dlm.h 20 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. #undef TRACE_SYSTEM
  3. #define TRACE_SYSTEM dlm
  4. #if !defined(_TRACE_DLM_H) || defined(TRACE_HEADER_MULTI_READ)
  5. #define _TRACE_DLM_H
  6. #include <linux/dlm.h>
  7. #include <linux/dlmconstants.h>
  8. #include <uapi/linux/dlm_plock.h>
  9. #include <linux/tracepoint.h>
  10. #include "../../../fs/dlm/dlm_internal.h"
  11. #define show_lock_flags(flags) __print_flags(flags, "|", \
  12. { DLM_LKF_NOQUEUE, "NOQUEUE" }, \
  13. { DLM_LKF_CANCEL, "CANCEL" }, \
  14. { DLM_LKF_CONVERT, "CONVERT" }, \
  15. { DLM_LKF_VALBLK, "VALBLK" }, \
  16. { DLM_LKF_QUECVT, "QUECVT" }, \
  17. { DLM_LKF_IVVALBLK, "IVVALBLK" }, \
  18. { DLM_LKF_CONVDEADLK, "CONVDEADLK" }, \
  19. { DLM_LKF_PERSISTENT, "PERSISTENT" }, \
  20. { DLM_LKF_NODLCKWT, "NODLCKWT" }, \
  21. { DLM_LKF_NODLCKBLK, "NODLCKBLK" }, \
  22. { DLM_LKF_EXPEDITE, "EXPEDITE" }, \
  23. { DLM_LKF_NOQUEUEBAST, "NOQUEUEBAST" }, \
  24. { DLM_LKF_HEADQUE, "HEADQUE" }, \
  25. { DLM_LKF_NOORDER, "NOORDER" }, \
  26. { DLM_LKF_ORPHAN, "ORPHAN" }, \
  27. { DLM_LKF_ALTPR, "ALTPR" }, \
  28. { DLM_LKF_ALTCW, "ALTCW" }, \
  29. { DLM_LKF_FORCEUNLOCK, "FORCEUNLOCK" }, \
  30. { DLM_LKF_TIMEOUT, "TIMEOUT" })
  31. #define show_lock_mode(mode) __print_symbolic(mode, \
  32. { DLM_LOCK_IV, "IV"}, \
  33. { DLM_LOCK_NL, "NL"}, \
  34. { DLM_LOCK_CR, "CR"}, \
  35. { DLM_LOCK_CW, "CW"}, \
  36. { DLM_LOCK_PR, "PR"}, \
  37. { DLM_LOCK_PW, "PW"}, \
  38. { DLM_LOCK_EX, "EX"})
  39. #define show_dlm_sb_flags(flags) __print_flags(flags, "|", \
  40. { DLM_SBF_DEMOTED, "DEMOTED" }, \
  41. { DLM_SBF_VALNOTVALID, "VALNOTVALID" }, \
  42. { DLM_SBF_ALTMODE, "ALTMODE" })
  43. #define show_lkb_flags(flags) __print_flags(flags, "|", \
  44. { BIT(DLM_DFL_USER_BIT), "USER" }, \
  45. { BIT(DLM_DFL_ORPHAN_BIT), "ORPHAN" })
  46. #define show_header_cmd(cmd) __print_symbolic(cmd, \
  47. { DLM_MSG, "MSG"}, \
  48. { DLM_RCOM, "RCOM"}, \
  49. { DLM_OPTS, "OPTS"}, \
  50. { DLM_ACK, "ACK"}, \
  51. { DLM_FIN, "FIN"})
  52. #define show_message_version(version) __print_symbolic(version, \
  53. { DLM_VERSION_3_1, "3.1"}, \
  54. { DLM_VERSION_3_2, "3.2"})
  55. #define show_message_type(type) __print_symbolic(type, \
  56. { DLM_MSG_REQUEST, "REQUEST"}, \
  57. { DLM_MSG_CONVERT, "CONVERT"}, \
  58. { DLM_MSG_UNLOCK, "UNLOCK"}, \
  59. { DLM_MSG_CANCEL, "CANCEL"}, \
  60. { DLM_MSG_REQUEST_REPLY, "REQUEST_REPLY"}, \
  61. { DLM_MSG_CONVERT_REPLY, "CONVERT_REPLY"}, \
  62. { DLM_MSG_UNLOCK_REPLY, "UNLOCK_REPLY"}, \
  63. { DLM_MSG_CANCEL_REPLY, "CANCEL_REPLY"}, \
  64. { DLM_MSG_GRANT, "GRANT"}, \
  65. { DLM_MSG_BAST, "BAST"}, \
  66. { DLM_MSG_LOOKUP, "LOOKUP"}, \
  67. { DLM_MSG_REMOVE, "REMOVE"}, \
  68. { DLM_MSG_LOOKUP_REPLY, "LOOKUP_REPLY"}, \
  69. { DLM_MSG_PURGE, "PURGE"})
  70. #define show_rcom_type(type) __print_symbolic(type, \
