Merge remote-tracking branch 'mkp-scsi/4.8/scsi-fixes' into fixes
[deliverable/linux.git] / kernel / trace / trace.c
1 /*
2 * ring buffer based function tracer
3 *
4 * Copyright (C) 2007-2012 Steven Rostedt <srostedt@redhat.com>
5 * Copyright (C) 2008 Ingo Molnar <mingo@redhat.com>
6 *
7 * Originally taken from the RT patch by:
8 * Arnaldo Carvalho de Melo <acme@redhat.com>
9 *
10 * Based on code from the latency_tracer, that is:
11 * Copyright (C) 2004-2006 Ingo Molnar
12 * Copyright (C) 2004 Nadia Yvette Chambers
13 */
14 #include <linux/ring_buffer.h>
15 #include <generated/utsrelease.h>
16 #include <linux/stacktrace.h>
17 #include <linux/writeback.h>
18 #include <linux/kallsyms.h>
19 #include <linux/seq_file.h>
20 #include <linux/notifier.h>
21 #include <linux/irqflags.h>
22 #include <linux/debugfs.h>
23 #include <linux/tracefs.h>
24 #include <linux/pagemap.h>
25 #include <linux/hardirq.h>
26 #include <linux/linkage.h>
27 #include <linux/uaccess.h>
28 #include <linux/vmalloc.h>
29 #include <linux/ftrace.h>
30 #include <linux/module.h>
31 #include <linux/percpu.h>
32 #include <linux/splice.h>
33 #include <linux/kdebug.h>
34 #include <linux/string.h>
35 #include <linux/mount.h>
36 #include <linux/rwsem.h>
37 #include <linux/slab.h>
38 #include <linux/ctype.h>
39 #include <linux/init.h>
40 #include <linux/poll.h>
41 #include <linux/nmi.h>
42 #include <linux/fs.h>
43 #include <linux/sched/rt.h>
44
45 #include "trace.h"
46 #include "trace_output.h"
47
48 /*
49 * On boot up, the ring buffer is set to the minimum size, so that
50 * we do not waste memory on systems that are not using tracing.
51 */
52 bool ring_buffer_expanded;
53
54 /*
55 * We need to change this state when a selftest is running.
56 * A selftest will lurk into the ring-buffer to count the
57 * entries inserted during the selftest although some concurrent
58 * insertions into the ring-buffer such as trace_printk could occurred
59 * at the same time, giving false positive or negative results.
60 */
61 static bool __read_mostly tracing_selftest_running;
62
63 /*
64 * If a tracer is running, we do not want to run SELFTEST.
65 */
66 bool __read_mostly tracing_selftest_disabled;
67
68 /* Pipe tracepoints to printk */
69 struct trace_iterator *tracepoint_print_iter;
70 int tracepoint_printk;
71
72 /* For tracers that don't implement custom flags */
73 static struct tracer_opt dummy_tracer_opt[] = {
74 { }
75 };
76
77 static int
78 dummy_set_flag(struct trace_array *tr, u32 old_flags, u32 bit, int set)
79 {
80 return 0;
81 }
82
83 /*
84 * To prevent the comm cache from being overwritten when no
85 * tracing is active, only save the comm when a trace event
86 * occurred.
87 */
88 static DEFINE_PER_CPU(bool, trace_cmdline_save);
89
90 /*
91 * Kill all tracing for good (never come back).
92 * It is initialized to 1 but will turn to zero if the initialization
93 * of the tracer is successful. But that is the only place that sets
94 * this back to zero.
95 */
96 static int tracing_disabled = 1;
97
98 cpumask_var_t __read_mostly tracing_buffer_mask;
99
100 /*
101 * ftrace_dump_on_oops - variable to dump ftrace buffer on oops
102 *
103 * If there is an oops (or kernel panic) and the ftrace_dump_on_oops
104 * is set, then ftrace_dump is called. This will output the contents
105 * of the ftrace buffers to the console. This is very useful for
106 * capturing traces that lead to crashes and outputing it to a
107 * serial console.
108 *
109 * It is default off, but you can enable it with either specifying
110 * "ftrace_dump_on_oops" in the kernel command line, or setting
111 * /proc/sys/kernel/ftrace_dump_on_oops
112 * Set 1 if you want to dump buffers of all CPUs
113 * Set 2 if you want to dump the buffer of the CPU that triggered oops
114 */
115
116 enum ftrace_dump_mode ftrace_dump_on_oops;
117
118 /* When set, tracing will stop when a WARN*() is hit */
119 int __disable_trace_on_warning;
120
121 #ifdef CONFIG_TRACE_ENUM_MAP_FILE
122 /* Map of enums to their values, for "enum_map" file */
123 struct trace_enum_map_head {
124 struct module *mod;
125 unsigned long length;
126 };
127
128 union trace_enum_map_item;
129
130 struct trace_enum_map_tail {
131 /*
132 * "end" is first and points to NULL as it must be different
133 * than "mod" or "enum_string"
134 */
135 union trace_enum_map_item *next;
136 const char *end; /* points to NULL */
137 };
138
139 static DEFINE_MUTEX(trace_enum_mutex);
140
141 /*
142 * The trace_enum_maps are saved in an array with two extra elements,
143 * one at the beginning, and one at the end. The beginning item contains
144 * the count of the saved maps (head.length), and the module they
145 * belong to if not built in (head.mod). The ending item contains a
146 * pointer to the next array of saved enum_map items.
147 */
148 union trace_enum_map_item {
149 struct trace_enum_map map;
150 struct trace_enum_map_head head;
151 struct trace_enum_map_tail tail;
152 };
153
154 static union trace_enum_map_item *trace_enum_maps;
155 #endif /* CONFIG_TRACE_ENUM_MAP_FILE */
156
157 static int tracing_set_tracer(struct trace_array *tr, const char *buf);
158
159 #define MAX_TRACER_SIZE 100
160 static char bootup_tracer_buf[MAX_TRACER_SIZE] __initdata;
161 static char *default_bootup_tracer;
162
163 static bool allocate_snapshot;
164
165 static int __init set_cmdline_ftrace(char *str)
166 {
167 strlcpy(bootup_tracer_buf, str, MAX_TRACER_SIZE);
168 default_bootup_tracer = bootup_tracer_buf;
169 /* We are using ftrace early, expand it */
170 ring_buffer_expanded = true;
171 return 1;
172 }
173 __setup("ftrace=", set_cmdline_ftrace);
174
175 static int __init set_ftrace_dump_on_oops(char *str)
176 {
177 if (*str++ != '=' || !*str) {
178 ftrace_dump_on_oops = DUMP_ALL;
179 return 1;
180 }
181
182 if (!strcmp("orig_cpu", str)) {
183 ftrace_dump_on_oops = DUMP_ORIG;
184 return 1;
185 }
186
187 return 0;
188 }
189 __setup("ftrace_dump_on_oops", set_ftrace_dump_on_oops);
190
191 static int __init stop_trace_on_warning(char *str)
192 {
193 if ((strcmp(str, "=0") != 0 && strcmp(str, "=off") != 0))
194 __disable_trace_on_warning = 1;
195 return 1;
196 }
197 __setup("traceoff_on_warning", stop_trace_on_warning);
198
199 static int __init boot_alloc_snapshot(char *str)
200 {
201 allocate_snapshot = true;
202 /* We also need the main ring buffer expanded */
203 ring_buffer_expanded = true;
204 return 1;
205 }
206 __setup("alloc_snapshot", boot_alloc_snapshot);
207
208
209 static char trace_boot_options_buf[MAX_TRACER_SIZE] __initdata;
210
211 static int __init set_trace_boot_options(char *str)
212 {
213 strlcpy(trace_boot_options_buf, str, MAX_TRACER_SIZE);
214 return 0;
215 }
216 __setup("trace_options=", set_trace_boot_options);
217
218 static char trace_boot_clock_buf[MAX_TRACER_SIZE] __initdata;
219 static char *trace_boot_clock __initdata;
220
221 static int __init set_trace_boot_clock(char *str)
222 {
223 strlcpy(trace_boot_clock_buf, str, MAX_TRACER_SIZE);
224 trace_boot_clock = trace_boot_clock_buf;
225 return 0;
226 }
227 __setup("trace_clock=", set_trace_boot_clock);
228
229 static int __init set_tracepoint_printk(char *str)
230 {
231 if ((strcmp(str, "=0") != 0 && strcmp(str, "=off") != 0))
232 tracepoint_printk = 1;
233 return 1;
234 }
235 __setup("tp_printk", set_tracepoint_printk);
236
237 unsigned long long ns2usecs(cycle_t nsec)
238 {
239 nsec += 500;
240 do_div(nsec, 1000);
241 return nsec;
242 }
243
244 /* trace_flags holds trace_options default values */
245 #define TRACE_DEFAULT_FLAGS \
246 (FUNCTION_DEFAULT_FLAGS | \
247 TRACE_ITER_PRINT_PARENT | TRACE_ITER_PRINTK | \
248 TRACE_ITER_ANNOTATE | TRACE_ITER_CONTEXT_INFO | \
249 TRACE_ITER_RECORD_CMD | TRACE_ITER_OVERWRITE | \
250 TRACE_ITER_IRQ_INFO | TRACE_ITER_MARKERS)
251
252 /* trace_options that are only supported by global_trace */
253 #define TOP_LEVEL_TRACE_FLAGS (TRACE_ITER_PRINTK | \
254 TRACE_ITER_PRINTK_MSGONLY | TRACE_ITER_RECORD_CMD)
255
256 /* trace_flags that are default zero for instances */
257 #define ZEROED_TRACE_FLAGS \
258 TRACE_ITER_EVENT_FORK
259
260 /*
261 * The global_trace is the descriptor that holds the tracing
262 * buffers for the live tracing. For each CPU, it contains
263 * a link list of pages that will store trace entries. The
264 * page descriptor of the pages in the memory is used to hold
265 * the link list by linking the lru item in the page descriptor
266 * to each of the pages in the buffer per CPU.
267 *
268 * For each active CPU there is a data field that holds the
269 * pages for the buffer for that CPU. Each CPU has the same number
270 * of pages allocated for its buffer.
271 */
272 static struct trace_array global_trace = {
273 .trace_flags = TRACE_DEFAULT_FLAGS,
274 };
275
276 LIST_HEAD(ftrace_trace_arrays);
277
278 int trace_array_get(struct trace_array *this_tr)
279 {
280 struct trace_array *tr;
281 int ret = -ENODEV;
282
283 mutex_lock(&trace_types_lock);
284 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
285 if (tr == this_tr) {
286 tr->ref++;
287 ret = 0;
288 break;
289 }
290 }
291 mutex_unlock(&trace_types_lock);
292
293 return ret;
294 }
295
296 static void __trace_array_put(struct trace_array *this_tr)
297 {
298 WARN_ON(!this_tr->ref);
299 this_tr->ref--;
300 }
301
302 void trace_array_put(struct trace_array *this_tr)
303 {
304 mutex_lock(&trace_types_lock);
305 __trace_array_put(this_tr);
306 mutex_unlock(&trace_types_lock);
307 }
308
309 int call_filter_check_discard(struct trace_event_call *call, void *rec,
310 struct ring_buffer *buffer,
311 struct ring_buffer_event *event)
312 {
313 if (unlikely(call->flags & TRACE_EVENT_FL_FILTERED) &&
314 !filter_match_preds(call->filter, rec)) {
315 __trace_event_discard_commit(buffer, event);
316 return 1;
317 }
318
319 return 0;
320 }
321
322 void trace_free_pid_list(struct trace_pid_list *pid_list)
323 {
324 vfree(pid_list->pids);
325 kfree(pid_list);
326 }
327
328 /**
329 * trace_find_filtered_pid - check if a pid exists in a filtered_pid list
330 * @filtered_pids: The list of pids to check
331 * @search_pid: The PID to find in @filtered_pids
332 *
333 * Returns true if @search_pid is fonud in @filtered_pids, and false otherwis.
334 */
335 bool
336 trace_find_filtered_pid(struct trace_pid_list *filtered_pids, pid_t search_pid)
337 {
338 /*
339 * If pid_max changed after filtered_pids was created, we
340 * by default ignore all pids greater than the previous pid_max.
341 */
342 if (search_pid >= filtered_pids->pid_max)
343 return false;
344
345 return test_bit(search_pid, filtered_pids->pids);
346 }
347
348 /**
349 * trace_ignore_this_task - should a task be ignored for tracing
350 * @filtered_pids: The list of pids to check
351 * @task: The task that should be ignored if not filtered
352 *
353 * Checks if @task should be traced or not from @filtered_pids.
354 * Returns true if @task should *NOT* be traced.
355 * Returns false if @task should be traced.
356 */
357 bool
358 trace_ignore_this_task(struct trace_pid_list *filtered_pids, struct task_struct *task)
359 {
360 /*
361 * Return false, because if filtered_pids does not exist,
362 * all pids are good to trace.
363 */
364 if (!filtered_pids)
365 return false;
366
367 return !trace_find_filtered_pid(filtered_pids, task->pid);
368 }
369
370 /**
371 * trace_pid_filter_add_remove - Add or remove a task from a pid_list
372 * @pid_list: The list to modify
373 * @self: The current task for fork or NULL for exit
374 * @task: The task to add or remove
375 *
376 * If adding a task, if @self is defined, the task is only added if @self
377 * is also included in @pid_list. This happens on fork and tasks should
378 * only be added when the parent is listed. If @self is NULL, then the
379 * @task pid will be removed from the list, which would happen on exit
380 * of a task.
381 */
382 void trace_filter_add_remove_task(struct trace_pid_list *pid_list,
383 struct task_struct *self,
384 struct task_struct *task)
385 {
386 if (!pid_list)
387 return;
388
389 /* For forks, we only add if the forking task is listed */
390 if (self) {
391 if (!trace_find_filtered_pid(pid_list, self->pid))
392 return;
393 }
394
395 /* Sorry, but we don't support pid_max changing after setting */
396 if (task->pid >= pid_list->pid_max)
397 return;
398
399 /* "self" is set for forks, and NULL for exits */
400 if (self)
401 set_bit(task->pid, pid_list->pids);
402 else
403 clear_bit(task->pid, pid_list->pids);
404 }
405
406 /**
407 * trace_pid_next - Used for seq_file to get to the next pid of a pid_list
408 * @pid_list: The pid list to show
409 * @v: The last pid that was shown (+1 the actual pid to let zero be displayed)
410 * @pos: The position of the file
411 *
412 * This is used by the seq_file "next" operation to iterate the pids
413 * listed in a trace_pid_list structure.
414 *
415 * Returns the pid+1 as we want to display pid of zero, but NULL would
416 * stop the iteration.
417 */
418 void *trace_pid_next(struct trace_pid_list *pid_list, void *v, loff_t *pos)
419 {
420 unsigned long pid = (unsigned long)v;
421
422 (*pos)++;
423
424 /* pid already is +1 of the actual prevous bit */
425 pid = find_next_bit(pid_list->pids, pid_list->pid_max, pid);
426
427 /* Return pid + 1 to allow zero to be represented */
428 if (pid < pid_list->pid_max)
429 return (void *)(pid + 1);
430
431 return NULL;
432 }
433
434 /**
435 * trace_pid_start - Used for seq_file to start reading pid lists
436 * @pid_list: The pid list to show
437 * @pos: The position of the file
438 *
439 * This is used by seq_file "start" operation to start the iteration
440 * of listing pids.
441 *
442 * Returns the pid+1 as we want to display pid of zero, but NULL would
443 * stop the iteration.
444 */
445 void *trace_pid_start(struct trace_pid_list *pid_list, loff_t *pos)
446 {
447 unsigned long pid;
448 loff_t l = 0;
449
450 pid = find_first_bit(pid_list->pids, pid_list->pid_max);
451 if (pid >= pid_list->pid_max)
452 return NULL;
453
454 /* Return pid + 1 so that zero can be the exit value */
455 for (pid++; pid && l < *pos;
456 pid = (unsigned long)trace_pid_next(pid_list, (void *)pid, &l))
457 ;
458 return (void *)pid;
459 }
460
461 /**
462 * trace_pid_show - show the current pid in seq_file processing
463 * @m: The seq_file structure to write into
464 * @v: A void pointer of the pid (+1) value to display
465 *
466 * Can be directly used by seq_file operations to display the current
467 * pid value.
