_list, int *out_list_entries,
  871. struct srp_addr *one_list, int one_list_entries,
  872. struct srp_addr *two_list, int two_list_entries)
  873. {
  874. int found = 0;
  875. int i;
  876. int j;
  877. *out_list_entries = 0;
  878. for (i = 0; i < one_list_entries; i++) {
  879. for (j = 0; j < two_list_entries; j++) {
  880. if (srp_addr_equal (&one_list[i], &two_list[j])) {
  881. found = 1;
  882. break;
  883. }
  884. }
  885. if (found == 0) {
  886. srp_addr_copy (&out_list[*out_list_entries], &one_list[i]);
  887. *out_list_entries = *out_list_entries + 1;
  888. }
  889. found = 0;
  890. }
  891. }
  892. /*
  893. * Set consensus for a specific processor
  894. */
  895. static void memb_consensus_set (
  896. struct totemsrp_instance *instance,
  897. const struct srp_addr *addr)
  898. {
  899. int found = 0;
  900. int i;
  901. if (addr->addr[0].nodeid == LEAVE_DUMMY_NODEID)
  902. return;
  903. for (i = 0; i < instance->consensus_list_entries; i++) {
  904. if (srp_addr_equal(addr, &instance->consensus_list[i].addr)) {
  905. found = 1;
  906. break; /* found entry */
  907. }
  908. }
  909. srp_addr_copy (&instance->consensus_list[i].addr, addr);
  910. instance->consensus_list[i].set = 1;
  911. if (found == 0) {
  912. instance->consensus_list_entries++;
  913. }
  914. return;
  915. }
  916. /*
  917. * Is consensus set for a specific processor
  918. */
  919. static int memb_consensus_isset (
  920. struct totemsrp_instance *instance,
  921. const struct srp_addr *addr)
  922. {
  923. int i;
  924. for (i = 0; i < instance->consensus_list_entries; i++) {
  925. if (srp_addr_equal (addr, &instance->consensus_list[i].addr)) {
  926. return (instance->consensus_list[i].set);
  927. }
  928. }
  929. return (0);
  930. }
  931. /*
  932. * Is consensus agreed upon based upon consensus database
  933. */
  934. static int memb_consensus_agreed (
  935. struct totemsrp_instance *instance)
  936. {
  937. struct srp_addr token_memb[PROCESSOR_COUNT_MAX];
  938. int token_memb_entries = 0;
  939. int agreed = 1;
  940. int i;
  941. memb_set_subtract (token_memb, &token_memb_entries,
  942. instance->my_proc_list, instance->my_proc_list_entries,
  943. instance->my_failed_list, instance->my_failed_list_entries);
  944. for (i = 0; i < token_memb_entries; i++) {
  945. if (memb_consensus_isset (instance, &token_memb[i]) == 0) {
  946. agreed = 0;
  947. break;
  948. }
  949. }
  950. assert (token_memb_entries >= 1);
  951. return (agreed);
  952. }
  953. static void memb_consensus_notset (
  954. struct totemsrp_instance *instance,
  955. struct srp_addr *no_consensus_list,
  956. int *no_consensus_list_entries,
  957. struct srp_addr *comparison_list,
  958. int comparison_list_entries)
  959. {
  960. int i;
  961. *no_consensus_list_entries = 0;
  962. for (i = 0; i < instance->my_proc_list_entries; i++) {
  963. if (memb_consensus_isset (instance, &instance->my_proc_list[i]) == 0) {
  964. srp_addr_copy (&no_consensus_list[*no_consensus_list_entries], &instance->my_proc_list[i]);
  965. *no_consensus_list_entries = *no_consensus_list_entries + 1;
  966. }
  967. }
  968. }
  969. /*
  970. * Is set1 equal to set2 Entries can be in different orders
  971. */
  972. static int memb_set_equal (
  973. struct srp_addr *set1, int set1_entries,
  974. struct srp_addr *set2, int set2_entries)
  975. {
  976. int i;
  977. int j;
  978. int found = 0;
  979. if (set1_entries != set2_entries) {
  980. return (0);
  981. }
  982. for (i = 0; i < set2_entries; i++) {
  983. for (j = 0; j < set1_entries; j++) {
  984. if (srp_addr_equal (&set1[j], &set2[i])) {
  985. found = 1;
  986. break;
  987. }
  988. }
  989. if (found == 0) {
  990. return (0);
  991. }
  992. found = 0;
  993. }
  994. return (1);
  995. }
  996. /*
  997. * Is subset fully contained in fullset
  998. */
  999. static int memb_set_subset (
  1000. const struct srp_addr *subset, int subset_entries,
  1001. const struct srp_addr *fullset, int fullset_entries)
  1002. {
  1003. int i;
  1004. int j;
  1005. int found = 0;
  1006. if (subset_entries > fullset_entries) {
  1007. return (0);
  1008. }
  1009. for (i = 0; i < subset_entries; i++) {
  1010. for (j = 0; j < fullset_entries; j++) {
  1011. if (srp_addr_equal (&subset[i], &fullset[j])) {
  1012. found = 1;
  1013. }
  1014. }
  1015. if (found == 0) {
  1016. return (0);
  1017. }
  1018. found = 0;
  1019. }
  1020. return (1);
  1021. }
  1022. /*
  1023. * merge subset into fullset taking care not to add duplicates
  1024. */
  1025. static void memb_set_merge (
  1026. const struct srp_addr *subset, int subset_entries,
  1027. struct srp_addr *fullset, int *fullset_entries)
  1028. {
  1029. int found = 0;
  1030. int i;
  1031. int j;
  1032. for (i = 0; i < subset_entries; i++) {
  1033. for (j = 0; j < *fullset_entries; j++) {
  1034. if (srp_addr_equal (&fullset[j], &subset[i])) {
  1035. found = 1;
  1036. break;
  1037. }
  1038. }
  1039. if (found == 0) {
  1040. srp_addr_copy (&fullset[*fullset_entries], &subset[i]);
  1041. *fullset_entries = *fullset_entries + 1;
  1042. }
  1043. found = 0;
  1044. }
  1045. return;
  1046. }
  1047. static void memb_set_and_with_ring_id (
  1048. struct srp_addr *set1,
  1049. struct memb_ring_id *set1_ring_ids,
  1050. int set1_entries,
  1051. struct srp_addr *set2,
  1052. int set2_entries,
  1053. struct memb_ring_id *old_ring_id,
  1054. struct srp_addr *and,
  1055. int *and_entries)
  1056. {
  1057. int i;
  1058. int j;
  1059. int found = 0;
  1060. *and_entries = 0;
  1061. for (i = 0; i < set2_entries; i++) {
  1062. for (j = 0; j < set1_entries; j++) {
  1063. if (srp_addr_equal (&set1[j], &set2[i])) {
  1064. if (memcmp (&set1_ring_ids[j], old_ring_id, sizeof (struct memb_ring_id)) == 0) {
  1065. found = 1;
  1066. }
  1067. break;
  1068. }
  1069. }
  1070. if (found) {
  1071. srp_addr_copy (&and[*and_entries], &set1[j]);
  1072. *and_entries = *and_entries + 1;
  1073. }
  1074. found = 0;
  1075. }
  1076. return;
  1077. }
  1078. #ifdef CODE_COVERAGE
  1079. static void memb_set_print (
  1080. char *string,
  1081. struct srp_addr *list,
  1082. int list_entries)
  1083. {
  1084. int i;
  1085. int j;
  1086. printf ("List '%s' contains %d entries:\n", string, list_entries);
  1087. for (i = 0; i < list_entries; i++) {
  1088. for (j = 0; j < INTERFACE_MAX; j++) {
  1089. printf ("Address %d\n", i);
  1090. printf ("\tiface %d %s\n", j, totemip_print (&list[i].addr[j]));
  1091. printf ("family %d\n", list[i].addr[j].family);
  1092. }
  1093. }
  1094. }
  1095. #endif
  1096. static void *totemsrp_buffer_alloc (struct totemsrp_instance *instance)
  1097. {
  1098. assert (instance != NULL);
  1099. return totemrrp_buffer_alloc (instance->totemrrp_context);
  1100. }
  1101. static void totemsrp_buffer_release (struct totemsrp_instance *instance, void *ptr)
  1102. {
  1103. assert (instance != NULL);
  1104. totemrrp_buffer_release (instance->totemrrp_context, ptr);
  1105. }
  1106. static void reset_token_retransmit_timeout (struct totemsrp_instance *instance)
  1107. {
  1108. poll_timer_delete (instance->totemsrp_poll_handle,
  1109. instance->timer_orf_token_retransmit_timeout);
  1110. poll_timer_add (instance->totemsrp_poll_handle,
  1111. instance->totem_config->token_retransmit_timeout,
  1112. (void *)instance,
  1113. timer_function_token_retransmit_timeout,
  1114. &instance->timer_orf_token_retransmit_timeout);
  1115. }
  1116. static void start_merge_detect_timeout (struct totemsrp_instance *instance)
  1117. {
  1118. if (instance->my_merge_detect_timeout_outstanding == 0) {
  1119. poll_timer_add (instance->totemsrp_poll_handle,
  1120. instance->totem_config->merge_timeout,
  1121. (void *)instance,
  1122. timer_function_merge_detect_timeout,
  1123. &instance->timer_merge_detect_timeout);
  1124. instance->my_merge_detect_timeout_outstanding = 1;
  1125. }
  1126. }
  1127. static void cancel_merge_detect_timeout (struct totemsrp_instance *instance)
  1128. {
  1129. poll_timer_delete (instance->totemsrp_poll_handle, instance->timer_merge_detect_timeout);
  1130. instance->my_merge_detect_timeout_outstanding = 0;
  1131. }
  1132. /*
  1133. * ring_state_* is used to save and restore the sort queue
  1134. * state when a recovery operation fails (and enters gather)
  1135. */
  1136. static void old_ring_state_save (struct totemsrp_instance *instance)
  1137. {
  1138. if (instance->old_ring_state_saved == 0) {
  1139. instance->old_ring_state_saved = 1;
  1140. memcpy (&instance->my_old_ring_id, &instance->my_ring_id,
  1141. sizeof (struct memb_ring_id));
  1142. instance->old_ring_state_aru = instance->my_aru;
  1143. instance->old_ring_state_high_seq_received = instance->my_high_seq_received;
  1144. log_printf (instance->totemsrp_log_level_debug,
  1145. "Saving state aru %x high seq received %x\n",
  1146. instance->my_aru, instance->my_high_seq_received);
  1147. }
  1148. }
  1149. static void old_ring_state_restore (struct totemsrp_instance *instance)
  1150. {
  1151. instance->my_aru = instance->old_ring_state_aru;
  1152. instance->my_high_seq_received = instance->old_ring_state_high_seq_received;
  1153. log_printf (instance->totemsrp_log_level_debug,
  1154. "Restoring instance->my_aru %x my high seq received %x\n",
  1155. instance->my_aru, instance->my_high_seq_received);
  1156. }
  1157. static void old_ring_state_reset (struct totemsrp_instance *instance)
  1158. {
  1159. log_printf (instance->totemsrp_log_level_debug,
  1160. "Resetting old ring state\n");
  1161. instance->old_ring_state_saved = 0;
  1162. }
  1163. static void reset_pause_timeout (struct totemsrp_instance *instance)
  1164. {
  1165. poll_timer_delete (instance->totemsrp_poll_handle, instance->timer_pause_timeout);
  1166. poll_timer_add (instance->totemsrp_poll_handle,
  1167. instance->totem_config->token_timeout / 5,
  1168. (void *)instance,
  1169. timer_function_pause_timeout,
  1170. &instance->timer_pause_timeout);
  1171. }
  1172. static void reset_token_timeout (struct totemsrp_instance *instance) {
  1173. poll_timer_delete (instance->totemsrp_poll_handle, instance->timer_orf_token_timeout);
  1174. poll_timer_add (instance->totemsrp_poll_handle,
  1175. instance->totem_config->token_timeout,
  1176. (void *)instance,
  1177. timer_function_orf_token_timeout,
  1178. &instance->timer_orf_token_timeout);
  1179. }
  1180. static void reset_heartbeat_timeout (struct totemsrp_instance *instance) {
  1181. poll_timer_delete (instance->totemsrp_poll_handle, instance->timer_heartbeat_timeout);
  1182. poll_timer_add (instance->totemsrp_poll_handle,
  1183. instance->heartbeat_timeout,
  1184. (void *)instance,
  1185. timer_function_heartbeat_timeout,
  1186. &instance->timer_heartbeat_timeout);
  1187. }
  1188. static void cancel_token_timeout (struct totemsrp_instance *instance) {
  1189. poll_timer_delete (instance->totemsrp_poll_handle, instance->timer_orf_token_timeout);
  1190. }
  1191. static void cancel_heartbeat_timeout (struct totemsrp_instance *instance) {
  1192. poll_timer_delete (instance->totemsrp_poll_handle, instance->timer_heartbeat_timeout);
  1193. }
  1194. static void cancel_token_retransmit_timeout (struct totemsrp_instance *instance)
  1195. {
  1196. poll_timer_delete (instance->totemsrp_poll_handle, instance->timer_orf_token_retransmit_timeout);
  1197. }
  1198. static void start_token_hold_retransmit_timeout (struct totemsrp_instance *instance)
  1199. {
  1200. poll_timer_add (instance->totemsrp_poll_handle,
  1201. instance->totem_config->token_hold_timeout,
  1202. (void *)instance,
  1203. timer_function_token_hold_retransmit_timeout,
  1204. &instance->timer_orf_token_hold_retransmit_timeout);
  1205. }
  1206. static void cancel_token_hold_retransmit_timeout (struct totemsrp_instance *instance)
  1207. {
  1208. poll_timer_delete (instance->totemsrp_poll_handle,
  1209. instance->timer_orf_token_hold_retransmit_timeout);
  1210. }
  1211. static void memb_state_consensus_timeout_expired (
  1212. struct totemsrp_instance *instance)
  1213. {
  1214. struct srp_addr no_consensus_list[PROCESSOR_COUNT_MAX];
  1215. int no_consensus_list_entries;
  1216. instance->stats.consensus_timeouts++;
  1217. if (memb_consensus_agreed (instance)) {
  1218. memb_consensus_reset (instance);
  1219. memb_consensus_set (instance, &instance->my_id);
  1220. reset_token_timeout (instance); // REVIEWED
  1221. } else {
  1222. memb_consensus_notset (
  1223. instance,
  1224. no_consensus_list,
  1225. &no_consensus_list_entries,
  1226. instance->my_proc_list,
  1227. instance->my_proc_list_entries);
  1228. memb_set_merge (no_consensus_list, no_consensus_list_entries,
  1229. instance->my_failed_list, &instance->my_failed_list_entries);
  1230. memb_state_gather_enter (instance, 0);
  1231. }
  1232. }
  1233. static void memb_join_message_send (struct totemsrp_instance *instance);
  1234. static void memb_merge_detect_transmit (struct totemsrp_instance *instance);
  1235. /*
  1236. * Timers used for various states of the membership algorithm
  1237. */
  1238. static void timer_function_pause_timeout (void *data)
  1239. {
  1240. struct totemsrp_instance *instance = data;
  1241. instance->pause_timestamp = timerlist_nano_current_get ();
  1242. reset_pause_timeout (instance);
  1243. }
  1244. static void memb_recovery_state_token_loss (struct totemsrp_instance *instance)
  1245. {
  1246. old_ring_state_restore (instance);
  1247. memb_state_gather_enter (instance, 5);
  1248. instance->stats.recovery_token_lost++;
  1249. }
  1250. static void timer_function_orf_token_timeout (void *data)
  1251. {
  1252. struct totemsrp_instance *instance = data;
  1253. switch (instance->memb_state) {
  1254. case MEMB_STATE_OPERATIONAL:
  1255. log_printf (instance->totemsrp_log_level_debug,
  1256. "The token was lost in the OPERATIONAL state.\n");
  1257. log_printf (instance->totemsrp_log_level_notice,
  1258. "A processor failed, forming new configuration.\n");
  1259. totemrrp_iface_check (instance->totemrrp_context);
  1260. memb_state_gather_enter (instance, 2);
  1261. instance->stats.operational_token_lost++;
  1262. break;
  1263. case MEMB_STATE_GATHER:
  1264. log_printf (instance->totemsrp_log_level_debug,
  1265. "The consensus timeout expired.\n");
  1266. memb_state_consensus_timeout_expired (instance);
  1267. memb_state_gather_enter (instance, 3);
  1268. instance->stats.gather_token_lost++;
  1269. break;
  1270. case MEMB_STATE_COMMIT:
  1271. log_printf (instance->totemsrp_log_level_debug,
  1272. "The token was lost in the COMMIT state.\n");
  1273. memb_state_gather_enter (instance, 4);
  1274. instance->stats.commit_token_lost++;
  1275. break;
  1276. case MEMB_STATE_RECOVERY:
  1277. log_printf (instance->totemsrp_log_level_debug,
  1278. "The token was lost in the RECOVERY state.\n");
  1279. memb_recovery_state_token_loss (instance);
  1280. instance->orf_token_discard = 1;
  1281. break;
  1282. }
  1283. }
  1284. static void timer_function_heartbeat_timeout (void *data)
  1285. {
  1286. struct totemsrp_instance *instance = data;
  1287. log_printf (instance->totemsrp_log_level_debug,
  1288. "HeartBeat Timer expired Invoking token loss mechanism in state %d \n", instance->memb_state);
  1289. timer_function_orf_token_timeout(data);
  1290. }
  1291. static void memb_timer_function_state_gather (void *data)
  1292. {
  1293. struct totemsrp_instance *instance = data;
  1294. switch (instance->memb_state) {
  1295. case MEMB_STATE_OPERATIONAL:
  1296. case MEMB_STATE_RECOVERY:
  1297. assert (0); /* this should never happen */
  1298. break;
  1299. case MEMB_STATE_GATHER:
  1300. case MEMB_STATE_COMMIT:
  1301. memb_join_message_send (instance);
  1302. /*
  1303. * Restart the join timeout
  1304. `*/
  1305. poll_timer_delete (instance->totemsrp_poll_handle, instance->memb_timer_state_gather_join_timeout);
  1306. poll_timer_add (instance->totemsrp_poll_handle,
  1307. instance->totem_config->join_timeout,
  1308. (void *)instance,
  1309. memb_timer_function_state_gather,
  1310. &instance->memb_timer_state_gather_join_timeout);
  1311. break;
  1312. }
  1313. }
  1314. static void memb_timer_function_gather_consensus_timeout (void *data)
  1315. {
  1316. struct totemsrp_instance *instance = data;
  1317. memb_state_consensus_timeout_expired (instance);
  1318. }
  1319. static void deliver_messages_from_recovery_to_regular (struct totemsrp_instance *instance)
  1320. {
  1321. unsigned int i;
  1322. struct sort_queue_item *recovery_message_item;
  1323. struct sort_queue_item regular_message_item;
  1324. unsigned int range = 0;
  1325. int res;
  1326. void *ptr;
  1327. struct mcast *mcast;
  1328. log_printf (instance->totemsrp_log_level_debug,
  1329. "recovery to regular %x-%x\n", SEQNO_START_MSG + 1, instance->my_aru);
  1330. range = instance->my_aru - SEQNO_START_MSG;
  1331. /*
  1332. * Move messages from recovery to regular sort queue
  1333. */
  1334. // todo should i be initialized to 0 or 1 ?