  71. { DLM_RCOM_STATUS, "STATUS"}, \
  72. { DLM_RCOM_NAMES, "NAMES"}, \
  73. { DLM_RCOM_LOOKUP, "LOOKUP"}, \
  74. { DLM_RCOM_LOCK, "LOCK"}, \
  75. { DLM_RCOM_STATUS_REPLY, "STATUS_REPLY"}, \
  76. { DLM_RCOM_NAMES_REPLY, "NAMES_REPLY"}, \
  77. { DLM_RCOM_LOOKUP_REPLY, "LOOKUP_REPLY"}, \
  78. { DLM_RCOM_LOCK_REPLY, "LOCK_REPLY"})
  79. /* note: we begin tracing dlm_lock_start() only if ls and lkb are found */
  80. TRACE_EVENT(dlm_lock_start,
  81. TP_PROTO(struct dlm_ls *ls, struct dlm_lkb *lkb, const void *name,
  82. unsigned int namelen, int mode, __u32 flags),
  83. TP_ARGS(ls, lkb, name, namelen, mode, flags),
  84. TP_STRUCT__entry(
  85. __field(__u32, ls_id)
  86. __field(__u32, lkb_id)
  87. __field(int, mode)
  88. __field(__u32, flags)
  89. __dynamic_array(unsigned char, res_name,
  90. lkb->lkb_resource ? lkb->lkb_resource->res_length : namelen)
  91. ),
  92. TP_fast_assign(
  93. struct dlm_rsb *r;
  94. __entry->ls_id = ls->ls_global_id;
  95. __entry->lkb_id = lkb->lkb_id;
  96. __entry->mode = mode;
  97. __entry->flags = flags;
  98. r = lkb->lkb_resource;
  99. if (r)
  100. memcpy(__get_dynamic_array(res_name), r->res_name,
  101. __get_dynamic_array_len(res_name));
  102. else if (name)
  103. memcpy(__get_dynamic_array(res_name), name,
  104. __get_dynamic_array_len(res_name));
  105. ),
  106. TP_printk("ls_id=%u lkb_id=%x mode=%s flags=%s res_name=%s",
  107. __entry->ls_id, __entry->lkb_id,
  108. show_lock_mode(__entry->mode),
  109. show_lock_flags(__entry->flags),
  110. __print_hex_str(__get_dynamic_array(res_name),
  111. __get_dynamic_array_len(res_name)))
  112. );
  113. TRACE_EVENT(dlm_lock_end,
  114. TP_PROTO(struct dlm_ls *ls, struct dlm_lkb *lkb, const void *name,
  115. unsigned int namelen, int mode, __u32 flags, int error,
  116. bool kernel_lock),
  117. TP_ARGS(ls, lkb, name, namelen, mode, flags, error, kernel_lock),
  118. TP_STRUCT__entry(
  119. __field(__u32, ls_id)
  120. __field(__u32, lkb_id)
  121. __field(int, mode)
  122. __field(__u32, flags)
  123. __field(int, error)
  124. __dynamic_array(unsigned char, res_name,
  125. lkb->lkb_resource ? lkb->lkb_resource->res_length : namelen)
  126. ),
  127. TP_fast_assign(
  128. struct dlm_rsb *r;
  129. __entry->ls_id = ls->ls_global_id;
  130. __entry->lkb_id = lkb->lkb_id;
  131. __entry->mode = mode;
  132. __entry->flags = flags;
  133. __entry->error = error;
  134. r = lkb->lkb_resource;
  135. if (r)
  136. memcpy(__get_dynamic_array(res_name), r->res_name,
  137. __get_dynamic_array_len(res_name));
  138. else if (name)
  139. memcpy(__get_dynamic_array(res_name), name,
  140. __get_dynamic_array_len(res_name));
  141. if (kernel_lock) {
  142. /* return value will be zeroed in those cases by dlm_lock()
  143. * we do it here again to not introduce more overhead if
  144. * trace isn't running and error reflects the return value.