468 */
469 int trace_pid_show(struct seq_file *m, void *v)
470 {
471 unsigned long pid = (unsigned long)v - 1;
472
473 seq_printf(m, "%lu\n", pid);
474 return 0;
475 }
476
477 /* 128 should be much more than enough */
478 #define PID_BUF_SIZE 127
479
480 int trace_pid_write(struct trace_pid_list *filtered_pids,
481 struct trace_pid_list **new_pid_list,
482 const char __user *ubuf, size_t cnt)
483 {
484 struct trace_pid_list *pid_list;
485 struct trace_parser parser;
486 unsigned long val;
487 int nr_pids = 0;
488 ssize_t read = 0;
489 ssize_t ret = 0;
490 loff_t pos;
491 pid_t pid;
492
493 if (trace_parser_get_init(&parser, PID_BUF_SIZE + 1))
494 return -ENOMEM;
495
496 /*
497 * Always recreate a new array. The write is an all or nothing
498 * operation. Always create a new array when adding new pids by
499 * the user. If the operation fails, then the current list is
500 * not modified.
501 */
502 pid_list = kmalloc(sizeof(*pid_list), GFP_KERNEL);
503 if (!pid_list)
504 return -ENOMEM;
505
506 pid_list->pid_max = READ_ONCE(pid_max);
507
508 /* Only truncating will shrink pid_max */
509 if (filtered_pids && filtered_pids->pid_max > pid_list->pid_max)
510 pid_list->pid_max = filtered_pids->pid_max;
511
512 pid_list->pids = vzalloc((pid_list->pid_max + 7) >> 3);
513 if (!pid_list->pids) {
514 kfree(pid_list);
515 return -ENOMEM;
516 }
517
518 if (filtered_pids) {
519 /* copy the current bits to the new max */
520 for_each_set_bit(pid, filtered_pids->pids,
521 filtered_pids->pid_max) {
522 set_bit(pid, pid_list->pids);
523 nr_pids++;
524 }
525 }
526
527 while (cnt > 0) {
528
529 pos = 0;
530
531 ret = trace_get_user(&parser, ubuf, cnt, &pos);
532 if (ret < 0 || !trace_parser_loaded(&parser))
533 break;
534
535 read += ret;
536 ubuf += ret;
537 cnt -= ret;
538
539 parser.buffer[parser.idx] = 0;
540
541 ret = -EINVAL;
542 if (kstrtoul(parser.buffer, 0, &val))
543 break;
544 if (val >= pid_list->pid_max)
545 break;
546
547 pid = (pid_t)val;
548
549 set_bit(pid, pid_list->pids);
550 nr_pids++;
551
552 trace_parser_clear(&parser);
553 ret = 0;
554 }
555 trace_parser_put(&parser);
556
557 if (ret < 0) {
558 trace_free_pid_list(pid_list);
559 return ret;
560 }
561
562 if (!nr_pids) {
563 /* Cleared the list of pids */
564 trace_free_pid_list(pid_list);
565 read = ret;
566 pid_list = NULL;
567 }
568
569 *new_pid_list = pid_list;
570
571 return read;
572 }
573
574 static cycle_t buffer_ftrace_now(struct trace_buffer *buf, int cpu)
575 {
576 u64 ts;
577
578 /* Early boot up does not have a buffer yet */
579 if (!buf->buffer)
580 return trace_clock_local();
581
582 ts = ring_buffer_time_stamp(buf->buffer, cpu);
583 ring_buffer_normalize_time_stamp(buf->buffer, cpu, &ts);
584
585 return ts;
586 }
587
588 cycle_t ftrace_now(int cpu)
589 {
590 return buffer_ftrace_now(&global_trace.trace_buffer, cpu);
591 }
592
593 /**
594 * tracing_is_enabled - Show if global_trace has been disabled
595 *
596 * Shows if the global trace has been enabled or not. It uses the
597 * mirror flag "buffer_disabled" to be used in fast paths such as for
598 * the irqsoff tracer. But it may be inaccurate due to races. If you
599 * need to know the accurate state, use tracing_is_on() which is a little
600 * slower, but accurate.
601 */
602 int tracing_is_enabled(void)
603 {
604 /*
605 * For quick access (irqsoff uses this in fast path), just
606 * return the mirror variable of the state of the ring buffer.
607 * It's a little racy, but we don't really care.
608 */
609 smp_rmb();
610 return !global_trace.buffer_disabled;
611 }
612
613 /*
614 * trace_buf_size is the size in bytes that is allocated
615 * for a buffer. Note, the number of bytes is always rounded
616 * to page size.
617 *
618 * This number is purposely set to a low number of 16384.
619 * If the dump on oops happens, it will be much appreciated
620 * to not have to wait for all that output. Anyway this can be
621 * boot time and run time configurable.
622 */
623 #define TRACE_BUF_SIZE_DEFAULT 1441792UL /* 16384 * 88 (sizeof(entry)) */
624
625 static unsigned long trace_buf_size = TRACE_BUF_SIZE_DEFAULT;
626
627 /* trace_types holds a link list of available tracers. */
628 static struct tracer *trace_types __read_mostly;
629
630 /*
631 * trace_types_lock is used to protect the trace_types list.
632 */
633 DEFINE_MUTEX(trace_types_lock);
634
635 /*
636 * serialize the access of the ring buffer
637 *
638 * ring buffer serializes readers, but it is low level protection.
639 * The validity of the events (which returns by ring_buffer_peek() ..etc)
640 * are not protected by ring buffer.
641 *
642 * The content of events may become garbage if we allow other process consumes
643 * these events concurrently:
644 * A) the page of the consumed events may become a normal page
645 * (not reader page) in ring buffer, and this page will be rewrited
646 * by events producer.
647 * B) The page of the consumed events may become a page for splice_read,
648 * and this page will be returned to system.
649 *
650 * These primitives allow multi process access to different cpu ring buffer
651 * concurrently.
652 *
653 * These primitives don't distinguish read-only and read-consume access.
654 * Multi read-only access are also serialized.
655 */
656
657 #ifdef CONFIG_SMP
658 static DECLARE_RWSEM(all_cpu_access_lock);
659 static DEFINE_PER_CPU(struct mutex, cpu_access_lock);
660
661 static inline void trace_access_lock(int cpu)
662 {
663 if (cpu == RING_BUFFER_ALL_CPUS) {
664 /* gain it for accessing the whole ring buffer. */
665 down_write(&all_cpu_access_lock);
666 } else {
667 /* gain it for accessing a cpu ring buffer. */
668
669 /* Firstly block other trace_access_lock(RING_BUFFER_ALL_CPUS). */
670 down_read(&all_cpu_access_lock);
671
672 /* Secondly block other access to this @cpu ring buffer. */
673 mutex_lock(&per_cpu(cpu_access_lock, cpu));
674 }
675 }
676
677 static inline void trace_access_unlock(int cpu)
678 {
679 if (cpu == RING_BUFFER_ALL_CPUS) {
680 up_write(&all_cpu_access_lock);
681 } else {
682 mutex_unlock(&per_cpu(cpu_access_lock, cpu));
683 up_read(&all_cpu_access_lock);
684 }
685 }
686
687 static inline void trace_access_lock_init(void)
688 {
689 int cpu;
690
691 for_each_possible_cpu(cpu)
692 mutex_init(&per_cpu(cpu_access_lock, cpu));
693 }
694
695 #else
696
697 static DEFINE_MUTEX(access_lock);
698
699 static inline void trace_access_lock(int cpu)
700 {
701 (void)cpu;
702 mutex_lock(&access_lock);
703 }
704
705 static inline void trace_access_unlock(int cpu)
706 {
707 (void)cpu;
708 mutex_unlock(&access_lock);
709 }
710
711 static inline void trace_access_lock_init(void)
712 {
713 }
714
715 #endif
716
717 #ifdef CONFIG_STACKTRACE
718 static void __ftrace_trace_stack(struct ring_buffer *buffer,
719 unsigned long flags,
720 int skip, int pc, struct pt_regs *regs);
721 static inline void ftrace_trace_stack(struct trace_array *tr,
722 struct ring_buffer *buffer,
723 unsigned long flags,
724 int skip, int pc, struct pt_regs *regs);
725
726 #else
727 static inline void __ftrace_trace_stack(struct ring_buffer *buffer,
728 unsigned long flags,
729 int skip, int pc, struct pt_regs *regs)
730 {
731 }
732 static inline void ftrace_trace_stack(struct trace_array *tr,
733 struct ring_buffer *buffer,
734 unsigned long flags,
735 int skip, int pc, struct pt_regs *regs)
736 {
737 }
738
739 #endif
740
741 static void tracer_tracing_on(struct trace_array *tr)
742 {
743 if (tr->trace_buffer.buffer)
744 ring_buffer_record_on(tr->trace_buffer.buffer);
745 /*
746 * This flag is looked at when buffers haven't been allocated
747 * yet, or by some tracers (like irqsoff), that just want to
748 * know if the ring buffer has been disabled, but it can handle
749 * races of where it gets disabled but we still do a record.
750 * As the check is in the fast path of the tracers, it is more
751 * important to be fast than accurate.
752 */
753 tr->buffer_disabled = 0;
754 /* Make the flag seen by readers */
755 smp_wmb();
756 }
757
758 /**
759 * tracing_on - enable tracing buffers
760 *
761 * This function enables tracing buffers that may have been
762 * disabled with tracing_off.
763 */
764 void tracing_on(void)
765 {
766 tracer_tracing_on(&global_trace);
767 }
768 EXPORT_SYMBOL_GPL(tracing_on);
769
770 /**
771 * __trace_puts - write a constant string into the trace buffer.
772 * @ip: The address of the caller
773 * @str: The constant string to write
774 * @size: The size of the string.
775 */
776 int __trace_puts(unsigned long ip, const char *str, int size)
777 {
778 struct ring_buffer_event *event;
779 struct ring_buffer *buffer;
780 struct print_entry *entry;
781 unsigned long irq_flags;
782 int alloc;
783 int pc;
784
785 if (!(global_trace.trace_flags & TRACE_ITER_PRINTK))
786 return 0;
787
788 pc = preempt_count();
789
790 if (unlikely(tracing_selftest_running || tracing_disabled))
791 return 0;
792
793 alloc = sizeof(*entry) + size + 2; /* possible \n added */
794
795 local_save_flags(irq_flags);
796 buffer = global_trace.trace_buffer.buffer;
797 event = trace_buffer_lock_reserve(buffer, TRACE_PRINT, alloc,
798 irq_flags, pc);
799 if (!event)
800 return 0;
801
802 entry = ring_buffer_event_data(event);
803 entry->ip = ip;
804
805 memcpy(&entry->buf, str, size);
806
807 /* Add a newline if necessary */
808 if (entry->buf[size - 1] != '\n') {
809 entry->buf[size] = '\n';
810 entry->buf[size + 1] = '\0';
811 } else
812 entry->buf[size] = '\0';
813
814 __buffer_unlock_commit(buffer, event);
815 ftrace_trace_stack(&global_trace, buffer, irq_flags, 4, pc, NULL);
816
817 return size;
818 }
819 EXPORT_SYMBOL_GPL(__trace_puts);
820
821 /**
822 * __trace_bputs - write the pointer to a constant string into trace buffer
823 * @ip: The address of the caller
824 * @str: The constant string to write to the buffer to
825 */
826 int __trace_bputs(unsigned long ip, const char *str)
827 {
828 struct ring_buffer_event *event;
829 struct ring_buffer *buffer;
830 struct bputs_entry *entry;
831 unsigned long irq_flags;
832 int size = sizeof(struct bputs_entry);
833 int pc;
834
835 if (!(global_trace.trace_flags & TRACE_ITER_PRINTK))
836 return 0;
837
838 pc = preempt_count();
839
840 if (unlikely(tracing_selftest_running || tracing_disabled))
841 return 0;
842
843 local_save_flags(irq_flags);
844 buffer = global_trace.trace_buffer.buffer;
845 event = trace_buffer_lock_reserve(buffer, TRACE_BPUTS, size,
846 irq_flags, pc);
847 if (!event)
848 return 0;
849
850 entry = ring_buffer_event_data(event);
851 entry->ip = ip;
852 entry->str = str;
853
854 __buffer_unlock_commit(buffer, event);
855 ftrace_trace_stack(&global_trace, buffer, irq_flags, 4, pc, NULL);
856
857 return 1;
858 }
859 EXPORT_SYMBOL_GPL(__trace_bputs);
860
861 #ifdef CONFIG_TRACER_SNAPSHOT
862 /**
863 * trace_snapshot - take a snapshot of the current buffer.
864 *
865 * This causes a swap between the snapshot buffer and the current live
866 * tracing buffer. You can use this to take snapshots of the live
867 * trace when some condition is triggered, but continue to trace.
868 *
869 * Note, make sure to allocate the snapshot with either
870 * a tracing_snapshot_alloc(), or by doing it manually
871 * with: echo 1 > /sys/kernel/debug/tracing/snapshot
872 *
873 * If the snapshot buffer is not allocated, it will stop tracing.
874 * Basically making a permanent snapshot.
875 */
876 void tracing_snapshot(void)
877 {
878 struct trace_array *tr = &global_trace;
879 struct tracer *tracer = tr->current_trace;
880 unsigned long flags;
881
882 if (in_nmi()) {
883 internal_trace_puts("*** SNAPSHOT CALLED FROM NMI CONTEXT ***\n");
884 internal_trace_puts("*** snapshot is being ignored ***\n");
885 return;
886 }
887
888 if (!tr->allocated_snapshot) {
889 internal_trace_puts("*** SNAPSHOT NOT ALLOCATED ***\n");
890 internal_trace_puts("*** stopping trace here! ***\n");
891 tracing_off();
892 return;
893 }
894
895 /* Note, snapshot can not be used when the tracer uses it */
896 if (tracer->use_max_tr) {
897 internal_trace_puts("*** LATENCY TRACER ACTIVE ***\n");
898 internal_trace_puts("*** Can not use snapshot (sorry) ***\n");
899 return;
900 }
901
902 local_irq_save(flags);
903 update_max_tr(tr, current, smp_processor_id());
904 local_irq_restore(flags);
905 }
906 EXPORT_SYMBOL_GPL(tracing_snapshot);
907
908 static int resize_buffer_duplicate_size(struct trace_buffer *trace_buf,
909 struct trace_buffer *size_buf, int cpu_id);
910 static void set_buffer_entries(struct trace_buffer *buf, unsigned long val);
911
912 static int alloc_snapshot(struct trace_array *tr)
913 {
914 int ret;
915
916 if (!tr->allocated_snapshot) {
917
918 /* allocate spare buffer */
919 ret = resize_buffer_duplicate_size(&tr->max_buffer,
920 &tr->trace_buffer, RING_BUFFER_ALL_CPUS);
921 if (ret < 0)
922 return ret;
923
924 tr->allocated_snapshot = true;
925 }
926
927 return 0;
928 }
929
930 static void free_snapshot(struct trace_array *tr)
931 {
932 /*
933 * We don't free the ring buffer. instead, resize it because
934 * The max_tr ring buffer has some state (e.g. ring->clock) and
935 * we want preserve it.
936 */
937 ring_buffer_resize(tr->max_buffer.buffer, 1, RING_BUFFER_ALL_CPUS);
938 set_buffer_entries(&tr->max_buffer, 1);
939 tracing_reset_online_cpus(&tr->max_buffer);
940 tr->allocated_snapshot = false;
941 }
942
943 /**
944 * tracing_alloc_snapshot - allocate snapshot buffer.
945 *
946 * This only allocates the snapshot buffer if it isn't already
947 * allocated - it doesn't also take a snapshot.
948 *
949 * This is meant to be used in cases where the snapshot buffer needs
950 * to be set up for events that can't sleep but need to be able to
951 * trigger a snapshot.
952 */
953 int tracing_alloc_snapshot(void)
954 {
955 struct trace_array *tr = &global_trace;
956 int ret;
957
958 ret = alloc_snapshot(tr);
959 WARN_ON(ret < 0);
960
961 return ret;
962 }
963 EXPORT_SYMBOL_GPL(tracing_alloc_snapshot);
964
965 /**
966 * trace_snapshot_alloc - allocate and take a snapshot of the current buffer.
967 *
968 * This is similar to trace_snapshot(), but it will allocate the
969 * snapshot buffer if it isn't already allocated. Use this only
970 * where it is safe to sleep, as the allocation may sleep.
971 *
972 * This causes a swap between the snapshot buffer and the current live
973 * tracing buffer. You can use this to take snapshots of the live
974 * trace when some condition is triggered, but continue to trace.
