drbd_state.c 47 KB

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  1. /*
  2. drbd_state.c
  3. This file is part of DRBD by Philipp Reisner and Lars Ellenberg.
  4. Copyright (C) 2001-2008, LINBIT Information Technologies GmbH.
  5. Copyright (C) 1999-2008, Philipp Reisner <philipp.reisner@linbit.com>.
  6. Copyright (C) 2002-2008, Lars Ellenberg <lars.ellenberg@linbit.com>.
  7. Thanks to Carter Burden, Bart Grantham and Gennadiy Nerubayev
  8. from Logicworks, Inc. for making SDP replication support possible.
  9. drbd is free software; you can redistribute it and/or modify
  10. it under the terms of the GNU General Public License as published by
  11. the Free Software Foundation; either version 2, or (at your option)
  12. any later version.
  13. drbd is distributed in the hope that it will be useful,
  14. but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. GNU General Public License for more details.
  17. You should have received a copy of the GNU General Public License
  18. along with drbd; see the file COPYING. If not, write to
  19. the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
  20. */
  21. #include <linux/drbd_limits.h>
  22. #include "drbd_int.h"
  23. #include "drbd_req.h"
  24. struct after_state_chg_work {
  25. struct drbd_work w;
  26. union drbd_state os;
  27. union drbd_state ns;
  28. enum chg_state_flags flags;
  29. struct completion *done;
  30. };
  31. static int w_after_state_ch(struct drbd_work *w, int unused);
  32. static void after_state_ch(struct drbd_conf *mdev, union drbd_state os,
  33. union drbd_state ns, enum chg_state_flags flags);
  34. static void after_all_state_ch(struct drbd_tconn *tconn);
  35. static enum drbd_state_rv is_valid_state(struct drbd_conf *, union drbd_state);
  36. static enum drbd_state_rv is_valid_soft_transition(union drbd_state, union drbd_state);
  37. static enum drbd_state_rv is_valid_transition(union drbd_state os, union drbd_state ns);
  38. static union drbd_state sanitize_state(struct drbd_conf *mdev, union drbd_state ns,
  39. const char **warn_sync_abort);
  40. static inline bool is_susp(union drbd_state s)
  41. {
  42. return s.susp || s.susp_nod || s.susp_fen;
  43. }
  44. bool conn_all_vols_unconf(struct drbd_tconn *tconn)
  45. {
  46. struct drbd_conf *mdev;
  47. int vnr;
  48. idr_for_each_entry(&tconn->volumes, mdev, vnr) {
  49. if (mdev->state.disk != D_DISKLESS ||
  50. mdev->state.conn != C_STANDALONE ||
  51. mdev->state.role != R_SECONDARY)
  52. return false;
  53. }
  54. return true;
  55. }
  56. /* Unfortunately the states where not correctly ordered, when
  57. they where defined. therefore can not use max_t() here. */
  58. static enum drbd_role max_role(enum drbd_role role1, enum drbd_role role2)
  59. {
  60. if (role1 == R_PRIMARY || role2 == R_PRIMARY)
  61. return R_PRIMARY;
  62. if (role1 == R_SECONDARY || role2 == R_SECONDARY)
  63. return R_SECONDARY;
  64. return R_UNKNOWN;
  65. }
  66. static enum drbd_role min_role(enum drbd_role role1, enum drbd_role role2)
  67. {
  68. if (role1 == R_UNKNOWN || role2 == R_UNKNOWN)
  69. return R_UNKNOWN;
  70. if (role1 == R_SECONDARY || role2 == R_SECONDARY)
  71. return R_SECONDARY;
  72. return R_PRIMARY;
  73. }
  74. enum drbd_role conn_highest_role(struct drbd_tconn *tconn)
  75. {
  76. enum drbd_role role = R_UNKNOWN;
  77. struct drbd_conf *mdev;
  78. int vnr;
  79. idr_for_each_entry(&tconn->volumes, mdev, vnr)
  80. role = max_role(role, mdev->state.role);
  81. return role;
  82. }
  83. enum drbd_role conn_highest_peer(struct drbd_tconn *tconn)
  84. {
  85. enum drbd_role peer = R_UNKNOWN;
  86. struct drbd_conf *mdev;
  87. int vnr;
  88. idr_for_each_entry(&tconn->volumes, mdev, vnr)
  89. peer = max_role(peer, mdev->state.peer);
  90. return peer;
  91. }
  92. enum drbd_disk_state conn_highest_disk(struct drbd_tconn *tconn)
  93. {
  94. enum drbd_disk_state ds = D_DISKLESS;
  95. struct drbd_conf *mdev;
  96. int vnr;
  97. idr_for_each_entry(&tconn->volumes, mdev, vnr)
  98. ds = max_t(enum drbd_disk_state, ds, mdev->state.disk);
  99. return ds;
  100. }
  101. enum drbd_disk_state conn_lowest_disk(struct drbd_tconn *tconn)
  102. {
  103. enum drbd_disk_state ds = D_MASK;
  104. struct drbd_conf *mdev;
  105. int vnr;
  106. idr_for_each_entry(&tconn->volumes, mdev, vnr)
  107. ds = min_t(enum drbd_disk_state, ds, mdev->state.disk);
  108. return ds;
  109. }
  110. enum drbd_disk_state conn_highest_pdsk(struct drbd_tconn *tconn)
  111. {
  112. enum drbd_disk_state ds = D_DISKLESS;
  113. struct drbd_conf *mdev;
  114. int vnr;
  115. idr_for_each_entry(&tconn->volumes, mdev, vnr)
  116. ds = max_t(enum drbd_disk_state, ds, mdev->state.pdsk);
  117. return ds;
  118. }
  119. enum drbd_conns conn_lowest_conn(struct drbd_tconn *tconn)
  120. {
  121. enum drbd_conns conn = C_MASK;
  122. struct drbd_conf *mdev;
  123. int vnr;
  124. idr_for_each_entry(&tconn->volumes, mdev, vnr)
  125. conn = min_t(enum drbd_conns, conn, mdev->state.conn);
  126. return conn;
  127. }
  128. /**
  129. * cl_wide_st_chg() - true if the state change is a cluster wide one
  130. * @mdev: DRBD device.
  131. * @os: old (current) state.
  132. * @ns: new (wanted) state.
  133. */
  134. static int cl_wide_st_chg(struct drbd_conf *mdev,
  135. union drbd_state os, union drbd_state ns)
  136. {
  137. return (os.conn >= C_CONNECTED && ns.conn >= C_CONNECTED &&
  138. ((os.role != R_PRIMARY && ns.role == R_PRIMARY) ||
  139. (os.conn != C_STARTING_SYNC_T && ns.conn == C_STARTING_SYNC_T) ||
  140. (os.conn != C_STARTING_SYNC_S && ns.conn == C_STARTING_SYNC_S) ||
  141. (os.disk != D_DISKLESS && ns.disk == D_DISKLESS))) ||
  142. (os.conn >= C_CONNECTED && ns.conn == C_DISCONNECTING) ||
  143. (os.conn == C_CONNECTED && ns.conn == C_VERIFY_S);
  144. }
  145. static union drbd_state
  146. apply_mask_val(union drbd_state os, union drbd_state mask, union drbd_state val)
  147. {
  148. union drbd_state ns;
  149. ns.i = (os.i & ~mask.i) | val.i;
  150. return ns;
  151. }
  152. enum drbd_state_rv
  153. drbd_change_state(struct drbd_conf *mdev, enum chg_state_flags f,
  154. union drbd_state mask, union drbd_state val)
  155. {
  156. unsigned long flags;
  157. union drbd_state ns;
  158. enum drbd_state_rv rv;
  159. spin_lock_irqsave(&mdev->tconn->req_lock, flags);
  160. ns = apply_mask_val(drbd_read_state(mdev), mask, val);
  161. rv = _drbd_set_state(mdev, ns, f, NULL);
  162. spin_unlock_irqrestore(&mdev->tconn->req_lock, flags);
  163. return rv;
  164. }
  165. /**
  166. * drbd_force_state() - Impose a change which happens outside our control on our state
  167. * @mdev: DRBD device.
  168. * @mask: mask of state bits to change.
  169. * @val: value of new state bits.
  170. */
  171. void drbd_force_state(struct drbd_conf *mdev,
  172. union drbd_state mask, union drbd_state val)
  173. {
  174. drbd_change_state(mdev, CS_HARD, mask, val);
  175. }
  176. static enum drbd_state_rv
  177. _req_st_cond(struct drbd_conf *mdev, union drbd_state mask,
  178. union drbd_state val)
  179. {
  180. union drbd_state os, ns;
  181. unsigned long flags;
  182. enum drbd_state_rv rv;
  183. if (test_and_clear_bit(CL_ST_CHG_SUCCESS, &mdev->flags))
  184. return SS_CW_SUCCESS;
  185. if (test_and_clear_bit(CL_ST_CHG_FAIL, &mdev->flags))
  186. return SS_CW_FAILED_BY_PEER;
  187. spin_lock_irqsave(&mdev->tconn->req_lock, flags);
  188. os = drbd_read_state(mdev);
  189. ns = sanitize_state(mdev, apply_mask_val(os, mask, val), NULL);
  190. rv = is_valid_transition(os, ns);
  191. if (rv == SS_SUCCESS)
  192. rv = SS_UNKNOWN_ERROR; /* cont waiting, otherwise fail. */
  193. if (!cl_wide_st_chg(mdev, os, ns))
  194. rv = SS_CW_NO_NEED;
  195. if (rv == SS_UNKNOWN_ERROR) {
  196. rv = is_valid_state(mdev, ns);
  197. if (rv == SS_SUCCESS) {
  198. rv = is_valid_soft_transition(os, ns);
  199. if (rv == SS_SUCCESS)
  200. rv = SS_UNKNOWN_ERROR; /* cont waiting, otherwise fail. */
  201. }
  202. }
  203. spin_unlock_irqrestore(&mdev->tconn->req_lock, flags);
  204. return rv;
  205. }
  206. /**
  207. * drbd_req_state() - Perform an eventually cluster wide state change
  208. * @mdev: DRBD device.
