trace_output.c 27 KB

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  1. /*
  2. * trace_output.c
  3. *
  4. * Copyright (C) 2008 Red Hat Inc, Steven Rostedt <srostedt@redhat.com>
  5. *
  6. */
  7. #include <linux/module.h>
  8. #include <linux/mutex.h>
  9. #include <linux/ftrace.h>
  10. #include "trace_output.h"
  11. /* must be a power of 2 */
  12. #define EVENT_HASHSIZE 128
  13. DECLARE_RWSEM(trace_event_sem);
  14. static struct hlist_head event_hash[EVENT_HASHSIZE] __read_mostly;
  15. static int next_event_type = __TRACE_LAST_TYPE + 1;
  16. enum print_line_t trace_print_bputs_msg_only(struct trace_iterator *iter)
  17. {
  18. struct trace_seq *s = &iter->seq;
  19. struct trace_entry *entry = iter->ent;
  20. struct bputs_entry *field;
  21. trace_assign_type(field, entry);
  22. trace_seq_puts(s, field->str);
  23. return trace_handle_return(s);
  24. }
  25. enum print_line_t trace_print_bprintk_msg_only(struct trace_iterator *iter)
  26. {
  27. struct trace_seq *s = &iter->seq;
  28. struct trace_entry *entry = iter->ent;
  29. struct bprint_entry *field;
  30. trace_assign_type(field, entry);
  31. trace_seq_bprintf(s, field->fmt, field->buf);
  32. return trace_handle_return(s);
  33. }
  34. enum print_line_t trace_print_printk_msg_only(struct trace_iterator *iter)
  35. {
  36. struct trace_seq *s = &iter->seq;
  37. struct trace_entry *entry = iter->ent;
  38. struct print_entry *field;
  39. trace_assign_type(field, entry);
  40. trace_seq_puts(s, field->buf);
  41. return trace_handle_return(s);
  42. }
  43. const char *
  44. trace_print_flags_seq(struct trace_seq *p, const char *delim,
  45. unsigned long flags,
  46. const struct trace_print_flags *flag_array)
  47. {
  48. unsigned long mask;
  49. const char *str;
  50. const char *ret = trace_seq_buffer_ptr(p);
  51. int i, first = 1;
  52. for (i = 0; flag_array[i].name && flags; i++) {
  53. mask = flag_array[i].mask;
  54. if ((flags & mask) != mask)
  55. continue;
  56. str = flag_array[i].name;
  57. flags &= ~mask;
  58. if (!first && delim)
  59. trace_seq_puts(p, delim);
  60. else
  61. first = 0;
  62. trace_seq_puts(p, str);
  63. }
  64. /* check for left over flags */
  65. if (flags) {
  66. if (!first && delim)
  67. trace_seq_puts(p, delim);
  68. trace_seq_printf(p, "0x%lx", flags);
  69. }
  70. trace_seq_putc(p, 0);
  71. return ret;
  72. }
  73. EXPORT_SYMBOL(trace_print_flags_seq);
  74. const char *
  75. trace_print_symbols_seq(struct trace_seq *p, unsigned long val,
  76. const struct trace_print_flags *symbol_array)
  77. {
  78. int i;
  79. const char *ret = trace_seq_buffer_ptr(p);
  80. for (i = 0; symbol_array[i].name; i++) {
  81. if (val != symbol_array[i].mask)
  82. continue;
  83. trace_seq_puts(p, symbol_array[i].name);
  84. break;
  85. }
  86. if (ret == (const char *)(trace_seq_buffer_ptr(p)))
  87. trace_seq_printf(p, "0x%lx", val);
  88. trace_seq_putc(p, 0);
  89. return ret;
  90. }
  91. EXPORT_SYMBOL(trace_print_symbols_seq);
  92. #if BITS_PER_LONG == 32
  93. const char *
  94. trace_print_symbols_seq_u64(struct trace_seq *p, unsigned long long val,
  95. const struct trace_print_flags_u64 *symbol_array)
  96. {
  97. int i;
  98. const char *ret = trace_seq_buffer_ptr(p);
  99. for (i = 0; symbol_array[i].name; i++) {
  100. if (val != symbol_array[i].mask)
  101. continue;
  102. trace_seq_puts(p, symbol_array[i].name);
  103. break;
  104. }
  105. if (ret == (const char *)(trace_seq_buffer_ptr(p)))
  106. trace_seq_printf(p, "0x%llx", val);
  107. trace_seq_putc(p, 0);
  108. return ret;
  109. }
  110. EXPORT_SYMBOL(trace_print_symbols_seq_u64);
  111. #endif
  112. const char *
  113. trace_print_bitmask_seq(struct trace_seq *p, void *bitmask_ptr,
  114. unsigned int bitmask_size)
  115. {
  116. const char *ret = trace_seq_buffer_ptr(p);
  117. trace_seq_bitmask(p, bitmask_ptr, bitmask_size * 8);
  118. trace_seq_putc(p, 0);
  119. return ret;
  120. }
  121. EXPORT_SYMBOL_GPL(trace_print_bitmask_seq);
  122. const char *
  123. trace_print_hex_seq(struct trace_seq *p, const unsigned char *buf, int buf_len)
  124. {
  125. int i;
  126. const char *ret = trace_seq_buffer_ptr(p);
  127. for (i = 0; i < buf_len; i++)
  128. trace_seq_printf(p, "%s%2.2x", i == 0 ? "" : " ", buf[i]);
  129. trace_seq_putc(p, 0);
  130. return ret;
  131. }
  132. EXPORT_SYMBOL(trace_print_hex_seq);
  133. const char *
  134. trace_print_array_seq(struct trace_seq *p, const void *buf, int count,
  135. size_t el_size)
  136. {
  137. const char *ret = trace_seq_buffer_ptr(p);
  138. const char *prefix = "";