  145. */
  146. if (error == -EAGAIN || error == -EDEADLK)
  147. __entry->error = 0;
  148. }
  149. ),
  150. TP_printk("ls_id=%u lkb_id=%x mode=%s flags=%s error=%d res_name=%s",
  151. __entry->ls_id, __entry->lkb_id,
  152. show_lock_mode(__entry->mode),
  153. show_lock_flags(__entry->flags), __entry->error,
  154. __print_hex_str(__get_dynamic_array(res_name),
  155. __get_dynamic_array_len(res_name)))
  156. );
  157. TRACE_EVENT(dlm_bast,
  158. TP_PROTO(__u32 ls_id, __u32 lkb_id, int mode,
  159. const char *res_name, size_t res_length),
  160. TP_ARGS(ls_id, lkb_id, mode, res_name, res_length),
  161. TP_STRUCT__entry(
  162. __field(__u32, ls_id)
  163. __field(__u32, lkb_id)
  164. __field(int, mode)
  165. __dynamic_array(unsigned char, res_name, res_length)
  166. ),
  167. TP_fast_assign(
  168. __entry->ls_id = ls_id;
  169. __entry->lkb_id = lkb_id;
  170. __entry->mode = mode;
  171. memcpy(__get_dynamic_array(res_name), res_name,
  172. __get_dynamic_array_len(res_name));
  173. ),
  174. TP_printk("ls_id=%u lkb_id=%x mode=%s res_name=%s",
  175. __entry->ls_id, __entry->lkb_id,
  176. show_lock_mode(__entry->mode),
  177. __print_hex_str(__get_dynamic_array(res_name),
  178. __get_dynamic_array_len(res_name)))
  179. );
  180. TRACE_EVENT(dlm_ast,
  181. TP_PROTO(__u32 ls_id, __u32 lkb_id, __u8 sb_flags, int sb_status,
  182. const char *res_name, size_t res_length),
  183. TP_ARGS(ls_id, lkb_id, sb_flags, sb_status, res_name, res_length),
  184. TP_STRUCT__entry(
  185. __field(__u32, ls_id)
  186. __field(__u32, lkb_id)
  187. __field(__u8, sb_flags)
  188. __field(int, sb_status)
  189. __dynamic_array(unsigned char, res_name, res_length)
  190. ),
  191. TP_fast_assign(
  192. __entry->ls_id = ls_id;
  193. __entry->lkb_id = lkb_id;
  194. __entry->sb_flags = sb_flags;
  195. __entry->sb_status = sb_status;
  196. memcpy(__get_dynamic_array(res_name), res_name,
  197. __get_dynamic_array_len(res_name));
  198. ),
  199. TP_printk("ls_id=%u lkb_id=%x sb_flags=%s sb_status=%d res_name=%s",
  200. __entry->ls_id, __entry->lkb_id,
  201. show_dlm_sb_flags(__entry->sb_flags), __entry->sb_status,
  202. __print_hex_str(__get_dynamic_array(res_name),
  203. __get_dynamic_array_len(res_name)))
  204. );
  205. /* note: we begin tracing dlm_unlock_start() only if ls and lkb are found */
  206. TRACE_EVENT(dlm_unlock_start,
  207. TP_PROTO(struct dlm_ls *ls, struct dlm_lkb *lkb, __u32 flags),
  208. TP_ARGS(ls, lkb, flags),
  209. TP_STRUCT__entry(
  210. __field(__u32, ls_id)
  211. __field(__u32, lkb_id)
  212. __field(__u32, flags)
  213. __dynamic_array(unsigned char, res_name,
  214. lkb->lkb_resource ? lkb->lkb_resource->res_length : 0)
  215. ),
  216. TP_fast_assign(
  217. struct dlm_rsb *r;
  218. __entry->ls_id = ls->ls_global_id;
  219. __entry->lkb_id = lkb->lkb_id;
  220. __entry->flags = flags;