  209. * @mask: mask of state bits to change.
  210. * @val: value of new state bits.
  211. * @f: flags
  212. *
  213. * Should not be called directly, use drbd_request_state() or
  214. * _drbd_request_state().
  215. */
  216. static enum drbd_state_rv
  217. drbd_req_state(struct drbd_conf *mdev, union drbd_state mask,
  218. union drbd_state val, enum chg_state_flags f)
  219. {
  220. struct completion done;
  221. unsigned long flags;
  222. union drbd_state os, ns;
  223. enum drbd_state_rv rv;
  224. init_completion(&done);
  225. if (f & CS_SERIALIZE)
  226. mutex_lock(mdev->state_mutex);
  227. spin_lock_irqsave(&mdev->tconn->req_lock, flags);
  228. os = drbd_read_state(mdev);
  229. ns = sanitize_state(mdev, apply_mask_val(os, mask, val), NULL);
  230. rv = is_valid_transition(os, ns);
  231. if (rv < SS_SUCCESS) {
  232. spin_unlock_irqrestore(&mdev->tconn->req_lock, flags);
  233. goto abort;
  234. }
  235. if (cl_wide_st_chg(mdev, os, ns)) {
  236. rv = is_valid_state(mdev, ns);
  237. if (rv == SS_SUCCESS)
  238. rv = is_valid_soft_transition(os, ns);
  239. spin_unlock_irqrestore(&mdev->tconn->req_lock, flags);
  240. if (rv < SS_SUCCESS) {
  241. if (f & CS_VERBOSE)
  242. print_st_err(mdev, os, ns, rv);
  243. goto abort;
  244. }
  245. if (drbd_send_state_req(mdev, mask, val)) {
  246. rv = SS_CW_FAILED_BY_PEER;
  247. if (f & CS_VERBOSE)
  248. print_st_err(mdev, os, ns, rv);
  249. goto abort;
  250. }
  251. wait_event(mdev->state_wait,
  252. (rv = _req_st_cond(mdev, mask, val)));
  253. if (rv < SS_SUCCESS) {
  254. if (f & CS_VERBOSE)
  255. print_st_err(mdev, os, ns, rv);
  256. goto abort;
  257. }
  258. spin_lock_irqsave(&mdev->tconn->req_lock, flags);
  259. ns = apply_mask_val(drbd_read_state(mdev), mask, val);
  260. rv = _drbd_set_state(mdev, ns, f, &done);
  261. } else {
  262. rv = _drbd_set_state(mdev, ns, f, &done);
  263. }
  264. spin_unlock_irqrestore(&mdev->tconn->req_lock, flags);
  265. if (f & CS_WAIT_COMPLETE && rv == SS_SUCCESS) {
  266. D_ASSERT(current != mdev->tconn->worker.task);
  267. wait_for_completion(&done);
  268. }
  269. abort:
  270. if (f & CS_SERIALIZE)
  271. mutex_unlock(mdev->state_mutex);
  272. return rv;
  273. }
  274. /**
  275. * _drbd_request_state() - Request a state change (with flags)
  276. * @mdev: DRBD device.
  277. * @mask: mask of state bits to change.
  278. * @val: value of new state bits.
  279. * @f: flags
  280. *
  281. * Cousin of drbd_request_state(), useful with the CS_WAIT_COMPLETE
  282. * flag, or when logging of failed state change requests is not desired.
  283. */
  284. enum drbd_state_rv
  285. _drbd_request_state(struct drbd_conf *mdev, union drbd_state mask,
  286. union drbd_state val, enum chg_state_flags f)
  287. {
  288. enum drbd_state_rv rv;
  289. wait_event(mdev->state_wait,
  290. (rv = drbd_req_state(mdev, mask, val, f)) != SS_IN_TRANSIENT_STATE);
  291. return rv;
  292. }
  293. static void print_st(struct drbd_conf *mdev, char *name, union drbd_state ns)
  294. {
  295. dev_err(DEV, " %s = { cs:%s ro:%s/%s ds:%s/%s %c%c%c%c%c%c }\n",
  296. name,
  297. drbd_conn_str(ns.conn),
  298. drbd_role_str(ns.role),
  299. drbd_role_str(ns.peer),
  300. drbd_disk_str(ns.disk),
  301. drbd_disk_str(ns.pdsk),
  302. is_susp(ns) ? 's' : 'r',
  303. ns.aftr_isp ? 'a' : '-',
  304. ns.peer_isp ? 'p' : '-',
  305. ns.user_isp ? 'u' : '-',
  306. ns.susp_fen ? 'F' : '-',
  307. ns.susp_nod ? 'N' : '-'
  308. );
  309. }
  310. void print_st_err(struct drbd_conf *mdev, union drbd_state os,
  311. union drbd_state ns, enum drbd_state_rv err)
  312. {
  313. if (err == SS_IN_TRANSIENT_STATE)
  314. return;
  315. dev_err(DEV, "State change failed: %s\n", drbd_set_st_err_str(err));
  316. print_st(mdev, " state", os);
  317. print_st(mdev, "wanted", ns);
  318. }
  319. static long print_state_change(char *pb, union drbd_state os, union drbd_state ns,
  320. enum chg_state_flags flags)
  321. {
  322. char *pbp;
  323. pbp = pb;
  324. *pbp = 0;
  325. if (ns.role != os.role && flags & CS_DC_ROLE)
  326. pbp += sprintf(pbp, "role( %s -> %s ) ",
  327. drbd_role_str(os.role),
  328. drbd_role_str(ns.role));
  329. if (ns.peer != os.peer && flags & CS_DC_PEER)
  330. pbp += sprintf(pbp, "peer( %s -> %s ) ",
  331. drbd_role_str(os.peer),
  332. drbd_role_str(ns.peer));
  333. if (ns.conn != os.conn && flags & CS_DC_CONN)
  334. pbp += sprintf(pbp, "conn( %s -> %s ) ",
  335. drbd_conn_str(os.conn),
  336. drbd_conn_str(ns.conn));
  337. if (ns.disk != os.disk && flags & CS_DC_DISK)
  338. pbp += sprintf(pbp, "disk( %s -> %s ) ",
  339. drbd_disk_str(os.disk),
  340. drbd_disk_str(ns.disk));
  341. if (ns.pdsk != os.pdsk && flags & CS_DC_PDSK)
  342. pbp += sprintf(pbp, "pdsk( %s -> %s ) ",
  343. drbd_disk_str(os.pdsk),
  344. drbd_disk_str(ns.pdsk));
  345. if (is_susp(ns) != is_susp(os))
  346. pbp += sprintf(pbp, "susp( %d -> %d ) ",
  347. is_susp(os),
  348. is_susp(ns));
  349. if (ns.aftr_isp != os.aftr_isp)
  350. pbp += sprintf(pbp, "aftr_isp( %d -> %d ) ",
  351. os.aftr_isp,
  352. ns.aftr_isp);
  353. if (ns.peer_isp != os.peer_isp)
  354. pbp += sprintf(pbp, "peer_isp( %d -> %d ) ",
  355. os.peer_isp,
  356. ns.peer_isp);
  357. if (ns.user_isp != os.user_isp)
  358. pbp += sprintf(pbp, "user_isp( %d -> %d ) ",
  359. os.user_isp,
  360. ns.user_isp);
  361. return pbp - pb;
  362. }
  363. static void drbd_pr_state_change(struct drbd_conf *mdev, union drbd_state os, union drbd_state ns,
  364. enum chg_state_flags flags)
  365. {
  366. char pb[300];
  367. if (print_state_change(pb, os, ns, flags ^ CS_DC_MASK))
  368. dev_info(DEV, "%s\n", pb);
  369. }
  370. static void conn_pr_state_change(struct drbd_tconn *tconn, union drbd_state os, union drbd_state ns,
  371. enum chg_state_flags flags)
  372. {
  373. char pb[300];
  374. if (print_state_change(pb, os, ns, flags))
  375. conn_info(tconn, "%s\n", pb);
  376. }
  377. /**
  378. * is_valid_state() - Returns an SS_ error code if ns is not valid
  379. * @mdev: DRBD device.
  380. * @ns: State to consider.