975 */
976 void tracing_snapshot_alloc(void)
977 {
978 int ret;
979
980 ret = tracing_alloc_snapshot();
981 if (ret < 0)
982 return;
983
984 tracing_snapshot();
985 }
986 EXPORT_SYMBOL_GPL(tracing_snapshot_alloc);
987 #else
988 void tracing_snapshot(void)
989 {
990 WARN_ONCE(1, "Snapshot feature not enabled, but internal snapshot used");
991 }
992 EXPORT_SYMBOL_GPL(tracing_snapshot);
993 int tracing_alloc_snapshot(void)
994 {
995 WARN_ONCE(1, "Snapshot feature not enabled, but snapshot allocation used");
996 return -ENODEV;
997 }
998 EXPORT_SYMBOL_GPL(tracing_alloc_snapshot);
999 void tracing_snapshot_alloc(void)
1000 {
1001 /* Give warning */
1002 tracing_snapshot();
1003 }
1004 EXPORT_SYMBOL_GPL(tracing_snapshot_alloc);
1005 #endif /* CONFIG_TRACER_SNAPSHOT */
1006
1007 static void tracer_tracing_off(struct trace_array *tr)
1008 {
1009 if (tr->trace_buffer.buffer)
1010 ring_buffer_record_off(tr->trace_buffer.buffer);
1011 /*
1012 * This flag is looked at when buffers haven't been allocated
1013 * yet, or by some tracers (like irqsoff), that just want to
1014 * know if the ring buffer has been disabled, but it can handle
1015 * races of where it gets disabled but we still do a record.
1016 * As the check is in the fast path of the tracers, it is more
1017 * important to be fast than accurate.
1018 */
1019 tr->buffer_disabled = 1;
1020 /* Make the flag seen by readers */
1021 smp_wmb();
1022 }
1023
1024 /**
1025 * tracing_off - turn off tracing buffers
1026 *
1027 * This function stops the tracing buffers from recording data.
1028 * It does not disable any overhead the tracers themselves may
1029 * be causing. This function simply causes all recording to
1030 * the ring buffers to fail.
1031 */
1032 void tracing_off(void)
1033 {
1034 tracer_tracing_off(&global_trace);
1035 }
1036 EXPORT_SYMBOL_GPL(tracing_off);
1037
1038 void disable_trace_on_warning(void)
1039 {
1040 if (__disable_trace_on_warning)
1041 tracing_off();
1042 }
1043
1044 /**
1045 * tracer_tracing_is_on - show real state of ring buffer enabled
1046 * @tr : the trace array to know if ring buffer is enabled
1047 *
1048 * Shows real state of the ring buffer if it is enabled or not.
1049 */
1050 static int tracer_tracing_is_on(struct trace_array *tr)
1051 {
1052 if (tr->trace_buffer.buffer)
1053 return ring_buffer_record_is_on(tr->trace_buffer.buffer);
1054 return !tr->buffer_disabled;
1055 }
1056
1057 /**
1058 * tracing_is_on - show state of ring buffers enabled
1059 */
1060 int tracing_is_on(void)
1061 {
1062 return tracer_tracing_is_on(&global_trace);
1063 }
1064 EXPORT_SYMBOL_GPL(tracing_is_on);
1065
1066 static int __init set_buf_size(char *str)
1067 {
1068 unsigned long buf_size;
1069
1070 if (!str)
1071 return 0;
1072 buf_size = memparse(str, &str);
1073 /* nr_entries can not be zero */
1074 if (buf_size == 0)
1075 return 0;
1076 trace_buf_size = buf_size;
1077 return 1;
1078 }
1079 __setup("trace_buf_size=", set_buf_size);
1080
1081 static int __init set_tracing_thresh(char *str)
1082 {
1083 unsigned long threshold;
1084 int ret;
1085
1086 if (!str)
1087 return 0;
1088 ret = kstrtoul(str, 0, &threshold);
1089 if (ret < 0)
1090 return 0;
1091 tracing_thresh = threshold * 1000;
1092 return 1;
1093 }
1094 __setup("tracing_thresh=", set_tracing_thresh);
1095
1096 unsigned long nsecs_to_usecs(unsigned long nsecs)
1097 {
1098 return nsecs / 1000;
1099 }
1100
1101 /*
1102 * TRACE_FLAGS is defined as a tuple matching bit masks with strings.
1103 * It uses C(a, b) where 'a' is the enum name and 'b' is the string that
1104 * matches it. By defining "C(a, b) b", TRACE_FLAGS becomes a list
1105 * of strings in the order that the enums were defined.
1106 */
1107 #undef C
1108 #define C(a, b) b
1109
1110 /* These must match the bit postions in trace_iterator_flags */
1111 static const char *trace_options[] = {
1112 TRACE_FLAGS
1113 NULL
1114 };
1115
1116 static struct {
1117 u64 (*func)(void);
1118 const char *name;
1119 int in_ns; /* is this clock in nanoseconds? */
1120 } trace_clocks[] = {
1121 { trace_clock_local, "local", 1 },
1122 { trace_clock_global, "global", 1 },
1123 { trace_clock_counter, "counter", 0 },
1124 { trace_clock_jiffies, "uptime", 0 },
1125 { trace_clock, "perf", 1 },
1126 { ktime_get_mono_fast_ns, "mono", 1 },
1127 { ktime_get_raw_fast_ns, "mono_raw", 1 },
1128 ARCH_TRACE_CLOCKS
1129 };
1130
1131 /*
1132 * trace_parser_get_init - gets the buffer for trace parser
1133 */
1134 int trace_parser_get_init(struct trace_parser *parser, int size)
1135 {
1136 memset(parser, 0, sizeof(*parser));
1137
1138 parser->buffer = kmalloc(size, GFP_KERNEL);
1139 if (!parser->buffer)
1140 return 1;
1141
1142 parser->size = size;
1143 return 0;
1144 }
1145
1146 /*
1147 * trace_parser_put - frees the buffer for trace parser
1148 */
1149 void trace_parser_put(struct trace_parser *parser)
1150 {
1151 kfree(parser->buffer);
1152 }
1153
1154 /*
1155 * trace_get_user - reads the user input string separated by space
1156 * (matched by isspace(ch))
1157 *
1158 * For each string found the 'struct trace_parser' is updated,
1159 * and the function returns.
1160 *
1161 * Returns number of bytes read.
1162 *
1163 * See kernel/trace/trace.h for 'struct trace_parser' details.
1164 */
1165 int trace_get_user(struct trace_parser *parser, const char __user *ubuf,
1166 size_t cnt, loff_t *ppos)
1167 {
1168 char ch;
1169 size_t read = 0;
1170 ssize_t ret;
1171
1172 if (!*ppos)
1173 trace_parser_clear(parser);
1174
1175 ret = get_user(ch, ubuf++);
1176 if (ret)
1177 goto out;
1178
1179 read++;
1180 cnt--;
1181
1182 /*
1183 * The parser is not finished with the last write,
1184 * continue reading the user input without skipping spaces.
1185 */
1186 if (!parser->cont) {
1187 /* skip white space */
1188 while (cnt && isspace(ch)) {
1189 ret = get_user(ch, ubuf++);
1190 if (ret)
1191 goto out;
1192 read++;
1193 cnt--;
1194 }
1195
1196 /* only spaces were written */
1197 if (isspace(ch)) {
1198 *ppos += read;
1199 ret = read;
1200 goto out;
1201 }
1202
1203 parser->idx = 0;
1204 }
1205
1206 /* read the non-space input */
1207 while (cnt && !isspace(ch)) {
1208 if (parser->idx < parser->size - 1)
1209 parser->buffer[parser->idx++] = ch;
1210 else {
1211 ret = -EINVAL;
1212 goto out;
1213 }
1214 ret = get_user(ch, ubuf++);
1215 if (ret)
1216 goto out;
1217 read++;
1218 cnt--;
1219 }
1220
1221 /* We either got finished input or we have to wait for another call. */
1222 if (isspace(ch)) {
1223 parser->buffer[parser->idx] = 0;
1224 parser->cont = false;
1225 } else if (parser->idx < parser->size - 1) {
1226 parser->cont = true;
1227 parser->buffer[parser->idx++] = ch;
1228 } else {
1229 ret = -EINVAL;
1230 goto out;
1231 }
1232
1233 *ppos += read;
1234 ret = read;
1235
1236 out:
1237 return ret;
1238 }
1239
1240 /* TODO add a seq_buf_to_buffer() */
1241 static ssize_t trace_seq_to_buffer(struct trace_seq *s, void *buf, size_t cnt)
1242 {
1243 int len;
1244
1245 if (trace_seq_used(s) <= s->seq.readpos)
1246 return -EBUSY;
1247
1248 len = trace_seq_used(s) - s->seq.readpos;
1249 if (cnt > len)
1250 cnt = len;
1251 memcpy(buf, s->buffer + s->seq.readpos, cnt);
1252
1253 s->seq.readpos += cnt;
1254 return cnt;
1255 }
1256
1257 unsigned long __read_mostly tracing_thresh;
1258
1259 #ifdef CONFIG_TRACER_MAX_TRACE
1260 /*
1261 * Copy the new maximum trace into the separate maximum-trace
1262 * structure. (this way the maximum trace is permanently saved,
1263 * for later retrieval via /sys/kernel/debug/tracing/latency_trace)
1264 */
1265 static void
1266 __update_max_tr(struct trace_array *tr, struct task_struct *tsk, int cpu)
1267 {
1268 struct trace_buffer *trace_buf = &tr->trace_buffer;
1269 struct trace_buffer *max_buf = &tr->max_buffer;
1270 struct trace_array_cpu *data = per_cpu_ptr(trace_buf->data, cpu);
1271 struct trace_array_cpu *max_data = per_cpu_ptr(max_buf->data, cpu);
1272
1273 max_buf->cpu = cpu;
1274 max_buf->time_start = data->preempt_timestamp;
1275
1276 max_data->saved_latency = tr->max_latency;
1277 max_data->critical_start = data->critical_start;
1278 max_data->critical_end = data->critical_end;
1279
1280 memcpy(max_data->comm, tsk->comm, TASK_COMM_LEN);
1281 max_data->pid = tsk->pid;
1282 /*
1283 * If tsk == current, then use current_uid(), as that does not use
1284 * RCU. The irq tracer can be called out of RCU scope.
1285 */
1286 if (tsk == current)
1287 max_data->uid = current_uid();
1288 else
1289 max_data->uid = task_uid(tsk);
1290
1291 max_data->nice = tsk->static_prio - 20 - MAX_RT_PRIO;
1292 max_data->policy = tsk->policy;
1293 max_data->rt_priority = tsk->rt_priority;
1294
1295 /* record this tasks comm */
1296 tracing_record_cmdline(tsk);
1297 }
1298
1299 /**
1300 * update_max_tr - snapshot all trace buffers from global_trace to max_tr
1301 * @tr: tracer
1302 * @tsk: the task with the latency
1303 * @cpu: The cpu that initiated the trace.
1304 *
1305 * Flip the buffers between the @tr and the max_tr and record information
1306 * about which task was the cause of this latency.
1307 */
1308 void
1309 update_max_tr(struct trace_array *tr, struct task_struct *tsk, int cpu)
1310 {
1311 struct ring_buffer *buf;
1312
1313 if (tr->stop_count)
1314 return;
1315
1316 WARN_ON_ONCE(!irqs_disabled());
1317
1318 if (!tr->allocated_snapshot) {
1319 /* Only the nop tracer should hit this when disabling */
1320 WARN_ON_ONCE(tr->current_trace != &nop_trace);
1321 return;
1322 }
1323
1324 arch_spin_lock(&tr->max_lock);
1325
1326 buf = tr->trace_buffer.buffer;
1327 tr->trace_buffer.buffer = tr->max_buffer.buffer;
1328 tr->max_buffer.buffer = buf;
1329
1330 __update_max_tr(tr, tsk, cpu);
1331 arch_spin_unlock(&tr->max_lock);
1332 }
1333
1334 /**
1335 * update_max_tr_single - only copy one trace over, and reset the rest
1336 * @tr - tracer
1337 * @tsk - task with the latency
1338 * @cpu - the cpu of the buffer to copy.
1339 *
1340 * Flip the trace of a single CPU buffer between the @tr and the max_tr.
1341 */
1342 void
1343 update_max_tr_single(struct trace_array *tr, struct task_struct *tsk, int cpu)
1344 {
1345 int ret;
1346
1347 if (tr->stop_count)
1348 return;
1349
1350 WARN_ON_ONCE(!irqs_disabled());
1351 if (!tr->allocated_snapshot) {
1352 /* Only the nop tracer should hit this when disabling */
1353 WARN_ON_ONCE(tr->current_trace != &nop_trace);
1354 return;
1355 }
1356
1357 arch_spin_lock(&tr->max_lock);
1358
1359 ret = ring_buffer_swap_cpu(tr->max_buffer.buffer, tr->trace_buffer.buffer, cpu);
1360
1361 if (ret == -EBUSY) {
1362 /*
1363 * We failed to swap the buffer due to a commit taking
1364 * place on this CPU. We fail to record, but we reset
1365 * the max trace buffer (no one writes directly to it)
1366 * and flag that it failed.
1367 */
1368 trace_array_printk_buf(tr->max_buffer.buffer, _THIS_IP_,
1369 "Failed to swap buffers due to commit in progress\n");
1370 }
1371
1372 WARN_ON_ONCE(ret && ret != -EAGAIN && ret != -EBUSY);
1373
1374 __update_max_tr(tr, tsk, cpu);
1375 arch_spin_unlock(&tr->max_lock);
1376 }
1377 #endif /* CONFIG_TRACER_MAX_TRACE */
1378
1379 static int wait_on_pipe(struct trace_iterator *iter, bool full)
1380 {
1381 /* Iterators are static, they should be filled or empty */
1382 if (trace_buffer_iter(iter, iter->cpu_file))
1383 return 0;
1384
1385 return ring_buffer_wait(iter->trace_buffer->buffer, iter->cpu_file,
1386 full);
1387 }
1388
1389 #ifdef CONFIG_FTRACE_STARTUP_TEST
1390 static int run_tracer_selftest(struct tracer *type)
1391 {
1392 struct trace_array *tr = &global_trace;
1393 struct tracer *saved_tracer = tr->current_trace;
1394 int ret;
1395
1396 if (!type->selftest || tracing_selftest_disabled)
1397 return 0;
1398
1399 /*
1400 * Run a selftest on this tracer.
1401 * Here we reset the trace buffer, and set the current
1402 * tracer to be this tracer. The tracer can then run some
1403 * internal tracing to verify that everything is in order.
1404 * If we fail, we do not register this tracer.
1405 */
1406 tracing_reset_online_cpus(&tr->trace_buffer);
1407
1408 tr->current_trace = type;
1409
1410 #ifdef CONFIG_TRACER_MAX_TRACE
1411 if (type->use_max_tr) {
1412 /* If we expanded the buffers, make sure the max is expanded too */
1413 if (ring_buffer_expanded)
1414 ring_buffer_resize(tr->max_buffer.buffer, trace_buf_size,
1415 RING_BUFFER_ALL_CPUS);
1416 tr->allocated_snapshot = true;
1417 }
1418 #endif
1419
1420 /* the test is responsible for initializing and enabling */
1421 pr_info("Testing tracer %s: ", type->name);
1422 ret = type->selftest(type, tr);
1423 /* the test is responsible for resetting too */
1424 tr->current_trace = saved_tracer;
1425 if (ret) {
1426 printk(KERN_CONT "FAILED!\n");
1427 /* Add the warning after printing 'FAILED' */
1428 WARN_ON(1);
1429 return -1;
1430 }
1431 /* Only reset on passing, to avoid touching corrupted buffers */
1432 tracing_reset_online_cpus(&tr->trace_buffer);
1433
1434 #ifdef CONFIG_TRACER_MAX_TRACE
1435 if (type->use_max_tr) {
1436 tr->allocated_snapshot = false;
1437
1438 /* Shrink the max buffer again */
1439 if (ring_buffer_expanded)
1440 ring_buffer_resize(tr->max_buffer.buffer, 1,
1441 RING_BUFFER_ALL_CPUS);
1442 }
1443 #endif
1444
1445 printk(KERN_CONT "PASSED\n");
1446 return 0;
1447 }
1448 #else
1449 static inline int run_tracer_selftest(struct tracer *type)
1450 {
1451 return 0;
1452 }
1453 #endif /* CONFIG_FTRACE_STARTUP_TEST */
1454
1455 static void add_tracer_options(struct trace_array *tr, struct tracer *t);
1456
1457 static void __init apply_trace_boot_options(void);
1458
1459 /**
1460 * register_tracer - register a tracer with the ftrace system.