  221. r = lkb->lkb_resource;
  222. if (r)
  223. memcpy(__get_dynamic_array(res_name), r->res_name,
  224. __get_dynamic_array_len(res_name));
  225. ),
  226. TP_printk("ls_id=%u lkb_id=%x flags=%s res_name=%s",
  227. __entry->ls_id, __entry->lkb_id,
  228. show_lock_flags(__entry->flags),
  229. __print_hex_str(__get_dynamic_array(res_name),
  230. __get_dynamic_array_len(res_name)))
  231. );
  232. TRACE_EVENT(dlm_unlock_end,
  233. TP_PROTO(struct dlm_ls *ls, struct dlm_lkb *lkb, __u32 flags,
  234. int error),
  235. TP_ARGS(ls, lkb, flags, error),
  236. TP_STRUCT__entry(
  237. __field(__u32, ls_id)
  238. __field(__u32, lkb_id)
  239. __field(__u32, flags)
  240. __field(int, error)
  241. __dynamic_array(unsigned char, res_name,
  242. lkb->lkb_resource ? lkb->lkb_resource->res_length : 0)
  243. ),
  244. TP_fast_assign(
  245. struct dlm_rsb *r;
  246. __entry->ls_id = ls->ls_global_id;
  247. __entry->lkb_id = lkb->lkb_id;
  248. __entry->flags = flags;
  249. __entry->error = error;
  250. r = lkb->lkb_resource;
  251. if (r)
  252. memcpy(__get_dynamic_array(res_name), r->res_name,
  253. __get_dynamic_array_len(res_name));
  254. ),
  255. TP_printk("ls_id=%u lkb_id=%x flags=%s error=%d res_name=%s",
  256. __entry->ls_id, __entry->lkb_id,
  257. show_lock_flags(__entry->flags), __entry->error,
  258. __print_hex_str(__get_dynamic_array(res_name),
  259. __get_dynamic_array_len(res_name)))
  260. );
  261. DECLARE_EVENT_CLASS(dlm_rcom_template,
  262. TP_PROTO(uint32_t dst, uint32_t h_seq, const struct dlm_rcom *rc),
  263. TP_ARGS(dst, h_seq, rc),
  264. TP_STRUCT__entry(
  265. __field(uint32_t, dst)
  266. __field(uint32_t, h_seq)
  267. __field(uint32_t, h_version)
  268. __field(uint32_t, h_lockspace)
  269. __field(uint32_t, h_nodeid)
  270. __field(uint16_t, h_length)
  271. __field(uint8_t, h_cmd)
  272. __field(uint32_t, rc_type)
  273. __field(int32_t, rc_result)
  274. __field(uint64_t, rc_id)
  275. __field(uint64_t, rc_seq)
  276. __field(uint64_t, rc_seq_reply)
  277. __dynamic_array(unsigned char, rc_buf,
  278. le16_to_cpu(rc->rc_header.h_length) - sizeof(*rc))
  279. ),
  280. TP_fast_assign(
  281. __entry->dst = dst;
  282. __entry->h_seq = h_seq;
  283. __entry->h_version = le32_to_cpu(rc->rc_header.h_version);
  284. __entry->h_lockspace = le32_to_cpu(rc->rc_header.u.h_lockspace);
  285. __entry->h_nodeid = le32_to_cpu(rc->rc_header.h_nodeid);
  286. __entry->h_length = le16_to_cpu(rc->rc_header.h_length);
  287. __entry->h_cmd = rc->rc_header.h_cmd;
  288. __entry->rc_type = le32_to_cpu(rc->rc_type);
  289. __entry->rc_result = le32_to_cpu(rc->rc_result);
  290. __entry->rc_id = le64_to_cpu(rc->rc_id);
  291. __entry->rc_seq = le64_to_cpu(rc->rc_seq);
  292. __entry->rc_seq_reply = le64_to_cpu(rc->rc_seq_reply);
  293. memcpy(__get_dynamic_array(rc_buf), rc->rc_buf,