  381. */
  382. static enum drbd_state_rv
  383. is_valid_state(struct drbd_conf *mdev, union drbd_state ns)
  384. {
  385. /* See drbd_state_sw_errors in drbd_strings.c */
  386. enum drbd_fencing_p fp;
  387. enum drbd_state_rv rv = SS_SUCCESS;
  388. fp = FP_DONT_CARE;
  389. if (get_ldev(mdev)) {
  390. fp = mdev->ldev->dc.fencing;
  391. put_ldev(mdev);
  392. }
  393. if (get_net_conf(mdev->tconn)) {
  394. if (!mdev->tconn->net_conf->two_primaries && ns.role == R_PRIMARY) {
  395. if (ns.peer == R_PRIMARY)
  396. rv = SS_TWO_PRIMARIES;
  397. else if (conn_highest_peer(mdev->tconn) == R_PRIMARY)
  398. rv = SS_O_VOL_PEER_PRI;
  399. }
  400. put_net_conf(mdev->tconn);
  401. }
  402. if (rv <= 0)
  403. /* already found a reason to abort */;
  404. else if (ns.role == R_SECONDARY && mdev->open_cnt)
  405. rv = SS_DEVICE_IN_USE;
  406. else if (ns.role == R_PRIMARY && ns.conn < C_CONNECTED && ns.disk < D_UP_TO_DATE)
  407. rv = SS_NO_UP_TO_DATE_DISK;
  408. else if (fp >= FP_RESOURCE &&
  409. ns.role == R_PRIMARY && ns.conn < C_CONNECTED && ns.pdsk >= D_UNKNOWN)
  410. rv = SS_PRIMARY_NOP;
  411. else if (ns.role == R_PRIMARY && ns.disk <= D_INCONSISTENT && ns.pdsk <= D_INCONSISTENT)
  412. rv = SS_NO_UP_TO_DATE_DISK;
  413. else if (ns.conn > C_CONNECTED && ns.disk < D_INCONSISTENT)
  414. rv = SS_NO_LOCAL_DISK;
  415. else if (ns.conn > C_CONNECTED && ns.pdsk < D_INCONSISTENT)
  416. rv = SS_NO_REMOTE_DISK;
  417. else if (ns.conn > C_CONNECTED && ns.disk < D_UP_TO_DATE && ns.pdsk < D_UP_TO_DATE)
  418. rv = SS_NO_UP_TO_DATE_DISK;
  419. else if ((ns.conn == C_CONNECTED ||
  420. ns.conn == C_WF_BITMAP_S ||
  421. ns.conn == C_SYNC_SOURCE ||
  422. ns.conn == C_PAUSED_SYNC_S) &&
  423. ns.disk == D_OUTDATED)
  424. rv = SS_CONNECTED_OUTDATES;
  425. else if ((ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T) &&
  426. (mdev->tconn->net_conf->verify_alg[0] == 0))
  427. rv = SS_NO_VERIFY_ALG;
  428. else if ((ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T) &&
  429. mdev->tconn->agreed_pro_version < 88)
  430. rv = SS_NOT_SUPPORTED;
  431. else if (ns.conn >= C_CONNECTED && ns.pdsk == D_UNKNOWN)
  432. rv = SS_CONNECTED_OUTDATES;
  433. return rv;
  434. }
  435. /**
  436. * is_valid_soft_transition() - Returns an SS_ error code if the state transition is not possible
  437. * This function limits state transitions that may be declined by DRBD. I.e.
  438. * user requests (aka soft transitions).
  439. * @mdev: DRBD device.
  440. * @ns: new state.
  441. * @os: old state.
  442. */
  443. static enum drbd_state_rv
  444. is_valid_soft_transition(union drbd_state os, union drbd_state ns)
  445. {
  446. enum drbd_state_rv rv = SS_SUCCESS;
  447. if ((ns.conn == C_STARTING_SYNC_T || ns.conn == C_STARTING_SYNC_S) &&
  448. os.conn > C_CONNECTED)
  449. rv = SS_RESYNC_RUNNING;
  450. if (ns.conn == C_DISCONNECTING && os.conn == C_STANDALONE)
  451. rv = SS_ALREADY_STANDALONE;
  452. if (ns.disk > D_ATTACHING && os.disk == D_DISKLESS)
  453. rv = SS_IS_DISKLESS;
  454. if (ns.conn == C_WF_CONNECTION && os.conn < C_UNCONNECTED)
  455. rv = SS_NO_NET_CONFIG;
  456. if (ns.disk == D_OUTDATED && os.disk < D_OUTDATED && os.disk != D_ATTACHING)
  457. rv = SS_LOWER_THAN_OUTDATED;
  458. if (ns.conn == C_DISCONNECTING && os.conn == C_UNCONNECTED)
  459. rv = SS_IN_TRANSIENT_STATE;
  460. /* if (ns.conn == os.conn && ns.conn == C_WF_REPORT_PARAMS)
  461. rv = SS_IN_TRANSIENT_STATE; */
  462. if ((ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T) && os.conn < C_CONNECTED)
  463. rv = SS_NEED_CONNECTION;
  464. if ((ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T) &&
  465. ns.conn != os.conn && os.conn > C_CONNECTED)
  466. rv = SS_RESYNC_RUNNING;
  467. if ((ns.conn == C_STARTING_SYNC_S || ns.conn == C_STARTING_SYNC_T) &&
  468. os.conn < C_CONNECTED)
  469. rv = SS_NEED_CONNECTION;
  470. if ((ns.conn == C_SYNC_TARGET || ns.conn == C_SYNC_SOURCE)
  471. && os.conn < C_WF_REPORT_PARAMS)
  472. rv = SS_NEED_CONNECTION; /* No NetworkFailure -> SyncTarget etc... */
  473. return rv;
  474. }
  475. static enum drbd_state_rv
  476. is_valid_conn_transition(enum drbd_conns oc, enum drbd_conns nc)
  477. {
  478. enum drbd_state_rv rv = SS_SUCCESS;
  479. /* Disallow Network errors to configure a device's network part */
  480. if ((nc >= C_TIMEOUT && nc <= C_TEAR_DOWN) && oc <= C_DISCONNECTING)
  481. rv = SS_NEED_CONNECTION;
  482. /* After a network error only C_UNCONNECTED or C_DISCONNECTING may follow. */
  483. if (oc >= C_TIMEOUT && oc <= C_TEAR_DOWN && nc != C_UNCONNECTED && nc != C_DISCONNECTING)
  484. rv = SS_IN_TRANSIENT_STATE;
  485. /* After C_DISCONNECTING only C_STANDALONE may follow */
  486. if (oc == C_DISCONNECTING && nc != C_STANDALONE)
  487. rv = SS_IN_TRANSIENT_STATE;
  488. return rv;
  489. }
  490. /**
  491. * is_valid_transition() - Returns an SS_ error code if the state transition is not possible
  492. * This limits hard state transitions. Hard state transitions are facts there are
  493. * imposed on DRBD by the environment. E.g. disk broke or network broke down.
  494. * But those hard state transitions are still not allowed to do everything.
  495. * @ns: new state.
  496. * @os: old state.
  497. */
  498. static enum drbd_state_rv
  499. is_valid_transition(union drbd_state os, union drbd_state ns)
  500. {
  501. enum drbd_state_rv rv;
  502. rv = is_valid_conn_transition(os.conn, ns.conn);
  503. /* we cannot fail (again) if we already detached */
  504. if (ns.disk == D_FAILED && os.disk == D_DISKLESS)
  505. rv = SS_IS_DISKLESS;
  506. /* if we are only D_ATTACHING yet,
  507. * we can (and should) go directly to D_DISKLESS. */
  508. if (ns.disk == D_FAILED && os.disk == D_ATTACHING) {
  509. printk("TODO: FIX ME\n");
  510. rv = SS_IS_DISKLESS;
  511. }
  512. return rv;
  513. }
  514. /**
  515. * sanitize_state() - Resolves implicitly necessary additional changes to a state transition
  516. * @mdev: DRBD device.
  517. * @os: old state.
  518. * @ns: new state.
  519. * @warn_sync_abort:
  520. *
  521. * When we loose connection, we have to set the state of the peers disk (pdsk)
  522. * to D_UNKNOWN. This rule and many more along those lines are in this function.
  523. */
  524. static union drbd_state sanitize_state(struct drbd_conf *mdev, union drbd_state ns,
  525. const char **warn_sync_abort)
  526. {
  527. enum drbd_fencing_p fp;
  528. enum drbd_disk_state disk_min, disk_max, pdsk_min, pdsk_max;
  529. fp = FP_DONT_CARE;
  530. if (get_ldev(mdev)) {
  531. fp = mdev->ldev->dc.fencing;
  532. put_ldev(mdev);
  533. }
  534. /* Implications from connection to peer and peer_isp */
  535. if (ns.conn < C_CONNECTED) {
  536. ns.peer_isp = 0;
  537. ns.peer = R_UNKNOWN;
  538. if (ns.pdsk > D_UNKNOWN || ns.pdsk < D_INCONSISTENT)
  539. ns.pdsk = D_UNKNOWN;
  540. }
  541. /* Clear the aftr_isp when becoming unconfigured */
  542. if (ns.conn == C_STANDALONE && ns.disk == D_DISKLESS && ns.role == R_SECONDARY)
  543. ns.aftr_isp = 0;
  544. /* An implication of the disk states onto the connection state */
  545. /* Abort resync if a disk fails/detaches */
  546. if (ns.conn > C_CONNECTED && (ns.disk <= D_FAILED || ns.pdsk <= D_FAILED)) {
  547. if (warn_sync_abort)
  548. *warn_sync_abort =
  549. ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T ?