  139. void *ptr = (void *)buf;
  140. size_t buf_len = count * el_size;
  141. trace_seq_putc(p, '{');
  142. while (ptr < buf + buf_len) {
  143. switch (el_size) {
  144. case 1:
  145. trace_seq_printf(p, "%s0x%x", prefix,
  146. *(u8 *)ptr);
  147. break;
  148. case 2:
  149. trace_seq_printf(p, "%s0x%x", prefix,
  150. *(u16 *)ptr);
  151. break;
  152. case 4:
  153. trace_seq_printf(p, "%s0x%x", prefix,
  154. *(u32 *)ptr);
  155. break;
  156. case 8:
  157. trace_seq_printf(p, "%s0x%llx", prefix,
  158. *(u64 *)ptr);
  159. break;
  160. default:
  161. trace_seq_printf(p, "BAD SIZE:%zu 0x%x", el_size,
  162. *(u8 *)ptr);
  163. el_size = 1;
  164. }
  165. prefix = ",";
  166. ptr += el_size;
  167. }
  168. trace_seq_putc(p, '}');
  169. trace_seq_putc(p, 0);
  170. return ret;
  171. }
  172. EXPORT_SYMBOL(trace_print_array_seq);
  173. int trace_raw_output_prep(struct trace_iterator *iter,
  174. struct trace_event *trace_event)
  175. {
  176. struct trace_event_call *event;
  177. struct trace_seq *s = &iter->seq;
  178. struct trace_seq *p = &iter->tmp_seq;
  179. struct trace_entry *entry;
  180. event = container_of(trace_event, struct trace_event_call, event);
  181. entry = iter->ent;
  182. if (entry->type != event->event.type) {
  183. WARN_ON_ONCE(1);
  184. return TRACE_TYPE_UNHANDLED;
  185. }
  186. trace_seq_init(p);
  187. trace_seq_printf(s, "%s: ", trace_event_name(event));
  188. return trace_handle_return(s);
  189. }
  190. EXPORT_SYMBOL(trace_raw_output_prep);
  191. static int trace_output_raw(struct trace_iterator *iter, char *name,
  192. char *fmt, va_list ap)
  193. {
  194. struct trace_seq *s = &iter->seq;
  195. trace_seq_printf(s, "%s: ", name);
  196. trace_seq_vprintf(s, fmt, ap);
  197. return trace_handle_return(s);
  198. }
  199. int trace_output_call(struct trace_iterator *iter, char *name, char *fmt, ...)
  200. {
  201. va_list ap;
  202. int ret;
  203. va_start(ap, fmt);
  204. ret = trace_output_raw(iter, name, fmt, ap);
  205. va_end(ap);
  206. return ret;
  207. }
  208. EXPORT_SYMBOL_GPL(trace_output_call);
  209. #ifdef CONFIG_KRETPROBES
  210. static inline const char *kretprobed(const char *name)
  211. {
  212. static const char tramp_name[] = "kretprobe_trampoline";
  213. int size = sizeof(tramp_name);
  214. if (strncmp(tramp_name, name, size) == 0)
  215. return "[unknown/kretprobe'd]";
  216. return name;
  217. }
  218. #else
  219. static inline const char *kretprobed(const char *name)
  220. {
  221. return name;
  222. }
  223. #endif /* CONFIG_KRETPROBES */
  224. static void
  225. seq_print_sym_short(struct trace_seq *s, const char *fmt, unsigned long address)
  226. {
  227. #ifdef CONFIG_KALLSYMS
  228. char str[KSYM_SYMBOL_LEN];
  229. const char *name;
  230. kallsyms_lookup(address, NULL, NULL, NULL, str);
  231. name = kretprobed(str);
  232. trace_seq_printf(s, fmt, name);
  233. #endif
  234. }
  235. static void
  236. seq_print_sym_offset(struct trace_seq *s, const char *fmt,
  237. unsigned long address)
  238. {
  239. #ifdef CONFIG_KALLSYMS
  240. char str[KSYM_SYMBOL_LEN];
  241. const char *name;
  242. sprint_symbol(str, address);
  243. name = kretprobed(str);
  244. trace_seq_printf(s, fmt, name);
  245. #endif
  246. }
  247. #ifndef CONFIG_64BIT
  248. # define IP_FMT "%08lx"
  249. #else
  250. # define IP_FMT "%016lx"
  251. #endif
  252. int seq_print_user_ip(struct trace_seq *s, struct mm_struct *mm,
  253. unsigned long ip, unsigned long sym_flags)
  254. {
  255. struct file *file = NULL;
  256. unsigned long vmstart = 0;
  257. int ret = 1;
  258. if (s->full)
  259. return 0;
  260. if (mm) {
  261. const struct vm_area_struct *vma;
  262. down_read(&mm->mmap_sem);
  263. vma = find_vma(mm, ip);
  264. if (vma) {
  265. file = vma->vm_file;
  266. vmstart = vma->vm_start;
  267. }
  268. if (file) {
  269. ret = trace_seq_path(s, &file->f_path);
  270. if (ret)
  271. trace_seq_printf(s, "[+0x%lx]",
  272. ip - vmstart);
  273. }
  274. up_read(&mm->mmap_sem);
  275. }
  276. if (ret && ((sym_flags & TRACE_ITER_SYM_ADDR) || !file))
  277. trace_seq_printf(s, " <" IP_FMT ">", ip);
  278. return !trace_seq_has_overflowed(s);
  279. }
  280. int
  281. seq_print_userip_objs(const struct userstack_entry *entry, struct trace_seq *s,
  282. unsigned long sym_flags)
  283. {
  284. struct mm_struct *mm = NULL;
  285. unsigned int i;
  286. if (trace_flags & TRACE_ITER_SYM_USEROBJ) {
  287. struct task_struct *task;
  288. /*
  289. * we do the lookup on the thread group leader,
  290. * since individual threads might have already quit!