1461 * @type - the plugin for the tracer
1462 *
1463 * Register a new plugin tracer.
1464 */
1465 int __init register_tracer(struct tracer *type)
1466 {
1467 struct tracer *t;
1468 int ret = 0;
1469
1470 if (!type->name) {
1471 pr_info("Tracer must have a name\n");
1472 return -1;
1473 }
1474
1475 if (strlen(type->name) >= MAX_TRACER_SIZE) {
1476 pr_info("Tracer has a name longer than %d\n", MAX_TRACER_SIZE);
1477 return -1;
1478 }
1479
1480 mutex_lock(&trace_types_lock);
1481
1482 tracing_selftest_running = true;
1483
1484 for (t = trace_types; t; t = t->next) {
1485 if (strcmp(type->name, t->name) == 0) {
1486 /* already found */
1487 pr_info("Tracer %s already registered\n",
1488 type->name);
1489 ret = -1;
1490 goto out;
1491 }
1492 }
1493
1494 if (!type->set_flag)
1495 type->set_flag = &dummy_set_flag;
1496 if (!type->flags) {
1497 /*allocate a dummy tracer_flags*/
1498 type->flags = kmalloc(sizeof(*type->flags), GFP_KERNEL);
1499 if (!type->flags) {
1500 ret = -ENOMEM;
1501 goto out;
1502 }
1503 type->flags->val = 0;
1504 type->flags->opts = dummy_tracer_opt;
1505 } else
1506 if (!type->flags->opts)
1507 type->flags->opts = dummy_tracer_opt;
1508
1509 /* store the tracer for __set_tracer_option */
1510 type->flags->trace = type;
1511
1512 ret = run_tracer_selftest(type);
1513 if (ret < 0)
1514 goto out;
1515
1516 type->next = trace_types;
1517 trace_types = type;
1518 add_tracer_options(&global_trace, type);
1519
1520 out:
1521 tracing_selftest_running = false;
1522 mutex_unlock(&trace_types_lock);
1523
1524 if (ret || !default_bootup_tracer)
1525 goto out_unlock;
1526
1527 if (strncmp(default_bootup_tracer, type->name, MAX_TRACER_SIZE))
1528 goto out_unlock;
1529
1530 printk(KERN_INFO "Starting tracer '%s'\n", type->name);
1531 /* Do we want this tracer to start on bootup? */
1532 tracing_set_tracer(&global_trace, type->name);
1533 default_bootup_tracer = NULL;
1534
1535 apply_trace_boot_options();
1536
1537 /* disable other selftests, since this will break it. */
1538 tracing_selftest_disabled = true;
1539 #ifdef CONFIG_FTRACE_STARTUP_TEST
1540 printk(KERN_INFO "Disabling FTRACE selftests due to running tracer '%s'\n",
1541 type->name);
1542 #endif
1543
1544 out_unlock:
1545 return ret;
1546 }
1547
1548 void tracing_reset(struct trace_buffer *buf, int cpu)
1549 {
1550 struct ring_buffer *buffer = buf->buffer;
1551
1552 if (!buffer)
1553 return;
1554
1555 ring_buffer_record_disable(buffer);
1556
1557 /* Make sure all commits have finished */
1558 synchronize_sched();
1559 ring_buffer_reset_cpu(buffer, cpu);
1560
1561 ring_buffer_record_enable(buffer);
1562 }
1563
1564 void tracing_reset_online_cpus(struct trace_buffer *buf)
1565 {
1566 struct ring_buffer *buffer = buf->buffer;
1567 int cpu;
1568
1569 if (!buffer)
1570 return;
1571
1572 ring_buffer_record_disable(buffer);
1573
1574 /* Make sure all commits have finished */
1575 synchronize_sched();
1576
1577 buf->time_start = buffer_ftrace_now(buf, buf->cpu);
1578
1579 for_each_online_cpu(cpu)
1580 ring_buffer_reset_cpu(buffer, cpu);
1581
1582 ring_buffer_record_enable(buffer);
1583 }
1584
1585 /* Must have trace_types_lock held */
1586 void tracing_reset_all_online_cpus(void)
1587 {
1588 struct trace_array *tr;
1589
1590 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
1591 tracing_reset_online_cpus(&tr->trace_buffer);
1592 #ifdef CONFIG_TRACER_MAX_TRACE
1593 tracing_reset_online_cpus(&tr->max_buffer);
1594 #endif
1595 }
1596 }
1597
1598 #define SAVED_CMDLINES_DEFAULT 128
1599 #define NO_CMDLINE_MAP UINT_MAX
1600 static arch_spinlock_t trace_cmdline_lock = __ARCH_SPIN_LOCK_UNLOCKED;
1601 struct saved_cmdlines_buffer {
1602 unsigned map_pid_to_cmdline[PID_MAX_DEFAULT+1];
1603 unsigned *map_cmdline_to_pid;
1604 unsigned cmdline_num;
1605 int cmdline_idx;
1606 char *saved_cmdlines;
1607 };
1608 static struct saved_cmdlines_buffer *savedcmd;
1609
1610 /* temporary disable recording */
1611 static atomic_t trace_record_cmdline_disabled __read_mostly;
1612
1613 static inline char *get_saved_cmdlines(int idx)
1614 {
1615 return &savedcmd->saved_cmdlines[idx * TASK_COMM_LEN];
1616 }
1617
1618 static inline void set_cmdline(int idx, const char *cmdline)
1619 {
1620 memcpy(get_saved_cmdlines(idx), cmdline, TASK_COMM_LEN);
1621 }
1622
1623 static int allocate_cmdlines_buffer(unsigned int val,
1624 struct saved_cmdlines_buffer *s)
1625 {
1626 s->map_cmdline_to_pid = kmalloc(val * sizeof(*s->map_cmdline_to_pid),
1627 GFP_KERNEL);
1628 if (!s->map_cmdline_to_pid)
1629 return -ENOMEM;
1630
1631 s->saved_cmdlines = kmalloc(val * TASK_COMM_LEN, GFP_KERNEL);
1632 if (!s->saved_cmdlines) {
1633 kfree(s->map_cmdline_to_pid);
1634 return -ENOMEM;
1635 }
1636
1637 s->cmdline_idx = 0;
1638 s->cmdline_num = val;
1639 memset(&s->map_pid_to_cmdline, NO_CMDLINE_MAP,
1640 sizeof(s->map_pid_to_cmdline));
1641 memset(s->map_cmdline_to_pid, NO_CMDLINE_MAP,
1642 val * sizeof(*s->map_cmdline_to_pid));
1643
1644 return 0;
1645 }
1646
1647 static int trace_create_savedcmd(void)
1648 {
1649 int ret;
1650
1651 savedcmd = kmalloc(sizeof(*savedcmd), GFP_KERNEL);
1652 if (!savedcmd)
1653 return -ENOMEM;
1654
1655 ret = allocate_cmdlines_buffer(SAVED_CMDLINES_DEFAULT, savedcmd);
1656 if (ret < 0) {
1657 kfree(savedcmd);
1658 savedcmd = NULL;
1659 return -ENOMEM;
1660 }
1661
1662 return 0;
1663 }
1664
1665 int is_tracing_stopped(void)
1666 {
1667 return global_trace.stop_count;
1668 }
1669
1670 /**
1671 * tracing_start - quick start of the tracer
1672 *
1673 * If tracing is enabled but was stopped by tracing_stop,
1674 * this will start the tracer back up.
1675 */
1676 void tracing_start(void)
1677 {
1678 struct ring_buffer *buffer;
1679 unsigned long flags;
1680
1681 if (tracing_disabled)
1682 return;
1683
1684 raw_spin_lock_irqsave(&global_trace.start_lock, flags);
1685 if (--global_trace.stop_count) {
1686 if (global_trace.stop_count < 0) {
1687 /* Someone screwed up their debugging */
1688 WARN_ON_ONCE(1);
1689 global_trace.stop_count = 0;
1690 }
1691 goto out;
1692 }
1693
1694 /* Prevent the buffers from switching */
1695 arch_spin_lock(&global_trace.max_lock);
1696
1697 buffer = global_trace.trace_buffer.buffer;
1698 if (buffer)
1699 ring_buffer_record_enable(buffer);
1700
1701 #ifdef CONFIG_TRACER_MAX_TRACE
1702 buffer = global_trace.max_buffer.buffer;
1703 if (buffer)
1704 ring_buffer_record_enable(buffer);
1705 #endif
1706
1707 arch_spin_unlock(&global_trace.max_lock);
1708
1709 out:
1710 raw_spin_unlock_irqrestore(&global_trace.start_lock, flags);
1711 }
1712
1713 static void tracing_start_tr(struct trace_array *tr)
1714 {
1715 struct ring_buffer *buffer;
1716 unsigned long flags;
1717
1718 if (tracing_disabled)
1719 return;
1720
1721 /* If global, we need to also start the max tracer */
1722 if (tr->flags & TRACE_ARRAY_FL_GLOBAL)
1723 return tracing_start();
1724
1725 raw_spin_lock_irqsave(&tr->start_lock, flags);
1726
1727 if (--tr->stop_count) {
1728 if (tr->stop_count < 0) {
1729 /* Someone screwed up their debugging */
1730 WARN_ON_ONCE(1);
1731 tr->stop_count = 0;
1732 }
1733 goto out;
1734 }
1735
1736 buffer = tr->trace_buffer.buffer;
1737 if (buffer)
1738 ring_buffer_record_enable(buffer);
1739
1740 out:
1741 raw_spin_unlock_irqrestore(&tr->start_lock, flags);
1742 }
1743
1744 /**
1745 * tracing_stop - quick stop of the tracer
1746 *
1747 * Light weight way to stop tracing. Use in conjunction with
1748 * tracing_start.
1749 */
1750 void tracing_stop(void)
1751 {
1752 struct ring_buffer *buffer;
1753 unsigned long flags;
1754
1755 raw_spin_lock_irqsave(&global_trace.start_lock, flags);
1756 if (global_trace.stop_count++)
1757 goto out;
1758
1759 /* Prevent the buffers from switching */
1760 arch_spin_lock(&global_trace.max_lock);
1761
1762 buffer = global_trace.trace_buffer.buffer;
1763 if (buffer)
1764 ring_buffer_record_disable(buffer);
1765
1766 #ifdef CONFIG_TRACER_MAX_TRACE
1767 buffer = global_trace.max_buffer.buffer;
1768 if (buffer)
1769 ring_buffer_record_disable(buffer);
1770 #endif
1771
1772 arch_spin_unlock(&global_trace.max_lock);
1773
1774 out:
1775 raw_spin_unlock_irqrestore(&global_trace.start_lock, flags);
1776 }
1777
1778 static void tracing_stop_tr(struct trace_array *tr)
1779 {
1780 struct ring_buffer *buffer;
1781 unsigned long flags;
1782
1783 /* If global, we need to also stop the max tracer */
1784 if (tr->flags & TRACE_ARRAY_FL_GLOBAL)
1785 return tracing_stop();
1786
1787 raw_spin_lock_irqsave(&tr->start_lock, flags);
1788 if (tr->stop_count++)
1789 goto out;
1790
1791 buffer = tr->trace_buffer.buffer;
1792 if (buffer)
1793 ring_buffer_record_disable(buffer);
1794
1795 out:
1796 raw_spin_unlock_irqrestore(&tr->start_lock, flags);
1797 }
1798
1799 void trace_stop_cmdline_recording(void);
1800
1801 static int trace_save_cmdline(struct task_struct *tsk)
1802 {
1803 unsigned pid, idx;
1804
1805 if (!tsk->pid || unlikely(tsk->pid > PID_MAX_DEFAULT))
1806 return 0;
1807
1808 /*
1809 * It's not the end of the world if we don't get
1810 * the lock, but we also don't want to spin
1811 * nor do we want to disable interrupts,
1812 * so if we miss here, then better luck next time.
1813 */
1814 if (!arch_spin_trylock(&trace_cmdline_lock))
1815 return 0;
1816
1817 idx = savedcmd->map_pid_to_cmdline[tsk->pid];
1818 if (idx == NO_CMDLINE_MAP) {
1819 idx = (savedcmd->cmdline_idx + 1) % savedcmd->cmdline_num;
1820
1821 /*
1822 * Check whether the cmdline buffer at idx has a pid
1823 * mapped. We are going to overwrite that entry so we
1824 * need to clear the map_pid_to_cmdline. Otherwise we
1825 * would read the new comm for the old pid.
1826 */
1827 pid = savedcmd->map_cmdline_to_pid[idx];
1828 if (pid != NO_CMDLINE_MAP)
1829 savedcmd->map_pid_to_cmdline[pid] = NO_CMDLINE_MAP;
1830
1831 savedcmd->map_cmdline_to_pid[idx] = tsk->pid;
1832 savedcmd->map_pid_to_cmdline[tsk->pid] = idx;
1833
1834 savedcmd->cmdline_idx = idx;
1835 }
1836
1837 set_cmdline(idx, tsk->comm);
1838
1839 arch_spin_unlock(&trace_cmdline_lock);
1840
1841 return 1;
1842 }
1843
1844 static void __trace_find_cmdline(int pid, char comm[])
1845 {
1846 unsigned map;
1847
1848 if (!pid) {
1849 strcpy(comm, "<idle>");
1850 return;
1851 }
1852
1853 if (WARN_ON_ONCE(pid < 0)) {
1854 strcpy(comm, "<XXX>");
1855 return;
1856 }
1857
1858 if (pid > PID_MAX_DEFAULT) {
1859 strcpy(comm, "<...>");
1860 return;
1861 }
1862
1863 map = savedcmd->map_pid_to_cmdline[pid];
1864 if (map != NO_CMDLINE_MAP)
1865 strcpy(comm, get_saved_cmdlines(map));
1866 else
1867 strcpy(comm, "<...>");
1868 }
1869
1870 void trace_find_cmdline(int pid, char comm[])
1871 {
1872 preempt_disable();
1873 arch_spin_lock(&trace_cmdline_lock);
1874
1875 __trace_find_cmdline(pid, comm);
1876
1877 arch_spin_unlock(&trace_cmdline_lock);
1878 preempt_enable();
1879 }
1880
1881 void tracing_record_cmdline(struct task_struct *tsk)
1882 {
1883 if (atomic_read(&trace_record_cmdline_disabled) || !tracing_is_on())
1884 return;
1885
1886 if (!__this_cpu_read(trace_cmdline_save))
1887 return;
1888
1889 if (trace_save_cmdline(tsk))
1890 __this_cpu_write(trace_cmdline_save, false);
1891 }
1892
1893 void
1894 tracing_generic_entry_update(struct trace_entry *entry, unsigned long flags,
1895 int pc)
1896 {
1897 struct task_struct *tsk = current;
1898
1899 entry->preempt_count = pc & 0xff;
1900 entry->pid = (tsk) ? tsk->pid : 0;
1901 entry->flags =
1902 #ifdef CONFIG_TRACE_IRQFLAGS_SUPPORT
1903 (irqs_disabled_flags(flags) ? TRACE_FLAG_IRQS_OFF : 0) |
1904 #else
1905 TRACE_FLAG_IRQS_NOSUPPORT |
1906 #endif
1907 ((pc & NMI_MASK ) ? TRACE_FLAG_NMI : 0) |
1908 ((pc & HARDIRQ_MASK) ? TRACE_FLAG_HARDIRQ : 0) |
1909 ((pc & SOFTIRQ_MASK) ? TRACE_FLAG_SOFTIRQ : 0) |
1910 (tif_need_resched() ? TRACE_FLAG_NEED_RESCHED : 0) |
1911 (test_preempt_need_resched() ? TRACE_FLAG_PREEMPT_RESCHED : 0);
1912 }
1913 EXPORT_SYMBOL_GPL(tracing_generic_entry_update);
1914
1915 static __always_inline void
1916 trace_event_setup(struct ring_buffer_event *event,
1917 int type, unsigned long flags, int pc)
1918 {
1919 struct trace_entry *ent = ring_buffer_event_data(event);
1920
1921 tracing_generic_entry_update(ent, flags, pc);
1922 ent->type = type;
1923 }
1924
1925 struct ring_buffer_event *
1926 trace_buffer_lock_reserve(struct ring_buffer *buffer,
1927 int type,
1928 unsigned long len,
1929 unsigned long flags, int pc)
1930 {
1931 struct ring_buffer_event *event;
1932
1933 event = ring_buffer_lock_reserve(buffer, len);
1934 if (event != NULL)
1935 trace_event_setup(event, type, flags, pc);
1936
1937 return event;
1938 }
1939
1940 DEFINE_PER_CPU(struct ring_buffer_event *, trace_buffered_event);
1941 DEFINE_PER_CPU(int, trace_buffered_event_cnt);
1942 static int trace_buffered_event_ref;
1943
1944 /**
1945 * trace_buffered_event_enable - enable buffering events
1946 *
1947 * When events are being filtered, it is quicker to use a temporary
1948 * buffer to write the event data into if there's a likely chance
1949 * that it will not be committed. The discard of the ring buffer
1950 * is not as fast as committing, and is much slower than copying
1951 * a commit.