  550. "Online-verify" : "Resync";
  551. ns.conn = C_CONNECTED;
  552. }
  553. /* Connection breaks down before we finished "Negotiating" */
  554. if (ns.conn < C_CONNECTED && ns.disk == D_NEGOTIATING &&
  555. get_ldev_if_state(mdev, D_NEGOTIATING)) {
  556. if (mdev->ed_uuid == mdev->ldev->md.uuid[UI_CURRENT]) {
  557. ns.disk = mdev->new_state_tmp.disk;
  558. ns.pdsk = mdev->new_state_tmp.pdsk;
  559. } else {
  560. dev_alert(DEV, "Connection lost while negotiating, no data!\n");
  561. ns.disk = D_DISKLESS;
  562. ns.pdsk = D_UNKNOWN;
  563. }
  564. put_ldev(mdev);
  565. }
  566. /* D_CONSISTENT and D_OUTDATED vanish when we get connected */
  567. if (ns.conn >= C_CONNECTED && ns.conn < C_AHEAD) {
  568. if (ns.disk == D_CONSISTENT || ns.disk == D_OUTDATED)
  569. ns.disk = D_UP_TO_DATE;
  570. if (ns.pdsk == D_CONSISTENT || ns.pdsk == D_OUTDATED)
  571. ns.pdsk = D_UP_TO_DATE;
  572. }
  573. /* Implications of the connection stat on the disk states */
  574. disk_min = D_DISKLESS;
  575. disk_max = D_UP_TO_DATE;
  576. pdsk_min = D_INCONSISTENT;
  577. pdsk_max = D_UNKNOWN;
  578. switch ((enum drbd_conns)ns.conn) {
  579. case C_WF_BITMAP_T:
  580. case C_PAUSED_SYNC_T:
  581. case C_STARTING_SYNC_T:
  582. case C_WF_SYNC_UUID:
  583. case C_BEHIND:
  584. disk_min = D_INCONSISTENT;
  585. disk_max = D_OUTDATED;
  586. pdsk_min = D_UP_TO_DATE;
  587. pdsk_max = D_UP_TO_DATE;
  588. break;
  589. case C_VERIFY_S:
  590. case C_VERIFY_T:
  591. disk_min = D_UP_TO_DATE;
  592. disk_max = D_UP_TO_DATE;
  593. pdsk_min = D_UP_TO_DATE;
  594. pdsk_max = D_UP_TO_DATE;
  595. break;
  596. case C_CONNECTED:
  597. disk_min = D_DISKLESS;
  598. disk_max = D_UP_TO_DATE;
  599. pdsk_min = D_DISKLESS;
  600. pdsk_max = D_UP_TO_DATE;
  601. break;
  602. case C_WF_BITMAP_S:
  603. case C_PAUSED_SYNC_S:
  604. case C_STARTING_SYNC_S:
  605. case C_AHEAD:
  606. disk_min = D_UP_TO_DATE;
  607. disk_max = D_UP_TO_DATE;
  608. pdsk_min = D_INCONSISTENT;
  609. pdsk_max = D_CONSISTENT; /* D_OUTDATED would be nice. But explicit outdate necessary*/
  610. break;
  611. case C_SYNC_TARGET:
  612. disk_min = D_INCONSISTENT;
  613. disk_max = D_INCONSISTENT;
  614. pdsk_min = D_UP_TO_DATE;
  615. pdsk_max = D_UP_TO_DATE;
  616. break;
  617. case C_SYNC_SOURCE:
  618. disk_min = D_UP_TO_DATE;
  619. disk_max = D_UP_TO_DATE;
  620. pdsk_min = D_INCONSISTENT;
  621. pdsk_max = D_INCONSISTENT;
  622. break;
  623. case C_STANDALONE:
  624. case C_DISCONNECTING:
  625. case C_UNCONNECTED:
  626. case C_TIMEOUT:
  627. case C_BROKEN_PIPE:
  628. case C_NETWORK_FAILURE:
  629. case C_PROTOCOL_ERROR:
  630. case C_TEAR_DOWN:
  631. case C_WF_CONNECTION:
  632. case C_WF_REPORT_PARAMS:
  633. case C_MASK:
  634. break;
  635. }
  636. if (ns.disk > disk_max)
  637. ns.disk = disk_max;
  638. if (ns.disk < disk_min) {
  639. dev_warn(DEV, "Implicitly set disk from %s to %s\n",
  640. drbd_disk_str(ns.disk), drbd_disk_str(disk_min));
  641. ns.disk = disk_min;
  642. }
  643. if (ns.pdsk > pdsk_max)
  644. ns.pdsk = pdsk_max;
  645. if (ns.pdsk < pdsk_min) {
  646. dev_warn(DEV, "Implicitly set pdsk from %s to %s\n",
  647. drbd_disk_str(ns.pdsk), drbd_disk_str(pdsk_min));
  648. ns.pdsk = pdsk_min;
  649. }
  650. if (fp == FP_STONITH &&
  651. (ns.role == R_PRIMARY && ns.conn < C_CONNECTED && ns.pdsk > D_OUTDATED))
  652. ns.susp_fen = 1; /* Suspend IO while fence-peer handler runs (peer lost) */
  653. if (mdev->tconn->res_opts.on_no_data == OND_SUSPEND_IO &&
  654. (ns.role == R_PRIMARY && ns.disk < D_UP_TO_DATE && ns.pdsk < D_UP_TO_DATE))
  655. ns.susp_nod = 1; /* Suspend IO while no data available (no accessible data available) */
  656. if (ns.aftr_isp || ns.peer_isp || ns.user_isp) {
  657. if (ns.conn == C_SYNC_SOURCE)
  658. ns.conn = C_PAUSED_SYNC_S;
  659. if (ns.conn == C_SYNC_TARGET)
  660. ns.conn = C_PAUSED_SYNC_T;
  661. } else {
  662. if (ns.conn == C_PAUSED_SYNC_S)
  663. ns.conn = C_SYNC_SOURCE;
  664. if (ns.conn == C_PAUSED_SYNC_T)
  665. ns.conn = C_SYNC_TARGET;
  666. }
  667. return ns;
  668. }
  669. void drbd_resume_al(struct drbd_conf *mdev)
  670. {
  671. if (test_and_clear_bit(AL_SUSPENDED, &mdev->flags))
  672. dev_info(DEV, "Resumed AL updates\n");
  673. }
  674. /* helper for __drbd_set_state */
  675. static void set_ov_position(struct drbd_conf *mdev, enum drbd_conns cs)
  676. {
  677. if (mdev->tconn->agreed_pro_version < 90)
  678. mdev->ov_start_sector = 0;
  679. mdev->rs_total = drbd_bm_bits(mdev);
  680. mdev->ov_position = 0;
  681. if (cs == C_VERIFY_T) {
  682. /* starting online verify from an arbitrary position
  683. * does not fit well into the existing protocol.
  684. * on C_VERIFY_T, we initialize ov_left and friends
  685. * implicitly in receive_DataRequest once the
  686. * first P_OV_REQUEST is received */
  687. mdev->ov_start_sector = ~(sector_t)0;
  688. } else {
  689. unsigned long bit = BM_SECT_TO_BIT(mdev->ov_start_sector);
  690. if (bit >= mdev->rs_total) {
  691. mdev->ov_start_sector =
  692. BM_BIT_TO_SECT(mdev->rs_total - 1);
  693. mdev->rs_total = 1;
  694. } else
  695. mdev->rs_total -= bit;
  696. mdev->ov_position = mdev->ov_start_sector;
  697. }
  698. mdev->ov_left = mdev->rs_total;
  699. }
  700. /**
  701. * __drbd_set_state() - Set a new DRBD state
  702. * @mdev: DRBD device.
  703. * @ns: new state.
  704. * @flags: Flags
  705. * @done: Optional completion, that will get completed after the after_state_ch() finished
  706. *
  707. * Caller needs to hold req_lock, and global_state_lock. Do not call directly.
  708. */
  709. enum drbd_state_rv
  710. __drbd_set_state(struct drbd_conf *mdev, union drbd_state ns,
  711. enum chg_state_flags flags, struct completion *done)
  712. {
  713. union drbd_state os;
  714. enum drbd_state_rv rv = SS_SUCCESS;
  715. const char *warn_sync_abort = NULL;
  716. struct after_state_chg_work *ascw;
  717. os = drbd_read_state(mdev);
  718. ns = sanitize_state(mdev, ns, &warn_sync_abort);
  719. if (ns.i == os.i)
  720. return SS_NOTHING_TO_DO;
  721. rv = is_valid_transition(os, ns);
  722. if (rv < SS_SUCCESS)
  723. return rv;
  724. if (!(flags & CS_HARD)) {
  725. /* pre-state-change checks ; only look at ns */
  726. /* See drbd_state_sw_errors in drbd_strings.c */
  727. rv = is_valid_state(mdev, ns);
  728. if (rv < SS_SUCCESS) {
  729. /* If the old state was illegal as well, then let
  730. this happen...*/
  731. if (is_valid_state(mdev, os) == rv)
  732. rv = is_valid_soft_transition(os, ns);
  733. } else
  734. rv = is_valid_soft_transition(os, ns);
  735. }
  736. if (rv < SS_SUCCESS) {
  737. if (flags & CS_VERBOSE)
  738. print_st_err(mdev, os, ns, rv);
  739. return rv;
  740. }
  741. if (warn_sync_abort)
  742. dev_warn(DEV, "%s aborted.\n", warn_sync_abort);
  743. drbd_pr_state_change(mdev, os, ns, flags);
  744. /* if we are going -> D_FAILED or D_DISKLESS, grab one extra reference
  745. * on the ldev here, to be sure the transition -> D_DISKLESS resp.