  1335. for (i = 1; i <= range; i++) {
  1336. res = sq_item_get (&instance->recovery_sort_queue,
  1337. i + SEQNO_START_MSG, &ptr);
  1338. if (res != 0) {
  1339. continue;
  1340. }
  1341. recovery_message_item = ptr;
  1342. /*
  1343. * Convert recovery message into regular message
  1344. */
  1345. mcast = recovery_message_item->mcast;
  1346. if (mcast->header.encapsulated == MESSAGE_ENCAPSULATED) {
  1347. /*
  1348. * Message is a recovery message encapsulated
  1349. * in a new ring message
  1350. */
  1351. regular_message_item.mcast =
  1352. (struct mcast *)(((char *)recovery_message_item->mcast) + sizeof (struct mcast));
  1353. regular_message_item.msg_len =
  1354. recovery_message_item->msg_len - sizeof (struct mcast);
  1355. mcast = regular_message_item.mcast;
  1356. } else {
  1357. /*
  1358. * TODO this case shouldn't happen
  1359. */
  1360. continue;
  1361. }
  1362. log_printf (instance->totemsrp_log_level_debug,
  1363. "comparing if ring id is for this processors old ring seqno %d\n",
  1364. mcast->seq);
  1365. /*
  1366. * Only add this message to the regular sort
  1367. * queue if it was originated with the same ring
  1368. * id as the previous ring
  1369. */
  1370. if (memcmp (&instance->my_old_ring_id, &mcast->ring_id,
  1371. sizeof (struct memb_ring_id)) == 0) {
  1372. res = sq_item_inuse (&instance->regular_sort_queue, mcast->seq);
  1373. if (res == 0) {
  1374. sq_item_add (&instance->regular_sort_queue,
  1375. &regular_message_item, mcast->seq);
  1376. if (sq_lt_compare (instance->old_ring_state_high_seq_received, mcast->seq)) {
  1377. instance->old_ring_state_high_seq_received = mcast->seq;
  1378. }
  1379. }
  1380. } else {
  1381. log_printf (instance->totemsrp_log_level_debug,
  1382. "-not adding msg with seq no %x\n", mcast->seq);
  1383. }
  1384. }
  1385. }
  1386. /*
  1387. * Change states in the state machine of the membership algorithm
  1388. */
  1389. static void memb_state_operational_enter (struct totemsrp_instance *instance)
  1390. {
  1391. struct srp_addr joined_list[PROCESSOR_COUNT_MAX];
  1392. int joined_list_entries = 0;
  1393. unsigned int aru_save;
  1394. unsigned int joined_list_totemip[PROCESSOR_COUNT_MAX];
  1395. unsigned int trans_memb_list_totemip[PROCESSOR_COUNT_MAX];
  1396. unsigned int new_memb_list_totemip[PROCESSOR_COUNT_MAX];
  1397. unsigned int left_list[PROCESSOR_COUNT_MAX];
  1398. unsigned int i;
  1399. unsigned int res;
  1400. memb_consensus_reset (instance);
  1401. old_ring_state_reset (instance);
  1402. deliver_messages_from_recovery_to_regular (instance);
  1403. log_printf (instance->totemsrp_log_level_debug,
  1404. "Delivering to app %x to %x\n",
  1405. instance->my_high_delivered + 1, instance->old_ring_state_high_seq_received);
  1406. aru_save = instance->my_aru;
  1407. instance->my_aru = instance->old_ring_state_aru;
  1408. messages_deliver_to_app (instance, 0, instance->old_ring_state_high_seq_received);
  1409. /*
  1410. * Calculate joined and left list
  1411. */
  1412. memb_set_subtract (instance->my_left_memb_list,
  1413. &instance->my_left_memb_entries,
  1414. instance->my_memb_list, instance->my_memb_entries,
  1415. instance->my_trans_memb_list, instance->my_trans_memb_entries);
  1416. memb_set_subtract (joined_list, &joined_list_entries,
  1417. instance->my_new_memb_list, instance->my_new_memb_entries,
  1418. instance->my_trans_memb_list, instance->my_trans_memb_entries);
  1419. /*
  1420. * Install new membership
  1421. */
  1422. instance->my_memb_entries = instance->my_new_memb_entries;
  1423. memcpy (&instance->my_memb_list, instance->my_new_memb_list,
  1424. sizeof (struct srp_addr) * instance->my_memb_entries);
  1425. instance->last_released = 0;
  1426. instance->my_set_retrans_flg = 0;
  1427. /*
  1428. * Deliver transitional configuration to application
  1429. */
  1430. srp_addr_to_nodeid (left_list, instance->my_left_memb_list,
  1431. instance->my_left_memb_entries);
  1432. srp_addr_to_nodeid (trans_memb_list_totemip,
  1433. instance->my_trans_memb_list, instance->my_trans_memb_entries);
  1434. instance->totemsrp_confchg_fn (TOTEM_CONFIGURATION_TRANSITIONAL,
  1435. trans_memb_list_totemip, instance->my_trans_memb_entries,
  1436. left_list, instance->my_left_memb_entries,
  1437. 0, 0, &instance->my_ring_id);
  1438. // TODO we need to filter to ensure we only deliver those
  1439. // messages which are part of instance->my_deliver_memb
  1440. messages_deliver_to_app (instance, 1, instance->old_ring_state_high_seq_received);
  1441. instance->my_aru = aru_save;
  1442. /*
  1443. * Deliver regular configuration to application
  1444. */
  1445. srp_addr_to_nodeid (new_memb_list_totemip,
  1446. instance->my_new_memb_list, instance->my_new_memb_entries);
  1447. srp_addr_to_nodeid (joined_list_totemip, joined_list,
  1448. joined_list_entries);
  1449. instance->totemsrp_confchg_fn (TOTEM_CONFIGURATION_REGULAR,
  1450. new_memb_list_totemip, instance->my_new_memb_entries,
  1451. 0, 0,
  1452. joined_list_totemip, joined_list_entries, &instance->my_ring_id);
  1453. /*
  1454. * The recovery sort queue now becomes the regular
  1455. * sort queue. It is necessary to copy the state
  1456. * into the regular sort queue.
  1457. */
  1458. sq_copy (&instance->regular_sort_queue, &instance->recovery_sort_queue);
  1459. instance->my_last_aru = SEQNO_START_MSG;
  1460. /* When making my_proc_list smaller, ensure that the
  1461. * now non-used entries are zero-ed out. There are some suspect
  1462. * assert's that assume that there is always 2 entries in the list.
  1463. * These fail when my_proc_list is reduced to 1 entry (and the
  1464. * valid [0] entry is the same as the 'unused' [1] entry).
  1465. */
  1466. memset(instance->my_proc_list, 0,
  1467. sizeof (struct srp_addr) * instance->my_proc_list_entries);
  1468. instance->my_proc_list_entries = instance->my_new_memb_entries;
  1469. memcpy (instance->my_proc_list, instance->my_new_memb_list,
  1470. sizeof (struct srp_addr) * instance->my_memb_entries);
  1471. instance->my_failed_list_entries = 0;
  1472. instance->my_high_delivered = instance->my_aru;
  1473. for (i = 0; i <= instance->my_high_delivered; i++) {
  1474. void *ptr;
  1475. res = sq_item_get (&instance->regular_sort_queue, i, &ptr);
  1476. if (res == 0) {
  1477. struct sort_queue_item *regular_message;
  1478. regular_message = ptr;
  1479. free (regular_message->mcast);
  1480. }
  1481. }
  1482. sq_items_release (&instance->regular_sort_queue, instance->my_high_delivered);
  1483. instance->last_released = instance->my_high_delivered;
  1484. log_printf (instance->totemsrp_log_level_debug,
  1485. "entering OPERATIONAL state.\n");
  1486. log_printf (instance->totemsrp_log_level_notice,
  1487. "A processor joined or left the membership and a new membership was formed.\n");
  1488. instance->memb_state = MEMB_STATE_OPERATIONAL;
  1489. instance->stats.operational_entered++;
  1490. instance->stats.continuous_gather = 0;
  1491. instance->my_received_flg = 1;
  1492. reset_pause_timeout (instance);
  1493. /*
  1494. * Save ring id information from this configuration to determine
  1495. * which processors are transitioning from old regular configuration
  1496. * in to new regular configuration on the next configuration change
  1497. */
  1498. memcpy (&instance->my_old_ring_id, &instance->my_ring_id,
  1499. sizeof (struct memb_ring_id));
  1500. return;
  1501. }
  1502. static void memb_state_gather_enter (
  1503. struct totemsrp_instance *instance,
  1504. int gather_from)
  1505. {
  1506. instance->orf_token_discard = 1;
  1507. memb_set_merge (
  1508. &instance->my_id, 1,
  1509. instance->my_proc_list, &instance->my_proc_list_entries);
  1510. memb_join_message_send (instance);
  1511. /*
  1512. * Restart the join timeout
  1513. */
  1514. poll_timer_delete (instance->totemsrp_poll_handle, instance->memb_timer_state_gather_join_timeout);
  1515. poll_timer_add (instance->totemsrp_poll_handle,
  1516. instance->totem_config->join_timeout,
  1517. (void *)instance,
  1518. memb_timer_function_state_gather,
  1519. &instance->memb_timer_state_gather_join_timeout);
  1520. /*
  1521. * Restart the consensus timeout
  1522. */
  1523. poll_timer_delete (instance->totemsrp_poll_handle,
  1524. instance->memb_timer_state_gather_consensus_timeout);
  1525. poll_timer_add (instance->totemsrp_poll_handle,
  1526. instance->totem_config->consensus_timeout,
  1527. (void *)instance,
  1528. memb_timer_function_gather_consensus_timeout,
  1529. &instance->memb_timer_state_gather_consensus_timeout);
  1530. /*
  1531. * Cancel the token loss and token retransmission timeouts
  1532. */
  1533. cancel_token_retransmit_timeout (instance); // REVIEWED
  1534. cancel_token_timeout (instance); // REVIEWED
  1535. cancel_merge_detect_timeout (instance);
  1536. memb_consensus_reset (instance);
  1537. memb_consensus_set (instance, &instance->my_id);
  1538. log_printf (instance->totemsrp_log_level_debug,
  1539. "entering GATHER state from %d.\n", gather_from);
  1540. instance->memb_state = MEMB_STATE_GATHER;
  1541. instance->stats.gather_entered++;
  1542. instance->stats.continuous_gather++;
  1543. if (instance->stats.continuous_gather > MAX_NO_CONT_GATHER) {
  1544. log_printf (instance->totemsrp_log_level_warning,
  1545. "Totem is unable to form a cluster because of an "
  1546. "operating system or network fault. The most common "
  1547. "cause of this message is that the local firewall is "
  1548. "configured improperly.\n");
  1549. }
  1550. return;
  1551. }
  1552. static void timer_function_token_retransmit_timeout (void *data);
  1553. static void target_set_completed (
  1554. void *context)
  1555. {
  1556. struct totemsrp_instance *instance = (struct totemsrp_instance *)context;
  1557. memb_state_commit_token_send (instance);
  1558. }
  1559. static void memb_state_commit_enter (
  1560. struct totemsrp_instance *instance)
  1561. {
  1562. old_ring_state_save (instance);
  1563. memb_state_commit_token_update (instance);
  1564. memb_state_commit_token_target_set (instance);
  1565. poll_timer_delete (instance->totemsrp_poll_handle, instance->memb_timer_state_gather_join_timeout);
  1566. instance->memb_timer_state_gather_join_timeout = 0;
  1567. poll_timer_delete (instance->totemsrp_poll_handle, instance->memb_timer_state_gather_consensus_timeout);
  1568. instance->memb_timer_state_gather_consensus_timeout = 0;
  1569. memb_ring_id_set_and_store (instance, &instance->commit_token->ring_id);
  1570. instance->token_ring_id_seq = instance->my_ring_id.seq;
  1571. log_printf (instance->totemsrp_log_level_debug,
  1572. "entering COMMIT state.\n");
  1573. instance->memb_state = MEMB_STATE_COMMIT;
  1574. reset_token_retransmit_timeout (instance); // REVIEWED
  1575. reset_token_timeout (instance); // REVIEWED
  1576. instance->stats.commit_entered++;
  1577. instance->stats.continuous_gather = 0;
  1578. /*
  1579. * reset all flow control variables since we are starting a new ring
  1580. */
  1581. instance->my_trc = 0;
  1582. instance->my_pbl = 0;
  1583. instance->my_cbl = 0;
  1584. /*
  1585. * commit token sent after callback that token target has been set
  1586. */
  1587. }
  1588. static void memb_state_recovery_enter (
  1589. struct totemsrp_instance *instance,
  1590. struct memb_commit_token *commit_token)
  1591. {
  1592. int i;
  1593. int local_received_flg = 1;
  1594. unsigned int low_ring_aru;
  1595. unsigned int range = 0;
  1596. unsigned int messages_originated = 0;
  1597. const struct srp_addr *addr;
  1598. struct memb_commit_token_memb_entry *memb_list;
  1599. struct memb_ring_id my_new_memb_ring_id_list[PROCESSOR_COUNT_MAX];
  1600. addr = (const struct srp_addr *)commit_token->end_of_commit_token;
  1601. memb_list = (struct memb_commit_token_memb_entry *)(addr + commit_token->addr_entries);
  1602. log_printf (instance->totemsrp_log_level_debug,
  1603. "entering RECOVERY state.\n");
  1604. instance->orf_token_discard = 0;
  1605. instance->my_high_ring_delivered = 0;
  1606. sq_reinit (&instance->recovery_sort_queue, SEQNO_START_MSG);
  1607. cs_queue_reinit (&instance->retrans_message_queue);
  1608. low_ring_aru = instance->old_ring_state_high_seq_received;
  1609. memb_state_commit_token_send_recovery (instance, commit_token);