1952 *
1953 * When an event is to be filtered, allocate per cpu buffers to
1954 * write the event data into, and if the event is filtered and discarded
1955 * it is simply dropped, otherwise, the entire data is to be committed
1956 * in one shot.
1957 */
1958 void trace_buffered_event_enable(void)
1959 {
1960 struct ring_buffer_event *event;
1961 struct page *page;
1962 int cpu;
1963
1964 WARN_ON_ONCE(!mutex_is_locked(&event_mutex));
1965
1966 if (trace_buffered_event_ref++)
1967 return;
1968
1969 for_each_tracing_cpu(cpu) {
1970 page = alloc_pages_node(cpu_to_node(cpu),
1971 GFP_KERNEL | __GFP_NORETRY, 0);
1972 if (!page)
1973 goto failed;
1974
1975 event = page_address(page);
1976 memset(event, 0, sizeof(*event));
1977
1978 per_cpu(trace_buffered_event, cpu) = event;
1979
1980 preempt_disable();
1981 if (cpu == smp_processor_id() &&
1982 this_cpu_read(trace_buffered_event) !=
1983 per_cpu(trace_buffered_event, cpu))
1984 WARN_ON_ONCE(1);
1985 preempt_enable();
1986 }
1987
1988 return;
1989 failed:
1990 trace_buffered_event_disable();
1991 }
1992
1993 static void enable_trace_buffered_event(void *data)
1994 {
1995 /* Probably not needed, but do it anyway */
1996 smp_rmb();
1997 this_cpu_dec(trace_buffered_event_cnt);
1998 }
1999
2000 static void disable_trace_buffered_event(void *data)
2001 {
2002 this_cpu_inc(trace_buffered_event_cnt);
2003 }
2004
2005 /**
2006 * trace_buffered_event_disable - disable buffering events
2007 *
2008 * When a filter is removed, it is faster to not use the buffered
2009 * events, and to commit directly into the ring buffer. Free up
2010 * the temp buffers when there are no more users. This requires
2011 * special synchronization with current events.
2012 */
2013 void trace_buffered_event_disable(void)
2014 {
2015 int cpu;
2016
2017 WARN_ON_ONCE(!mutex_is_locked(&event_mutex));
2018
2019 if (WARN_ON_ONCE(!trace_buffered_event_ref))
2020 return;
2021
2022 if (--trace_buffered_event_ref)
2023 return;
2024
2025 preempt_disable();
2026 /* For each CPU, set the buffer as used. */
2027 smp_call_function_many(tracing_buffer_mask,
2028 disable_trace_buffered_event, NULL, 1);
2029 preempt_enable();
2030
2031 /* Wait for all current users to finish */
2032 synchronize_sched();
2033
2034 for_each_tracing_cpu(cpu) {
2035 free_page((unsigned long)per_cpu(trace_buffered_event, cpu));
2036 per_cpu(trace_buffered_event, cpu) = NULL;
2037 }
2038 /*
2039 * Make sure trace_buffered_event is NULL before clearing
2040 * trace_buffered_event_cnt.
2041 */
2042 smp_wmb();
2043
2044 preempt_disable();
2045 /* Do the work on each cpu */
2046 smp_call_function_many(tracing_buffer_mask,
2047 enable_trace_buffered_event, NULL, 1);
2048 preempt_enable();
2049 }
2050
2051 void
2052 __buffer_unlock_commit(struct ring_buffer *buffer, struct ring_buffer_event *event)
2053 {
2054 __this_cpu_write(trace_cmdline_save, true);
2055
2056 /* If this is the temp buffer, we need to commit fully */
2057 if (this_cpu_read(trace_buffered_event) == event) {
2058 /* Length is in event->array[0] */
2059 ring_buffer_write(buffer, event->array[0], &event->array[1]);
2060 /* Release the temp buffer */
2061 this_cpu_dec(trace_buffered_event_cnt);
2062 } else
2063 ring_buffer_unlock_commit(buffer, event);
2064 }
2065
2066 static struct ring_buffer *temp_buffer;
2067
2068 struct ring_buffer_event *
2069 trace_event_buffer_lock_reserve(struct ring_buffer **current_rb,
2070 struct trace_event_file *trace_file,
2071 int type, unsigned long len,
2072 unsigned long flags, int pc)
2073 {
2074 struct ring_buffer_event *entry;
2075 int val;
2076
2077 *current_rb = trace_file->tr->trace_buffer.buffer;
2078
2079 if ((trace_file->flags &
2080 (EVENT_FILE_FL_SOFT_DISABLED | EVENT_FILE_FL_FILTERED)) &&
2081 (entry = this_cpu_read(trace_buffered_event))) {
2082 /* Try to use the per cpu buffer first */
2083 val = this_cpu_inc_return(trace_buffered_event_cnt);
2084 if (val == 1) {
2085 trace_event_setup(entry, type, flags, pc);
2086 entry->array[0] = len;
2087 return entry;
2088 }
2089 this_cpu_dec(trace_buffered_event_cnt);
2090 }
2091
2092 entry = trace_buffer_lock_reserve(*current_rb,
2093 type, len, flags, pc);
2094 /*
2095 * If tracing is off, but we have triggers enabled
2096 * we still need to look at the event data. Use the temp_buffer
2097 * to store the trace event for the tigger to use. It's recusive
2098 * safe and will not be recorded anywhere.
2099 */
2100 if (!entry && trace_file->flags & EVENT_FILE_FL_TRIGGER_COND) {
2101 *current_rb = temp_buffer;
2102 entry = trace_buffer_lock_reserve(*current_rb,
2103 type, len, flags, pc);
2104 }
2105 return entry;
2106 }
2107 EXPORT_SYMBOL_GPL(trace_event_buffer_lock_reserve);
2108
2109 void trace_buffer_unlock_commit_regs(struct trace_array *tr,
2110 struct ring_buffer *buffer,
2111 struct ring_buffer_event *event,
2112 unsigned long flags, int pc,
2113 struct pt_regs *regs)
2114 {
2115 __buffer_unlock_commit(buffer, event);
2116
2117 /*
2118 * If regs is not set, then skip the following callers:
2119 * trace_buffer_unlock_commit_regs
2120 * event_trigger_unlock_commit
2121 * trace_event_buffer_commit
2122 * trace_event_raw_event_sched_switch
2123 * Note, we can still get here via blktrace, wakeup tracer
2124 * and mmiotrace, but that's ok if they lose a function or
2125 * two. They are that meaningful.
2126 */
2127 ftrace_trace_stack(tr, buffer, flags, regs ? 0 : 4, pc, regs);
2128 ftrace_trace_userstack(buffer, flags, pc);
2129 }
2130
2131 void
2132 trace_function(struct trace_array *tr,
2133 unsigned long ip, unsigned long parent_ip, unsigned long flags,
2134 int pc)
2135 {
2136 struct trace_event_call *call = &event_function;
2137 struct ring_buffer *buffer = tr->trace_buffer.buffer;
2138 struct ring_buffer_event *event;
2139 struct ftrace_entry *entry;
2140
2141 event = trace_buffer_lock_reserve(buffer, TRACE_FN, sizeof(*entry),
2142 flags, pc);
2143 if (!event)
2144 return;
2145 entry = ring_buffer_event_data(event);
2146 entry->ip = ip;
2147 entry->parent_ip = parent_ip;
2148
2149 if (!call_filter_check_discard(call, entry, buffer, event))
2150 __buffer_unlock_commit(buffer, event);
2151 }
2152
2153 #ifdef CONFIG_STACKTRACE
2154
2155 #define FTRACE_STACK_MAX_ENTRIES (PAGE_SIZE / sizeof(unsigned long))
2156 struct ftrace_stack {
2157 unsigned long calls[FTRACE_STACK_MAX_ENTRIES];
2158 };
2159
2160 static DEFINE_PER_CPU(struct ftrace_stack, ftrace_stack);
2161 static DEFINE_PER_CPU(int, ftrace_stack_reserve);
2162
2163 static void __ftrace_trace_stack(struct ring_buffer *buffer,
2164 unsigned long flags,
2165 int skip, int pc, struct pt_regs *regs)
2166 {
2167 struct trace_event_call *call = &event_kernel_stack;
2168 struct ring_buffer_event *event;
2169 struct stack_entry *entry;
2170 struct stack_trace trace;
2171 int use_stack;
2172 int size = FTRACE_STACK_ENTRIES;
2173
2174 trace.nr_entries = 0;
2175 trace.skip = skip;
2176
2177 /*
2178 * Add two, for this function and the call to save_stack_trace()
2179 * If regs is set, then these functions will not be in the way.
2180 */
2181 if (!regs)
2182 trace.skip += 2;
2183
2184 /*
2185 * Since events can happen in NMIs there's no safe way to
2186 * use the per cpu ftrace_stacks. We reserve it and if an interrupt
2187 * or NMI comes in, it will just have to use the default
2188 * FTRACE_STACK_SIZE.
2189 */
2190 preempt_disable_notrace();
2191
2192 use_stack = __this_cpu_inc_return(ftrace_stack_reserve);
2193 /*
2194 * We don't need any atomic variables, just a barrier.
2195 * If an interrupt comes in, we don't care, because it would
2196 * have exited and put the counter back to what we want.
2197 * We just need a barrier to keep gcc from moving things
2198 * around.
2199 */
2200 barrier();
2201 if (use_stack == 1) {
2202 trace.entries = this_cpu_ptr(ftrace_stack.calls);
2203 trace.max_entries = FTRACE_STACK_MAX_ENTRIES;
2204
2205 if (regs)
2206 save_stack_trace_regs(regs, &trace);
2207 else
2208 save_stack_trace(&trace);
2209
2210 if (trace.nr_entries > size)
2211 size = trace.nr_entries;
2212 } else
2213 /* From now on, use_stack is a boolean */
2214 use_stack = 0;
2215
2216 size *= sizeof(unsigned long);
2217
2218 event = trace_buffer_lock_reserve(buffer, TRACE_STACK,
2219 sizeof(*entry) + size, flags, pc);
2220 if (!event)
2221 goto out;
2222 entry = ring_buffer_event_data(event);
2223
2224 memset(&entry->caller, 0, size);
2225
2226 if (use_stack)
2227 memcpy(&entry->caller, trace.entries,
2228 trace.nr_entries * sizeof(unsigned long));
2229 else {
2230 trace.max_entries = FTRACE_STACK_ENTRIES;
2231 trace.entries = entry->caller;
2232 if (regs)
2233 save_stack_trace_regs(regs, &trace);
2234 else
2235 save_stack_trace(&trace);
2236 }
2237
2238 entry->size = trace.nr_entries;
2239
2240 if (!call_filter_check_discard(call, entry, buffer, event))
2241 __buffer_unlock_commit(buffer, event);
2242
2243 out:
2244 /* Again, don't let gcc optimize things here */
2245 barrier();
2246 __this_cpu_dec(ftrace_stack_reserve);
2247 preempt_enable_notrace();
2248
2249 }
2250
2251 static inline void ftrace_trace_stack(struct trace_array *tr,
2252 struct ring_buffer *buffer,
2253 unsigned long flags,
2254 int skip, int pc, struct pt_regs *regs)
2255 {
2256 if (!(tr->trace_flags & TRACE_ITER_STACKTRACE))
2257 return;
2258
2259 __ftrace_trace_stack(buffer, flags, skip, pc, regs);
2260 }
2261
2262 void __trace_stack(struct trace_array *tr, unsigned long flags, int skip,
2263 int pc)
2264 {
2265 __ftrace_trace_stack(tr->trace_buffer.buffer, flags, skip, pc, NULL);
2266 }
2267
2268 /**
2269 * trace_dump_stack - record a stack back trace in the trace buffer
2270 * @skip: Number of functions to skip (helper handlers)
2271 */
2272 void trace_dump_stack(int skip)
2273 {
2274 unsigned long flags;
2275
2276 if (tracing_disabled || tracing_selftest_running)
2277 return;
2278
2279 local_save_flags(flags);
2280
2281 /*
2282 * Skip 3 more, seems to get us at the caller of
2283 * this function.
2284 */
2285 skip += 3;
2286 __ftrace_trace_stack(global_trace.trace_buffer.buffer,
2287 flags, skip, preempt_count(), NULL);
2288 }
2289
2290 static DEFINE_PER_CPU(int, user_stack_count);
2291
2292 void
2293 ftrace_trace_userstack(struct ring_buffer *buffer, unsigned long flags, int pc)
2294 {
2295 struct trace_event_call *call = &event_user_stack;
2296 struct ring_buffer_event *event;
2297 struct userstack_entry *entry;
2298 struct stack_trace trace;
2299
2300 if (!(global_trace.trace_flags & TRACE_ITER_USERSTACKTRACE))
2301 return;
2302
2303 /*
2304 * NMIs can not handle page faults, even with fix ups.
2305 * The save user stack can (and often does) fault.
2306 */
2307 if (unlikely(in_nmi()))
2308 return;
2309
2310 /*
2311 * prevent recursion, since the user stack tracing may
2312 * trigger other kernel events.
2313 */
2314 preempt_disable();
2315 if (__this_cpu_read(user_stack_count))
2316 goto out;
2317
2318 __this_cpu_inc(user_stack_count);
2319
2320 event = trace_buffer_lock_reserve(buffer, TRACE_USER_STACK,
2321 sizeof(*entry), flags, pc);
2322 if (!event)
2323 goto out_drop_count;
2324 entry = ring_buffer_event_data(event);
2325
2326 entry->tgid = current->tgid;
2327 memset(&entry->caller, 0, sizeof(entry->caller));
2328
2329 trace.nr_entries = 0;
2330 trace.max_entries = FTRACE_STACK_ENTRIES;
2331 trace.skip = 0;
2332 trace.entries = entry->caller;
2333
2334 save_stack_trace_user(&trace);
2335 if (!call_filter_check_discard(call, entry, buffer, event))
2336 __buffer_unlock_commit(buffer, event);
2337
2338 out_drop_count:
2339 __this_cpu_dec(user_stack_count);
2340 out:
2341 preempt_enable();
2342 }
2343
2344 #ifdef UNUSED
2345 static void __trace_userstack(struct trace_array *tr, unsigned long flags)
2346 {
2347 ftrace_trace_userstack(tr, flags, preempt_count());
2348 }
2349 #endif /* UNUSED */
2350
2351 #endif /* CONFIG_STACKTRACE */
2352
2353 /* created for use with alloc_percpu */
2354 struct trace_buffer_struct {
2355 int nesting;
2356 char buffer[4][TRACE_BUF_SIZE];
2357 };
2358
2359 static struct trace_buffer_struct *trace_percpu_buffer;
2360
2361 /*
2362 * Thise allows for lockless recording. If we're nested too deeply, then
2363 * this returns NULL.