  746. * drbd_ldev_destroy() won't happen before our corresponding
  747. * after_state_ch works run, where we put_ldev again. */
  748. if ((os.disk != D_FAILED && ns.disk == D_FAILED) ||
  749. (os.disk != D_DISKLESS && ns.disk == D_DISKLESS))
  750. atomic_inc(&mdev->local_cnt);
  751. mdev->state.i = ns.i;
  752. mdev->tconn->susp = ns.susp;
  753. mdev->tconn->susp_nod = ns.susp_nod;
  754. mdev->tconn->susp_fen = ns.susp_fen;
  755. /* solve the race between becoming unconfigured,
  756. * worker doing the cleanup, and
  757. * admin reconfiguring us:
  758. * on (re)configure, first set CONFIG_PENDING,
  759. * then wait for a potentially exiting worker,
  760. * start the worker, and schedule one no_op.
  761. * then proceed with configuration.
  762. */
  763. if(conn_all_vols_unconf(mdev->tconn) &&
  764. !test_and_set_bit(CONFIG_PENDING, &mdev->tconn->flags))
  765. set_bit(OBJECT_DYING, &mdev->tconn->flags);
  766. if (os.disk == D_ATTACHING && ns.disk >= D_NEGOTIATING)
  767. drbd_print_uuids(mdev, "attached to UUIDs");
  768. wake_up(&mdev->misc_wait);
  769. wake_up(&mdev->state_wait);
  770. wake_up(&mdev->tconn->ping_wait);
  771. /* aborted verify run. log the last position */
  772. if ((os.conn == C_VERIFY_S || os.conn == C_VERIFY_T) &&
  773. ns.conn < C_CONNECTED) {
  774. mdev->ov_start_sector =
  775. BM_BIT_TO_SECT(drbd_bm_bits(mdev) - mdev->ov_left);
  776. dev_info(DEV, "Online Verify reached sector %llu\n",
  777. (unsigned long long)mdev->ov_start_sector);
  778. }
  779. if ((os.conn == C_PAUSED_SYNC_T || os.conn == C_PAUSED_SYNC_S) &&
  780. (ns.conn == C_SYNC_TARGET || ns.conn == C_SYNC_SOURCE)) {
  781. dev_info(DEV, "Syncer continues.\n");
  782. mdev->rs_paused += (long)jiffies
  783. -(long)mdev->rs_mark_time[mdev->rs_last_mark];
  784. if (ns.conn == C_SYNC_TARGET)
  785. mod_timer(&mdev->resync_timer, jiffies);
  786. }
  787. if ((os.conn == C_SYNC_TARGET || os.conn == C_SYNC_SOURCE) &&
  788. (ns.conn == C_PAUSED_SYNC_T || ns.conn == C_PAUSED_SYNC_S)) {
  789. dev_info(DEV, "Resync suspended\n");
  790. mdev->rs_mark_time[mdev->rs_last_mark] = jiffies;
  791. }
  792. if (os.conn == C_CONNECTED &&
  793. (ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T)) {
  794. unsigned long now = jiffies;
  795. int i;
  796. set_ov_position(mdev, ns.conn);
  797. mdev->rs_start = now;
  798. mdev->rs_last_events = 0;
  799. mdev->rs_last_sect_ev = 0;
  800. mdev->ov_last_oos_size = 0;
  801. mdev->ov_last_oos_start = 0;
  802. for (i = 0; i < DRBD_SYNC_MARKS; i++) {
  803. mdev->rs_mark_left[i] = mdev->ov_left;
  804. mdev->rs_mark_time[i] = now;
  805. }
  806. drbd_rs_controller_reset(mdev);
  807. if (ns.conn == C_VERIFY_S) {
  808. dev_info(DEV, "Starting Online Verify from sector %llu\n",
  809. (unsigned long long)mdev->ov_position);
  810. mod_timer(&mdev->resync_timer, jiffies);
  811. }
  812. }
  813. if (get_ldev(mdev)) {
  814. u32 mdf = mdev->ldev->md.flags & ~(MDF_CONSISTENT|MDF_PRIMARY_IND|
  815. MDF_CONNECTED_IND|MDF_WAS_UP_TO_DATE|
  816. MDF_PEER_OUT_DATED|MDF_CRASHED_PRIMARY);
  817. if (test_bit(CRASHED_PRIMARY, &mdev->flags))
  818. mdf |= MDF_CRASHED_PRIMARY;
  819. if (mdev->state.role == R_PRIMARY ||
  820. (mdev->state.pdsk < D_INCONSISTENT && mdev->state.peer == R_PRIMARY))
  821. mdf |= MDF_PRIMARY_IND;
  822. if (mdev->state.conn > C_WF_REPORT_PARAMS)
  823. mdf |= MDF_CONNECTED_IND;
  824. if (mdev->state.disk > D_INCONSISTENT)
  825. mdf |= MDF_CONSISTENT;
  826. if (mdev->state.disk > D_OUTDATED)
  827. mdf |= MDF_WAS_UP_TO_DATE;
  828. if (mdev->state.pdsk <= D_OUTDATED && mdev->state.pdsk >= D_INCONSISTENT)
  829. mdf |= MDF_PEER_OUT_DATED;
  830. if (mdf != mdev->ldev->md.flags) {
  831. mdev->ldev->md.flags = mdf;
  832. drbd_md_mark_dirty(mdev);
  833. }
  834. if (os.disk < D_CONSISTENT && ns.disk >= D_CONSISTENT)
  835. drbd_set_ed_uuid(mdev, mdev->ldev->md.uuid[UI_CURRENT]);
  836. put_ldev(mdev);
  837. }
  838. /* Peer was forced D_UP_TO_DATE & R_PRIMARY, consider to resync */
  839. if (os.disk == D_INCONSISTENT && os.pdsk == D_INCONSISTENT &&
  840. os.peer == R_SECONDARY && ns.peer == R_PRIMARY)
  841. set_bit(CONSIDER_RESYNC, &mdev->flags);
  842. /* Receiver should clean up itself */
  843. if (os.conn != C_DISCONNECTING && ns.conn == C_DISCONNECTING)
  844. drbd_thread_stop_nowait(&mdev->tconn->receiver);
  845. /* Now the receiver finished cleaning up itself, it should die */
  846. if (os.conn != C_STANDALONE && ns.conn == C_STANDALONE)
  847. drbd_thread_stop_nowait(&mdev->tconn->receiver);
  848. /* Upon network failure, we need to restart the receiver. */
  849. if (os.conn > C_TEAR_DOWN &&
  850. ns.conn <= C_TEAR_DOWN && ns.conn >= C_TIMEOUT)
  851. drbd_thread_restart_nowait(&mdev->tconn->receiver);
  852. /* Resume AL writing if we get a connection */
  853. if (os.conn < C_CONNECTED && ns.conn >= C_CONNECTED)
  854. drbd_resume_al(mdev);
  855. ascw = kmalloc(sizeof(*ascw), GFP_ATOMIC);
  856. if (ascw) {
  857. ascw->os = os;
  858. ascw->ns = ns;
  859. ascw->flags = flags;
  860. ascw->w.cb = w_after_state_ch;
  861. ascw->w.mdev = mdev;
  862. ascw->done = done;
  863. drbd_queue_work(&mdev->tconn->data.work, &ascw->w);
  864. } else {
  865. dev_err(DEV, "Could not kmalloc an ascw\n");
  866. }
  867. return rv;
  868. }
  869. static int w_after_state_ch(struct drbd_work *w, int unused)
  870. {
  871. struct after_state_chg_work *ascw =
  872. container_of(w, struct after_state_chg_work, w);
  873. struct drbd_conf *mdev = w->mdev;
  874. after_state_ch(mdev, ascw->os, ascw->ns, ascw->flags);
  875. if (ascw->flags & CS_WAIT_COMPLETE) {
  876. D_ASSERT(ascw->done != NULL);
  877. complete(ascw->done);
  878. }
  879. kfree(ascw);
  880. return 0;
  881. }
  882. static void abw_start_sync(struct drbd_conf *mdev, int rv)
  883. {
  884. if (rv) {
  885. dev_err(DEV, "Writing the bitmap failed not starting resync.\n");
  886. _drbd_request_state(mdev, NS(conn, C_CONNECTED), CS_VERBOSE);
  887. return;
  888. }
  889. switch (mdev->state.conn) {
  890. case C_STARTING_SYNC_T:
  891. _drbd_request_state(mdev, NS(conn, C_WF_SYNC_UUID), CS_VERBOSE);
  892. break;
  893. case C_STARTING_SYNC_S:
  894. drbd_start_resync(mdev, C_SYNC_SOURCE);
  895. break;
  896. }
  897. }
  898. int drbd_bitmap_io_from_worker(struct drbd_conf *mdev,
  899. int (*io_fn)(struct drbd_conf *),
  900. char *why, enum bm_flag flags)
  901. {
  902. int rv;
  903. D_ASSERT(current == mdev->tconn->worker.task);
  904. /* open coded non-blocking drbd_suspend_io(mdev); */
  905. set_bit(SUSPEND_IO, &mdev->flags);
  906. drbd_bm_lock(mdev, why, flags);
  907. rv = io_fn(mdev);
  908. drbd_bm_unlock(mdev);
  909. drbd_resume_io(mdev);
  910. return rv;
  911. }
  912. /**
  913. * after_state_ch() - Perform after state change actions that may sleep
  914. * @mdev: DRBD device.