  1610. instance->my_token_seq = SEQNO_START_TOKEN - 1;
  1611. /*
  1612. * Build regular configuration
  1613. */
  1614. totemrrp_processor_count_set (
  1615. instance->totemrrp_context,
  1616. commit_token->addr_entries);
  1617. /*
  1618. * Build transitional configuration
  1619. */
  1620. for (i = 0; i < instance->my_new_memb_entries; i++) {
  1621. memcpy (&my_new_memb_ring_id_list[i],
  1622. &memb_list[i].ring_id,
  1623. sizeof (struct memb_ring_id));
  1624. }
  1625. memb_set_and_with_ring_id (
  1626. instance->my_new_memb_list,
  1627. my_new_memb_ring_id_list,
  1628. instance->my_new_memb_entries,
  1629. instance->my_memb_list,
  1630. instance->my_memb_entries,
  1631. &instance->my_old_ring_id,
  1632. instance->my_trans_memb_list,
  1633. &instance->my_trans_memb_entries);
  1634. for (i = 0; i < instance->my_trans_memb_entries; i++) {
  1635. log_printf (instance->totemsrp_log_level_debug,
  1636. "TRANS [%d] member %s:\n", i, totemip_print (&instance->my_trans_memb_list[i].addr[0]));
  1637. }
  1638. for (i = 0; i < instance->my_new_memb_entries; i++) {
  1639. log_printf (instance->totemsrp_log_level_debug,
  1640. "position [%d] member %s:\n", i, totemip_print (&addr[i].addr[0]));
  1641. log_printf (instance->totemsrp_log_level_debug,
  1642. "previous ring seq %lld rep %s\n",
  1643. memb_list[i].ring_id.seq,
  1644. totemip_print (&memb_list[i].ring_id.rep));
  1645. log_printf (instance->totemsrp_log_level_debug,
  1646. "aru %x high delivered %x received flag %d\n",
  1647. memb_list[i].aru,
  1648. memb_list[i].high_delivered,
  1649. memb_list[i].received_flg);
  1650. // assert (totemip_print (&memb_list[i].ring_id.rep) != 0);
  1651. }
  1652. /*
  1653. * Determine if any received flag is false
  1654. */
  1655. for (i = 0; i < commit_token->addr_entries; i++) {
  1656. if (memb_set_subset (&instance->my_new_memb_list[i], 1,
  1657. instance->my_trans_memb_list, instance->my_trans_memb_entries) &&
  1658. memb_list[i].received_flg == 0) {
  1659. instance->my_deliver_memb_entries = instance->my_trans_memb_entries;
  1660. memcpy (instance->my_deliver_memb_list, instance->my_trans_memb_list,
  1661. sizeof (struct srp_addr) * instance->my_trans_memb_entries);
  1662. local_received_flg = 0;
  1663. break;
  1664. }
  1665. }
  1666. if (local_received_flg == 1) {
  1667. goto no_originate;
  1668. } /* Else originate messages if we should */
  1669. /*
  1670. * Calculate my_low_ring_aru, instance->my_high_ring_delivered for the transitional membership
  1671. */
  1672. for (i = 0; i < commit_token->addr_entries; i++) {
  1673. if (memb_set_subset (&instance->my_new_memb_list[i], 1,
  1674. instance->my_deliver_memb_list,
  1675. instance->my_deliver_memb_entries) &&
  1676. memcmp (&instance->my_old_ring_id,
  1677. &memb_list[i].ring_id,
  1678. sizeof (struct memb_ring_id)) == 0) {
  1679. if (sq_lt_compare (memb_list[i].aru, low_ring_aru)) {
  1680. low_ring_aru = memb_list[i].aru;
  1681. }
  1682. if (sq_lt_compare (instance->my_high_ring_delivered, memb_list[i].high_delivered)) {
  1683. instance->my_high_ring_delivered = memb_list[i].high_delivered;
  1684. }
  1685. }
  1686. }
  1687. /*
  1688. * Copy all old ring messages to instance->retrans_message_queue
  1689. */
  1690. range = instance->old_ring_state_high_seq_received - low_ring_aru;
  1691. if (range == 0) {
  1692. /*
  1693. * No messages to copy
  1694. */
  1695. goto no_originate;
  1696. }
  1697. assert (range < QUEUE_RTR_ITEMS_SIZE_MAX);
  1698. log_printf (instance->totemsrp_log_level_debug,
  1699. "copying all old ring messages from %x-%x.\n",
  1700. low_ring_aru + 1, instance->old_ring_state_high_seq_received);
  1701. for (i = 1; i <= range; i++) {
  1702. struct sort_queue_item *sort_queue_item;
  1703. struct message_item message_item;
  1704. void *ptr;
  1705. int res;
  1706. res = sq_item_get (&instance->regular_sort_queue,
  1707. low_ring_aru + i, &ptr);
  1708. if (res != 0) {
  1709. continue;
  1710. }
  1711. sort_queue_item = ptr;
  1712. messages_originated++;
  1713. memset (&message_item, 0, sizeof (struct message_item));
  1714. // TODO LEAK
  1715. message_item.mcast = totemsrp_buffer_alloc (instance);
  1716. assert (message_item.mcast);
  1717. message_item.mcast->header.type = MESSAGE_TYPE_MCAST;
  1718. srp_addr_copy (&message_item.mcast->system_from, &instance->my_id);
  1719. message_item.mcast->header.encapsulated = MESSAGE_ENCAPSULATED;
  1720. message_item.mcast->header.nodeid = instance->my_id.addr[0].nodeid;
  1721. assert (message_item.mcast->header.nodeid);
  1722. message_item.mcast->header.endian_detector = ENDIAN_LOCAL;
  1723. memcpy (&message_item.mcast->ring_id, &instance->my_ring_id,
  1724. sizeof (struct memb_ring_id));
  1725. message_item.msg_len = sort_queue_item->msg_len + sizeof (struct mcast);
  1726. memcpy (((char *)message_item.mcast) + sizeof (struct mcast),
  1727. sort_queue_item->mcast,
  1728. sort_queue_item->msg_len);
  1729. cs_queue_item_add (&instance->retrans_message_queue, &message_item);
  1730. }
  1731. log_printf (instance->totemsrp_log_level_debug,
  1732. "Originated %d messages in RECOVERY.\n", messages_originated);
  1733. goto originated;
  1734. no_originate:
  1735. log_printf (instance->totemsrp_log_level_debug,
  1736. "Did not need to originate any messages in recovery.\n");
  1737. originated:
  1738. instance->my_aru = SEQNO_START_MSG;
  1739. instance->my_aru_count = 0;
  1740. instance->my_seq_unchanged = 0;
  1741. instance->my_high_seq_received = SEQNO_START_MSG;
  1742. instance->my_install_seq = SEQNO_START_MSG;
  1743. instance->last_released = SEQNO_START_MSG;
  1744. reset_token_timeout (instance); // REVIEWED
  1745. reset_token_retransmit_timeout (instance); // REVIEWED
  1746. instance->memb_state = MEMB_STATE_RECOVERY;
  1747. instance->stats.recovery_entered++;
  1748. instance->stats.continuous_gather = 0;
  1749. return;
  1750. }
  1751. void totemsrp_event_signal (void *srp_context, enum totem_event_type type, int value)
  1752. {
  1753. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  1754. token_hold_cancel_send (instance);
  1755. return;
  1756. }
  1757. int totemsrp_mcast (
  1758. void *srp_context,
  1759. struct iovec *iovec,
  1760. unsigned int iov_len,
  1761. int guarantee)
  1762. {
  1763. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  1764. int i;
  1765. struct message_item message_item;
  1766. char *addr;
  1767. unsigned int addr_idx;
  1768. if (cs_queue_is_full (&instance->new_message_queue)) {
  1769. log_printf (instance->totemsrp_log_level_debug, "queue full\n");
  1770. return (-1);
  1771. }
  1772. memset (&message_item, 0, sizeof (struct message_item));
  1773. /*
  1774. * Allocate pending item
  1775. */
  1776. message_item.mcast = totemsrp_buffer_alloc (instance);
  1777. if (message_item.mcast == 0) {
  1778. goto error_mcast;
  1779. }
  1780. /*
  1781. * Set mcast header
  1782. */
  1783. memset(message_item.mcast, 0, sizeof (struct mcast));
  1784. message_item.mcast->header.type = MESSAGE_TYPE_MCAST;
  1785. message_item.mcast->header.endian_detector = ENDIAN_LOCAL;
  1786. message_item.mcast->header.encapsulated = MESSAGE_NOT_ENCAPSULATED;
  1787. message_item.mcast->header.nodeid = instance->my_id.addr[0].nodeid;
  1788. assert (message_item.mcast->header.nodeid);
  1789. message_item.mcast->guarantee = guarantee;
  1790. srp_addr_copy (&message_item.mcast->system_from, &instance->my_id);
  1791. addr = (char *)message_item.mcast;
  1792. addr_idx = sizeof (struct mcast);
  1793. for (i = 0; i < iov_len; i++) {
  1794. memcpy (&addr[addr_idx], iovec[i].iov_base, iovec[i].iov_len);
  1795. addr_idx += iovec[i].iov_len;
  1796. }
  1797. message_item.msg_len = addr_idx;
  1798. log_printf (instance->totemsrp_log_level_debug, "mcasted message added to pending queue\n");
  1799. instance->stats.mcast_tx++;
  1800. cs_queue_item_add (&instance->new_message_queue, &message_item);
  1801. return (0);
  1802. error_mcast:
  1803. return (-1);
  1804. }
  1805. /*
  1806. * Determine if there is room to queue a new message
  1807. */
  1808. int totemsrp_avail (void *srp_context)
  1809. {
  1810. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  1811. int avail;
  1812. cs_queue_avail (&instance->new_message_queue, &avail);
  1813. return (avail);
  1814. }
  1815. /*
  1816. * ORF Token Management
  1817. */
  1818. /*
  1819. * Recast message to mcast group if it is available
  1820. */
  1821. static int orf_token_remcast (
  1822. struct totemsrp_instance *instance,
  1823. int seq)
  1824. {
  1825. struct sort_queue_item *sort_queue_item;
  1826. int res;
  1827. void *ptr;
  1828. struct sq *sort_queue;
  1829. if (instance->memb_state == MEMB_STATE_RECOVERY) {
  1830. sort_queue = &instance->recovery_sort_queue;
  1831. } else {
  1832. sort_queue = &instance->regular_sort_queue;
  1833. }
  1834. res = sq_in_range (sort_queue, seq);
  1835. if (res == 0) {
  1836. log_printf (instance->totemsrp_log_level_debug, "sq not in range\n");
  1837. return (-1);
  1838. }
  1839. /*
  1840. * Get RTR item at seq, if not available, return
  1841. */
  1842. res = sq_item_get (sort_queue, seq, &ptr);
  1843. if (res != 0) {
  1844. return -1;
  1845. }
  1846. sort_queue_item = ptr;
  1847. totemrrp_mcast_noflush_send (
  1848. instance->totemrrp_context,
  1849. sort_queue_item->mcast,
  1850. sort_queue_item->msg_len);
  1851. return (0);
  1852. }
  1853. /*
  1854. * Free all freeable messages from ring
  1855. */
  1856. static void messages_free (
  1857. struct totemsrp_instance *instance,
  1858. unsigned int token_aru)
  1859. {
  1860. struct sort_queue_item *regular_message;
  1861. unsigned int i;
  1862. int res;
  1863. int log_release = 0;
  1864. unsigned int release_to;
  1865. unsigned int range = 0;
  1866. release_to = token_aru;
  1867. if (sq_lt_compare (instance->my_last_aru, release_to)) {
  1868. release_to = instance->my_last_aru;
  1869. }
  1870. if (sq_lt_compare (instance->my_high_delivered, release_to)) {
  1871. release_to = instance->my_high_delivered;
  1872. }
  1873. /*
  1874. * Ensure we dont try release before an already released point
  1875. */
  1876. if (sq_lt_compare (release_to, instance->last_released)) {
  1877. return;
  1878. }
  1879. range = release_to - instance->last_released;
  1880. assert (range < QUEUE_RTR_ITEMS_SIZE_MAX);
  1881. /*
  1882. * Release retransmit list items if group aru indicates they are transmitted
  1883. */
  1884. for (i = 1; i <= range; i++) {
  1885. void *ptr;
  1886. res = sq_item_get (&instance->regular_sort_queue,
  1887. instance->last_released + i, &ptr);
  1888. if (res == 0) {
  1889. regular_message = ptr;
  1890. totemsrp_buffer_release (instance, regular_message->mcast);
  1891. }
  1892. sq_items_release (&instance->regular_sort_queue,
  1893. instance->last_released + i);
  1894. log_release = 1;
  1895. }
  1896. instance->last_released += range;
  1897. if (log_release) {
  1898. log_printf (instance->totemsrp_log_level_debug,
  1899. "releasing messages up to and including %x\n", release_to);
  1900. }
  1901. }
  1902. static void update_aru (
  1903. struct totemsrp_instance *instance)
  1904. {
  1905. unsigned int i;
  1906. int res;
  1907. struct sq *sort_queue;
  1908. unsigned int range;
  1909. unsigned int my_aru_saved = 0;
  1910. if (instance->memb_state == MEMB_STATE_RECOVERY) {
  1911. sort_queue = &instance->recovery_sort_queue;
  1912. } else {
  1913. sort_queue = &instance->regular_sort_queue;
  1914. }
  1915. range = instance->my_high_seq_received - instance->my_aru;
  1916. if (range > 1024) {
  1917. return;
  1918. }
  1919. my_aru_saved = instance->my_aru;
  1920. for (i = 1; i <= range; i++) {
  1921. void *ptr;
  1922. res = sq_item_get (sort_queue, my_aru_saved + i, &ptr);
  1923. /*
  1924. * If hole, stop updating aru
  1925. */
  1926. if (res != 0) {
  1927. break;
  1928. }
  1929. }
  1930. instance->my_aru += i - 1;
  1931. }
  1932. /*
  1933. * Multicasts pending messages onto the ring (requires orf_token possession)
  1934. */
  1935. static int orf_token_mcast (
  1936. struct totemsrp_instance *instance,
  1937. struct orf_token *token,
  1938. int fcc_mcasts_allowed)
  1939. {
  1940. struct message_item *message_item = 0;