  291. */
  292. rcu_read_lock();
  293. task = find_task_by_vpid(entry->tgid);
  294. if (task)
  295. mm = get_task_mm(task);
  296. rcu_read_unlock();
  297. }
  298. for (i = 0; i < FTRACE_STACK_ENTRIES; i++) {
  299. unsigned long ip = entry->caller[i];
  300. if (ip == ULONG_MAX || trace_seq_has_overflowed(s))
  301. break;
  302. trace_seq_puts(s, " => ");
  303. if (!ip) {
  304. trace_seq_puts(s, "??");
  305. trace_seq_putc(s, '\n');
  306. continue;
  307. }
  308. seq_print_user_ip(s, mm, ip, sym_flags);
  309. trace_seq_putc(s, '\n');
  310. }
  311. if (mm)
  312. mmput(mm);
  313. return !trace_seq_has_overflowed(s);
  314. }
  315. int
  316. seq_print_ip_sym(struct trace_seq *s, unsigned long ip, unsigned long sym_flags)
  317. {
  318. if (!ip) {
  319. trace_seq_putc(s, '0');
  320. goto out;
  321. }
  322. if (sym_flags & TRACE_ITER_SYM_OFFSET)
  323. seq_print_sym_offset(s, "%s", ip);
  324. else
  325. seq_print_sym_short(s, "%s", ip);
  326. if (sym_flags & TRACE_ITER_SYM_ADDR)
  327. trace_seq_printf(s, " <" IP_FMT ">", ip);
  328. out:
  329. return !trace_seq_has_overflowed(s);
  330. }
  331. /**
  332. * trace_print_lat_fmt - print the irq, preempt and lockdep fields
  333. * @s: trace seq struct to write to
  334. * @entry: The trace entry field from the ring buffer
  335. *
  336. * Prints the generic fields of irqs off, in hard or softirq, preempt
  337. * count.
  338. */
  339. int trace_print_lat_fmt(struct trace_seq *s, struct trace_entry *entry)
  340. {
  341. char hardsoft_irq;
  342. char need_resched;
  343. char irqs_off;
  344. int hardirq;
  345. int softirq;
  346. hardirq = entry->flags & TRACE_FLAG_HARDIRQ;
  347. softirq = entry->flags & TRACE_FLAG_SOFTIRQ;
  348. irqs_off =
  349. (entry->flags & TRACE_FLAG_IRQS_OFF) ? 'd' :
  350. (entry->flags & TRACE_FLAG_IRQS_NOSUPPORT) ? 'X' :
  351. '.';
  352. switch (entry->flags & (TRACE_FLAG_NEED_RESCHED |
  353. TRACE_FLAG_PREEMPT_RESCHED)) {
  354. case TRACE_FLAG_NEED_RESCHED | TRACE_FLAG_PREEMPT_RESCHED:
  355. need_resched = 'N';
  356. break;
  357. case TRACE_FLAG_NEED_RESCHED:
  358. need_resched = 'n';
  359. break;
  360. case TRACE_FLAG_PREEMPT_RESCHED:
  361. need_resched = 'p';
  362. break;
  363. default:
  364. need_resched = '.';
  365. break;
  366. }
  367. hardsoft_irq =
  368. (hardirq && softirq) ? 'H' :
  369. hardirq ? 'h' :
  370. softirq ? 's' :
  371. '.';
  372. trace_seq_printf(s, "%c%c%c",
  373. irqs_off, need_resched, hardsoft_irq);
  374. if (entry->preempt_count)
  375. trace_seq_printf(s, "%x", entry->preempt_count);
  376. else
  377. trace_seq_putc(s, '.');
  378. return !trace_seq_has_overflowed(s);
  379. }
  380. static int
  381. lat_print_generic(struct trace_seq *s, struct trace_entry *entry, int cpu)
  382. {
  383. char comm[TASK_COMM_LEN];
  384. trace_find_cmdline(entry->pid, comm);
  385. trace_seq_printf(s, "%8.8s-%-5d %3d",
  386. comm, entry->pid, cpu);
  387. return trace_print_lat_fmt(s, entry);
  388. }
  389. #undef MARK
  390. #define MARK(v, s) {.val = v, .sym = s}
  391. /* trace overhead mark */
  392. static const struct trace_mark {
  393. unsigned long long val; /* unit: nsec */
  394. char sym;
  395. } mark[] = {
  396. MARK(1000000000ULL , '$'), /* 1 sec */
  397. MARK(1000000ULL , '#'), /* 1000 usecs */
  398. MARK(100000ULL , '!'), /* 100 usecs */
  399. MARK(10000ULL , '+'), /* 10 usecs */
  400. };
  401. #undef MARK
  402. char trace_find_mark(unsigned long long d)
  403. {
  404. int i;
  405. int size = ARRAY_SIZE(mark);
  406. for (i = 0; i < size; i++) {
  407. if (d >= mark[i].val)
  408. break;
  409. }
  410. return (i == size) ? ' ' : mark[i].sym;