  294. __get_dynamic_array_len(rc_buf));
  295. ),
  296. TP_printk("dst=%u h_seq=%u h_version=%s h_lockspace=%u h_nodeid=%u "
  297. "h_length=%u h_cmd=%s rc_type=%s rc_result=%d "
  298. "rc_id=%llu rc_seq=%llu rc_seq_reply=%llu "
  299. "rc_buf=0x%s", __entry->dst, __entry->h_seq,
  300. show_message_version(__entry->h_version),
  301. __entry->h_lockspace, __entry->h_nodeid, __entry->h_length,
  302. show_header_cmd(__entry->h_cmd),
  303. show_rcom_type(__entry->rc_type),
  304. __entry->rc_result, __entry->rc_id, __entry->rc_seq,
  305. __entry->rc_seq_reply,
  306. __print_hex_str(__get_dynamic_array(rc_buf),
  307. __get_dynamic_array_len(rc_buf)))
  308. );
  309. DEFINE_EVENT(dlm_rcom_template, dlm_send_rcom,
  310. TP_PROTO(uint32_t dst, uint32_t h_seq, const struct dlm_rcom *rc),
  311. TP_ARGS(dst, h_seq, rc));
  312. DEFINE_EVENT(dlm_rcom_template, dlm_recv_rcom,
  313. TP_PROTO(uint32_t dst, uint32_t h_seq, const struct dlm_rcom *rc),
  314. TP_ARGS(dst, h_seq, rc));
  315. TRACE_EVENT(dlm_send_message,
  316. TP_PROTO(uint32_t dst, uint32_t h_seq, const struct dlm_message *ms,
  317. const void *name, int namelen),
  318. TP_ARGS(dst, h_seq, ms, name, namelen),
  319. TP_STRUCT__entry(
  320. __field(uint32_t, dst)
  321. __field(uint32_t, h_seq)
  322. __field(uint32_t, h_version)
  323. __field(uint32_t, h_lockspace)
  324. __field(uint32_t, h_nodeid)
  325. __field(uint16_t, h_length)
  326. __field(uint8_t, h_cmd)
  327. __field(uint32_t, m_type)
  328. __field(uint32_t, m_nodeid)
  329. __field(uint32_t, m_pid)
  330. __field(uint32_t, m_lkid)
  331. __field(uint32_t, m_remid)
  332. __field(uint32_t, m_parent_lkid)
  333. __field(uint32_t, m_parent_remid)
  334. __field(uint32_t, m_exflags)
  335. __field(uint32_t, m_sbflags)
  336. __field(uint32_t, m_flags)
  337. __field(uint32_t, m_lvbseq)
  338. __field(uint32_t, m_hash)
  339. __field(int32_t, m_status)
  340. __field(int32_t, m_grmode)
  341. __field(int32_t, m_rqmode)
  342. __field(int32_t, m_bastmode)
  343. __field(int32_t, m_asts)
  344. __field(int32_t, m_result)
  345. __dynamic_array(unsigned char, m_extra,
  346. le16_to_cpu(ms->m_header.h_length) - sizeof(*ms))
  347. __dynamic_array(unsigned char, res_name, namelen)
  348. ),
  349. TP_fast_assign(
  350. __entry->dst = dst;
  351. __entry->h_seq = h_seq;
  352. __entry->h_version = le32_to_cpu(ms->m_header.h_version);
  353. __entry->h_lockspace = le32_to_cpu(ms->m_header.u.h_lockspace);
  354. __entry->h_nodeid = le32_to_cpu(ms->m_header.h_nodeid);
  355. __entry->h_length = le16_to_cpu(ms->m_header.h_length);
  356. __entry->h_cmd = ms->m_header.h_cmd;
  357. __entry->m_type = le32_to_cpu(ms->m_type);
  358. __entry->m_nodeid = le32_to_cpu(ms->m_nodeid);
  359. __entry->m_pid = le32_to_cpu(ms->m_pid);
  360. __entry->m_lkid = le32_to_cpu(ms->m_lkid);