  915. * @os: old state.
  916. * @ns: new state.
  917. * @flags: Flags
  918. */
  919. static void after_state_ch(struct drbd_conf *mdev, union drbd_state os,
  920. union drbd_state ns, enum chg_state_flags flags)
  921. {
  922. enum drbd_fencing_p fp;
  923. struct sib_info sib;
  924. sib.sib_reason = SIB_STATE_CHANGE;
  925. sib.os = os;
  926. sib.ns = ns;
  927. if (os.conn != C_CONNECTED && ns.conn == C_CONNECTED) {
  928. clear_bit(CRASHED_PRIMARY, &mdev->flags);
  929. if (mdev->p_uuid)
  930. mdev->p_uuid[UI_FLAGS] &= ~((u64)2);
  931. }
  932. fp = FP_DONT_CARE;
  933. if (get_ldev(mdev)) {
  934. fp = mdev->ldev->dc.fencing;
  935. put_ldev(mdev);
  936. }
  937. /* Inform userspace about the change... */
  938. drbd_bcast_event(mdev, &sib);
  939. if (!(os.role == R_PRIMARY && os.disk < D_UP_TO_DATE && os.pdsk < D_UP_TO_DATE) &&
  940. (ns.role == R_PRIMARY && ns.disk < D_UP_TO_DATE && ns.pdsk < D_UP_TO_DATE))
  941. drbd_khelper(mdev, "pri-on-incon-degr");
  942. /* Here we have the actions that are performed after a
  943. state change. This function might sleep */
  944. if (ns.susp_nod) {
  945. enum drbd_req_event what = NOTHING;
  946. if (os.conn < C_CONNECTED && conn_lowest_conn(mdev->tconn) >= C_CONNECTED)
  947. what = RESEND;
  948. if (os.disk == D_ATTACHING && conn_lowest_disk(mdev->tconn) > D_ATTACHING)
  949. what = RESTART_FROZEN_DISK_IO;
  950. if (what != NOTHING) {
  951. spin_lock_irq(&mdev->tconn->req_lock);
  952. _tl_restart(mdev->tconn, what);
  953. _drbd_set_state(_NS(mdev, susp_nod, 0), CS_VERBOSE, NULL);
  954. spin_unlock_irq(&mdev->tconn->req_lock);
  955. }
  956. }
  957. /* Became sync source. With protocol >= 96, we still need to send out
  958. * the sync uuid now. Need to do that before any drbd_send_state, or
  959. * the other side may go "paused sync" before receiving the sync uuids,
  960. * which is unexpected. */
  961. if ((os.conn != C_SYNC_SOURCE && os.conn != C_PAUSED_SYNC_S) &&
  962. (ns.conn == C_SYNC_SOURCE || ns.conn == C_PAUSED_SYNC_S) &&
  963. mdev->tconn->agreed_pro_version >= 96 && get_ldev(mdev)) {
  964. drbd_gen_and_send_sync_uuid(mdev);
  965. put_ldev(mdev);
  966. }
  967. /* Do not change the order of the if above and the two below... */
  968. if (os.pdsk == D_DISKLESS && ns.pdsk > D_DISKLESS) { /* attach on the peer */
  969. drbd_send_uuids(mdev);
  970. drbd_send_state(mdev);
  971. }
  972. /* No point in queuing send_bitmap if we don't have a connection
  973. * anymore, so check also the _current_ state, not only the new state
  974. * at the time this work was queued. */
  975. if (os.conn != C_WF_BITMAP_S && ns.conn == C_WF_BITMAP_S &&
  976. mdev->state.conn == C_WF_BITMAP_S)
  977. drbd_queue_bitmap_io(mdev, &drbd_send_bitmap, NULL,
  978. "send_bitmap (WFBitMapS)",
  979. BM_LOCKED_TEST_ALLOWED);
  980. /* Lost contact to peer's copy of the data */
  981. if ((os.pdsk >= D_INCONSISTENT &&
  982. os.pdsk != D_UNKNOWN &&
  983. os.pdsk != D_OUTDATED)
  984. && (ns.pdsk < D_INCONSISTENT ||
  985. ns.pdsk == D_UNKNOWN ||
  986. ns.pdsk == D_OUTDATED)) {
  987. if (get_ldev(mdev)) {
  988. if ((ns.role == R_PRIMARY || ns.peer == R_PRIMARY) &&
  989. mdev->ldev->md.uuid[UI_BITMAP] == 0 && ns.disk >= D_UP_TO_DATE) {
  990. if (drbd_suspended(mdev)) {
  991. set_bit(NEW_CUR_UUID, &mdev->flags);
  992. } else {
  993. drbd_uuid_new_current(mdev);
  994. drbd_send_uuids(mdev);
  995. }
  996. }
  997. put_ldev(mdev);
  998. }
  999. }
  1000. if (ns.pdsk < D_INCONSISTENT && get_ldev(mdev)) {
  1001. if (ns.peer == R_PRIMARY && mdev->ldev->md.uuid[UI_BITMAP] == 0) {
  1002. drbd_uuid_new_current(mdev);
  1003. drbd_send_uuids(mdev);
  1004. }
  1005. /* D_DISKLESS Peer becomes secondary */
  1006. if (os.peer == R_PRIMARY && ns.peer == R_SECONDARY)
  1007. /* We may still be Primary ourselves.
  1008. * No harm done if the bitmap still changes,
  1009. * redirtied pages will follow later. */
  1010. drbd_bitmap_io_from_worker(mdev, &drbd_bm_write,
  1011. "demote diskless peer", BM_LOCKED_SET_ALLOWED);
  1012. put_ldev(mdev);
  1013. }
  1014. /* Write out all changed bits on demote.
  1015. * Though, no need to da that just yet
  1016. * if there is a resync going on still */
  1017. if (os.role == R_PRIMARY && ns.role == R_SECONDARY &&
  1018. mdev->state.conn <= C_CONNECTED && get_ldev(mdev)) {
  1019. /* No changes to the bitmap expected this time, so assert that,
  1020. * even though no harm was done if it did change. */
  1021. drbd_bitmap_io_from_worker(mdev, &drbd_bm_write,
  1022. "demote", BM_LOCKED_TEST_ALLOWED);
  1023. put_ldev(mdev);
  1024. }
  1025. /* Last part of the attaching process ... */
  1026. if (ns.conn >= C_CONNECTED &&
  1027. os.disk == D_ATTACHING && ns.disk == D_NEGOTIATING) {
  1028. drbd_send_sizes(mdev, 0, 0); /* to start sync... */
  1029. drbd_send_uuids(mdev);
  1030. drbd_send_state(mdev);
  1031. }
  1032. /* We want to pause/continue resync, tell peer. */
  1033. if (ns.conn >= C_CONNECTED &&
  1034. ((os.aftr_isp != ns.aftr_isp) ||
  1035. (os.user_isp != ns.user_isp)))
  1036. drbd_send_state(mdev);
  1037. /* In case one of the isp bits got set, suspend other devices. */
  1038. if ((!os.aftr_isp && !os.peer_isp && !os.user_isp) &&
  1039. (ns.aftr_isp || ns.peer_isp || ns.user_isp))
  1040. suspend_other_sg(mdev);
  1041. /* Make sure the peer gets informed about eventual state
  1042. changes (ISP bits) while we were in WFReportParams. */
  1043. if (os.conn == C_WF_REPORT_PARAMS && ns.conn >= C_CONNECTED)
  1044. drbd_send_state(mdev);
  1045. if (os.conn != C_AHEAD && ns.conn == C_AHEAD)
  1046. drbd_send_state(mdev);
  1047. /* We are in the progress to start a full sync... */
  1048. if ((os.conn != C_STARTING_SYNC_T && ns.conn == C_STARTING_SYNC_T) ||
  1049. (os.conn != C_STARTING_SYNC_S && ns.conn == C_STARTING_SYNC_S))
  1050. /* no other bitmap changes expected during this phase */
  1051. drbd_queue_bitmap_io(mdev,
  1052. &drbd_bmio_set_n_write, &abw_start_sync,
  1053. "set_n_write from StartingSync", BM_LOCKED_TEST_ALLOWED);
  1054. /* We are invalidating our self... */
  1055. if (os.conn < C_CONNECTED && ns.conn < C_CONNECTED &&
  1056. os.disk > D_INCONSISTENT && ns.disk == D_INCONSISTENT)
  1057. /* other bitmap operation expected during this phase */
  1058. drbd_queue_bitmap_io(mdev, &drbd_bmio_set_n_write, NULL,
  1059. "set_n_write from invalidate", BM_LOCKED_MASK);
  1060. /* first half of local IO error, failure to attach,
  1061. * or administrative detach */
  1062. if (os.disk != D_FAILED && ns.disk == D_FAILED) {
  1063. enum drbd_io_error_p eh;
  1064. int was_io_error;
  1065. /* corresponding get_ldev was in __drbd_set_state, to serialize
  1066. * our cleanup here with the transition to D_DISKLESS,
  1067. * so it is safe to dreference ldev here. */
  1068. eh = mdev->ldev->dc.on_io_error;
  1069. was_io_error = test_and_clear_bit(WAS_IO_ERROR, &mdev->flags);
  1070. /* current state still has to be D_FAILED,
  1071. * there is only one way out: to D_DISKLESS,
  1072. * and that may only happen after our put_ldev below. */
  1073. if (mdev->state.disk != D_FAILED)
  1074. dev_err(DEV,
  1075. "ASSERT FAILED: disk is %s during detach\n",
  1076. drbd_disk_str(mdev->state.disk));
  1077. if (!drbd_send_state(mdev))
  1078. dev_warn(DEV, "Notified peer that I am detaching my disk\n");
  1079. else
  1080. dev_err(DEV, "Sending state for detaching disk failed\n");
  1081. drbd_rs_cancel_all(mdev);
  1082. /* In case we want to get something to stable storage still,
  1083. * this may be the last chance.