  411. }
  412. static int
  413. lat_print_timestamp(struct trace_iterator *iter, u64 next_ts)
  414. {
  415. unsigned long verbose = trace_flags & TRACE_ITER_VERBOSE;
  416. unsigned long in_ns = iter->iter_flags & TRACE_FILE_TIME_IN_NS;
  417. unsigned long long abs_ts = iter->ts - iter->trace_buffer->time_start;
  418. unsigned long long rel_ts = next_ts - iter->ts;
  419. struct trace_seq *s = &iter->seq;
  420. if (in_ns) {
  421. abs_ts = ns2usecs(abs_ts);
  422. rel_ts = ns2usecs(rel_ts);
  423. }
  424. if (verbose && in_ns) {
  425. unsigned long abs_usec = do_div(abs_ts, USEC_PER_MSEC);
  426. unsigned long abs_msec = (unsigned long)abs_ts;
  427. unsigned long rel_usec = do_div(rel_ts, USEC_PER_MSEC);
  428. unsigned long rel_msec = (unsigned long)rel_ts;
  429. trace_seq_printf(
  430. s, "[%08llx] %ld.%03ldms (+%ld.%03ldms): ",
  431. ns2usecs(iter->ts),
  432. abs_msec, abs_usec,
  433. rel_msec, rel_usec);
  434. } else if (verbose && !in_ns) {
  435. trace_seq_printf(
  436. s, "[%016llx] %lld (+%lld): ",
  437. iter->ts, abs_ts, rel_ts);
  438. } else if (!verbose && in_ns) {
  439. trace_seq_printf(
  440. s, " %4lldus%c: ",
  441. abs_ts,
  442. trace_find_mark(rel_ts * NSEC_PER_USEC));
  443. } else { /* !verbose && !in_ns */
  444. trace_seq_printf(s, " %4lld: ", abs_ts);
  445. }
  446. return !trace_seq_has_overflowed(s);
  447. }
  448. int trace_print_context(struct trace_iterator *iter)
  449. {
  450. struct trace_seq *s = &iter->seq;
  451. struct trace_entry *entry = iter->ent;
  452. unsigned long long t;
  453. unsigned long secs, usec_rem;
  454. char comm[TASK_COMM_LEN];
  455. trace_find_cmdline(entry->pid, comm);
  456. trace_seq_printf(s, "%16s-%-5d [%03d] ",
  457. comm, entry->pid, iter->cpu);
  458. if (trace_flags & TRACE_ITER_IRQ_INFO)
  459. trace_print_lat_fmt(s, entry);
  460. if (iter->iter_flags & TRACE_FILE_TIME_IN_NS) {
  461. t = ns2usecs(iter->ts);
  462. usec_rem = do_div(t, USEC_PER_SEC);
  463. secs = (unsigned long)t;
  464. trace_seq_printf(s, " %5lu.%06lu: ", secs, usec_rem);
  465. } else
  466. trace_seq_printf(s, " %12llu: ", iter->ts);
  467. return !trace_seq_has_overflowed(s);
  468. }
  469. int trace_print_lat_context(struct trace_iterator *iter)
  470. {
  471. u64 next_ts;
  472. /* trace_find_next_entry will reset ent_size */
  473. int ent_size = iter->ent_size;
  474. struct trace_seq *s = &iter->seq;
  475. struct trace_entry *entry = iter->ent,
  476. *next_entry = trace_find_next_entry(iter, NULL,
  477. &next_ts);
  478. unsigned long verbose = (trace_flags & TRACE_ITER_VERBOSE);
  479. /* Restore the original ent_size */
  480. iter->ent_size = ent_size;
  481. if (!next_entry)
  482. next_ts = iter->ts;
  483. if (verbose) {
  484. char comm[TASK_COMM_LEN];
  485. trace_find_cmdline(entry->pid, comm);
  486. trace_seq_printf(
  487. s, "%16s %5d %3d %d %08x %08lx ",
  488. comm, entry->pid, iter->cpu, entry->flags,
  489. entry->preempt_count, iter->idx);
  490. } else {
  491. lat_print_generic(s, entry, iter->cpu);
  492. }
  493. lat_print_timestamp(iter, next_ts);
  494. return !trace_seq_has_overflowed(s);
  495. }
  496. static const char state_to_char[] = TASK_STATE_TO_CHAR_STR;
  497. static int task_state_char(unsigned long state)
  498. {
  499. int bit = state ? __ffs(state) + 1 : 0;
  500. return bit < sizeof(state_to_char) - 1 ? state_to_char[bit] : '?';
  501. }
  502. /**
  503. * ftrace_find_event - find a registered event
  504. * @type: the type of event to look for
  505. *
  506. * Returns an event of type @type otherwise NULL
  507. * Called with trace_event_read_lock() held.