  361. __entry->m_remid = le32_to_cpu(ms->m_remid);
  362. __entry->m_parent_lkid = le32_to_cpu(ms->m_parent_lkid);
  363. __entry->m_parent_remid = le32_to_cpu(ms->m_parent_remid);
  364. __entry->m_exflags = le32_to_cpu(ms->m_exflags);
  365. __entry->m_sbflags = le32_to_cpu(ms->m_sbflags);
  366. __entry->m_flags = le32_to_cpu(ms->m_flags);
  367. __entry->m_lvbseq = le32_to_cpu(ms->m_lvbseq);
  368. __entry->m_hash = le32_to_cpu(ms->m_hash);
  369. __entry->m_status = le32_to_cpu(ms->m_status);
  370. __entry->m_grmode = le32_to_cpu(ms->m_grmode);
  371. __entry->m_rqmode = le32_to_cpu(ms->m_rqmode);
  372. __entry->m_bastmode = le32_to_cpu(ms->m_bastmode);
  373. __entry->m_asts = le32_to_cpu(ms->m_asts);
  374. __entry->m_result = le32_to_cpu(ms->m_result);
  375. memcpy(__get_dynamic_array(m_extra), ms->m_extra,
  376. __get_dynamic_array_len(m_extra));
  377. memcpy(__get_dynamic_array(res_name), name,
  378. __get_dynamic_array_len(res_name));
  379. ),
  380. TP_printk("dst=%u h_seq=%u h_version=%s h_lockspace=%u h_nodeid=%u "
  381. "h_length=%u h_cmd=%s m_type=%s m_nodeid=%u "
  382. "m_pid=%u m_lkid=%u m_remid=%u m_parent_lkid=%u "
  383. "m_parent_remid=%u m_exflags=%s m_sbflags=%s m_flags=%s "
  384. "m_lvbseq=%u m_hash=%u m_status=%d m_grmode=%s "
  385. "m_rqmode=%s m_bastmode=%s m_asts=%d m_result=%d "
  386. "m_extra=0x%s res_name=0x%s", __entry->dst,
  387. __entry->h_seq, show_message_version(__entry->h_version),
  388. __entry->h_lockspace, __entry->h_nodeid, __entry->h_length,
  389. show_header_cmd(__entry->h_cmd),
  390. show_message_type(__entry->m_type),
  391. __entry->m_nodeid, __entry->m_pid, __entry->m_lkid,
  392. __entry->m_remid, __entry->m_parent_lkid,
  393. __entry->m_parent_remid, show_lock_flags(__entry->m_exflags),
  394. show_dlm_sb_flags(__entry->m_sbflags),
  395. show_lkb_flags(__entry->m_flags), __entry->m_lvbseq,
  396. __entry->m_hash, __entry->m_status,
  397. show_lock_mode(__entry->m_grmode),
  398. show_lock_mode(__entry->m_rqmode),
  399. show_lock_mode(__entry->m_bastmode),
  400. __entry->m_asts, __entry->m_result,
  401. __print_hex_str(__get_dynamic_array(m_extra),
  402. __get_dynamic_array_len(m_extra)),
  403. __print_hex_str(__get_dynamic_array(res_name),
  404. __get_dynamic_array_len(res_name)))
  405. );
  406. TRACE_EVENT(dlm_recv_message,
  407. TP_PROTO(uint32_t dst, uint32_t h_seq, const struct dlm_message *ms),
  408. TP_ARGS(dst, h_seq, ms),
  409. TP_STRUCT__entry(
  410. __field(uint32_t, dst)
  411. __field(uint32_t, h_seq)
  412. __field(uint32_t, h_version)
  413. __field(uint32_t, h_lockspace)
  414. __field(uint32_t, h_nodeid)
  415. __field(uint16_t, h_length)
  416. __field(uint8_t, h_cmd)
  417. __field(uint32_t, m_type)
  418. __field(uint32_t, m_nodeid)
  419. __field(uint32_t, m_pid)
  420. __field(uint32_t, m_lkid)
  421. __field(uint32_t, m_remid)