  1084. * Following put_ldev may transition to D_DISKLESS. */
  1085. drbd_md_sync(mdev);
  1086. put_ldev(mdev);
  1087. if (was_io_error && eh == EP_CALL_HELPER)
  1088. drbd_khelper(mdev, "local-io-error");
  1089. }
  1090. /* second half of local IO error, failure to attach,
  1091. * or administrative detach,
  1092. * after local_cnt references have reached zero again */
  1093. if (os.disk != D_DISKLESS && ns.disk == D_DISKLESS) {
  1094. /* We must still be diskless,
  1095. * re-attach has to be serialized with this! */
  1096. if (mdev->state.disk != D_DISKLESS)
  1097. dev_err(DEV,
  1098. "ASSERT FAILED: disk is %s while going diskless\n",
  1099. drbd_disk_str(mdev->state.disk));
  1100. mdev->rs_total = 0;
  1101. mdev->rs_failed = 0;
  1102. atomic_set(&mdev->rs_pending_cnt, 0);
  1103. if (!drbd_send_state(mdev))
  1104. dev_warn(DEV, "Notified peer that I'm now diskless.\n");
  1105. /* corresponding get_ldev in __drbd_set_state
  1106. * this may finally trigger drbd_ldev_destroy. */
  1107. put_ldev(mdev);
  1108. }
  1109. /* Notify peer that I had a local IO error, and did not detached.. */
  1110. if (os.disk == D_UP_TO_DATE && ns.disk == D_INCONSISTENT)
  1111. drbd_send_state(mdev);
  1112. /* Disks got bigger while they were detached */
  1113. if (ns.disk > D_NEGOTIATING && ns.pdsk > D_NEGOTIATING &&
  1114. test_and_clear_bit(RESYNC_AFTER_NEG, &mdev->flags)) {
  1115. if (ns.conn == C_CONNECTED)
  1116. resync_after_online_grow(mdev);
  1117. }
  1118. /* A resync finished or aborted, wake paused devices... */
  1119. if ((os.conn > C_CONNECTED && ns.conn <= C_CONNECTED) ||
  1120. (os.peer_isp && !ns.peer_isp) ||
  1121. (os.user_isp && !ns.user_isp))
  1122. resume_next_sg(mdev);
  1123. /* sync target done with resync. Explicitly notify peer, even though
  1124. * it should (at least for non-empty resyncs) already know itself. */
  1125. if (os.disk < D_UP_TO_DATE && os.conn >= C_SYNC_SOURCE && ns.conn == C_CONNECTED)
  1126. drbd_send_state(mdev);
  1127. /* This triggers bitmap writeout of potentially still unwritten pages
  1128. * if the resync finished cleanly, or aborted because of peer disk
  1129. * failure, or because of connection loss.
  1130. * For resync aborted because of local disk failure, we cannot do
  1131. * any bitmap writeout anymore.
  1132. * No harm done if some bits change during this phase.
  1133. */
  1134. if (os.conn > C_CONNECTED && ns.conn <= C_CONNECTED && get_ldev(mdev)) {
  1135. drbd_queue_bitmap_io(mdev, &drbd_bm_write, NULL,
  1136. "write from resync_finished", BM_LOCKED_SET_ALLOWED);
  1137. put_ldev(mdev);
  1138. }
  1139. if (ns.disk == D_DISKLESS &&
  1140. ns.conn == C_STANDALONE &&
  1141. ns.role == R_SECONDARY) {
  1142. if (os.aftr_isp != ns.aftr_isp)
  1143. resume_next_sg(mdev);
  1144. }
  1145. after_all_state_ch(mdev->tconn);
  1146. drbd_md_sync(mdev);
  1147. }
  1148. struct after_conn_state_chg_work {
  1149. struct drbd_work w;
  1150. enum drbd_conns oc;
  1151. union drbd_state ns_min;
  1152. union drbd_state ns_max; /* new, max state, over all mdevs */
  1153. enum chg_state_flags flags;
  1154. };
  1155. static void after_all_state_ch(struct drbd_tconn *tconn)
  1156. {
  1157. if (conn_all_vols_unconf(tconn) &&
  1158. test_bit(OBJECT_DYING, &tconn->flags)) {
  1159. drbd_thread_stop_nowait(&tconn->worker);
  1160. }
  1161. }
  1162. static int w_after_conn_state_ch(struct drbd_work *w, int unused)
  1163. {
  1164. struct after_conn_state_chg_work *acscw =
  1165. container_of(w, struct after_conn_state_chg_work, w);
  1166. struct drbd_tconn *tconn = w->tconn;
  1167. enum drbd_conns oc = acscw->oc;
  1168. union drbd_state ns_max = acscw->ns_max;
  1169. union drbd_state ns_min = acscw->ns_min;
  1170. struct drbd_conf *mdev;
  1171. int vnr;
  1172. kfree(acscw);
  1173. /* Upon network configuration, we need to start the receiver */
  1174. if (oc == C_STANDALONE && ns_max.conn == C_UNCONNECTED)
  1175. drbd_thread_start(&tconn->receiver);
  1176. if (ns_max.susp_fen) {
  1177. /* case1: The outdate peer handler is successful: */
  1178. if (ns_max.pdsk <= D_OUTDATED) {
  1179. tl_clear(tconn);
  1180. idr_for_each_entry(&tconn->volumes, mdev, vnr) {
  1181. if (test_bit(NEW_CUR_UUID, &mdev->flags)) {
  1182. drbd_uuid_new_current(mdev);
  1183. clear_bit(NEW_CUR_UUID, &mdev->flags);
  1184. }
  1185. }
  1186. conn_request_state(tconn,
  1187. (union drbd_state) { { .susp_fen = 1 } },
  1188. (union drbd_state) { { .susp_fen = 0 } },
  1189. CS_VERBOSE);
  1190. }
  1191. /* case2: The connection was established again: */
  1192. if (ns_min.conn >= C_CONNECTED) {
  1193. idr_for_each_entry(&tconn->volumes, mdev, vnr)
  1194. clear_bit(NEW_CUR_UUID, &mdev->flags);
  1195. spin_lock_irq(&tconn->req_lock);
  1196. _tl_restart(tconn, RESEND);
  1197. _conn_request_state(tconn,
  1198. (union drbd_state) { { .susp_fen = 1 } },
  1199. (union drbd_state) { { .susp_fen = 0 } },
  1200. CS_VERBOSE);
  1201. spin_unlock_irq(&tconn->req_lock);
  1202. }
  1203. }
  1204. //conn_err(tconn, STATE_FMT, STATE_ARGS("nms", nms));
  1205. after_all_state_ch(tconn);
  1206. return 0;
  1207. }
  1208. void conn_old_common_state(struct drbd_tconn *tconn, union drbd_state *pcs, enum chg_state_flags *pf)
  1209. {
  1210. enum chg_state_flags flags = ~0;
  1211. union drbd_dev_state os, cs = {}; /* old_state, common_state */
  1212. struct drbd_conf *mdev;
  1213. int vnr, first_vol = 1;
  1214. idr_for_each_entry(&tconn->volumes, mdev, vnr) {
  1215. os = mdev->state;
  1216. if (first_vol) {
  1217. cs = os;
  1218. first_vol = 0;
  1219. continue;
  1220. }
  1221. if (cs.role != os.role)
  1222. flags &= ~CS_DC_ROLE;
  1223. if (cs.peer != os.peer)
  1224. flags &= ~CS_DC_PEER;
  1225. if (cs.conn != os.conn)
  1226. flags &= ~CS_DC_CONN;
  1227. if (cs.disk != os.disk)
  1228. flags &= ~CS_DC_DISK;
  1229. if (cs.pdsk != os.pdsk)
  1230. flags &= ~CS_DC_PDSK;
  1231. }
  1232. *pf |= CS_DC_MASK;
  1233. *pf &= flags;
  1234. (*pcs).i = cs.i;
  1235. }
  1236. static enum drbd_state_rv
  1237. conn_is_valid_transition(struct drbd_tconn *tconn, union drbd_state mask, union drbd_state val,