  508. */
  509. struct trace_event *ftrace_find_event(int type)
  510. {
  511. struct trace_event *event;
  512. unsigned key;
  513. key = type & (EVENT_HASHSIZE - 1);
  514. hlist_for_each_entry(event, &event_hash[key], node) {
  515. if (event->type == type)
  516. return event;
  517. }
  518. return NULL;
  519. }
  520. static LIST_HEAD(ftrace_event_list);
  521. static int trace_search_list(struct list_head **list)
  522. {
  523. struct trace_event *e;
  524. int last = __TRACE_LAST_TYPE;
  525. if (list_empty(&ftrace_event_list)) {
  526. *list = &ftrace_event_list;
  527. return last + 1;
  528. }
  529. /*
  530. * We used up all possible max events,
  531. * lets see if somebody freed one.
  532. */
  533. list_for_each_entry(e, &ftrace_event_list, list) {
  534. if (e->type != last + 1)
  535. break;
  536. last++;
  537. }
  538. /* Did we used up all 65 thousand events??? */
  539. if ((last + 1) > TRACE_EVENT_TYPE_MAX)
  540. return 0;
  541. *list = &e->list;
  542. return last + 1;
  543. }
  544. void trace_event_read_lock(void)
  545. {
  546. down_read(&trace_event_sem);
  547. }
  548. void trace_event_read_unlock(void)
  549. {
  550. up_read(&trace_event_sem);
  551. }
  552. /**
  553. * register_trace_event - register output for an event type
  554. * @event: the event type to register
  555. *
  556. * Event types are stored in a hash and this hash is used to
  557. * find a way to print an event. If the @event->type is set
  558. * then it will use that type, otherwise it will assign a
  559. * type to use.
  560. *
  561. * If you assign your own type, please make sure it is added
  562. * to the trace_type enum in trace.h, to avoid collisions
  563. * with the dynamic types.
  564. *
  565. * Returns the event type number or zero on error.
  566. */
  567. int register_trace_event(struct trace_event *event)
  568. {
  569. unsigned key;
  570. int ret = 0;
  571. down_write(&trace_event_sem);
  572. if (WARN_ON(!event))
  573. goto out;
  574. if (WARN_ON(!event->funcs))
  575. goto out;
  576. INIT_LIST_HEAD(&event->list);
  577. if (!event->type) {
  578. struct list_head *list = NULL;
  579. if (next_event_type > TRACE_EVENT_TYPE_MAX) {
  580. event->type = trace_search_list(&list);
  581. if (!event->type)
  582. goto out;
  583. } else {
  584. event->type = next_event_type++;
  585. list = &ftrace_event_list;
  586. }
  587. if (WARN_ON(ftrace_find_event(event->type)))
  588. goto out;
  589. list_add_tail(&event->list, list);
  590. } else if (event->type > __TRACE_LAST_TYPE) {
  591. printk(KERN_WARNING "Need to add type to trace.h\n");
  592. WARN_ON(1);
  593. goto out;
  594. } else {
  595. /* Is this event already used */
  596. if (ftrace_find_event(event->type))
  597. goto out;
  598. }
  599. if (event->funcs->trace == NULL)
  600. event->funcs->trace = trace_nop_print;
  601. if (event->funcs->raw == NULL)
  602. event->funcs->raw = trace_nop_print;
  603. if (event->funcs->hex == NULL)
  604. event->funcs->hex = trace_nop_print;
  605. if (event->funcs->binary == NULL)
  606. event->funcs->binary = trace_nop_print;
  607. key = event->type & (EVENT_HASHSIZE - 1);
  608. hlist_add_head(&event->node, &event_hash[key]);
  609. ret = event->type;
  610. out:
  611. up_write(&trace_event_sem);
  612. return ret;
  613. }
  614. EXPORT_SYMBOL_GPL(register_trace_event);
  615. /*
  616. * Used by module code with the trace_event_sem held for write.