  1941. struct cs_queue *mcast_queue;
  1942. struct sq *sort_queue;
  1943. struct sort_queue_item sort_queue_item;
  1944. struct mcast *mcast;
  1945. unsigned int fcc_mcast_current;
  1946. if (instance->memb_state == MEMB_STATE_RECOVERY) {
  1947. mcast_queue = &instance->retrans_message_queue;
  1948. sort_queue = &instance->recovery_sort_queue;
  1949. reset_token_retransmit_timeout (instance); // REVIEWED
  1950. } else {
  1951. mcast_queue = &instance->new_message_queue;
  1952. sort_queue = &instance->regular_sort_queue;
  1953. }
  1954. for (fcc_mcast_current = 0; fcc_mcast_current < fcc_mcasts_allowed; fcc_mcast_current++) {
  1955. if (cs_queue_is_empty (mcast_queue)) {
  1956. break;
  1957. }
  1958. message_item = (struct message_item *)cs_queue_item_get (mcast_queue);
  1959. message_item->mcast->seq = ++token->seq;
  1960. message_item->mcast->this_seqno = instance->global_seqno++;
  1961. /*
  1962. * Build IO vector
  1963. */
  1964. memset (&sort_queue_item, 0, sizeof (struct sort_queue_item));
  1965. sort_queue_item.mcast = message_item->mcast;
  1966. sort_queue_item.msg_len = message_item->msg_len;
  1967. mcast = sort_queue_item.mcast;
  1968. memcpy (&mcast->ring_id, &instance->my_ring_id, sizeof (struct memb_ring_id));
  1969. /*
  1970. * Add message to retransmit queue
  1971. */
  1972. sq_item_add (sort_queue, &sort_queue_item, message_item->mcast->seq);
  1973. totemrrp_mcast_noflush_send (
  1974. instance->totemrrp_context,
  1975. message_item->mcast,
  1976. message_item->msg_len);
  1977. /*
  1978. * Delete item from pending queue
  1979. */
  1980. cs_queue_item_remove (mcast_queue);
  1981. /*
  1982. * If messages mcasted, deliver any new messages to totempg
  1983. */
  1984. instance->my_high_seq_received = token->seq;
  1985. }
  1986. update_aru (instance);
  1987. /*
  1988. * Return 1 if more messages are available for single node clusters
  1989. */
  1990. return (fcc_mcast_current);
  1991. }
  1992. /*
  1993. * Remulticasts messages in orf_token's retransmit list (requires orf_token)
  1994. * Modify's orf_token's rtr to include retransmits required by this process
  1995. */
  1996. static int orf_token_rtr (
  1997. struct totemsrp_instance *instance,
  1998. struct orf_token *orf_token,
  1999. unsigned int *fcc_allowed)
  2000. {
  2001. unsigned int res;
  2002. unsigned int i, j;
  2003. unsigned int found;
  2004. struct sq *sort_queue;
  2005. struct rtr_item *rtr_list;
  2006. unsigned int range = 0;
  2007. char retransmit_msg[1024];
  2008. char value[64];
  2009. if (instance->memb_state == MEMB_STATE_RECOVERY) {
  2010. sort_queue = &instance->recovery_sort_queue;
  2011. } else {
  2012. sort_queue = &instance->regular_sort_queue;
  2013. }
  2014. rtr_list = &orf_token->rtr_list[0];
  2015. strcpy (retransmit_msg, "Retransmit List: ");
  2016. if (orf_token->rtr_list_entries) {
  2017. log_printf (instance->totemsrp_log_level_debug,
  2018. "Retransmit List %d\n", orf_token->rtr_list_entries);
  2019. for (i = 0; i < orf_token->rtr_list_entries; i++) {
  2020. sprintf (value, "%x ", rtr_list[i].seq);
  2021. strcat (retransmit_msg, value);
  2022. }
  2023. strcat (retransmit_msg, "\n");
  2024. log_printf (instance->totemsrp_log_level_notice,
  2025. "%s", retransmit_msg);
  2026. }
  2027. /*
  2028. * Retransmit messages on orf_token's RTR list from RTR queue
  2029. */
  2030. for (instance->fcc_remcast_current = 0, i = 0;
  2031. instance->fcc_remcast_current < *fcc_allowed && i < orf_token->rtr_list_entries;) {
  2032. /*
  2033. * If this retransmit request isn't from this configuration,
  2034. * try next rtr entry
  2035. */
  2036. if (memcmp (&rtr_list[i].ring_id, &instance->my_ring_id,
  2037. sizeof (struct memb_ring_id)) != 0) {
  2038. i += 1;
  2039. continue;
  2040. }
  2041. res = orf_token_remcast (instance, rtr_list[i].seq);
  2042. if (res == 0) {
  2043. /*
  2044. * Multicasted message, so no need to copy to new retransmit list
  2045. */
  2046. orf_token->rtr_list_entries -= 1;
  2047. assert (orf_token->rtr_list_entries >= 0);
  2048. memmove (&rtr_list[i], &rtr_list[i + 1],
  2049. sizeof (struct rtr_item) * (orf_token->rtr_list_entries - i));
  2050. instance->stats.mcast_retx++;
  2051. instance->fcc_remcast_current++;
  2052. } else {
  2053. i += 1;
  2054. }
  2055. }
  2056. *fcc_allowed = *fcc_allowed - instance->fcc_remcast_current;
  2057. /*
  2058. * Add messages to retransmit to RTR list
  2059. * but only retry if there is room in the retransmit list
  2060. */
  2061. range = orf_token->seq - instance->my_aru;
  2062. assert (range < QUEUE_RTR_ITEMS_SIZE_MAX);
  2063. for (i = 1; (orf_token->rtr_list_entries < RETRANSMIT_ENTRIES_MAX) &&
  2064. (i <= range); i++) {
  2065. /*
  2066. * Ensure message is within the sort queue range
  2067. */
  2068. res = sq_in_range (sort_queue, instance->my_aru + i);
  2069. if (res == 0) {
  2070. break;
  2071. }
  2072. /*
  2073. * Find if a message is missing from this processor
  2074. */
  2075. res = sq_item_inuse (sort_queue, instance->my_aru + i);
  2076. if (res == 0) {
  2077. /*
  2078. * Determine how many times we have missed receiving
  2079. * this sequence number. sq_item_miss_count increments
  2080. * a counter for the sequence number. The miss count
  2081. * will be returned and compared. This allows time for
  2082. * delayed multicast messages to be received before
  2083. * declaring the message is missing and requesting a
  2084. * retransmit.
  2085. */
  2086. res = sq_item_miss_count (sort_queue, instance->my_aru + i);
  2087. if (res < instance->totem_config->miss_count_const) {
  2088. continue;
  2089. }
  2090. /*
  2091. * Determine if missing message is already in retransmit list
  2092. */
  2093. found = 0;
  2094. for (j = 0; j < orf_token->rtr_list_entries; j++) {
  2095. if (instance->my_aru + i == rtr_list[j].seq) {
  2096. found = 1;
  2097. }
  2098. }
  2099. if (found == 0) {
  2100. /*
  2101. * Missing message not found in current retransmit list so add it
  2102. */
  2103. memcpy (&rtr_list[orf_token->rtr_list_entries].ring_id,
  2104. &instance->my_ring_id, sizeof (struct memb_ring_id));
  2105. rtr_list[orf_token->rtr_list_entries].seq = instance->my_aru + i;
  2106. orf_token->rtr_list_entries++;
  2107. }
  2108. }
  2109. }
  2110. return (instance->fcc_remcast_current);
  2111. }
  2112. static void token_retransmit (struct totemsrp_instance *instance)
  2113. {
  2114. totemrrp_token_send (instance->totemrrp_context,
  2115. instance->orf_token_retransmit,
  2116. instance->orf_token_retransmit_size);
  2117. }
  2118. /*
  2119. * Retransmit the regular token if no mcast or token has
  2120. * been received in retransmit token period retransmit
  2121. * the token to the next processor
  2122. */
  2123. static void timer_function_token_retransmit_timeout (void *data)
  2124. {
  2125. struct totemsrp_instance *instance = data;
  2126. switch (instance->memb_state) {
  2127. case MEMB_STATE_GATHER:
  2128. break;
  2129. case MEMB_STATE_COMMIT:
  2130. case MEMB_STATE_OPERATIONAL:
  2131. case MEMB_STATE_RECOVERY:
  2132. token_retransmit (instance);
  2133. reset_token_retransmit_timeout (instance); // REVIEWED
  2134. break;
  2135. }
  2136. }
  2137. static void timer_function_token_hold_retransmit_timeout (void *data)
  2138. {
  2139. struct totemsrp_instance *instance = data;
  2140. switch (instance->memb_state) {
  2141. case MEMB_STATE_GATHER:
  2142. break;
  2143. case MEMB_STATE_COMMIT:
  2144. break;
  2145. case MEMB_STATE_OPERATIONAL:
  2146. case MEMB_STATE_RECOVERY:
  2147. token_retransmit (instance);
  2148. break;
  2149. }
  2150. }
  2151. static void timer_function_merge_detect_timeout(void *data)
  2152. {
  2153. struct totemsrp_instance *instance = data;
  2154. instance->my_merge_detect_timeout_outstanding = 0;
  2155. switch (instance->memb_state) {
  2156. case MEMB_STATE_OPERATIONAL:
  2157. if (totemip_equal(&instance->my_ring_id.rep, &instance->my_id.addr[0])) {
  2158. memb_merge_detect_transmit (instance);
  2159. }
  2160. break;
  2161. case MEMB_STATE_GATHER:
  2162. case MEMB_STATE_COMMIT:
  2163. case MEMB_STATE_RECOVERY:
  2164. break;
  2165. }
  2166. }
  2167. /*
  2168. * Send orf_token to next member (requires orf_token)
  2169. */
  2170. static int token_send (
  2171. struct totemsrp_instance *instance,
  2172. struct orf_token *orf_token,
  2173. int forward_token)
  2174. {
  2175. int res = 0;
  2176. unsigned int orf_token_size;
  2177. orf_token_size = sizeof (struct orf_token) +
  2178. (orf_token->rtr_list_entries * sizeof (struct rtr_item));
  2179. memcpy (instance->orf_token_retransmit, orf_token, orf_token_size);
  2180. instance->orf_token_retransmit_size = orf_token_size;
  2181. orf_token->header.nodeid = instance->my_id.addr[0].nodeid;
  2182. assert (orf_token->header.nodeid);
  2183. if (forward_token == 0) {
  2184. return (0);
  2185. }
  2186. totemrrp_token_send (instance->totemrrp_context,
  2187. orf_token,
  2188. orf_token_size);
  2189. return (res);
  2190. }
  2191. static int token_hold_cancel_send (struct totemsrp_instance *instance)
  2192. {
  2193. struct token_hold_cancel token_hold_cancel;
  2194. /*
  2195. * Only cancel if the token is currently held
  2196. */
  2197. if (instance->my_token_held == 0) {
  2198. return (0);
  2199. }
  2200. instance->my_token_held = 0;
  2201. /*
  2202. * Build message
  2203. */
  2204. token_hold_cancel.header.type = MESSAGE_TYPE_TOKEN_HOLD_CANCEL;
  2205. token_hold_cancel.header.endian_detector = ENDIAN_LOCAL;
  2206. token_hold_cancel.header.encapsulated = 0;
  2207. token_hold_cancel.header.nodeid = instance->my_id.addr[0].nodeid;
  2208. memcpy (&token_hold_cancel.ring_id, &instance->my_ring_id,
  2209. sizeof (struct memb_ring_id));
  2210. assert (token_hold_cancel.header.nodeid);
  2211. instance->stats.token_hold_cancel_tx++;
  2212. totemrrp_mcast_flush_send (instance->totemrrp_context, &token_hold_cancel,
  2213. sizeof (struct token_hold_cancel));
  2214. return (0);
  2215. }
  2216. static int orf_token_send_initial (struct totemsrp_instance *instance)
  2217. {
  2218. struct orf_token orf_token;
  2219. int res;
  2220. orf_token.header.type = MESSAGE_TYPE_ORF_TOKEN;
  2221. orf_token.header.endian_detector = ENDIAN_LOCAL;
  2222. orf_token.header.encapsulated = 0;
  2223. orf_token.header.nodeid = instance->my_id.addr[0].nodeid;
  2224. assert (orf_token.header.nodeid);
  2225. orf_token.seq = SEQNO_START_MSG;
  2226. orf_token.token_seq = SEQNO_START_TOKEN;
  2227. orf_token.retrans_flg = 1;
  2228. instance->my_set_retrans_flg = 1;
  2229. instance->stats.orf_token_tx++;
  2230. if (cs_queue_is_empty (&instance->retrans_message_queue) == 1) {
  2231. orf_token.retrans_flg = 0;
  2232. instance->my_set_retrans_flg = 0;
  2233. } else {
  2234. orf_token.retrans_flg = 1;
  2235. instance->my_set_retrans_flg = 1;
  2236. }
  2237. orf_token.aru = 0;
  2238. orf_token.aru = SEQNO_START_MSG - 1;
  2239. orf_token.aru_addr = instance->my_id.addr[0].nodeid;
  2240. memcpy (&orf_token.ring_id, &instance->my_ring_id, sizeof (struct memb_ring_id));
  2241. orf_token.fcc = 0;
  2242. orf_token.backlog = 0;
  2243. orf_token.rtr_list_entries = 0;
  2244. res = token_send (instance, &orf_token, 1);
  2245. return (res);
  2246. }
  2247. static void memb_state_commit_token_update (
  2248. struct totemsrp_instance *instance)
  2249. {
  2250. struct srp_addr *addr;
  2251. struct memb_commit_token_memb_entry *memb_list;
  2252. unsigned int high_aru;
  2253. unsigned int i;
  2254. addr = (struct srp_addr *)instance->commit_token->end_of_commit_token;
  2255. memb_list = (struct memb_commit_token_memb_entry *)(addr + instance->commit_token->addr_entries);
  2256. memcpy (instance->my_new_memb_list, addr,
  2257. sizeof (struct srp_addr) * instance->commit_token->addr_entries);
  2258. instance->my_new_memb_entries = instance->commit_token->addr_entries;
  2259. memcpy (&memb_list[instance->commit_token->memb_index].ring_id,
  2260. &instance->my_old_ring_id, sizeof (struct memb_ring_id));
  2261. memb_list[instance->commit_token->memb_index].aru = instance->old_ring_state_aru;
  2262. /*
  2263. * TODO high delivered is really instance->my_aru, but with safe this
  2264. * could change?