2364 */
2365 static char *get_trace_buf(void)
2366 {
2367 struct trace_buffer_struct *buffer = this_cpu_ptr(trace_percpu_buffer);
2368
2369 if (!buffer || buffer->nesting >= 4)
2370 return NULL;
2371
2372 return &buffer->buffer[buffer->nesting++][0];
2373 }
2374
2375 static void put_trace_buf(void)
2376 {
2377 this_cpu_dec(trace_percpu_buffer->nesting);
2378 }
2379
2380 static int alloc_percpu_trace_buffer(void)
2381 {
2382 struct trace_buffer_struct *buffers;
2383
2384 buffers = alloc_percpu(struct trace_buffer_struct);
2385 if (WARN(!buffers, "Could not allocate percpu trace_printk buffer"))
2386 return -ENOMEM;
2387
2388 trace_percpu_buffer = buffers;
2389 return 0;
2390 }
2391
2392 static int buffers_allocated;
2393
2394 void trace_printk_init_buffers(void)
2395 {
2396 if (buffers_allocated)
2397 return;
2398
2399 if (alloc_percpu_trace_buffer())
2400 return;
2401
2402 /* trace_printk() is for debug use only. Don't use it in production. */
2403
2404 pr_warn("\n");
2405 pr_warn("**********************************************************\n");
2406 pr_warn("** NOTICE NOTICE NOTICE NOTICE NOTICE NOTICE NOTICE **\n");
2407 pr_warn("** **\n");
2408 pr_warn("** trace_printk() being used. Allocating extra memory. **\n");
2409 pr_warn("** **\n");
2410 pr_warn("** This means that this is a DEBUG kernel and it is **\n");
2411 pr_warn("** unsafe for production use. **\n");
2412 pr_warn("** **\n");
2413 pr_warn("** If you see this message and you are not debugging **\n");
2414 pr_warn("** the kernel, report this immediately to your vendor! **\n");
2415 pr_warn("** **\n");
2416 pr_warn("** NOTICE NOTICE NOTICE NOTICE NOTICE NOTICE NOTICE **\n");
2417 pr_warn("**********************************************************\n");
2418
2419 /* Expand the buffers to set size */
2420 tracing_update_buffers();
2421
2422 buffers_allocated = 1;
2423
2424 /*
2425 * trace_printk_init_buffers() can be called by modules.
2426 * If that happens, then we need to start cmdline recording
2427 * directly here. If the global_trace.buffer is already
2428 * allocated here, then this was called by module code.
2429 */
2430 if (global_trace.trace_buffer.buffer)
2431 tracing_start_cmdline_record();
2432 }
2433
2434 void trace_printk_start_comm(void)
2435 {
2436 /* Start tracing comms if trace printk is set */
2437 if (!buffers_allocated)
2438 return;
2439 tracing_start_cmdline_record();
2440 }
2441
2442 static void trace_printk_start_stop_comm(int enabled)
2443 {
2444 if (!buffers_allocated)
2445 return;
2446
2447 if (enabled)
2448 tracing_start_cmdline_record();
2449 else
2450 tracing_stop_cmdline_record();
2451 }
2452
2453 /**
2454 * trace_vbprintk - write binary msg to tracing buffer
2455 *
2456 */
2457 int trace_vbprintk(unsigned long ip, const char *fmt, va_list args)
2458 {
2459 struct trace_event_call *call = &event_bprint;
2460 struct ring_buffer_event *event;
2461 struct ring_buffer *buffer;
2462 struct trace_array *tr = &global_trace;
2463 struct bprint_entry *entry;
2464 unsigned long flags;
2465 char *tbuffer;
2466 int len = 0, size, pc;
2467
2468 if (unlikely(tracing_selftest_running || tracing_disabled))
2469 return 0;
2470
2471 /* Don't pollute graph traces with trace_vprintk internals */
2472 pause_graph_tracing();
2473
2474 pc = preempt_count();
2475 preempt_disable_notrace();
2476
2477 tbuffer = get_trace_buf();
2478 if (!tbuffer) {
2479 len = 0;
2480 goto out_nobuffer;
2481 }
2482
2483 len = vbin_printf((u32 *)tbuffer, TRACE_BUF_SIZE/sizeof(int), fmt, args);
2484
2485 if (len > TRACE_BUF_SIZE/sizeof(int) || len < 0)
2486 goto out;
2487
2488 local_save_flags(flags);
2489 size = sizeof(*entry) + sizeof(u32) * len;
2490 buffer = tr->trace_buffer.buffer;
2491 event = trace_buffer_lock_reserve(buffer, TRACE_BPRINT, size,
2492 flags, pc);
2493 if (!event)
2494 goto out;
2495 entry = ring_buffer_event_data(event);
2496 entry->ip = ip;
2497 entry->fmt = fmt;
2498
2499 memcpy(entry->buf, tbuffer, sizeof(u32) * len);
2500 if (!call_filter_check_discard(call, entry, buffer, event)) {
2501 __buffer_unlock_commit(buffer, event);
2502 ftrace_trace_stack(tr, buffer, flags, 6, pc, NULL);
2503 }
2504
2505 out:
2506 put_trace_buf();
2507
2508 out_nobuffer:
2509 preempt_enable_notrace();
2510 unpause_graph_tracing();
2511
2512 return len;
2513 }
2514 EXPORT_SYMBOL_GPL(trace_vbprintk);
2515
2516 static int
2517 __trace_array_vprintk(struct ring_buffer *buffer,
2518 unsigned long ip, const char *fmt, va_list args)
2519 {
2520 struct trace_event_call *call = &event_print;
2521 struct ring_buffer_event *event;
2522 int len = 0, size, pc;
2523 struct print_entry *entry;
2524 unsigned long flags;
2525 char *tbuffer;
2526
2527 if (tracing_disabled || tracing_selftest_running)
2528 return 0;
2529
2530 /* Don't pollute graph traces with trace_vprintk internals */
2531 pause_graph_tracing();
2532
2533 pc = preempt_count();
2534 preempt_disable_notrace();
2535
2536
2537 tbuffer = get_trace_buf();
2538 if (!tbuffer) {
2539 len = 0;
2540 goto out_nobuffer;
2541 }
2542
2543 len = vscnprintf(tbuffer, TRACE_BUF_SIZE, fmt, args);
2544
2545 local_save_flags(flags);
2546 size = sizeof(*entry) + len + 1;
2547 event = trace_buffer_lock_reserve(buffer, TRACE_PRINT, size,
2548 flags, pc);
2549 if (!event)
2550 goto out;
2551 entry = ring_buffer_event_data(event);
2552 entry->ip = ip;
2553
2554 memcpy(&entry->buf, tbuffer, len + 1);
2555 if (!call_filter_check_discard(call, entry, buffer, event)) {
2556 __buffer_unlock_commit(buffer, event);
2557 ftrace_trace_stack(&global_trace, buffer, flags, 6, pc, NULL);
2558 }
2559
2560 out:
2561 put_trace_buf();
2562
2563 out_nobuffer:
2564 preempt_enable_notrace();
2565 unpause_graph_tracing();
2566
2567 return len;
2568 }
2569
2570 int trace_array_vprintk(struct trace_array *tr,
2571 unsigned long ip, const char *fmt, va_list args)
2572 {
2573 return __trace_array_vprintk(tr->trace_buffer.buffer, ip, fmt, args);
2574 }
2575
2576 int trace_array_printk(struct trace_array *tr,
2577 unsigned long ip, const char *fmt, ...)
2578 {
2579 int ret;
2580 va_list ap;
2581
2582 if (!(global_trace.trace_flags & TRACE_ITER_PRINTK))
2583 return 0;
2584
2585 va_start(ap, fmt);
2586 ret = trace_array_vprintk(tr, ip, fmt, ap);
2587 va_end(ap);
2588 return ret;
2589 }
2590
2591 int trace_array_printk_buf(struct ring_buffer *buffer,
2592 unsigned long ip, const char *fmt, ...)
2593 {
2594 int ret;
2595 va_list ap;
2596
2597 if (!(global_trace.trace_flags & TRACE_ITER_PRINTK))
2598 return 0;
2599
2600 va_start(ap, fmt);
2601 ret = __trace_array_vprintk(buffer, ip, fmt, ap);
2602 va_end(ap);
2603 return ret;
2604 }
2605
2606 int trace_vprintk(unsigned long ip, const char *fmt, va_list args)
2607 {
2608 return trace_array_vprintk(&global_trace, ip, fmt, args);
2609 }
2610 EXPORT_SYMBOL_GPL(trace_vprintk);
2611
2612 static void trace_iterator_increment(struct trace_iterator *iter)
2613 {
2614 struct ring_buffer_iter *buf_iter = trace_buffer_iter(iter, iter->cpu);
2615
2616 iter->idx++;
2617 if (buf_iter)
2618 ring_buffer_read(buf_iter, NULL);
2619 }
2620
2621 static struct trace_entry *
2622 peek_next_entry(struct trace_iterator *iter, int cpu, u64 *ts,
2623 unsigned long *lost_events)
2624 {
2625 struct ring_buffer_event *event;
2626 struct ring_buffer_iter *buf_iter = trace_buffer_iter(iter, cpu);
2627
2628 if (buf_iter)
2629 event = ring_buffer_iter_peek(buf_iter, ts);
2630 else
2631 event = ring_buffer_peek(iter->trace_buffer->buffer, cpu, ts,
2632 lost_events);
2633
2634 if (event) {
2635 iter->ent_size = ring_buffer_event_length(event);
2636 return ring_buffer_event_data(event);
2637 }
2638 iter->ent_size = 0;
2639 return NULL;
2640 }
2641
2642 static struct trace_entry *
2643 __find_next_entry(struct trace_iterator *iter, int *ent_cpu,
2644 unsigned long *missing_events, u64 *ent_ts)
2645 {
2646 struct ring_buffer *buffer = iter->trace_buffer->buffer;
2647 struct trace_entry *ent, *next = NULL;
2648 unsigned long lost_events = 0, next_lost = 0;
2649 int cpu_file = iter->cpu_file;
2650 u64 next_ts = 0, ts;
2651 int next_cpu = -1;
2652 int next_size = 0;
2653 int cpu;
2654
2655 /*
2656 * If we are in a per_cpu trace file, don't bother by iterating over
2657 * all cpu and peek directly.
2658 */
2659 if (cpu_file > RING_BUFFER_ALL_CPUS) {
2660 if (ring_buffer_empty_cpu(buffer, cpu_file))
2661 return NULL;
2662 ent = peek_next_entry(iter, cpu_file, ent_ts, missing_events);
2663 if (ent_cpu)
2664 *ent_cpu = cpu_file;
2665
2666 return ent;
2667 }
2668
2669 for_each_tracing_cpu(cpu) {
2670
2671 if (ring_buffer_empty_cpu(buffer, cpu))
2672 continue;
2673
2674 ent = peek_next_entry(iter, cpu, &ts, &lost_events);
2675
2676 /*
2677 * Pick the entry with the smallest timestamp:
2678 */
2679 if (ent && (!next || ts < next_ts)) {
2680 next = ent;
2681 next_cpu = cpu;
2682 next_ts = ts;
2683 next_lost = lost_events;
2684 next_size = iter->ent_size;
2685 }
2686 }
2687
2688 iter->ent_size = next_size;
2689
2690 if (ent_cpu)
2691 *ent_cpu = next_cpu;
2692
2693 if (ent_ts)
2694 *ent_ts = next_ts;
2695
2696 if (missing_events)
2697 *missing_events = next_lost;
2698
2699 return next;
2700 }
2701
2702 /* Find the next real entry, without updating the iterator itself */
2703 struct trace_entry *trace_find_next_entry(struct trace_iterator *iter,
2704 int *ent_cpu, u64 *ent_ts)
2705 {
2706 return __find_next_entry(iter, ent_cpu, NULL, ent_ts);
2707 }
2708
2709 /* Find the next real entry, and increment the iterator to the next entry */
2710 void *trace_find_next_entry_inc(struct trace_iterator *iter)
2711 {
2712 iter->ent = __find_next_entry(iter, &iter->cpu,
2713 &iter->lost_events, &iter->ts);
2714
2715 if (iter->ent)
2716 trace_iterator_increment(iter);
2717
2718 return iter->ent ? iter : NULL;
2719 }
2720
2721 static void trace_consume(struct trace_iterator *iter)
2722 {
2723 ring_buffer_consume(iter->trace_buffer->buffer, iter->cpu, &iter->ts,
2724 &iter->lost_events);
2725 }
2726
2727 static void *s_next(struct seq_file *m, void *v, loff_t *pos)
2728 {
2729 struct trace_iterator *iter = m->private;
2730 int i = (int)*pos;
2731 void *ent;
2732
2733 WARN_ON_ONCE(iter->leftover);
2734
2735 (*pos)++;
2736
2737 /* can't go backwards */
2738 if (iter->idx > i)
2739 return NULL;
2740
2741 if (iter->idx < 0)
2742 ent = trace_find_next_entry_inc(iter);
2743 else
2744 ent = iter;
2745
2746 while (ent && iter->idx < i)
2747 ent = trace_find_next_entry_inc(iter);
2748
2749 iter->pos = *pos;
2750
2751 return ent;
2752 }
2753
2754 void tracing_iter_reset(struct trace_iterator *iter, int cpu)
2755 {
2756 struct ring_buffer_event *event;
2757 struct ring_buffer_iter *buf_iter;
2758 unsigned long entries = 0;
2759 u64 ts;
2760
2761 per_cpu_ptr(iter->trace_buffer->data, cpu)->skipped_entries = 0;
2762
2763 buf_iter = trace_buffer_iter(iter, cpu);
2764 if (!buf_iter)
2765 return;
2766
2767 ring_buffer_iter_reset(buf_iter);
2768
2769 /*
2770 * We could have the case with the max latency tracers
2771 * that a reset never took place on a cpu. This is evident
2772 * by the timestamp being before the start of the buffer.
2773 */
2774 while ((event = ring_buffer_iter_peek(buf_iter, &ts))) {
2775 if (ts >= iter->trace_buffer->time_start)
2776 break;
2777 entries++;
2778 ring_buffer_read(buf_iter, NULL);
2779 }
2780
2781 per_cpu_ptr(iter->trace_buffer->data, cpu)->skipped_entries = entries;
2782 }
2783
2784 /*
2785 * The current tracer is copied to avoid a global locking
2786 * all around.
2787 */
2788 static void *s_start(struct seq_file *m, loff_t *pos)
2789 {
2790 struct trace_iterator *iter = m->private;
2791 struct trace_array *tr = iter->tr;
2792 int cpu_file = iter->cpu_file;
2793 void *p = NULL;
2794 loff_t l = 0;
2795 int cpu;
2796
2797 /*
2798 * copy the tracer to avoid using a global lock all around.
2799 * iter->trace is a copy of current_trace, the pointer to the
2800 * name may be used instead of a strcmp(), as iter->trace->name
2801 * will point to the same string as current_trace->name.
2802 */
2803 mutex_lock(&trace_types_lock);
2804 if (unlikely(tr->current_trace && iter->trace->name != tr->current_trace->name))
2805 *iter->trace = *tr->current_trace;
2806 mutex_unlock(&trace_types_lock);
2807
2808 #ifdef CONFIG_TRACER_MAX_TRACE
2809 if (iter->snapshot && iter->trace->use_max_tr)
2810 return ERR_PTR(-EBUSY);
2811 #endif
2812
2813 if (!iter->snapshot)
2814 atomic_inc(&trace_record_cmdline_disabled);
2815
2816 if (*pos != iter->pos) {
2817 iter->ent = NULL;
2818 iter->cpu = 0;
2819 iter->idx = -1;
2820
2821 if (cpu_file == RING_BUFFER_ALL_CPUS) {
2822 for_each_tracing_cpu(cpu)
2823 tracing_iter_reset(iter, cpu);
2824 } else
2825 tracing_iter_reset(iter, cpu_file);
2826
2827 iter->leftover = 0;
2828 for (p = iter; p && l < *pos; p = s_next(m, p, &l))
2829 ;
2830
2831 } else {
2832 /*
2833 * If we overflowed the seq_file before, then we want
2834 * to just reuse the trace_seq buffer again.
2835 */
2836 if (iter->leftover)
2837 p = iter;
2838 else {
2839 l = *pos - 1;
2840 p = s_next(m, p, &l);
2841 }
2842 }
2843
2844 trace_event_read_lock();
2845 trace_access_lock(cpu_file);
2846 return p;
2847 }
2848
2849 static void s_stop(struct seq_file *m, void *p)
2850 {
2851 struct trace_iterator *iter = m->private;
2852
2853 #ifdef CONFIG_TRACER_MAX_TRACE
2854 if (iter->snapshot && iter->trace->use_max_tr)
2855 return;
2856 #endif
2857
2858 if (!iter->snapshot)
2859 atomic_dec(&trace_record_cmdline_disabled);
2860
2861 trace_access_unlock(iter->cpu_file);
2862 trace_event_read_unlock();
2863 }
2864
2865 static void
2866 get_total_entries(struct trace_buffer *buf,
2867 unsigned long *total, unsigned long *entries)
2868 {
2869 unsigned long count;
2870 int cpu;
2871
2872 *total = 0;
2873 *entries = 0;
2874
2875 for_each_tracing_cpu(cpu) {
2876 count = ring_buffer_entries_cpu(buf->buffer, cpu);
2877 /*
2878 * If this buffer has skipped entries, then we hold all
2879 * entries for the trace and we need to ignore the
2880 * ones before the time stamp.