  617. */
  618. int __unregister_trace_event(struct trace_event *event)
  619. {
  620. hlist_del(&event->node);
  621. list_del(&event->list);
  622. return 0;
  623. }
  624. /**
  625. * unregister_trace_event - remove a no longer used event
  626. * @event: the event to remove
  627. */
  628. int unregister_trace_event(struct trace_event *event)
  629. {
  630. down_write(&trace_event_sem);
  631. __unregister_trace_event(event);
  632. up_write(&trace_event_sem);
  633. return 0;
  634. }
  635. EXPORT_SYMBOL_GPL(unregister_trace_event);
  636. /*
  637. * Standard events
  638. */
  639. enum print_line_t trace_nop_print(struct trace_iterator *iter, int flags,
  640. struct trace_event *event)
  641. {
  642. trace_seq_printf(&iter->seq, "type: %d\n", iter->ent->type);
  643. return trace_handle_return(&iter->seq);
  644. }
  645. /* TRACE_FN */
  646. static enum print_line_t trace_fn_trace(struct trace_iterator *iter, int flags,
  647. struct trace_event *event)
  648. {
  649. struct ftrace_entry *field;
  650. struct trace_seq *s = &iter->seq;
  651. trace_assign_type(field, iter->ent);
  652. seq_print_ip_sym(s, field->ip, flags);
  653. if ((flags & TRACE_ITER_PRINT_PARENT) && field->parent_ip) {
  654. trace_seq_puts(s, " <-");
  655. seq_print_ip_sym(s, field->parent_ip, flags);
  656. }
  657. trace_seq_putc(s, '\n');
  658. return trace_handle_return(s);
  659. }
  660. static enum print_line_t trace_fn_raw(struct trace_iterator *iter, int flags,
  661. struct trace_event *event)
  662. {
  663. struct ftrace_entry *field;
  664. trace_assign_type(field, iter->ent);
  665. trace_seq_printf(&iter->seq, "%lx %lx\n",
  666. field->ip,
  667. field->parent_ip);
  668. return trace_handle_return(&iter->seq);
  669. }
  670. static enum print_line_t trace_fn_hex(struct trace_iterator *iter, int flags,
  671. struct trace_event *event)
  672. {
  673. struct ftrace_entry *field;
  674. struct trace_seq *s = &iter->seq;
  675. trace_assign_type(field, iter->ent);
  676. SEQ_PUT_HEX_FIELD(s, field->ip);
  677. SEQ_PUT_HEX_FIELD(s, field->parent_ip);
  678. return trace_handle_return(s);
  679. }
  680. static enum print_line_t trace_fn_bin(struct trace_iterator *iter, int flags,
  681. struct trace_event *event)
  682. {
  683. struct ftrace_entry *field;
  684. struct trace_seq *s = &iter->seq;
  685. trace_assign_type(field, iter->ent);
  686. SEQ_PUT_FIELD(s, field->ip);
  687. SEQ_PUT_FIELD(s, field->parent_ip);
  688. return trace_handle_return(s);
  689. }
  690. static struct trace_event_functions trace_fn_funcs = {
  691. .trace = trace_fn_trace,
  692. .raw = trace_fn_raw,
  693. .hex = trace_fn_hex,
  694. .binary = trace_fn_bin,
  695. };
  696. static struct trace_event trace_fn_event = {
  697. .type = TRACE_FN,
  698. .funcs = &trace_fn_funcs,
  699. };
  700. /* TRACE_CTX an TRACE_WAKE */
  701. static enum print_line_t trace_ctxwake_print(struct trace_iterator *iter,
  702. char *delim)
  703. {
  704. struct ctx_switch_entry *field;
  705. char comm[TASK_COMM_LEN];
  706. int S, T;
  707. trace_assign_type(field, iter->ent);
  708. T = task_state_char(field->next_state);
  709. S = task_state_char(field->prev_state);
  710. trace_find_cmdline(field->next_pid, comm);
  711. trace_seq_printf(&iter->seq,
  712. " %5d:%3d:%c %s [%03d] %5d:%3d:%c %s\n",
  713. field->prev_pid,
  714. field->prev_prio,
  715. S, delim,
  716. field->next_cpu,
  717. field->next_pid,
  718. field->next_prio,
  719. T, comm);
  720. return trace_handle_return(&iter->seq);
  721. }
  722. static enum print_line_t trace_ctx_print(struct trace_iterator *iter, int flags,
  723. struct trace_event *event)
  724. {
  725. return trace_ctxwake_print(iter, "==>");
  726. }
  727. static enum print_line_t trace_wake_print(struct trace_iterator *iter,
  728. int flags, struct trace_event *event)
  729. {
  730. return trace_ctxwake_print(iter, " +");
  731. }
  732. static int trace_ctxwake_raw(struct trace_iterator *iter, char S)
  733. {
  734. struct ctx_switch_entry *field;
  735. int T;
  736. trace_assign_type(field, iter->ent);
  737. if (!S)
  738. S = task_state_char(field->prev_state);
  739. T = task_state_char(field->next_state);
  740. trace_seq_printf(&iter->seq, "%d %d %c %d %d %d %c\n",
  741. field->prev_pid,