  2265. */
  2266. instance->my_received_flg =
  2267. (instance->my_aru == instance->my_high_seq_received);
  2268. memb_list[instance->commit_token->memb_index].received_flg = instance->my_received_flg;
  2269. memb_list[instance->commit_token->memb_index].high_delivered = instance->my_high_delivered;
  2270. /*
  2271. * find high aru up to current memb_index for all matching ring ids
  2272. * if any ring id matching memb_index has aru less then high aru set
  2273. * received flag for that entry to false
  2274. */
  2275. high_aru = memb_list[instance->commit_token->memb_index].aru;
  2276. for (i = 0; i <= instance->commit_token->memb_index; i++) {
  2277. if (memcmp (&memb_list[instance->commit_token->memb_index].ring_id,
  2278. &memb_list[i].ring_id,
  2279. sizeof (struct memb_ring_id)) == 0) {
  2280. if (sq_lt_compare (high_aru, memb_list[i].aru)) {
  2281. high_aru = memb_list[i].aru;
  2282. }
  2283. }
  2284. }
  2285. for (i = 0; i <= instance->commit_token->memb_index; i++) {
  2286. if (memcmp (&memb_list[instance->commit_token->memb_index].ring_id,
  2287. &memb_list[i].ring_id,
  2288. sizeof (struct memb_ring_id)) == 0) {
  2289. if (sq_lt_compare (memb_list[i].aru, high_aru)) {
  2290. memb_list[i].received_flg = 0;
  2291. if (i == instance->commit_token->memb_index) {
  2292. instance->my_received_flg = 0;
  2293. }
  2294. }
  2295. }
  2296. }
  2297. instance->commit_token->header.nodeid = instance->my_id.addr[0].nodeid;
  2298. instance->commit_token->memb_index += 1;
  2299. assert (instance->commit_token->memb_index <= instance->commit_token->addr_entries);
  2300. assert (instance->commit_token->header.nodeid);
  2301. }
  2302. static void memb_state_commit_token_target_set (
  2303. struct totemsrp_instance *instance)
  2304. {
  2305. struct srp_addr *addr;
  2306. unsigned int i;
  2307. addr = (struct srp_addr *)instance->commit_token->end_of_commit_token;
  2308. for (i = 0; i < instance->totem_config->interface_count; i++) {
  2309. totemrrp_token_target_set (
  2310. instance->totemrrp_context,
  2311. &addr[instance->commit_token->memb_index %
  2312. instance->commit_token->addr_entries].addr[i],
  2313. i);
  2314. }
  2315. }
  2316. static int memb_state_commit_token_send_recovery (
  2317. struct totemsrp_instance *instance,
  2318. struct memb_commit_token *commit_token)
  2319. {
  2320. unsigned int commit_token_size;
  2321. commit_token->token_seq++;
  2322. commit_token_size = sizeof (struct memb_commit_token) +
  2323. ((sizeof (struct srp_addr) +
  2324. sizeof (struct memb_commit_token_memb_entry)) * commit_token->addr_entries);
  2325. /*
  2326. * Make a copy for retransmission if necessary
  2327. */
  2328. memcpy (instance->orf_token_retransmit, commit_token, commit_token_size);
  2329. instance->orf_token_retransmit_size = commit_token_size;
  2330. instance->stats.memb_commit_token_tx++;
  2331. totemrrp_token_send (instance->totemrrp_context,
  2332. commit_token,
  2333. commit_token_size);
  2334. /*
  2335. * Request retransmission of the commit token in case it is lost
  2336. */
  2337. reset_token_retransmit_timeout (instance);
  2338. return (0);
  2339. }
  2340. static int memb_state_commit_token_send (
  2341. struct totemsrp_instance *instance)
  2342. {
  2343. unsigned int commit_token_size;
  2344. instance->commit_token->token_seq++;
  2345. commit_token_size = sizeof (struct memb_commit_token) +
  2346. ((sizeof (struct srp_addr) +
  2347. sizeof (struct memb_commit_token_memb_entry)) * instance->commit_token->addr_entries);
  2348. /*
  2349. * Make a copy for retransmission if necessary
  2350. */
  2351. memcpy (instance->orf_token_retransmit, instance->commit_token, commit_token_size);
  2352. instance->orf_token_retransmit_size = commit_token_size;
  2353. instance->stats.memb_commit_token_tx++;
  2354. totemrrp_token_send (instance->totemrrp_context,
  2355. instance->commit_token,
  2356. commit_token_size);
  2357. /*
  2358. * Request retransmission of the commit token in case it is lost
  2359. */
  2360. reset_token_retransmit_timeout (instance);
  2361. return (0);
  2362. }
  2363. static int memb_lowest_in_config (struct totemsrp_instance *instance)
  2364. {
  2365. struct srp_addr token_memb[PROCESSOR_COUNT_MAX];
  2366. int token_memb_entries = 0;
  2367. int i;
  2368. struct totem_ip_address *lowest_addr;
  2369. memb_set_subtract (token_memb, &token_memb_entries,
  2370. instance->my_proc_list, instance->my_proc_list_entries,
  2371. instance->my_failed_list, instance->my_failed_list_entries);
  2372. /*
  2373. * find representative by searching for smallest identifier
  2374. */
  2375. lowest_addr = &token_memb[0].addr[0];
  2376. for (i = 1; i < token_memb_entries; i++) {
  2377. if (totemip_compare(lowest_addr, &token_memb[i].addr[0]) > 0) {
  2378. totemip_copy (lowest_addr, &token_memb[i].addr[0]);
  2379. }
  2380. }
  2381. return (totemip_compare (lowest_addr, &instance->my_id.addr[0]) == 0);
  2382. }
  2383. static int srp_addr_compare (const void *a, const void *b)
  2384. {
  2385. const struct srp_addr *srp_a = (const struct srp_addr *)a;
  2386. const struct srp_addr *srp_b = (const struct srp_addr *)b;
  2387. return (totemip_compare (&srp_a->addr[0], &srp_b->addr[0]));
  2388. }
  2389. static void memb_state_commit_token_create (
  2390. struct totemsrp_instance *instance)
  2391. {
  2392. struct srp_addr token_memb[PROCESSOR_COUNT_MAX];
  2393. struct srp_addr *addr;
  2394. struct memb_commit_token_memb_entry *memb_list;
  2395. int token_memb_entries = 0;
  2396. log_printf (instance->totemsrp_log_level_debug,
  2397. "Creating commit token because I am the rep.\n");
  2398. memb_set_subtract (token_memb, &token_memb_entries,
  2399. instance->my_proc_list, instance->my_proc_list_entries,
  2400. instance->my_failed_list, instance->my_failed_list_entries);
  2401. memset (instance->commit_token, 0, sizeof (struct memb_commit_token));
  2402. instance->commit_token->header.type = MESSAGE_TYPE_MEMB_COMMIT_TOKEN;
  2403. instance->commit_token->header.endian_detector = ENDIAN_LOCAL;
  2404. instance->commit_token->header.encapsulated = 0;
  2405. instance->commit_token->header.nodeid = instance->my_id.addr[0].nodeid;
  2406. assert (instance->commit_token->header.nodeid);
  2407. totemip_copy(&instance->commit_token->ring_id.rep, &instance->my_id.addr[0]);
  2408. instance->commit_token->ring_id.seq = instance->token_ring_id_seq + 4;
  2409. /*
  2410. * This qsort is necessary to ensure the commit token traverses
  2411. * the ring in the proper order
  2412. */
  2413. qsort (token_memb, token_memb_entries, sizeof (struct srp_addr),
  2414. srp_addr_compare);
  2415. instance->commit_token->memb_index = 0;
  2416. instance->commit_token->addr_entries = token_memb_entries;
  2417. addr = (struct srp_addr *)instance->commit_token->end_of_commit_token;
  2418. memb_list = (struct memb_commit_token_memb_entry *)(addr + instance->commit_token->addr_entries);
  2419. memcpy (addr, token_memb,
  2420. token_memb_entries * sizeof (struct srp_addr));
  2421. memset (memb_list, 0,
  2422. sizeof (struct memb_commit_token_memb_entry) * token_memb_entries);
  2423. }
  2424. static void memb_join_message_send (struct totemsrp_instance *instance)
  2425. {
  2426. char memb_join_data[10000];
  2427. struct memb_join *memb_join = (struct memb_join *)memb_join_data;
  2428. char *addr;
  2429. unsigned int addr_idx;
  2430. memb_join->header.type = MESSAGE_TYPE_MEMB_JOIN;
  2431. memb_join->header.endian_detector = ENDIAN_LOCAL;
  2432. memb_join->header.encapsulated = 0;
  2433. memb_join->header.nodeid = instance->my_id.addr[0].nodeid;
  2434. assert (memb_join->header.nodeid);
  2435. memb_join->ring_seq = instance->my_ring_id.seq;
  2436. memb_join->proc_list_entries = instance->my_proc_list_entries;
  2437. memb_join->failed_list_entries = instance->my_failed_list_entries;
  2438. srp_addr_copy (&memb_join->system_from, &instance->my_id);
  2439. /*
  2440. * This mess adds the joined and failed processor lists into the join
  2441. * message
  2442. */
  2443. addr = (char *)memb_join;
  2444. addr_idx = sizeof (struct memb_join);
  2445. memcpy (&addr[addr_idx],
  2446. instance->my_proc_list,
  2447. instance->my_proc_list_entries *
  2448. sizeof (struct srp_addr));
  2449. addr_idx +=
  2450. instance->my_proc_list_entries *
  2451. sizeof (struct srp_addr);
  2452. memcpy (&addr[addr_idx],
  2453. instance->my_failed_list,
  2454. instance->my_failed_list_entries *
  2455. sizeof (struct srp_addr));
  2456. addr_idx +=
  2457. instance->my_failed_list_entries *
  2458. sizeof (struct srp_addr);
  2459. if (instance->totem_config->send_join_timeout) {
  2460. usleep (random() % (instance->totem_config->send_join_timeout * 1000));
  2461. }
  2462. instance->stats.memb_join_tx++;
  2463. totemrrp_mcast_flush_send (
  2464. instance->totemrrp_context,
  2465. memb_join,
  2466. addr_idx);
  2467. }
  2468. static void memb_leave_message_send (struct totemsrp_instance *instance)
  2469. {
  2470. char memb_join_data[10000];
  2471. struct memb_join *memb_join = (struct memb_join *)memb_join_data;
  2472. char *addr;
  2473. unsigned int addr_idx;
  2474. int active_memb_entries;
  2475. struct srp_addr active_memb[PROCESSOR_COUNT_MAX];
  2476. log_printf (instance->totemsrp_log_level_debug,
  2477. "sending join/leave message\n");
  2478. /*
  2479. * add us to the failed list, and remove us from
  2480. * the members list
  2481. */
  2482. memb_set_merge(
  2483. &instance->my_id, 1,
  2484. instance->my_failed_list, &instance->my_failed_list_entries);
  2485. memb_set_subtract (active_memb, &active_memb_entries,
  2486. instance->my_proc_list, instance->my_proc_list_entries,
  2487. &instance->my_id, 1);
  2488. memb_join->header.type = MESSAGE_TYPE_MEMB_JOIN;
  2489. memb_join->header.endian_detector = ENDIAN_LOCAL;
  2490. memb_join->header.encapsulated = 0;
  2491. memb_join->header.nodeid = LEAVE_DUMMY_NODEID;
  2492. memb_join->ring_seq = instance->my_ring_id.seq;
  2493. memb_join->proc_list_entries = active_memb_entries;
  2494. memb_join->failed_list_entries = instance->my_failed_list_entries;
  2495. srp_addr_copy (&memb_join->system_from, &instance->my_id);
  2496. memb_join->system_from.addr[0].nodeid = LEAVE_DUMMY_NODEID;
  2497. // TODO: CC Maybe use the actual join send routine.
  2498. /*
  2499. * This mess adds the joined and failed processor lists into the join
  2500. * message
  2501. */
  2502. addr = (char *)memb_join;
  2503. addr_idx = sizeof (struct memb_join);
  2504. memcpy (&addr[addr_idx],
  2505. active_memb,
  2506. active_memb_entries *
  2507. sizeof (struct srp_addr));
  2508. addr_idx +=
  2509. active_memb_entries *
  2510. sizeof (struct srp_addr);
  2511. memcpy (&addr[addr_idx],
  2512. instance->my_failed_list,
  2513. instance->my_failed_list_entries *
  2514. sizeof (struct srp_addr));
  2515. addr_idx +=
  2516. instance->my_failed_list_entries *
  2517. sizeof (struct srp_addr);
  2518. if (instance->totem_config->send_join_timeout) {
  2519. usleep (random() % (instance->totem_config->send_join_timeout * 1000));
  2520. }
  2521. instance->stats.memb_join_tx++;
  2522. totemrrp_mcast_flush_send (
  2523. instance->totemrrp_context,
  2524. memb_join,
  2525. addr_idx);
  2526. }
  2527. static void memb_merge_detect_transmit (struct totemsrp_instance *instance)
  2528. {
  2529. struct memb_merge_detect memb_merge_detect;
  2530. memb_merge_detect.header.type = MESSAGE_TYPE_MEMB_MERGE_DETECT;
  2531. memb_merge_detect.header.endian_detector = ENDIAN_LOCAL;
  2532. memb_merge_detect.header.encapsulated = 0;
  2533. memb_merge_detect.header.nodeid = instance->my_id.addr[0].nodeid;
  2534. srp_addr_copy (&memb_merge_detect.system_from, &instance->my_id);
  2535. memcpy (&memb_merge_detect.ring_id, &instance->my_ring_id,
  2536. sizeof (struct memb_ring_id));
  2537. assert (memb_merge_detect.header.nodeid);
  2538. instance->stats.memb_merge_detect_tx++;
  2539. totemrrp_mcast_flush_send (instance->totemrrp_context,
  2540. &memb_merge_detect,
  2541. sizeof (struct memb_merge_detect));
  2542. }
  2543. static void memb_ring_id_create_or_load (
  2544. struct totemsrp_instance *instance,
  2545. struct memb_ring_id *memb_ring_id)
  2546. {
  2547. int fd;
  2548. int res = 0;
  2549. char filename[PATH_MAX];
  2550. char error_str[256];
  2551. snprintf (filename, sizeof(filename), "%s/ringid_%s",
  2552. rundir, totemip_print (&instance->my_id.addr[0]));
  2553. fd = open (filename, O_RDONLY, 0700);
  2554. /*
  2555. * If file can be opened and read, read the ring id
  2556. */
  2557. if (fd != -1) {
  2558. res = read (fd, &memb_ring_id->seq, sizeof (uint64_t));
  2559. close (fd);
  2560. }
  2561. /*
  2562. * If file could not be opened or read, create a new ring id
  2563. */
  2564. if ((fd == -1) || (res != sizeof (uint64_t))) {
  2565. memb_ring_id->seq = 0;
  2566. umask(0);
  2567. fd = open (filename, O_CREAT|O_RDWR, 0700);
  2568. if (fd != -1) {
  2569. res = write (fd, &memb_ring_id->seq, sizeof (uint64_t));
  2570. close (fd);
  2571. if (res == -1) {
  2572. strerror_r (errno, error_str, sizeof (error_str));
  2573. log_printf (instance->totemsrp_log_level_warning,
  2574. "Couldn't write ringid file '%s' %s\n",
  2575. filename, error_str);
  2576. }
  2577. } else {
  2578. strerror_r (errno, error_str, sizeof (error_str));
  2579. log_printf (instance->totemsrp_log_level_warning,
  2580. "Couldn't create ringid file '%s' %s\n",
  2581. filename, error_str);
  2582. }
  2583. }
  2584. totemip_copy(&memb_ring_id->rep, &instance->my_id.addr[0]);
  2585. assert (!totemip_zero_check(&memb_ring_id->rep));
  2586. instance->token_ring_id_seq = memb_ring_id->seq;
  2587. }
  2588. static void memb_ring_id_set_and_store (
  2589. struct totemsrp_instance *instance,
  2590. const struct memb_ring_id *ring_id)
  2591. {
  2592. char filename[256];
  2593. int fd;
  2594. int res;
  2595. memcpy (&instance->my_ring_id, ring_id, sizeof (struct memb_ring_id));
  2596. snprintf (filename, sizeof(filename), "%s/ringid_%s",
  2597. rundir, totemip_print (&instance->my_id.addr[0]));
  2598. fd = open (filename, O_WRONLY, 0777);