  422. __field(uint32_t, m_parent_lkid)
  423. __field(uint32_t, m_parent_remid)
  424. __field(uint32_t, m_exflags)
  425. __field(uint32_t, m_sbflags)
  426. __field(uint32_t, m_flags)
  427. __field(uint32_t, m_lvbseq)
  428. __field(uint32_t, m_hash)
  429. __field(int32_t, m_status)
  430. __field(int32_t, m_grmode)
  431. __field(int32_t, m_rqmode)
  432. __field(int32_t, m_bastmode)
  433. __field(int32_t, m_asts)
  434. __field(int32_t, m_result)
  435. __dynamic_array(unsigned char, m_extra,
  436. le16_to_cpu(ms->m_header.h_length) - sizeof(*ms))
  437. ),
  438. TP_fast_assign(
  439. __entry->dst = dst;
  440. __entry->h_seq = h_seq;
  441. __entry->h_version = le32_to_cpu(ms->m_header.h_version);
  442. __entry->h_lockspace = le32_to_cpu(ms->m_header.u.h_lockspace);
  443. __entry->h_nodeid = le32_to_cpu(ms->m_header.h_nodeid);
  444. __entry->h_length = le16_to_cpu(ms->m_header.h_length);
  445. __entry->h_cmd = ms->m_header.h_cmd;
  446. __entry->m_type = le32_to_cpu(ms->m_type);
  447. __entry->m_nodeid = le32_to_cpu(ms->m_nodeid);
  448. __entry->m_pid = le32_to_cpu(ms->m_pid);
  449. __entry->m_lkid = le32_to_cpu(ms->m_lkid);
  450. __entry->m_remid = le32_to_cpu(ms->m_remid);
  451. __entry->m_parent_lkid = le32_to_cpu(ms->m_parent_lkid);
  452. __entry->m_parent_remid = le32_to_cpu(ms->m_parent_remid);
  453. __entry->m_exflags = le32_to_cpu(ms->m_exflags);
  454. __entry->m_sbflags = le32_to_cpu(ms->m_sbflags);
  455. __entry->m_flags = le32_to_cpu(ms->m_flags);
  456. __entry->m_lvbseq = le32_to_cpu(ms->m_lvbseq);
  457. __entry->m_hash = le32_to_cpu(ms->m_hash);
  458. __entry->m_status = le32_to_cpu(ms->m_status);
  459. __entry->m_grmode = le32_to_cpu(ms->m_grmode);
  460. __entry->m_rqmode = le32_to_cpu(ms->m_rqmode);
  461. __entry->m_bastmode = le32_to_cpu(ms->m_bastmode);
  462. __entry->m_asts = le32_to_cpu(ms->m_asts);
  463. __entry->m_result = le32_to_cpu(ms->m_result);
  464. memcpy(__get_dynamic_array(m_extra), ms->m_extra,
  465. __get_dynamic_array_len(m_extra));
  466. ),
  467. TP_printk("dst=%u h_seq=%u h_version=%s h_lockspace=%u h_nodeid=%u "
  468. "h_length=%u h_cmd=%s m_type=%s m_nodeid=%u "
  469. "m_pid=%u m_lkid=%u m_remid=%u m_parent_lkid=%u "
  470. "m_parent_remid=%u m_exflags=%s m_sbflags=%s m_flags=%s "
  471. "m_lvbseq=%u m_hash=%u m_status=%d m_grmode=%s "
  472. "m_rqmode=%s m_bastmode=%s m_asts=%d m_result=%d "
  473. "m_extra=0x%s", __entry->dst,
  474. __entry->h_seq, show_message_version(__entry->h_version),
  475. __entry->h_lockspace, __entry->h_nodeid, __entry->h_length,
  476. show_header_cmd(__entry->h_cmd),
  477. show_message_type(__entry->m_type),
  478. __entry->m_nodeid, __entry->m_pid, __entry->m_lkid,
  479. __entry->m_remid, __entry->m_parent_lkid,
  480. __entry->m_parent_remid, show_lock_flags(__entry->m_exflags),