  742. field->prev_prio,
  743. S,
  744. field->next_cpu,
  745. field->next_pid,
  746. field->next_prio,
  747. T);
  748. return trace_handle_return(&iter->seq);
  749. }
  750. static enum print_line_t trace_ctx_raw(struct trace_iterator *iter, int flags,
  751. struct trace_event *event)
  752. {
  753. return trace_ctxwake_raw(iter, 0);
  754. }
  755. static enum print_line_t trace_wake_raw(struct trace_iterator *iter, int flags,
  756. struct trace_event *event)
  757. {
  758. return trace_ctxwake_raw(iter, '+');
  759. }
  760. static int trace_ctxwake_hex(struct trace_iterator *iter, char S)
  761. {
  762. struct ctx_switch_entry *field;
  763. struct trace_seq *s = &iter->seq;
  764. int T;
  765. trace_assign_type(field, iter->ent);
  766. if (!S)
  767. S = task_state_char(field->prev_state);
  768. T = task_state_char(field->next_state);
  769. SEQ_PUT_HEX_FIELD(s, field->prev_pid);
  770. SEQ_PUT_HEX_FIELD(s, field->prev_prio);
  771. SEQ_PUT_HEX_FIELD(s, S);
  772. SEQ_PUT_HEX_FIELD(s, field->next_cpu);
  773. SEQ_PUT_HEX_FIELD(s, field->next_pid);
  774. SEQ_PUT_HEX_FIELD(s, field->next_prio);
  775. SEQ_PUT_HEX_FIELD(s, T);
  776. return trace_handle_return(s);
  777. }
  778. static enum print_line_t trace_ctx_hex(struct trace_iterator *iter, int flags,
  779. struct trace_event *event)
  780. {
  781. return trace_ctxwake_hex(iter, 0);
  782. }
  783. static enum print_line_t trace_wake_hex(struct trace_iterator *iter, int flags,
  784. struct trace_event *event)
  785. {
  786. return trace_ctxwake_hex(iter, '+');
  787. }
  788. static enum print_line_t trace_ctxwake_bin(struct trace_iterator *iter,
  789. int flags, struct trace_event *event)
  790. {
  791. struct ctx_switch_entry *field;
  792. struct trace_seq *s = &iter->seq;
  793. trace_assign_type(field, iter->ent);
  794. SEQ_PUT_FIELD(s, field->prev_pid);
  795. SEQ_PUT_FIELD(s, field->prev_prio);
  796. SEQ_PUT_FIELD(s, field->prev_state);
  797. SEQ_PUT_FIELD(s, field->next_cpu);
  798. SEQ_PUT_FIELD(s, field->next_pid);
  799. SEQ_PUT_FIELD(s, field->next_prio);
  800. SEQ_PUT_FIELD(s, field->next_state);
  801. return trace_handle_return(s);
  802. }
  803. static struct trace_event_functions trace_ctx_funcs = {
  804. .trace = trace_ctx_print,
  805. .raw = trace_ctx_raw,
  806. .hex = trace_ctx_hex,
  807. .binary = trace_ctxwake_bin,
  808. };
  809. static struct trace_event trace_ctx_event = {
  810. .type = TRACE_CTX,
  811. .funcs = &trace_ctx_funcs,
  812. };
  813. static struct trace_event_functions trace_wake_funcs = {
  814. .trace = trace_wake_print,
  815. .raw = trace_wake_raw,
  816. .hex = trace_wake_hex,
  817. .binary = trace_ctxwake_bin,
  818. };
  819. static struct trace_event trace_wake_event = {
  820. .type = TRACE_WAKE,
  821. .funcs = &trace_wake_funcs,
  822. };
  823. /* TRACE_STACK */
  824. static enum print_line_t trace_stack_print(struct trace_iterator *iter,
  825. int flags, struct trace_event *event)
  826. {
  827. struct stack_entry *field;
  828. struct trace_seq *s = &iter->seq;
  829. unsigned long *p;
  830. unsigned long *end;
  831. trace_assign_type(field, iter->ent);
  832. end = (unsigned long *)((long)iter->ent + iter->ent_size);
  833. trace_seq_puts(s, "<stack trace>\n");
  834. for (p = field->caller; p && *p != ULONG_MAX && p < end; p++) {
  835. if (trace_seq_has_overflowed(s))
  836. break;
  837. trace_seq_puts(s, " => ");
  838. seq_print_ip_sym(s, *p, flags);
  839. trace_seq_putc(s, '\n');
  840. }
  841. return trace_handle_return(s);
  842. }
  843. static struct trace_event_functions trace_stack_funcs = {
  844. .trace = trace_stack_print,
  845. };
  846. static struct trace_event trace_stack_event = {
  847. .type = TRACE_STACK,
  848. .funcs = &trace_stack_funcs,
  849. };
  850. /* TRACE_USER_STACK */
  851. static enum print_line_t trace_user_stack_print(struct trace_iterator *iter,
  852. int flags, struct trace_event *event)
  853. {
  854. struct userstack_entry *field;
  855. struct trace_seq *s = &iter->seq;
  856. trace_assign_type(field, iter->ent);
  857. trace_seq_puts(s, "<user stack trace>\n");
  858. seq_print_userip_objs(field, s, flags);
  859. return trace_handle_return(s);
  860. }
  861. static struct trace_event_functions trace_user_stack_funcs = {