  2599. if (fd == -1) {
  2600. fd = open (filename, O_CREAT|O_RDWR, 0777);
  2601. }
  2602. if (fd == -1) {
  2603. char error_str[100];
  2604. strerror_r(errno, error_str, 100);
  2605. log_printf (instance->totemsrp_log_level_warning,
  2606. "Couldn't store new ring id %llx to stable storage (%s)\n",
  2607. instance->my_ring_id.seq, error_str);
  2608. assert (0);
  2609. return;
  2610. }
  2611. log_printf (instance->totemsrp_log_level_debug,
  2612. "Storing new sequence id for ring %llx\n", instance->my_ring_id.seq);
  2613. //assert (fd > 0);
  2614. res = write (fd, &instance->my_ring_id.seq, sizeof (unsigned long long));
  2615. assert (res == sizeof (unsigned long long));
  2616. close (fd);
  2617. }
  2618. int totemsrp_callback_token_create (
  2619. void *srp_context,
  2620. void **handle_out,
  2621. enum totem_callback_token_type type,
  2622. int delete,
  2623. int (*callback_fn) (enum totem_callback_token_type type, const void *),
  2624. const void *data)
  2625. {
  2626. struct totemsrp_instance *instance = (struct totemsrp_instance *)srp_context;
  2627. struct token_callback_instance *callback_handle;
  2628. token_hold_cancel_send (instance);
  2629. callback_handle = malloc (sizeof (struct token_callback_instance));
  2630. if (callback_handle == 0) {
  2631. return (-1);
  2632. }
  2633. *handle_out = (void *)callback_handle;
  2634. list_init (&callback_handle->list);
  2635. callback_handle->callback_fn = callback_fn;
  2636. callback_handle->data = (void *) data;
  2637. callback_handle->callback_type = type;
  2638. callback_handle->delete = delete;
  2639. switch (type) {
  2640. case TOTEM_CALLBACK_TOKEN_RECEIVED:
  2641. list_add (&callback_handle->list, &instance->token_callback_received_listhead);
  2642. break;
  2643. case TOTEM_CALLBACK_TOKEN_SENT:
  2644. list_add (&callback_handle->list, &instance->token_callback_sent_listhead);
  2645. break;
  2646. }
  2647. return (0);
  2648. }
  2649. void totemsrp_callback_token_destroy (void *srp_context, void **handle_out)
  2650. {
  2651. struct token_callback_instance *h;
  2652. if (*handle_out) {
  2653. h = (struct token_callback_instance *)*handle_out;
  2654. list_del (&h->list);
  2655. free (h);
  2656. h = NULL;
  2657. *handle_out = 0;
  2658. }
  2659. }
  2660. static void token_callbacks_execute (
  2661. struct totemsrp_instance *instance,
  2662. enum totem_callback_token_type type)
  2663. {
  2664. struct list_head *list;
  2665. struct list_head *list_next;
  2666. struct list_head *callback_listhead = 0;
  2667. struct token_callback_instance *token_callback_instance;
  2668. int res;
  2669. int del;
  2670. switch (type) {
  2671. case TOTEM_CALLBACK_TOKEN_RECEIVED:
  2672. callback_listhead = &instance->token_callback_received_listhead;
  2673. break;
  2674. case TOTEM_CALLBACK_TOKEN_SENT:
  2675. callback_listhead = &instance->token_callback_sent_listhead;
  2676. break;
  2677. default:
  2678. assert (0);
  2679. }
  2680. for (list = callback_listhead->next; list != callback_listhead;
  2681. list = list_next) {
  2682. token_callback_instance = list_entry (list, struct token_callback_instance, list);
  2683. list_next = list->next;
  2684. del = token_callback_instance->delete;
  2685. if (del == 1) {
  2686. list_del (list);
  2687. }
  2688. res = token_callback_instance->callback_fn (
  2689. token_callback_instance->callback_type,
  2690. token_callback_instance->data);
  2691. /*
  2692. * This callback failed to execute, try it again on the next token
  2693. */
  2694. if (res == -1 && del == 1) {
  2695. list_add (list, callback_listhead);
  2696. } else if (del) {
  2697. free (token_callback_instance);
  2698. }
  2699. }
  2700. }
  2701. /*
  2702. * Flow control functions
  2703. */
  2704. static unsigned int backlog_get (struct totemsrp_instance *instance)
  2705. {
  2706. unsigned int backlog = 0;
  2707. if (instance->memb_state == MEMB_STATE_OPERATIONAL) {
  2708. backlog = cs_queue_used (&instance->new_message_queue);
  2709. } else
  2710. if (instance->memb_state == MEMB_STATE_RECOVERY) {
  2711. backlog = cs_queue_used (&instance->retrans_message_queue);
  2712. }
  2713. instance->stats.token[instance->stats.latest_token].backlog_calc = backlog;
  2714. return (backlog);
  2715. }
  2716. static int fcc_calculate (
  2717. struct totemsrp_instance *instance,
  2718. struct orf_token *token)
  2719. {
  2720. unsigned int transmits_allowed;
  2721. unsigned int backlog_calc;
  2722. transmits_allowed = instance->totem_config->max_messages;
  2723. if (transmits_allowed > instance->totem_config->window_size - token->fcc) {
  2724. transmits_allowed = instance->totem_config->window_size - token->fcc;
  2725. }
  2726. instance->my_cbl = backlog_get (instance);
  2727. /*
  2728. * Only do backlog calculation if there is a backlog otherwise
  2729. * we would result in div by zero
  2730. */
  2731. if (token->backlog + instance->my_cbl - instance->my_pbl) {
  2732. backlog_calc = (instance->totem_config->window_size * instance->my_pbl) /
  2733. (token->backlog + instance->my_cbl - instance->my_pbl);
  2734. if (backlog_calc > 0 && transmits_allowed > backlog_calc) {
  2735. transmits_allowed = backlog_calc;
  2736. }
  2737. }
  2738. return (transmits_allowed);
  2739. }
  2740. /*
  2741. * don't overflow the RTR sort queue
  2742. */
  2743. static void fcc_rtr_limit (
  2744. struct totemsrp_instance *instance,
  2745. struct orf_token *token,
  2746. unsigned int *transmits_allowed)
  2747. {
  2748. int check = QUEUE_RTR_ITEMS_SIZE_MAX;
  2749. check -= (*transmits_allowed + instance->totem_config->window_size);
  2750. assert (check >= 0);
  2751. if (sq_lt_compare (instance->last_released +
  2752. QUEUE_RTR_ITEMS_SIZE_MAX - *transmits_allowed -
  2753. instance->totem_config->window_size,
  2754. token->seq)) {
  2755. *transmits_allowed = 0;
  2756. }
  2757. }
  2758. static void fcc_token_update (
  2759. struct totemsrp_instance *instance,
  2760. struct orf_token *token,
  2761. unsigned int msgs_transmitted)
  2762. {
  2763. token->fcc += msgs_transmitted - instance->my_trc;
  2764. token->backlog += instance->my_cbl - instance->my_pbl;
  2765. instance->my_trc = msgs_transmitted;
  2766. instance->my_pbl = instance->my_cbl;
  2767. }
  2768. /*
  2769. * Message Handlers
  2770. */
  2771. unsigned long long int tv_old;
  2772. /*
  2773. * message handler called when TOKEN message type received
  2774. */
  2775. static int message_handler_orf_token (
  2776. struct totemsrp_instance *instance,
  2777. const void *msg,
  2778. size_t msg_len,
  2779. int endian_conversion_needed)
  2780. {
  2781. char token_storage[1500];
  2782. char token_convert[1500];
  2783. struct orf_token *token = NULL;
  2784. int forward_token;
  2785. unsigned int transmits_allowed;
  2786. unsigned int mcasted_retransmit;
  2787. unsigned int mcasted_regular;
  2788. unsigned int last_aru;
  2789. #ifdef GIVEINFO
  2790. unsigned long long tv_current;
  2791. unsigned long long tv_diff;
  2792. tv_current = timerlist_nano_current_get ();
  2793. tv_diff = tv_current - tv_old;
  2794. tv_old = tv_current;
  2795. log_printf (instance->totemsrp_log_level_debug,
  2796. "Time since last token %0.4f ms\n", ((float)tv_diff) / 1000000.0);
  2797. #endif
  2798. if (instance->orf_token_discard) {
  2799. return (0);
  2800. }
  2801. #ifdef TEST_DROP_ORF_TOKEN_PERCENTAGE
  2802. if (random()%100 < TEST_DROP_ORF_TOKEN_PERCENTAGE) {
  2803. return (0);
  2804. }
  2805. #endif
  2806. if (endian_conversion_needed) {
  2807. orf_token_endian_convert ((struct orf_token *)msg,
  2808. (struct orf_token *)token_convert);
  2809. msg = (struct orf_token *)token_convert;
  2810. }
  2811. /*
  2812. * Make copy of token and retransmit list in case we have
  2813. * to flush incoming messages from the kernel queue
  2814. */
  2815. token = (struct orf_token *)token_storage;
  2816. memcpy (token, msg, sizeof (struct orf_token));
  2817. memcpy (&token->rtr_list[0], (char *)msg + sizeof (struct orf_token),
  2818. sizeof (struct rtr_item) * RETRANSMIT_ENTRIES_MAX);
  2819. /*
  2820. * Handle merge detection timeout
  2821. */
  2822. if (token->seq == instance->my_last_seq) {
  2823. start_merge_detect_timeout (instance);
  2824. instance->my_seq_unchanged += 1;
  2825. } else {
  2826. cancel_merge_detect_timeout (instance);
  2827. cancel_token_hold_retransmit_timeout (instance);
  2828. instance->my_seq_unchanged = 0;
  2829. }
  2830. instance->my_last_seq = token->seq;
  2831. #ifdef TEST_RECOVERY_MSG_COUNT
  2832. if (instance->memb_state == MEMB_STATE_OPERATIONAL && token->seq > TEST_RECOVERY_MSG_COUNT) {
  2833. return (0);
  2834. }
  2835. #endif
  2836. /*
  2837. * Determine if we should hold (in reality drop) the token
  2838. */
  2839. instance->my_token_held = 0;
  2840. if (totemip_equal(&instance->my_ring_id.rep, &instance->my_id.addr[0]) &&
  2841. instance->my_seq_unchanged > instance->totem_config->seqno_unchanged_const) {
  2842. instance->my_token_held = 1;
  2843. } else
  2844. if (!totemip_equal(&instance->my_ring_id.rep, &instance->my_id.addr[0]) &&
  2845. instance->my_seq_unchanged >= instance->totem_config->seqno_unchanged_const) {
  2846. instance->my_token_held = 1;
  2847. }
  2848. /*
  2849. * Hold onto token when there is no activity on ring and
  2850. * this processor is the ring rep
  2851. */
  2852. forward_token = 1;
  2853. if (totemip_equal(&instance->my_ring_id.rep, &instance->my_id.addr[0])) {
  2854. if (instance->my_token_held) {
  2855. forward_token = 0;
  2856. }
  2857. }
  2858. token_callbacks_execute (instance, TOTEM_CALLBACK_TOKEN_RECEIVED);
  2859. switch (instance->memb_state) {
  2860. case MEMB_STATE_COMMIT:
  2861. /* Discard token */
  2862. break;
  2863. case MEMB_STATE_OPERATIONAL:
  2864. messages_free (instance, token->aru);
  2865. /*
  2866. * Do NOT add break, this case should also execute code in gather case.
  2867. */
  2868. case MEMB_STATE_GATHER:
  2869. /*
  2870. * DO NOT add break, we use different free mechanism in recovery state
  2871. */
  2872. case MEMB_STATE_RECOVERY:
  2873. /*
  2874. * Discard tokens from another configuration
  2875. */
  2876. if (memcmp (&token->ring_id, &instance->my_ring_id,
  2877. sizeof (struct memb_ring_id)) != 0) {
  2878. if ((forward_token)
  2879. && instance->use_heartbeat) {
  2880. reset_heartbeat_timeout(instance);
  2881. }
  2882. else {
  2883. cancel_heartbeat_timeout(instance);
  2884. }
  2885. return (0); /* discard token */
  2886. }
  2887. /*
  2888. * Discard retransmitted tokens
  2889. */
  2890. if (sq_lte_compare (token->token_seq, instance->my_token_seq)) {
  2891. return (0); /* discard token */
  2892. }
  2893. last_aru = instance->my_last_aru;
  2894. instance->my_last_aru = token->aru;
  2895. transmits_allowed = fcc_calculate (instance, token);
  2896. mcasted_retransmit = orf_token_rtr (instance, token, &transmits_allowed);
  2897. fcc_rtr_limit (instance, token, &transmits_allowed);
  2898. mcasted_regular = orf_token_mcast (instance, token, transmits_allowed);
  2899. /*
  2900. if (mcasted_regular) {
  2901. printf ("mcasted regular %d\n", mcasted_regular);
  2902. printf ("token seq %d\n", token->seq);
  2903. }
  2904. */
  2905. fcc_token_update (instance, token, mcasted_retransmit +
  2906. mcasted_regular);
  2907. if (sq_lt_compare (instance->my_aru, token->aru) ||
  2908. instance->my_id.addr[0].nodeid == token->aru_addr ||
  2909. token->aru_addr == 0) {
  2910. token->aru = instance->my_aru;
  2911. if (token->aru == token->seq) {
  2912. token->aru_addr = 0;
  2913. } else {
  2914. token->aru_addr = instance->my_id.addr[0].nodeid;
  2915. }
  2916. }
  2917. if (token->aru == last_aru && token->aru_addr != 0) {
  2918. instance->my_aru_count += 1;
  2919. } else {
  2920. instance->my_aru_count = 0;
  2921. }
  2922. if (instance->my_aru_count > instance->totem_config->fail_to_recv_const &&
  2923. token->aru_addr == instance->my_id.addr[0].nodeid) {
  2924. log_printf (instance->totemsrp_log_level_error,
  2925. "FAILED TO RECEIVE\n");
  2926. instance->failed_to_recv = 1;
  2927. memb_set_merge (&instance->my_id, 1,
  2928. instance->my_failed_list,
  2929. &instance->my_failed_list_entries);
  2930. memb_state_gather_enter (instance, 6);
  2931. } else {
  2932. instance->my_token_seq = token->token_seq;
  2933. token->token_seq += 1;
  2934. if (instance->memb_state == MEMB_STATE_RECOVERY) {
  2935. /*
  2936. * instance->my_aru == instance->my_high_seq_received means this processor
  2937. * has recovered all messages it can recover
  2938. * (ie: its retrans queue is empty)
  2939. */
  2940. if (cs_queue_is_empty (&instance->retrans_message_queue) == 0) {
  2941. if (token->retrans_flg == 0) {
  2942. token->retrans_flg = 1;
  2943. instance->my_set_retrans_flg = 1;
  2944. }
  2945. } else
  2946. if (token->retrans_flg == 1 && instance->my_set_retrans_flg) {
  2947. token->retrans_flg = 0;
  2948. instance->my_set_retrans_flg = 0;
  2949. }
  2950. log_printf (instance->totemsrp_log_level_debug,
  2951. "token retrans flag is %d my set retrans flag%d retrans queue empty %d count %d, aru %x\n",
  2952. token->retrans_flg, instance->my_set_retrans_flg,
  2953. cs_queue_is_empty (&instance->retrans_message_queue),
  2954. instance->my_retrans_flg_count, token->aru);
  2955. if (token->retrans_flg == 0) {
  2956. instance->my_retrans_flg_count += 1;
  2957. } else {
  2958. instance->my_retrans_flg_count = 0;
  2959. }
  2960. if (instance->my_retrans_flg_count == 2) {
  2961. instance->my_install_seq = token->seq;
  2962. }
  2963. log_printf (instance->totemsrp_log_level_debug,
  2964. "install seq %x aru %x high seq received %x\n",
  2965. instance->my_install_seq, instance->my_aru, instance->my_high_seq_received);
  2966. if (instance->my_retrans_flg_count >= 2 &&
  2967. instance->my_received_flg == 0 &&
  2968. sq_lte_compare (instance->my_install_seq, instance->my_aru)) {
  2969. instance->my_received_flg = 1;
  2970. instance->my_deliver_memb_entries = instance->my_trans_memb_entries;
  2971. memcpy (instance->my_deliver_memb_list, instance->my_trans_memb_list,