  1238. enum chg_state_flags flags)
  1239. {
  1240. enum drbd_state_rv rv = SS_SUCCESS;
  1241. union drbd_state ns, os;
  1242. struct drbd_conf *mdev;
  1243. int vnr;
  1244. idr_for_each_entry(&tconn->volumes, mdev, vnr) {
  1245. os = drbd_read_state(mdev);
  1246. ns = sanitize_state(mdev, apply_mask_val(os, mask, val), NULL);
  1247. if (flags & CS_IGN_OUTD_FAIL && ns.disk == D_OUTDATED && os.disk < D_OUTDATED)
  1248. ns.disk = os.disk;
  1249. if (ns.i == os.i)
  1250. continue;
  1251. rv = is_valid_transition(os, ns);
  1252. if (rv < SS_SUCCESS)
  1253. break;
  1254. if (!(flags & CS_HARD)) {
  1255. rv = is_valid_state(mdev, ns);
  1256. if (rv < SS_SUCCESS) {
  1257. if (is_valid_state(mdev, os) == rv)
  1258. rv = is_valid_soft_transition(os, ns);
  1259. } else
  1260. rv = is_valid_soft_transition(os, ns);
  1261. }
  1262. if (rv < SS_SUCCESS)
  1263. break;
  1264. }
  1265. if (rv < SS_SUCCESS && flags & CS_VERBOSE)
  1266. print_st_err(mdev, os, ns, rv);
  1267. return rv;
  1268. }
  1269. void
  1270. conn_set_state(struct drbd_tconn *tconn, union drbd_state mask, union drbd_state val,
  1271. union drbd_state *pns_min, union drbd_state *pns_max, enum chg_state_flags flags)
  1272. {
  1273. union drbd_state ns, os, ns_max = { };
  1274. union drbd_state ns_min = {
  1275. { .role = R_MASK,
  1276. .peer = R_MASK,
  1277. .disk = D_MASK,
  1278. .pdsk = D_MASK
  1279. } };
  1280. struct drbd_conf *mdev;
  1281. enum drbd_state_rv rv;
  1282. int vnr;
  1283. if (mask.conn == C_MASK)
  1284. tconn->cstate = val.conn;
  1285. idr_for_each_entry(&tconn->volumes, mdev, vnr) {
  1286. os = drbd_read_state(mdev);
  1287. ns = apply_mask_val(os, mask, val);
  1288. ns = sanitize_state(mdev, ns, NULL);
  1289. if (flags & CS_IGN_OUTD_FAIL && ns.disk == D_OUTDATED && os.disk < D_OUTDATED)
  1290. ns.disk = os.disk;
  1291. rv = __drbd_set_state(mdev, ns, flags, NULL);
  1292. if (rv < SS_SUCCESS)
  1293. BUG();
  1294. ns.i = mdev->state.i;
  1295. ns_max.role = max_role(ns.role, ns_max.role);
  1296. ns_max.peer = max_role(ns.peer, ns_max.peer);
  1297. ns_max.conn = max_t(enum drbd_conns, ns.conn, ns_max.conn);
  1298. ns_max.disk = max_t(enum drbd_disk_state, ns.disk, ns_max.disk);
  1299. ns_max.pdsk = max_t(enum drbd_disk_state, ns.pdsk, ns_max.pdsk);
  1300. ns_min.role = min_role(ns.role, ns_min.role);
  1301. ns_min.peer = min_role(ns.peer, ns_min.peer);
  1302. ns_min.conn = min_t(enum drbd_conns, ns.conn, ns_min.conn);
  1303. ns_min.disk = min_t(enum drbd_disk_state, ns.disk, ns_min.disk);
  1304. ns_min.pdsk = min_t(enum drbd_disk_state, ns.pdsk, ns_min.pdsk);
  1305. }
  1306. ns_min.susp = ns_max.susp = tconn->susp;
  1307. ns_min.susp_nod = ns_max.susp_nod = tconn->susp_nod;
  1308. ns_min.susp_fen = ns_max.susp_fen = tconn->susp_fen;
  1309. *pns_min = ns_min;
  1310. *pns_max = ns_max;
  1311. }
  1312. static enum drbd_state_rv
  1313. _conn_rq_cond(struct drbd_tconn *tconn, union drbd_state mask, union drbd_state val)
  1314. {
  1315. enum drbd_state_rv rv;
  1316. if (test_and_clear_bit(CONN_WD_ST_CHG_OKAY, &tconn->flags))
  1317. return SS_CW_SUCCESS;
  1318. if (test_and_clear_bit(CONN_WD_ST_CHG_FAIL, &tconn->flags))
  1319. return SS_CW_FAILED_BY_PEER;
  1320. spin_lock_irq(&tconn->req_lock);
  1321. rv = tconn->cstate != C_WF_REPORT_PARAMS ? SS_CW_NO_NEED : SS_UNKNOWN_ERROR;
  1322. if (rv == SS_UNKNOWN_ERROR)
  1323. rv = conn_is_valid_transition(tconn, mask, val, 0);
  1324. if (rv == SS_SUCCESS)
  1325. rv = SS_UNKNOWN_ERROR; /* cont waiting, otherwise fail. */
  1326. spin_unlock_irq(&tconn->req_lock);
  1327. return rv;
  1328. }
  1329. static enum drbd_state_rv
  1330. conn_cl_wide(struct drbd_tconn *tconn, union drbd_state mask, union drbd_state val,
  1331. enum chg_state_flags f)
  1332. {
  1333. enum drbd_state_rv rv;
  1334. spin_unlock_irq(&tconn->req_lock);
  1335. mutex_lock(&tconn->cstate_mutex);
  1336. if (conn_send_state_req(tconn, mask, val)) {
  1337. rv = SS_CW_FAILED_BY_PEER;
  1338. /* if (f & CS_VERBOSE)
  1339. print_st_err(mdev, os, ns, rv); */
  1340. goto abort;
  1341. }
  1342. wait_event(tconn->ping_wait, (rv = _conn_rq_cond(tconn, mask, val)));
  1343. abort:
  1344. mutex_unlock(&tconn->cstate_mutex);
  1345. spin_lock_irq(&tconn->req_lock);
  1346. return rv;
  1347. }
  1348. enum drbd_state_rv
  1349. _conn_request_state(struct drbd_tconn *tconn, union drbd_state mask, union drbd_state val,
  1350. enum chg_state_flags flags)
  1351. {
  1352. enum drbd_state_rv rv = SS_SUCCESS;
  1353. struct after_conn_state_chg_work *acscw;
  1354. enum drbd_conns oc = tconn->cstate;
  1355. union drbd_state ns_max, ns_min, os;
  1356. rv = is_valid_conn_transition(oc, val.conn);
  1357. if (rv < SS_SUCCESS)
  1358. goto abort;
  1359. rv = conn_is_valid_transition(tconn, mask, val, flags);
  1360. if (rv < SS_SUCCESS)
  1361. goto abort;
  1362. if (oc == C_WF_REPORT_PARAMS && val.conn == C_DISCONNECTING &&
  1363. !(flags & (CS_LOCAL_ONLY | CS_HARD))) {
  1364. rv = conn_cl_wide(tconn, mask, val, flags);
  1365. if (rv < SS_SUCCESS)
  1366. goto abort;
  1367. }
  1368. conn_old_common_state(tconn, &os, &flags);
  1369. conn_set_state(tconn, mask, val, &ns_min, &ns_max, flags);
  1370. conn_pr_state_change(tconn, os, ns_max, flags);
  1371. acscw = kmalloc(sizeof(*acscw), GFP_ATOMIC);
  1372. if (acscw) {
  1373. acscw->oc = os.conn;
  1374. acscw->ns_min = ns_min;
  1375. acscw->ns_max = ns_max;
  1376. acscw->flags = flags;
  1377. acscw->w.cb = w_after_conn_state_ch;
  1378. acscw->w.tconn = tconn;
  1379. drbd_queue_work(&tconn->data.work, &acscw->w);
  1380. } else {
  1381. conn_err(tconn, "Could not kmalloc an acscw\n");
  1382. }
  1383. abort:
  1384. return rv;
  1385. }
  1386. enum drbd_state_rv
  1387. conn_request_state(struct drbd_tconn *tconn, union drbd_state mask, union drbd_state val,
  1388. enum chg_state_flags flags)
  1389. {
  1390. enum drbd_state_rv rv;
  1391. spin_lock_irq(&tconn->req_lock);
  1392. rv = _conn_request_state(tconn, mask, val, flags);
  1393. spin_unlock_irq(&tconn->req_lock);
  1394. return rv;
  1395. }