2881 */
2882 if (per_cpu_ptr(buf->data, cpu)->skipped_entries) {
2883 count -= per_cpu_ptr(buf->data, cpu)->skipped_entries;
2884 /* total is the same as the entries */
2885 *total += count;
2886 } else
2887 *total += count +
2888 ring_buffer_overrun_cpu(buf->buffer, cpu);
2889 *entries += count;
2890 }
2891 }
2892
2893 static void print_lat_help_header(struct seq_file *m)
2894 {
2895 seq_puts(m, "# _------=> CPU# \n"
2896 "# / _-----=> irqs-off \n"
2897 "# | / _----=> need-resched \n"
2898 "# || / _---=> hardirq/softirq \n"
2899 "# ||| / _--=> preempt-depth \n"
2900 "# |||| / delay \n"
2901 "# cmd pid ||||| time | caller \n"
2902 "# \\ / ||||| \\ | / \n");
2903 }
2904
2905 static void print_event_info(struct trace_buffer *buf, struct seq_file *m)
2906 {
2907 unsigned long total;
2908 unsigned long entries;
2909
2910 get_total_entries(buf, &total, &entries);
2911 seq_printf(m, "# entries-in-buffer/entries-written: %lu/%lu #P:%d\n",
2912 entries, total, num_online_cpus());
2913 seq_puts(m, "#\n");
2914 }
2915
2916 static void print_func_help_header(struct trace_buffer *buf, struct seq_file *m)
2917 {
2918 print_event_info(buf, m);
2919 seq_puts(m, "# TASK-PID CPU# TIMESTAMP FUNCTION\n"
2920 "# | | | | |\n");
2921 }
2922
2923 static void print_func_help_header_irq(struct trace_buffer *buf, struct seq_file *m)
2924 {
2925 print_event_info(buf, m);
2926 seq_puts(m, "# _-----=> irqs-off\n"
2927 "# / _----=> need-resched\n"
2928 "# | / _---=> hardirq/softirq\n"
2929 "# || / _--=> preempt-depth\n"
2930 "# ||| / delay\n"
2931 "# TASK-PID CPU# |||| TIMESTAMP FUNCTION\n"
2932 "# | | | |||| | |\n");
2933 }
2934
2935 void
2936 print_trace_header(struct seq_file *m, struct trace_iterator *iter)
2937 {
2938 unsigned long sym_flags = (global_trace.trace_flags & TRACE_ITER_SYM_MASK);
2939 struct trace_buffer *buf = iter->trace_buffer;
2940 struct trace_array_cpu *data = per_cpu_ptr(buf->data, buf->cpu);
2941 struct tracer *type = iter->trace;
2942 unsigned long entries;
2943 unsigned long total;
2944 const char *name = "preemption";
2945
2946 name = type->name;
2947
2948 get_total_entries(buf, &total, &entries);
2949
2950 seq_printf(m, "# %s latency trace v1.1.5 on %s\n",
2951 name, UTS_RELEASE);
2952 seq_puts(m, "# -----------------------------------"
2953 "---------------------------------\n");
2954 seq_printf(m, "# latency: %lu us, #%lu/%lu, CPU#%d |"
2955 " (M:%s VP:%d, KP:%d, SP:%d HP:%d",
2956 nsecs_to_usecs(data->saved_latency),
2957 entries,
2958 total,
2959 buf->cpu,
2960 #if defined(CONFIG_PREEMPT_NONE)
2961 "server",
2962 #elif defined(CONFIG_PREEMPT_VOLUNTARY)
2963 "desktop",
2964 #elif defined(CONFIG_PREEMPT)
2965 "preempt",
2966 #else
2967 "unknown",
2968 #endif
2969 /* These are reserved for later use */
2970 0, 0, 0, 0);
2971 #ifdef CONFIG_SMP
2972 seq_printf(m, " #P:%d)\n", num_online_cpus());
2973 #else
2974 seq_puts(m, ")\n");
2975 #endif
2976 seq_puts(m, "# -----------------\n");
2977 seq_printf(m, "# | task: %.16s-%d "
2978 "(uid:%d nice:%ld policy:%ld rt_prio:%ld)\n",
2979 data->comm, data->pid,
2980 from_kuid_munged(seq_user_ns(m), data->uid), data->nice,
2981 data->policy, data->rt_priority);
2982 seq_puts(m, "# -----------------\n");
2983
2984 if (data->critical_start) {
2985 seq_puts(m, "# => started at: ");
2986 seq_print_ip_sym(&iter->seq, data->critical_start, sym_flags);
2987 trace_print_seq(m, &iter->seq);
2988 seq_puts(m, "\n# => ended at: ");
2989 seq_print_ip_sym(&iter->seq, data->critical_end, sym_flags);
2990 trace_print_seq(m, &iter->seq);
2991 seq_puts(m, "\n#\n");
2992 }
2993
2994 seq_puts(m, "#\n");
2995 }
2996
2997 static void test_cpu_buff_start(struct trace_iterator *iter)
2998 {
2999 struct trace_seq *s = &iter->seq;
3000 struct trace_array *tr = iter->tr;
3001
3002 if (!(tr->trace_flags & TRACE_ITER_ANNOTATE))
3003 return;
3004
3005 if (!(iter->iter_flags & TRACE_FILE_ANNOTATE))
3006 return;
3007
3008 if (iter->started && cpumask_test_cpu(iter->cpu, iter->started))
3009 return;
3010
3011 if (per_cpu_ptr(iter->trace_buffer->data, iter->cpu)->skipped_entries)
3012 return;
3013
3014 if (iter->started)
3015 cpumask_set_cpu(iter->cpu, iter->started);
3016
3017 /* Don't print started cpu buffer for the first entry of the trace */
3018 if (iter->idx > 1)
3019 trace_seq_printf(s, "##### CPU %u buffer started ####\n",
3020 iter->cpu);
3021 }
3022
3023 static enum print_line_t print_trace_fmt(struct trace_iterator *iter)
3024 {
3025 struct trace_array *tr = iter->tr;
3026 struct trace_seq *s = &iter->seq;
3027 unsigned long sym_flags = (tr->trace_flags & TRACE_ITER_SYM_MASK);
3028 struct trace_entry *entry;
3029 struct trace_event *event;
3030
3031 entry = iter->ent;
3032
3033 test_cpu_buff_start(iter);
3034
3035 event = ftrace_find_event(entry->type);
3036
3037 if (tr->trace_flags & TRACE_ITER_CONTEXT_INFO) {
3038 if (iter->iter_flags & TRACE_FILE_LAT_FMT)
3039 trace_print_lat_context(iter);
3040 else
3041 trace_print_context(iter);
3042 }
3043
3044 if (trace_seq_has_overflowed(s))
3045 return TRACE_TYPE_PARTIAL_LINE;
3046
3047 if (event)
3048 return event->funcs->trace(iter, sym_flags, event);
3049
3050 trace_seq_printf(s, "Unknown type %d\n", entry->type);
3051
3052 return trace_handle_return(s);
3053 }
3054
3055 static enum print_line_t print_raw_fmt(struct trace_iterator *iter)
3056 {
3057 struct trace_array *tr = iter->tr;
3058 struct trace_seq *s = &iter->seq;
3059 struct trace_entry *entry;
3060 struct trace_event *event;
3061
3062 entry = iter->ent;
3063
3064 if (tr->trace_flags & TRACE_ITER_CONTEXT_INFO)
3065 trace_seq_printf(s, "%d %d %llu ",
3066 entry->pid, iter->cpu, iter->ts);
3067
3068 if (trace_seq_has_overflowed(s))
3069 return TRACE_TYPE_PARTIAL_LINE;
3070
3071 event = ftrace_find_event(entry->type);
3072 if (event)
3073 return event->funcs->raw(iter, 0, event);
3074
3075 trace_seq_printf(s, "%d ?\n", entry->type);
3076
3077 return trace_handle_return(s);
3078 }
3079
3080 static enum print_line_t print_hex_fmt(struct trace_iterator *iter)
3081 {
3082 struct trace_array *tr = iter->tr;
3083 struct trace_seq *s = &iter->seq;
3084 unsigned char newline = '\n';
3085 struct trace_entry *entry;
3086 struct trace_event *event;
3087
3088 entry = iter->ent;
3089
3090 if (tr->trace_flags & TRACE_ITER_CONTEXT_INFO) {
3091 SEQ_PUT_HEX_FIELD(s, entry->pid);
3092 SEQ_PUT_HEX_FIELD(s, iter->cpu);
3093 SEQ_PUT_HEX_FIELD(s, iter->ts);
3094 if (trace_seq_has_overflowed(s))
3095 return TRACE_TYPE_PARTIAL_LINE;
3096 }
3097
3098 event = ftrace_find_event(entry->type);
3099 if (event) {
3100 enum print_line_t ret = event->funcs->hex(iter, 0, event);
3101 if (ret != TRACE_TYPE_HANDLED)
3102 return ret;
3103 }
3104
3105 SEQ_PUT_FIELD(s, newline);
3106
3107 return trace_handle_return(s);
3108 }
3109
3110 static enum print_line_t print_bin_fmt(struct trace_iterator *iter)
3111 {
3112 struct trace_array *tr = iter->tr;
3113 struct trace_seq *s = &iter->seq;
3114 struct trace_entry *entry;
3115 struct trace_event *event;
3116
3117 entry = iter->ent;
3118
3119 if (tr->trace_flags & TRACE_ITER_CONTEXT_INFO) {
3120 SEQ_PUT_FIELD(s, entry->pid);
3121 SEQ_PUT_FIELD(s, iter->cpu);
3122 SEQ_PUT_FIELD(s, iter->ts);
3123 if (trace_seq_has_overflowed(s))
3124 return TRACE_TYPE_PARTIAL_LINE;
3125 }
3126
3127 event = ftrace_find_event(entry->type);
3128 return event ? event->funcs->binary(iter, 0, event) :
3129 TRACE_TYPE_HANDLED;
3130 }
3131
3132 int trace_empty(struct trace_iterator *iter)
3133 {
3134 struct ring_buffer_iter *buf_iter;
3135 int cpu;
3136
3137 /* If we are looking at one CPU buffer, only check that one */
3138 if (iter->cpu_file != RING_BUFFER_ALL_CPUS) {
3139 cpu = iter->cpu_file;
3140 buf_iter = trace_buffer_iter(iter, cpu);
3141 if (buf_iter) {
3142 if (!ring_buffer_iter_empty(buf_iter))
3143 return 0;
3144 } else {
3145 if (!ring_buffer_empty_cpu(iter->trace_buffer->buffer, cpu))
3146 return 0;
3147 }
3148 return 1;
3149 }
3150
3151 for_each_tracing_cpu(cpu) {
3152 buf_iter = trace_buffer_iter(iter, cpu);
3153 if (buf_iter) {
3154 if (!ring_buffer_iter_empty(buf_iter))
3155 return 0;
3156 } else {
3157 if (!ring_buffer_empty_cpu(iter->trace_buffer->buffer, cpu))
3158 return 0;
3159 }
3160 }
3161
3162 return 1;
3163 }
3164
3165 /* Called with trace_event_read_lock() held. */
3166 enum print_line_t print_trace_line(struct trace_iterator *iter)
3167 {
3168 struct trace_array *tr = iter->tr;
3169 unsigned long trace_flags = tr->trace_flags;
3170 enum print_line_t ret;
3171
3172 if (iter->lost_events) {
3173 trace_seq_printf(&iter->seq, "CPU:%d [LOST %lu EVENTS]\n",
3174 iter->cpu, iter->lost_events);
3175 if (trace_seq_has_overflowed(&iter->seq))
3176 return TRACE_TYPE_PARTIAL_LINE;
3177 }
3178
3179 if (iter->trace && iter->trace->print_line) {
3180 ret = iter->trace->print_line(iter);
3181 if (ret != TRACE_TYPE_UNHANDLED)
3182 return ret;
3183 }
3184
3185 if (iter->ent->type == TRACE_BPUTS &&
3186 trace_flags & TRACE_ITER_PRINTK &&
3187 trace_flags & TRACE_ITER_PRINTK_MSGONLY)
3188 return trace_print_bputs_msg_only(iter);
3189
3190 if (iter->ent->type == TRACE_BPRINT &&
3191 trace_flags & TRACE_ITER_PRINTK &&
3192 trace_flags & TRACE_ITER_PRINTK_MSGONLY)
3193 return trace_print_bprintk_msg_only(iter);
3194
3195 if (iter->ent->type == TRACE_PRINT &&
3196 trace_flags & TRACE_ITER_PRINTK &&
3197 trace_flags & TRACE_ITER_PRINTK_MSGONLY)
3198 return trace_print_printk_msg_only(iter);
3199
3200 if (trace_flags & TRACE_ITER_BIN)
3201 return print_bin_fmt(iter);
3202
3203 if (trace_flags & TRACE_ITER_HEX)
3204 return print_hex_fmt(iter);
3205
3206 if (trace_flags & TRACE_ITER_RAW)
3207 return print_raw_fmt(iter);
3208
3209 return print_trace_fmt(iter);
3210 }
3211
3212 void trace_latency_header(struct seq_file *m)
3213 {
3214 struct trace_iterator *iter = m->private;
3215 struct trace_array *tr = iter->tr;
3216
3217 /* print nothing if the buffers are empty */
3218 if (trace_empty(iter))
3219 return;
3220
3221 if (iter->iter_flags & TRACE_FILE_LAT_FMT)
3222 print_trace_header(m, iter);
3223
3224 if (!(tr->trace_flags & TRACE_ITER_VERBOSE))
3225 print_lat_help_header(m);
3226 }
3227
3228 void trace_default_header(struct seq_file *m)
3229 {
3230 struct trace_iterator *iter = m->private;
3231 struct trace_array *tr = iter->tr;
3232 unsigned long trace_flags = tr->trace_flags;
3233
3234 if (!(trace_flags & TRACE_ITER_CONTEXT_INFO))
3235 return;
3236
3237 if (iter->iter_flags & TRACE_FILE_LAT_FMT) {
3238 /* print nothing if the buffers are empty */
3239 if (trace_empty(iter))
3240 return;
3241 print_trace_header(m, iter);
3242 if (!(trace_flags & TRACE_ITER_VERBOSE))
3243 print_lat_help_header(m);
3244 } else {
3245 if (!(trace_flags & TRACE_ITER_VERBOSE)) {
3246 if (trace_flags & TRACE_ITER_IRQ_INFO)
3247 print_func_help_header_irq(iter->trace_buffer, m);
3248 else
3249 print_func_help_header(iter->trace_buffer, m);
3250 }
3251 }
3252 }
3253
3254 static void test_ftrace_alive(struct seq_file *m)
3255 {
3256 if (!ftrace_is_dead())
3257 return;
3258 seq_puts(m, "# WARNING: FUNCTION TRACING IS CORRUPTED\n"
3259 "# MAY BE MISSING FUNCTION EVENTS\n");
3260 }
3261
3262 #ifdef CONFIG_TRACER_MAX_TRACE
3263 static void show_snapshot_main_help(struct seq_file *m)
3264 {
3265 seq_puts(m, "# echo 0 > snapshot : Clears and frees snapshot buffer\n"
3266 "# echo 1 > snapshot : Allocates snapshot buffer, if not already allocated.\n"
3267 "# Takes a snapshot of the main buffer.\n"
3268 "# echo 2 > snapshot : Clears snapshot buffer (but does not allocate or free)\n"
3269 "# (Doesn't have to be '2' works with any number that\n"
3270 "# is not a '0' or '1')\n");
3271 }
3272
3273 static void show_snapshot_percpu_help(struct seq_file *m)
3274 {
3275 seq_puts(m, "# echo 0 > snapshot : Invalid for per_cpu snapshot file.\n");
3276 #ifdef CONFIG_RING_BUFFER_ALLOW_SWAP
3277 seq_puts(m, "# echo 1 > snapshot : Allocates snapshot buffer, if not already allocated.\n"
3278 "# Takes a snapshot of the main buffer for this cpu.\n");
3279 #else
3280 seq_puts(m, "# echo 1 > snapshot : Not supported with this kernel.\n"
3281 "# Must use main snapshot file to allocate.\n");
3282 #endif
3283 seq_puts(m, "# echo 2 > snapshot : Clears this cpu's snapshot buffer (but does not allocate)\n"
3284 "# (Doesn't have to be '2' works with any number that\n"
3285 "# is not a '0' or '1')\n");
3286 }
3287
3288 static void print_snapshot_help(struct seq_file *m, struct trace_iterator *iter)
3289 {
3290 if (iter->tr->allocated_snapshot)
3291 seq_puts(m, "#\n# * Snapshot is allocated *\n#\n");
3292 else
3293 seq_puts(m, "#\n# * Snapshot is freed *\n#\n");
3294
3295 seq_puts(m, "# Snapshot commands:\n");
3296 if (iter->cpu_file == RING_BUFFER_ALL_CPUS)
3297 show_snapshot_main_help(m);
3298 else
3299 show_snapshot_percpu_help(m);
3300 }
3301 #else
3302 /* Should never be called */
3303 static inline void print_snapshot_help(struct seq_file *m, struct trace_iterator *iter) { }
3304 #endif
3305
3306 static int s_show(struct seq_file *m, void *v)
3307 {
3308 struct trace_iterator *iter = v;
3309 int ret;
3310
3311 if (iter->ent == NULL) {
3312 if (iter->tr) {
3313 seq_printf(m, "# tracer: %s\n", iter->trace->name);
3314 seq_puts(m, "#\n");
3315 test_ftrace_alive(m);
3316 }
3317 if (iter->snapshot && trace_empty(iter))
3318 print_snapshot_help(m, iter);
3319 else if (iter->trace && iter->trace->print_header)
3320 iter->trace->print_header(m);
3321 else
3322 trace_default_header(m);
3323
3324 } else if (iter->leftover) {
3325 /*
3326 * If we filled the seq_file buffer earlier, we
3327 * want to just show it now.