  2972. sizeof (struct totem_ip_address) * instance->my_trans_memb_entries);
  2973. }
  2974. if (instance->my_retrans_flg_count >= 3 &&
  2975. sq_lte_compare (instance->my_install_seq, token->aru)) {
  2976. instance->my_rotation_counter += 1;
  2977. } else {
  2978. instance->my_rotation_counter = 0;
  2979. }
  2980. if (instance->my_rotation_counter == 2) {
  2981. log_printf (instance->totemsrp_log_level_debug,
  2982. "retrans flag count %x token aru %x install seq %x aru %x %x\n",
  2983. instance->my_retrans_flg_count, token->aru, instance->my_install_seq,
  2984. instance->my_aru, token->seq);
  2985. memb_state_operational_enter (instance);
  2986. instance->my_rotation_counter = 0;
  2987. instance->my_retrans_flg_count = 0;
  2988. }
  2989. }
  2990. totemrrp_send_flush (instance->totemrrp_context);
  2991. token_send (instance, token, forward_token);
  2992. #ifdef GIVEINFO
  2993. tv_current = timerlist_nano_current_get ();
  2994. tv_diff = tv_current - tv_old;
  2995. tv_old = tv_current;
  2996. log_printf (instance->totemsrp_log_level_debug,
  2997. "I held %0.4f ms\n",
  2998. ((float)tv_diff) / 1000000.0);
  2999. #endif
  3000. if (instance->memb_state == MEMB_STATE_OPERATIONAL) {
  3001. messages_deliver_to_app (instance, 0,
  3002. instance->my_high_seq_received);
  3003. }
  3004. /*
  3005. * Deliver messages after token has been transmitted
  3006. * to improve performance
  3007. */
  3008. reset_token_timeout (instance); // REVIEWED
  3009. reset_token_retransmit_timeout (instance); // REVIEWED
  3010. if (totemip_equal(&instance->my_id.addr[0], &instance->my_ring_id.rep) &&
  3011. instance->my_token_held == 1) {
  3012. start_token_hold_retransmit_timeout (instance);
  3013. }
  3014. token_callbacks_execute (instance, TOTEM_CALLBACK_TOKEN_SENT);
  3015. }
  3016. break;
  3017. }
  3018. if ((forward_token)
  3019. && instance->use_heartbeat) {
  3020. reset_heartbeat_timeout(instance);
  3021. }
  3022. else {
  3023. cancel_heartbeat_timeout(instance);
  3024. }
  3025. return (0);
  3026. }
  3027. static void messages_deliver_to_app (
  3028. struct totemsrp_instance *instance,
  3029. int skip,
  3030. unsigned int end_point)
  3031. {
  3032. struct sort_queue_item *sort_queue_item_p;
  3033. unsigned int i;
  3034. int res;
  3035. struct mcast *mcast_in;
  3036. struct mcast mcast_header;
  3037. unsigned int range = 0;
  3038. int endian_conversion_required;
  3039. unsigned int my_high_delivered_stored = 0;
  3040. range = end_point - instance->my_high_delivered;
  3041. if (range) {
  3042. log_printf (instance->totemsrp_log_level_debug,
  3043. "Delivering %x to %x\n", instance->my_high_delivered,
  3044. end_point);
  3045. }
  3046. assert (range < QUEUE_RTR_ITEMS_SIZE_MAX);
  3047. my_high_delivered_stored = instance->my_high_delivered;
  3048. /*
  3049. * Deliver messages in order from rtr queue to pending delivery queue
  3050. */
  3051. for (i = 1; i <= range; i++) {
  3052. void *ptr = 0;
  3053. /*
  3054. * If out of range of sort queue, stop assembly
  3055. */
  3056. res = sq_in_range (&instance->regular_sort_queue,
  3057. my_high_delivered_stored + i);
  3058. if (res == 0) {
  3059. break;
  3060. }
  3061. res = sq_item_get (&instance->regular_sort_queue,
  3062. my_high_delivered_stored + i, &ptr);
  3063. /*
  3064. * If hole, stop assembly
  3065. */
  3066. if (res != 0 && skip == 0) {
  3067. break;
  3068. }
  3069. instance->my_high_delivered = my_high_delivered_stored + i;
  3070. if (res != 0) {
  3071. continue;
  3072. }
  3073. sort_queue_item_p = ptr;
  3074. mcast_in = sort_queue_item_p->mcast;
  3075. assert (mcast_in != (struct mcast *)0xdeadbeef);
  3076. endian_conversion_required = 0;
  3077. if (mcast_in->header.endian_detector != ENDIAN_LOCAL) {
  3078. endian_conversion_required = 1;
  3079. mcast_endian_convert (mcast_in, &mcast_header);
  3080. } else {
  3081. memcpy (&mcast_header, mcast_in, sizeof (struct mcast));
  3082. }
  3083. /*
  3084. * Skip messages not originated in instance->my_deliver_memb
  3085. */
  3086. if (skip &&
  3087. memb_set_subset (&mcast_header.system_from,
  3088. 1,
  3089. instance->my_deliver_memb_list,
  3090. instance->my_deliver_memb_entries) == 0) {
  3091. instance->my_high_delivered = my_high_delivered_stored + i;
  3092. continue;
  3093. }
  3094. /*
  3095. * Message found
  3096. */
  3097. log_printf (instance->totemsrp_log_level_debug,
  3098. "Delivering MCAST message with seq %x to pending delivery queue\n",
  3099. mcast_header.seq);
  3100. /*
  3101. * Message is locally originated multicast
  3102. */
  3103. instance->totemsrp_deliver_fn (
  3104. mcast_header.header.nodeid,
  3105. ((char *)sort_queue_item_p->mcast) + sizeof (struct mcast),
  3106. sort_queue_item_p->msg_len - sizeof (struct mcast),
  3107. endian_conversion_required);
  3108. }
  3109. }
  3110. /*
  3111. * recv message handler called when MCAST message type received
  3112. */
  3113. static int message_handler_mcast (
  3114. struct totemsrp_instance *instance,
  3115. const void *msg,
  3116. size_t msg_len,
  3117. int endian_conversion_needed)
  3118. {
  3119. struct sort_queue_item sort_queue_item;
  3120. struct sq *sort_queue;
  3121. struct mcast mcast_header;
  3122. if (endian_conversion_needed) {
  3123. mcast_endian_convert (msg, &mcast_header);
  3124. } else {
  3125. memcpy (&mcast_header, msg, sizeof (struct mcast));
  3126. }
  3127. if (mcast_header.header.encapsulated == MESSAGE_ENCAPSULATED) {
  3128. sort_queue = &instance->recovery_sort_queue;
  3129. } else {
  3130. sort_queue = &instance->regular_sort_queue;
  3131. }
  3132. assert (msg_len <= FRAME_SIZE_MAX);
  3133. #ifdef TEST_DROP_MCAST_PERCENTAGE
  3134. if (random()%100 < TEST_DROP_MCAST_PERCENTAGE) {
  3135. return (0);
  3136. }
  3137. #endif
  3138. /*
  3139. * If the message is foreign execute the switch below
  3140. */
  3141. if (memcmp (&instance->my_ring_id, &mcast_header.ring_id,
  3142. sizeof (struct memb_ring_id)) != 0) {
  3143. switch (instance->memb_state) {
  3144. case MEMB_STATE_OPERATIONAL:
  3145. memb_set_merge (
  3146. &mcast_header.system_from, 1,
  3147. instance->my_proc_list, &instance->my_proc_list_entries);
  3148. memb_state_gather_enter (instance, 7);
  3149. break;
  3150. case MEMB_STATE_GATHER:
  3151. if (!memb_set_subset (
  3152. &mcast_header.system_from,
  3153. 1,
  3154. instance->my_proc_list,
  3155. instance->my_proc_list_entries)) {
  3156. memb_set_merge (&mcast_header.system_from, 1,
  3157. instance->my_proc_list, &instance->my_proc_list_entries);
  3158. memb_state_gather_enter (instance, 8);
  3159. return (0);
  3160. }
  3161. break;
  3162. case MEMB_STATE_COMMIT:
  3163. /* discard message */
  3164. instance->stats.rx_msg_dropped++;
  3165. break;
  3166. case MEMB_STATE_RECOVERY:
  3167. /* discard message */
  3168. instance->stats.rx_msg_dropped++;
  3169. break;
  3170. }
  3171. return (0);
  3172. }
  3173. log_printf (instance->totemsrp_log_level_debug,
  3174. "Received ringid(%s:%lld) seq %x\n",
  3175. totemip_print (&mcast_header.ring_id.rep),
  3176. mcast_header.ring_id.seq,
  3177. mcast_header.seq);
  3178. /*
  3179. * Add mcast message to rtr queue if not already in rtr queue
  3180. * otherwise free io vectors
  3181. */
  3182. if (msg_len > 0 && msg_len <= FRAME_SIZE_MAX &&
  3183. sq_in_range (sort_queue, mcast_header.seq) &&
  3184. sq_item_inuse (sort_queue, mcast_header.seq) == 0) {
  3185. /*
  3186. * Allocate new multicast memory block
  3187. */
  3188. // TODO LEAK
  3189. sort_queue_item.mcast = totemsrp_buffer_alloc (instance);
  3190. if (sort_queue_item.mcast == NULL) {
  3191. return (-1); /* error here is corrected by the algorithm */
  3192. }
  3193. memcpy (sort_queue_item.mcast, msg, msg_len);
  3194. sort_queue_item.msg_len = msg_len;
  3195. if (sq_lt_compare (instance->my_high_seq_received,
  3196. mcast_header.seq)) {
  3197. instance->my_high_seq_received = mcast_header.seq;
  3198. }
  3199. sq_item_add (sort_queue, &sort_queue_item, mcast_header.seq);
  3200. }
  3201. update_aru (instance);
  3202. if (instance->memb_state == MEMB_STATE_OPERATIONAL) {
  3203. messages_deliver_to_app (instance, 0, instance->my_high_seq_received);
  3204. }
  3205. /* TODO remove from retrans message queue for old ring in recovery state */
  3206. return (0);
  3207. }
  3208. static int message_handler_memb_merge_detect (
  3209. struct totemsrp_instance *instance,
  3210. const void *msg,
  3211. size_t msg_len,
  3212. int endian_conversion_needed)
  3213. {
  3214. struct memb_merge_detect memb_merge_detect;
  3215. if (endian_conversion_needed) {
  3216. memb_merge_detect_endian_convert (msg, &memb_merge_detect);
  3217. } else {
  3218. memcpy (&memb_merge_detect, msg,
  3219. sizeof (struct memb_merge_detect));
  3220. }
  3221. /*
  3222. * do nothing if this is a merge detect from this configuration
  3223. */
  3224. if (memcmp (&instance->my_ring_id, &memb_merge_detect.ring_id,
  3225. sizeof (struct memb_ring_id)) == 0) {
  3226. return (0);
  3227. }
  3228. /*
  3229. * Execute merge operation
  3230. */
  3231. switch (instance->memb_state) {
  3232. case MEMB_STATE_OPERATIONAL:
  3233. memb_set_merge (&memb_merge_detect.system_from, 1,
  3234. instance->my_proc_list, &instance->my_proc_list_entries);
  3235. memb_state_gather_enter (instance, 9);
  3236. break;
  3237. case MEMB_STATE_GATHER:
  3238. if (!memb_set_subset (
  3239. &memb_merge_detect.system_from,
  3240. 1,
  3241. instance->my_proc_list,
  3242. instance->my_proc_list_entries)) {
  3243. memb_set_merge (&memb_merge_detect.system_from, 1,
  3244. instance->my_proc_list, &instance->my_proc_list_entries);
  3245. memb_state_gather_enter (instance, 10);
  3246. return (0);
  3247. }
  3248. break;
  3249. case MEMB_STATE_COMMIT:
  3250. /* do nothing in commit */
  3251. break;
  3252. case MEMB_STATE_RECOVERY:
  3253. /* do nothing in recovery */
  3254. break;
  3255. }
  3256. return (0);
  3257. }
  3258. static void memb_join_process (
  3259. struct totemsrp_instance *instance,
  3260. const struct memb_join *memb_join)
  3261. {
  3262. struct srp_addr *proc_list;
  3263. struct srp_addr *failed_list;
  3264. int gather_entered = 0;
  3265. int fail_minus_memb_entries = 0;
  3266. struct srp_addr fail_minus_memb[PROCESSOR_COUNT_MAX];
  3267. proc_list = (struct srp_addr *)memb_join->end_of_memb_join;
  3268. failed_list = proc_list + memb_join->proc_list_entries;
  3269. /*
  3270. memb_set_print ("proclist", proc_list, memb_join->proc_list_entries);
  3271. memb_set_print ("faillist", failed_list, memb_join->failed_list_entries);
  3272. memb_set_print ("my_proclist", instance->my_proc_list, instance->my_proc_list_entries);
  3273. memb_set_print ("my_faillist", instance->my_failed_list, instance->my_failed_list_entries);
  3274. -*/
  3275. if (memb_set_equal (proc_list,
  3276. memb_join->proc_list_entries,
  3277. instance->my_proc_list,
  3278. instance->my_proc_list_entries) &&
  3279. memb_set_equal (failed_list,
  3280. memb_join->failed_list_entries,
  3281. instance->my_failed_list,
  3282. instance->my_failed_list_entries)) {
  3283. memb_consensus_set (instance, &memb_join->system_from);
  3284. if (memb_consensus_agreed (instance) && instance->failed_to_recv == 1) {
  3285. instance->failed_to_recv = 0;
  3286. srp_addr_copy (&instance->my_proc_list[0],
  3287. &instance->my_id);
  3288. instance->my_proc_list_entries = 1;
  3289. instance->my_failed_list_entries = 0;
  3290. memb_state_commit_token_create (instance);
  3291. memb_state_commit_enter (instance);
  3292. return;
  3293. }
  3294. if (memb_consensus_agreed (instance) &&
  3295. memb_lowest_in_config (instance)) {
  3296. memb_state_commit_token_create (instance);
  3297. memb_state_commit_enter (instance);
  3298. } else {
  3299. return;
  3300. }
  3301. } else
  3302. if (memb_set_subset (proc_list,
  3303. memb_join->proc_list_entries,
  3304. instance->my_proc_list,
  3305. instance->my_proc_list_entries) &&
  3306. memb_set_subset (failed_list,
  3307. memb_join->failed_list_entries,
  3308. instance->my_failed_list,
  3309. instance->my_failed_list_entries)) {
  3310. return;
  3311. } else
  3312. if (memb_set_subset (&memb_join->system_from, 1,
  3313. instance->my_failed_list, instance->my_failed_list_entries)) {
  3314. return;
  3315. } else {
  3316. memb_set_merge (proc_list,
  3317. memb_join->proc_list_entries,
  3318. instance->my_proc_list, &instance->my_proc_list_entries);
  3319. if (memb_set_subset (
  3320. &instance->my_id, 1,
  3321. failed_list, memb_join->failed_list_entries)) {
  3322. memb_set_merge (
  3323. &memb_join->system_from, 1,
  3324. instance->my_failed_list, &instance->my_failed_list_entries);
  3325. } else {
  3326. if (memb_set_subset (
  3327. &memb_join->system_from, 1,
  3328. instance->my_memb_list,
  3329. instance->my_memb_entries)) {
  3330. if (memb_set_subset (
  3331. &memb_join->system_from, 1,
  3332. instance->my_failed_list,
  3333. instance->my_failed_list_entries) == 0) {
  3334. memb_set_merge (failed_list,
  3335. memb_join->failed_list_entries,
  3336. instance->my_failed_list, &instance->my_failed_list_entries);
  3337. } else {
  3338. memb_set_subtract (fail_minus_memb,
  3339. &fail_minus_memb_entries,
  3340. failed_list,
  3341. memb_join->failed_list_entries,
  3342. instance->my_memb_list,
  3343. instance->my_memb_entries);
  3344. memb_set_merge (fail_minus_memb,
  3345. fail_minus_memb_entries,
  3346. instance->my_failed_list,
  3347. &instance->my_failed_list_entries);
  3348. }
  3349. }
  3350. }
  3351. memb_state_gather_enter (instance, 11);
  3352. gather_entered = 1;
  3353. }
  3354. if (gather_entered == 0 &&
  3355. instance->memb_state == MEMB_STATE_OPERATIONAL) {
  3356. memb_state_gather_enter (instance, 12);
  3357. }
  3358. }
  3359. static void memb_join_endian_convert (const struct memb_join *in, struct memb_join *out)
  3360. {
  3361. int i;
  3362. struct srp_addr *in_proc_list;
  3363. struct srp_addr *in_failed_list;
  3364. struct srp_addr *out_proc_list;
  3365. struct srp_addr *out_failed_list;
  3366. out->header.type = in->header.type;