  862. .trace = trace_user_stack_print,
  863. };
  864. static struct trace_event trace_user_stack_event = {
  865. .type = TRACE_USER_STACK,
  866. .funcs = &trace_user_stack_funcs,
  867. };
  868. /* TRACE_BPUTS */
  869. static enum print_line_t
  870. trace_bputs_print(struct trace_iterator *iter, int flags,
  871. struct trace_event *event)
  872. {
  873. struct trace_entry *entry = iter->ent;
  874. struct trace_seq *s = &iter->seq;
  875. struct bputs_entry *field;
  876. trace_assign_type(field, entry);
  877. seq_print_ip_sym(s, field->ip, flags);
  878. trace_seq_puts(s, ": ");
  879. trace_seq_puts(s, field->str);
  880. return trace_handle_return(s);
  881. }
  882. static enum print_line_t
  883. trace_bputs_raw(struct trace_iterator *iter, int flags,
  884. struct trace_event *event)
  885. {
  886. struct bputs_entry *field;
  887. struct trace_seq *s = &iter->seq;
  888. trace_assign_type(field, iter->ent);
  889. trace_seq_printf(s, ": %lx : ", field->ip);
  890. trace_seq_puts(s, field->str);
  891. return trace_handle_return(s);
  892. }
  893. static struct trace_event_functions trace_bputs_funcs = {
  894. .trace = trace_bputs_print,
  895. .raw = trace_bputs_raw,
  896. };
  897. static struct trace_event trace_bputs_event = {
  898. .type = TRACE_BPUTS,
  899. .funcs = &trace_bputs_funcs,
  900. };
  901. /* TRACE_BPRINT */
  902. static enum print_line_t
  903. trace_bprint_print(struct trace_iterator *iter, int flags,
  904. struct trace_event *event)
  905. {
  906. struct trace_entry *entry = iter->ent;
  907. struct trace_seq *s = &iter->seq;
  908. struct bprint_entry *field;
  909. trace_assign_type(field, entry);
  910. seq_print_ip_sym(s, field->ip, flags);
  911. trace_seq_puts(s, ": ");
  912. trace_seq_bprintf(s, field->fmt, field->buf);
  913. return trace_handle_return(s);
  914. }
  915. static enum print_line_t
  916. trace_bprint_raw(struct trace_iterator *iter, int flags,
  917. struct trace_event *event)
  918. {
  919. struct bprint_entry *field;
  920. struct trace_seq *s = &iter->seq;
  921. trace_assign_type(field, iter->ent);
  922. trace_seq_printf(s, ": %lx : ", field->ip);
  923. trace_seq_bprintf(s, field->fmt, field->buf);
  924. return trace_handle_return(s);
  925. }
  926. static struct trace_event_functions trace_bprint_funcs = {
  927. .trace = trace_bprint_print,
  928. .raw = trace_bprint_raw,
  929. };
  930. static struct trace_event trace_bprint_event = {
  931. .type = TRACE_BPRINT,
  932. .funcs = &trace_bprint_funcs,
  933. };
  934. /* TRACE_PRINT */
  935. static enum print_line_t trace_print_print(struct trace_iterator *iter,
  936. int flags, struct trace_event *event)
  937. {
  938. struct print_entry *field;
  939. struct trace_seq *s = &iter->seq;
  940. trace_assign_type(field, iter->ent);
  941. seq_print_ip_sym(s, field->ip, flags);
  942. trace_seq_printf(s, ": %s", field->buf);
  943. return trace_handle_return(s);
  944. }
  945. static enum print_line_t trace_print_raw(struct trace_iterator *iter, int flags,
  946. struct trace_event *event)
  947. {
  948. struct print_entry *field;
  949. trace_assign_type(field, iter->ent);
  950. trace_seq_printf(&iter->seq, "# %lx %s", field->ip, field->buf);
  951. return trace_handle_return(&iter->seq);
  952. }
  953. static struct trace_event_functions trace_print_funcs = {
  954. .trace = trace_print_print,
  955. .raw = trace_print_raw,
  956. };
  957. static struct trace_event trace_print_event = {
  958. .type = TRACE_PRINT,
  959. .funcs = &trace_print_funcs,
  960. };
  961. static struct trace_event *events[] __initdata = {
  962. &trace_fn_event,
  963. &trace_ctx_event,
  964. &trace_wake_event,
  965. &trace_stack_event,
  966. &trace_user_stack_event,
  967. &trace_bputs_event,
  968. &trace_bprint_event,
  969. &trace_print_event,
  970. NULL
  971. };
  972. __init static int init_events(void)
  973. {
  974. struct trace_event *event;
  975. int i, ret;
  976. for (i = 0; events[i]; i++) {
  977. event = events[i];
  978. ret = register_trace_event(event);
  979. if (!ret) {
  980. printk(KERN_WARNING "event %d failed to register\n",
  981. event->type);
  982. WARN_ON_ONCE(1);
  983. }
  984. }
  985. return 0;
  986. }
  987. early_initcall(init_events);