  481. show_dlm_sb_flags(__entry->m_sbflags),
  482. show_lkb_flags(__entry->m_flags), __entry->m_lvbseq,
  483. __entry->m_hash, __entry->m_status,
  484. show_lock_mode(__entry->m_grmode),
  485. show_lock_mode(__entry->m_rqmode),
  486. show_lock_mode(__entry->m_bastmode),
  487. __entry->m_asts, __entry->m_result,
  488. __print_hex_str(__get_dynamic_array(m_extra),
  489. __get_dynamic_array_len(m_extra)))
  490. );
  491. DECLARE_EVENT_CLASS(dlm_plock_template,
  492. TP_PROTO(const struct dlm_plock_info *info),
  493. TP_ARGS(info),
  494. TP_STRUCT__entry(
  495. __field(uint8_t, optype)
  496. __field(uint8_t, ex)
  497. __field(uint8_t, wait)
  498. __field(uint8_t, flags)
  499. __field(uint32_t, pid)
  500. __field(int32_t, nodeid)
  501. __field(int32_t, rv)
  502. __field(uint32_t, fsid)
  503. __field(uint64_t, number)
  504. __field(uint64_t, start)
  505. __field(uint64_t, end)
  506. __field(uint64_t, owner)
  507. ),
  508. TP_fast_assign(
  509. __entry->optype = info->optype;
  510. __entry->ex = info->ex;
  511. __entry->wait = info->wait;
  512. __entry->flags = info->flags;
  513. __entry->pid = info->pid;
  514. __entry->nodeid = info->nodeid;
  515. __entry->rv = info->rv;
  516. __entry->fsid = info->fsid;
  517. __entry->number = info->number;
  518. __entry->start = info->start;
  519. __entry->end = info->end;
  520. __entry->owner = info->owner;
  521. ),
  522. TP_printk("fsid=%u number=%llx owner=%llx optype=%d ex=%d wait=%d flags=%x pid=%u nodeid=%d rv=%d start=%llx end=%llx",
  523. __entry->fsid, __entry->number, __entry->owner,
  524. __entry->optype, __entry->ex, __entry->wait,
  525. __entry->flags, __entry->pid, __entry->nodeid,
  526. __entry->rv, __entry->start, __entry->end)
  527. );
  528. DEFINE_EVENT(dlm_plock_template, dlm_plock_read,
  529. TP_PROTO(const struct dlm_plock_info *info), TP_ARGS(info));
  530. DEFINE_EVENT(dlm_plock_template, dlm_plock_write,
  531. TP_PROTO(const struct dlm_plock_info *info), TP_ARGS(info));
  532. TRACE_EVENT(dlm_send,
  533. TP_PROTO(int nodeid, int ret),
  534. TP_ARGS(nodeid, ret),
  535. TP_STRUCT__entry(
  536. __field(int, nodeid)
  537. __field(int, ret)
  538. ),
  539. TP_fast_assign(
  540. __entry->nodeid = nodeid;
  541. __entry->ret = ret;
  542. ),
  543. TP_printk("nodeid=%d ret=%d", __entry->nodeid, __entry->ret)
  544. );
  545. TRACE_EVENT(dlm_recv,
  546. TP_PROTO(int nodeid, int ret),
  547. TP_ARGS(nodeid, ret),
  548. TP_STRUCT__entry(
  549. __field(int, nodeid)
  550. __field(int, ret)
  551. ),
  552. TP_fast_assign(
  553. __entry->nodeid = nodeid;
  554. __entry->ret = ret;
  555. ),
  556. TP_printk("nodeid=%d ret=%d", __entry->nodeid, __entry->ret)
  557. );
  558. #endif /* if !defined(_TRACE_DLM_H) || defined(TRACE_HEADER_MULTI_READ) */
  559. /* This part must be outside protection */
  560. #include <trace/define_trace.h>