  3367. out->header.endian_detector = ENDIAN_LOCAL;
  3368. out->header.nodeid = swab32 (in->header.nodeid);
  3369. srp_addr_copy_endian_convert (&out->system_from, &in->system_from);
  3370. out->proc_list_entries = swab32 (in->proc_list_entries);
  3371. out->failed_list_entries = swab32 (in->failed_list_entries);
  3372. out->ring_seq = swab64 (in->ring_seq);
  3373. in_proc_list = (struct srp_addr *)in->end_of_memb_join;
  3374. in_failed_list = in_proc_list + out->proc_list_entries;
  3375. out_proc_list = (struct srp_addr *)out->end_of_memb_join;
  3376. out_failed_list = out_proc_list + out->proc_list_entries;
  3377. for (i = 0; i < out->proc_list_entries; i++) {
  3378. srp_addr_copy_endian_convert (&out_proc_list[i], &in_proc_list[i]);
  3379. }
  3380. for (i = 0; i < out->failed_list_entries; i++) {
  3381. srp_addr_copy_endian_convert (&out_failed_list[i], &in_failed_list[i]);
  3382. }
  3383. }
  3384. static void memb_commit_token_endian_convert (const struct memb_commit_token *in, struct memb_commit_token *out)
  3385. {
  3386. int i;
  3387. struct srp_addr *in_addr = (struct srp_addr *)in->end_of_commit_token;
  3388. struct srp_addr *out_addr = (struct srp_addr *)out->end_of_commit_token;
  3389. struct memb_commit_token_memb_entry *in_memb_list;
  3390. struct memb_commit_token_memb_entry *out_memb_list;
  3391. out->header.type = in->header.type;
  3392. out->header.endian_detector = ENDIAN_LOCAL;
  3393. out->header.nodeid = swab32 (in->header.nodeid);
  3394. out->token_seq = swab32 (in->token_seq);
  3395. totemip_copy_endian_convert(&out->ring_id.rep, &in->ring_id.rep);
  3396. out->ring_id.seq = swab64 (in->ring_id.seq);
  3397. out->retrans_flg = swab32 (in->retrans_flg);
  3398. out->memb_index = swab32 (in->memb_index);
  3399. out->addr_entries = swab32 (in->addr_entries);
  3400. in_memb_list = (struct memb_commit_token_memb_entry *)(in_addr + out->addr_entries);
  3401. out_memb_list = (struct memb_commit_token_memb_entry *)(out_addr + out->addr_entries);
  3402. for (i = 0; i < out->addr_entries; i++) {
  3403. srp_addr_copy_endian_convert (&out_addr[i], &in_addr[i]);
  3404. /*
  3405. * Only convert the memb entry if it has been set
  3406. */
  3407. if (in_memb_list[i].ring_id.rep.family != 0) {
  3408. totemip_copy_endian_convert (&out_memb_list[i].ring_id.rep,
  3409. &in_memb_list[i].ring_id.rep);
  3410. out_memb_list[i].ring_id.seq =
  3411. swab64 (in_memb_list[i].ring_id.seq);
  3412. out_memb_list[i].aru = swab32 (in_memb_list[i].aru);
  3413. out_memb_list[i].high_delivered = swab32 (in_memb_list[i].high_delivered);
  3414. out_memb_list[i].received_flg = swab32 (in_memb_list[i].received_flg);
  3415. }
  3416. }
  3417. }
  3418. static void orf_token_endian_convert (const struct orf_token *in, struct orf_token *out)
  3419. {
  3420. int i;
  3421. out->header.type = in->header.type;
  3422. out->header.endian_detector = ENDIAN_LOCAL;
  3423. out->header.nodeid = swab32 (in->header.nodeid);
  3424. out->seq = swab32 (in->seq);
  3425. out->token_seq = swab32 (in->token_seq);
  3426. out->aru = swab32 (in->aru);
  3427. totemip_copy_endian_convert(&out->ring_id.rep, &in->ring_id.rep);
  3428. out->aru_addr = swab32(in->aru_addr);
  3429. out->ring_id.seq = swab64 (in->ring_id.seq);
  3430. out->fcc = swab32 (in->fcc);
  3431. out->backlog = swab32 (in->backlog);
  3432. out->retrans_flg = swab32 (in->retrans_flg);
  3433. out->rtr_list_entries = swab32 (in->rtr_list_entries);
  3434. for (i = 0; i < out->rtr_list_entries; i++) {
  3435. totemip_copy_endian_convert(&out->rtr_list[i].ring_id.rep, &in->rtr_list[i].ring_id.rep);
  3436. out->rtr_list[i].ring_id.seq = swab64 (in->rtr_list[i].ring_id.seq);
  3437. out->rtr_list[i].seq = swab32 (in->rtr_list[i].seq);
  3438. }
  3439. }
  3440. static void mcast_endian_convert (const struct mcast *in, struct mcast *out)
  3441. {
  3442. out->header.type = in->header.type;
  3443. out->header.endian_detector = ENDIAN_LOCAL;
  3444. out->header.nodeid = swab32 (in->header.nodeid);
  3445. out->header.encapsulated = in->header.encapsulated;
  3446. out->seq = swab32 (in->seq);
  3447. out->this_seqno = swab32 (in->this_seqno);
  3448. totemip_copy_endian_convert(&out->ring_id.rep, &in->ring_id.rep);
  3449. out->ring_id.seq = swab64 (in->ring_id.seq);
  3450. out->node_id = swab32 (in->node_id);
  3451. out->guarantee = swab32 (in->guarantee);
  3452. srp_addr_copy_endian_convert (&out->system_from, &in->system_from);
  3453. }
  3454. static void memb_merge_detect_endian_convert (
  3455. const struct memb_merge_detect *in,
  3456. struct memb_merge_detect *out)
  3457. {
  3458. out->header.type = in->header.type;
  3459. out->header.endian_detector = ENDIAN_LOCAL;
  3460. out->header.nodeid = swab32 (in->header.nodeid);
  3461. totemip_copy_endian_convert(&out->ring_id.rep, &in->ring_id.rep);
  3462. out->ring_id.seq = swab64 (in->ring_id.seq);
  3463. srp_addr_copy_endian_convert (&out->system_from, &in->system_from);
  3464. }
  3465. static int message_handler_memb_join (
  3466. struct totemsrp_instance *instance,
  3467. const void *msg,
  3468. size_t msg_len,
  3469. int endian_conversion_needed)
  3470. {
  3471. const struct memb_join *memb_join;
  3472. struct memb_join *memb_join_convert = alloca (msg_len);
  3473. if (endian_conversion_needed) {
  3474. memb_join = memb_join_convert;
  3475. memb_join_endian_convert (msg, memb_join_convert);
  3476. } else {
  3477. memb_join = msg;
  3478. }
  3479. /*
  3480. * If the process paused because it wasn't scheduled in a timely
  3481. * fashion, flush the join messages because they may be queued
  3482. * entries
  3483. */
  3484. if (pause_flush (instance)) {
  3485. return (0);
  3486. }
  3487. if (instance->token_ring_id_seq < memb_join->ring_seq) {
  3488. instance->token_ring_id_seq = memb_join->ring_seq;
  3489. }
  3490. switch (instance->memb_state) {
  3491. case MEMB_STATE_OPERATIONAL:
  3492. memb_join_process (instance, memb_join);
  3493. break;
  3494. case MEMB_STATE_GATHER:
  3495. memb_join_process (instance, memb_join);
  3496. break;
  3497. case MEMB_STATE_COMMIT:
  3498. if (memb_set_subset (&memb_join->system_from,
  3499. 1,
  3500. instance->my_new_memb_list,
  3501. instance->my_new_memb_entries) &&
  3502. memb_join->ring_seq >= instance->my_ring_id.seq) {
  3503. memb_join_process (instance, memb_join);
  3504. memb_state_gather_enter (instance, 13);
  3505. }
  3506. break;
  3507. case MEMB_STATE_RECOVERY:
  3508. if (memb_set_subset (&memb_join->system_from,
  3509. 1,
  3510. instance->my_new_memb_list,
  3511. instance->my_new_memb_entries) &&
  3512. memb_join->ring_seq >= instance->my_ring_id.seq) {
  3513. memb_join_process (instance, memb_join);
  3514. memb_recovery_state_token_loss (instance);
  3515. memb_state_gather_enter (instance, 14);
  3516. }
  3517. break;
  3518. }
  3519. return (0);
  3520. }
  3521. static int message_handler_memb_commit_token (
  3522. struct totemsrp_instance *instance,
  3523. const void *msg,
  3524. size_t msg_len,
  3525. int endian_conversion_needed)
  3526. {
  3527. struct memb_commit_token *memb_commit_token_convert = alloca (msg_len);
  3528. struct memb_commit_token *memb_commit_token;
  3529. struct srp_addr sub[PROCESSOR_COUNT_MAX];
  3530. int sub_entries;
  3531. struct srp_addr *addr;
  3532. log_printf (instance->totemsrp_log_level_debug,
  3533. "got commit token\n");
  3534. if (endian_conversion_needed) {
  3535. memb_commit_token_endian_convert (msg, memb_commit_token_convert);
  3536. } else {
  3537. memcpy (memb_commit_token_convert, msg, msg_len);
  3538. }
  3539. memb_commit_token = memb_commit_token_convert;
  3540. addr = (struct srp_addr *)memb_commit_token->end_of_commit_token;
  3541. #ifdef TEST_DROP_COMMIT_TOKEN_PERCENTAGE
  3542. if (random()%100 < TEST_DROP_COMMIT_TOKEN_PERCENTAGE) {
  3543. return (0);
  3544. }
  3545. #endif
  3546. switch (instance->memb_state) {
  3547. case MEMB_STATE_OPERATIONAL:
  3548. /* discard token */
  3549. break;
  3550. case MEMB_STATE_GATHER:
  3551. memb_set_subtract (sub, &sub_entries,
  3552. instance->my_proc_list, instance->my_proc_list_entries,
  3553. instance->my_failed_list, instance->my_failed_list_entries);
  3554. if (memb_set_equal (addr,
  3555. memb_commit_token->addr_entries,
  3556. sub,
  3557. sub_entries) &&
  3558. memb_commit_token->ring_id.seq > instance->my_ring_id.seq) {
  3559. memcpy (instance->commit_token, memb_commit_token, msg_len);
  3560. memb_state_commit_enter (instance);
  3561. }
  3562. break;
  3563. case MEMB_STATE_COMMIT:
  3564. /*
  3565. * If retransmitted commit tokens are sent on this ring
  3566. * filter them out and only enter recovery once the
  3567. * commit token has traversed the array. This is
  3568. * determined by :
  3569. * memb_commit_token->memb_index == memb_commit_token->addr_entries) {
  3570. */
  3571. if (memb_commit_token->ring_id.seq == instance->my_ring_id.seq &&
  3572. memb_commit_token->memb_index == memb_commit_token->addr_entries) {
  3573. memb_state_recovery_enter (instance, memb_commit_token);
  3574. }
  3575. break;
  3576. case MEMB_STATE_RECOVERY:
  3577. if (totemip_equal (&instance->my_id.addr[0], &instance->my_ring_id.rep)) {
  3578. log_printf (instance->totemsrp_log_level_debug,
  3579. "Sending initial ORF token\n");
  3580. // TODO convert instead of initiate
  3581. orf_token_send_initial (instance);
  3582. reset_token_timeout (instance); // REVIEWED
  3583. reset_token_retransmit_timeout (instance); // REVIEWED
  3584. }
  3585. break;
  3586. }
  3587. return (0);
  3588. }
  3589. static int message_handler_token_hold_cancel (
  3590. struct totemsrp_instance *instance,
  3591. const void *msg,
  3592. size_t msg_len,
  3593. int endian_conversion_needed)
  3594. {
  3595. const struct token_hold_cancel *token_hold_cancel = msg;
  3596. if (memcmp (&token_hold_cancel->ring_id, &instance->my_ring_id,
  3597. sizeof (struct memb_ring_id)) == 0) {
  3598. instance->my_seq_unchanged = 0;
  3599. if (totemip_equal(&instance->my_ring_id.rep, &instance->my_id.addr[0])) {
  3600. timer_function_token_retransmit_timeout (instance);
  3601. }
  3602. }
  3603. return (0);
  3604. }
  3605. void main_deliver_fn (
  3606. void *context,
  3607. const void *msg,
  3608. unsigned int msg_len)
  3609. {
  3610. struct totemsrp_instance *instance = context;
  3611. const struct message_header *message_header = msg;
  3612. if (msg_len < sizeof (struct message_header)) {
  3613. log_printf (instance->totemsrp_log_level_security,
  3614. "Received message is too short... ignoring %u.\n",
  3615. (unsigned int)msg_len);
  3616. return;
  3617. }
  3618. switch (message_header->type) {
  3619. case MESSAGE_TYPE_ORF_TOKEN:
  3620. instance->stats.orf_token_rx++;
  3621. break;
  3622. case MESSAGE_TYPE_MCAST:
  3623. instance->stats.mcast_rx++;
  3624. break;
  3625. case MESSAGE_TYPE_MEMB_MERGE_DETECT:
  3626. instance->stats.memb_merge_detect_rx++;
  3627. break;
  3628. case MESSAGE_TYPE_MEMB_JOIN:
  3629. instance->stats.memb_join_rx++;
  3630. break;
  3631. case MESSAGE_TYPE_MEMB_COMMIT_TOKEN:
  3632. instance->stats.memb_commit_token_rx++;
  3633. break;
  3634. case MESSAGE_TYPE_TOKEN_HOLD_CANCEL:
  3635. instance->stats.token_hold_cancel_rx++;
  3636. break;
  3637. default:
  3638. log_printf (instance->totemsrp_log_level_security, "Type of received message is wrong... ignoring %d.\n", (int)message_header->type);
  3639. printf ("wrong message type\n");
  3640. instance->stats.rx_msg_dropped++;
  3641. return;
  3642. }
  3643. /*
  3644. * Handle incoming message
  3645. */
  3646. totemsrp_message_handlers.handler_functions[(int)message_header->type] (
  3647. instance,
  3648. msg,
  3649. msg_len,
  3650. message_header->endian_detector != ENDIAN_LOCAL);
  3651. }
  3652. void main_iface_change_fn (
  3653. void *context,
  3654. const struct totem_ip_address *iface_addr,
  3655. unsigned int iface_no)
  3656. {
  3657. struct totemsrp_instance *instance = context;
  3658. int i;
  3659. totemip_copy (&instance->my_id.addr[iface_no], iface_addr);
  3660. assert (instance->my_id.addr[iface_no].nodeid);
  3661. totemip_copy (&instance->my_memb_list[0].addr[iface_no], iface_addr);
  3662. if (instance->iface_changes++ == 0) {
  3663. memb_ring_id_create_or_load (instance, &instance->my_ring_id);
  3664. log_printf (
  3665. instance->totemsrp_log_level_debug,
  3666. "Created or loaded sequence id %lld.%s for this ring.\n",
  3667. instance->my_ring_id.seq,
  3668. totemip_print (&instance->my_ring_id.rep));
  3669. for (i = 0; i < instance->totem_config->interfaces[iface_no].member_count; i++) {
  3670. totemsrp_member_add (instance,
  3671. &instance->totem_config->interfaces[iface_no].member_list[i],
  3672. iface_no);
  3673. }
  3674. if (instance->totemsrp_service_ready_fn) {
  3675. instance->totemsrp_service_ready_fn ();
  3676. }
  3677. }
  3678. if (instance->iface_changes >= instance->totem_config->interface_count) {
  3679. memb_state_gather_enter (instance, 15);
  3680. }
  3681. }
  3682. void totemsrp_net_mtu_adjust (struct totem_config *totem_config) {
  3683. totem_config->net_mtu -= sizeof (struct mcast);
  3684. }
  3685. void totemsrp_service_ready_register (
  3686. void *context,
  3687. void (*totem_service_ready) (void))
  3688. {
  3689. struct totemsrp_instance *instance = (struct totemsrp_instance *)context;
  3690. instance->totemsrp_service_ready_fn = totem_service_ready;
  3691. }
  3692. int totemsrp_member_add (
  3693. void *context,
  3694. const struct totem_ip_address *member,
  3695. int ring_no)
  3696. {
  3697. struct totemsrp_instance *instance = (struct totemsrp_instance *)context;
  3698. int res;
  3699. res = totemrrp_member_add (instance->totemrrp_context, member, ring_no);
  3700. return (res);
  3701. }
  3702. int totemsrp_member_remove (
  3703. void *context,
  3704. const struct totem_ip_address *member,
  3705. int ring_no)
  3706. {
  3707. struct totemsrp_instance *instance = (struct totemsrp_instance *)context;
  3708. int res;
  3709. res = totemrrp_member_remove (instance->totemrrp_context, member, ring_no);
  3710. return (res);
  3711. }