3328 */
3329 ret = trace_print_seq(m, &iter->seq);
3330
3331 /* ret should this time be zero, but you never know */
3332 iter->leftover = ret;
3333
3334 } else {
3335 print_trace_line(iter);
3336 ret = trace_print_seq(m, &iter->seq);
3337 /*
3338 * If we overflow the seq_file buffer, then it will
3339 * ask us for this data again at start up.
3340 * Use that instead.
3341 * ret is 0 if seq_file write succeeded.
3342 * -1 otherwise.
3343 */
3344 iter->leftover = ret;
3345 }
3346
3347 return 0;
3348 }
3349
3350 /*
3351 * Should be used after trace_array_get(), trace_types_lock
3352 * ensures that i_cdev was already initialized.
3353 */
3354 static inline int tracing_get_cpu(struct inode *inode)
3355 {
3356 if (inode->i_cdev) /* See trace_create_cpu_file() */
3357 return (long)inode->i_cdev - 1;
3358 return RING_BUFFER_ALL_CPUS;
3359 }
3360
3361 static const struct seq_operations tracer_seq_ops = {
3362 .start = s_start,
3363 .next = s_next,
3364 .stop = s_stop,
3365 .show = s_show,
3366 };
3367
3368 static struct trace_iterator *
3369 __tracing_open(struct inode *inode, struct file *file, bool snapshot)
3370 {
3371 struct trace_array *tr = inode->i_private;
3372 struct trace_iterator *iter;
3373 int cpu;
3374
3375 if (tracing_disabled)
3376 return ERR_PTR(-ENODEV);
3377
3378 iter = __seq_open_private(file, &tracer_seq_ops, sizeof(*iter));
3379 if (!iter)
3380 return ERR_PTR(-ENOMEM);
3381
3382 iter->buffer_iter = kcalloc(nr_cpu_ids, sizeof(*iter->buffer_iter),
3383 GFP_KERNEL);
3384 if (!iter->buffer_iter)
3385 goto release;
3386
3387 /*
3388 * We make a copy of the current tracer to avoid concurrent
3389 * changes on it while we are reading.
3390 */
3391 mutex_lock(&trace_types_lock);
3392 iter->trace = kzalloc(sizeof(*iter->trace), GFP_KERNEL);
3393 if (!iter->trace)
3394 goto fail;
3395
3396 *iter->trace = *tr->current_trace;
3397
3398 if (!zalloc_cpumask_var(&iter->started, GFP_KERNEL))
3399 goto fail;
3400
3401 iter->tr = tr;
3402
3403 #ifdef CONFIG_TRACER_MAX_TRACE
3404 /* Currently only the top directory has a snapshot */
3405 if (tr->current_trace->print_max || snapshot)
3406 iter->trace_buffer = &tr->max_buffer;
3407 else
3408 #endif
3409 iter->trace_buffer = &tr->trace_buffer;
3410 iter->snapshot = snapshot;
3411 iter->pos = -1;
3412 iter->cpu_file = tracing_get_cpu(inode);
3413 mutex_init(&iter->mutex);
3414
3415 /* Notify the tracer early; before we stop tracing. */
3416 if (iter->trace && iter->trace->open)
3417 iter->trace->open(iter);
3418
3419 /* Annotate start of buffers if we had overruns */
3420 if (ring_buffer_overruns(iter->trace_buffer->buffer))
3421 iter->iter_flags |= TRACE_FILE_ANNOTATE;
3422
3423 /* Output in nanoseconds only if we are using a clock in nanoseconds. */
3424 if (trace_clocks[tr->clock_id].in_ns)
3425 iter->iter_flags |= TRACE_FILE_TIME_IN_NS;
3426
3427 /* stop the trace while dumping if we are not opening "snapshot" */
3428 if (!iter->snapshot)
3429 tracing_stop_tr(tr);
3430
3431 if (iter->cpu_file == RING_BUFFER_ALL_CPUS) {
3432 for_each_tracing_cpu(cpu) {
3433 iter->buffer_iter[cpu] =
3434 ring_buffer_read_prepare(iter->trace_buffer->buffer, cpu);
3435 }
3436 ring_buffer_read_prepare_sync();
3437 for_each_tracing_cpu(cpu) {
3438 ring_buffer_read_start(iter->buffer_iter[cpu]);
3439 tracing_iter_reset(iter, cpu);
3440 }
3441 } else {
3442 cpu = iter->cpu_file;
3443 iter->buffer_iter[cpu] =
3444 ring_buffer_read_prepare(iter->trace_buffer->buffer, cpu);
3445 ring_buffer_read_prepare_sync();
3446 ring_buffer_read_start(iter->buffer_iter[cpu]);
3447 tracing_iter_reset(iter, cpu);
3448 }
3449
3450 mutex_unlock(&trace_types_lock);
3451
3452 return iter;
3453
3454 fail:
3455 mutex_unlock(&trace_types_lock);
3456 kfree(iter->trace);
3457 kfree(iter->buffer_iter);
3458 release:
3459 seq_release_private(inode, file);
3460 return ERR_PTR(-ENOMEM);
3461 }
3462
3463 int tracing_open_generic(struct inode *inode, struct file *filp)
3464 {
3465 if (tracing_disabled)
3466 return -ENODEV;
3467
3468 filp->private_data = inode->i_private;
3469 return 0;
3470 }
3471
3472 bool tracing_is_disabled(void)
3473 {
3474 return (tracing_disabled) ? true: false;
3475 }
3476
3477 /*
3478 * Open and update trace_array ref count.
3479 * Must have the current trace_array passed to it.
3480 */
3481 static int tracing_open_generic_tr(struct inode *inode, struct file *filp)
3482 {
3483 struct trace_array *tr = inode->i_private;
3484
3485 if (tracing_disabled)
3486 return -ENODEV;
3487
3488 if (trace_array_get(tr) < 0)
3489 return -ENODEV;
3490
3491 filp->private_data = inode->i_private;
3492
3493 return 0;
3494 }
3495
3496 static int tracing_release(struct inode *inode, struct file *file)
3497 {
3498 struct trace_array *tr = inode->i_private;
3499 struct seq_file *m = file->private_data;
3500 struct trace_iterator *iter;
3501 int cpu;
3502
3503 if (!(file->f_mode & FMODE_READ)) {
3504 trace_array_put(tr);
3505 return 0;
3506 }
3507
3508 /* Writes do not use seq_file */
3509 iter = m->private;
3510 mutex_lock(&trace_types_lock);
3511
3512 for_each_tracing_cpu(cpu) {
3513 if (iter->buffer_iter[cpu])
3514 ring_buffer_read_finish(iter->buffer_iter[cpu]);
3515 }
3516
3517 if (iter->trace && iter->trace->close)
3518 iter->trace->close(iter);
3519
3520 if (!iter->snapshot)
3521 /* reenable tracing if it was previously enabled */
3522 tracing_start_tr(tr);
3523
3524 __trace_array_put(tr);
3525
3526 mutex_unlock(&trace_types_lock);
3527
3528 mutex_destroy(&iter->mutex);
3529 free_cpumask_var(iter->started);
3530 kfree(iter->trace);
3531 kfree(iter->buffer_iter);
3532 seq_release_private(inode, file);
3533
3534 return 0;
3535 }
3536
3537 static int tracing_release_generic_tr(struct inode *inode, struct file *file)
3538 {
3539 struct trace_array *tr = inode->i_private;
3540
3541 trace_array_put(tr);
3542 return 0;
3543 }
3544
3545 static int tracing_single_release_tr(struct inode *inode, struct file *file)
3546 {
3547 struct trace_array *tr = inode->i_private;
3548
3549 trace_array_put(tr);
3550
3551 return single_release(inode, file);
3552 }
3553
3554 static int tracing_open(struct inode *inode, struct file *file)
3555 {
3556 struct trace_array *tr = inode->i_private;
3557 struct trace_iterator *iter;
3558 int ret = 0;
3559
3560 if (trace_array_get(tr) < 0)
3561 return -ENODEV;
3562
3563 /* If this file was open for write, then erase contents */
3564 if ((file->f_mode & FMODE_WRITE) && (file->f_flags & O_TRUNC)) {
3565 int cpu = tracing_get_cpu(inode);
3566
3567 if (cpu == RING_BUFFER_ALL_CPUS)
3568 tracing_reset_online_cpus(&tr->trace_buffer);
3569 else
3570 tracing_reset(&tr->trace_buffer, cpu);
3571 }
3572
3573 if (file->f_mode & FMODE_READ) {
3574 iter = __tracing_open(inode, file, false);
3575 if (IS_ERR(iter))
3576 ret = PTR_ERR(iter);
3577 else if (tr->trace_flags & TRACE_ITER_LATENCY_FMT)
3578 iter->iter_flags |= TRACE_FILE_LAT_FMT;
3579 }
3580
3581 if (ret < 0)
3582 trace_array_put(tr);
3583
3584 return ret;
3585 }
3586
3587 /*
3588 * Some tracers are not suitable for instance buffers.
3589 * A tracer is always available for the global array (toplevel)
3590 * or if it explicitly states that it is.
3591 */
3592 static bool
3593 trace_ok_for_array(struct tracer *t, struct trace_array *tr)
3594 {
3595 return (tr->flags & TRACE_ARRAY_FL_GLOBAL) || t->allow_instances;
3596 }
3597
3598 /* Find the next tracer that this trace array may use */
3599 static struct tracer *
3600 get_tracer_for_array(struct trace_array *tr, struct tracer *t)
3601 {
3602 while (t && !trace_ok_for_array(t, tr))
3603 t = t->next;
3604
3605 return t;
3606 }
3607
3608 static void *
3609 t_next(struct seq_file *m, void *v, loff_t *pos)
3610 {
3611 struct trace_array *tr = m->private;
3612 struct tracer *t = v;
3613
3614 (*pos)++;
3615
3616 if (t)
3617 t = get_tracer_for_array(tr, t->next);
3618
3619 return t;
3620 }
3621
3622 static void *t_start(struct seq_file *m, loff_t *pos)
3623 {
3624 struct trace_array *tr = m->private;
3625 struct tracer *t;
3626 loff_t l = 0;
3627
3628 mutex_lock(&trace_types_lock);
3629
3630 t = get_tracer_for_array(tr, trace_types);
3631 for (; t && l < *pos; t = t_next(m, t, &l))
3632 ;
3633
3634 return t;
3635 }
3636
3637 static void t_stop(struct seq_file *m, void *p)
3638 {
3639 mutex_unlock(&trace_types_lock);
3640 }
3641
3642 static int t_show(struct seq_file *m, void *v)
3643 {
3644 struct tracer *t = v;
3645
3646 if (!t)
3647 return 0;
3648
3649 seq_puts(m, t->name);
3650 if (t->next)
3651 seq_putc(m, ' ');
3652 else
3653 seq_putc(m, '\n');
3654
3655 return 0;
3656 }
3657
3658 static const struct seq_operations show_traces_seq_ops = {
3659 .start = t_start,
3660 .next = t_next,
3661 .stop = t_stop,
3662 .show = t_show,
3663 };
3664
3665 static int show_traces_open(struct inode *inode, struct file *file)
3666 {
3667 struct trace_array *tr = inode->i_private;
3668 struct seq_file *m;
3669 int ret;
3670
3671 if (tracing_disabled)
3672 return -ENODEV;
3673
3674 ret = seq_open(file, &show_traces_seq_ops);
3675 if (ret)
3676 return ret;
3677
3678 m = file->private_data;
3679 m->private = tr;
3680
3681 return 0;
3682 }
3683
3684 static ssize_t
3685 tracing_write_stub(struct file *filp, const char __user *ubuf,
3686 size_t count, loff_t *ppos)
3687 {
3688 return count;
3689 }
3690
3691 loff_t tracing_lseek(struct file *file, loff_t offset, int whence)
3692 {
3693 int ret;
3694
3695 if (file->f_mode & FMODE_READ)
3696 ret = seq_lseek(file, offset, whence);
3697 else
3698 file->f_pos = ret = 0;
3699
3700 return ret;
3701 }
3702
3703 static const struct file_operations tracing_fops = {
3704 .open = tracing_open,
3705 .read = seq_read,
3706 .write = tracing_write_stub,
3707 .llseek = tracing_lseek,
3708 .release = tracing_release,
3709 };
3710
3711 static const struct file_operations show_traces_fops = {
3712 .open = show_traces_open,
3713 .read = seq_read,
3714 .release = seq_release,
3715 .llseek = seq_lseek,
3716 };
3717
3718 /*
3719 * The tracer itself will not take this lock, but still we want
3720 * to provide a consistent cpumask to user-space:
3721 */
3722 static DEFINE_MUTEX(tracing_cpumask_update_lock);
3723
3724 /*
3725 * Temporary storage for the character representation of the
3726 * CPU bitmask (and one more byte for the newline):
3727 */
3728 static char mask_str[NR_CPUS + 1];
3729
3730 static ssize_t
3731 tracing_cpumask_read(struct file *filp, char __user *ubuf,
3732 size_t count, loff_t *ppos)
3733 {
3734 struct trace_array *tr = file_inode(filp)->i_private;
3735 int len;
3736
3737 mutex_lock(&tracing_cpumask_update_lock);
3738
3739 len = snprintf(mask_str, count, "%*pb\n",
3740 cpumask_pr_args(tr->tracing_cpumask));
3741 if (len >= count) {
3742 count = -EINVAL;
3743 goto out_err;
3744 }
3745 count = simple_read_from_buffer(ubuf, count, ppos, mask_str, NR_CPUS+1);
3746
3747 out_err:
3748 mutex_unlock(&tracing_cpumask_update_lock);
3749
3750 return count;
3751 }
3752
3753 static ssize_t
3754 tracing_cpumask_write(struct file *filp, const char __user *ubuf,
3755 size_t count, loff_t *ppos)
3756 {
3757 struct trace_array *tr = file_inode(filp)->i_private;
3758 cpumask_var_t tracing_cpumask_new;
3759 int err, cpu;
3760
3761 if (!alloc_cpumask_var(&tracing_cpumask_new, GFP_KERNEL))
3762 return -ENOMEM;
3763
3764 err = cpumask_parse_user(ubuf, count, tracing_cpumask_new);
3765 if (err)
3766 goto err_unlock;
3767
3768 mutex_lock(&tracing_cpumask_update_lock);
3769
3770 local_irq_disable();
3771 arch_spin_lock(&tr->max_lock);
3772 for_each_tracing_cpu(cpu) {
3773 /*
3774 * Increase/decrease the disabled counter if we are
3775 * about to flip a bit in the cpumask:
3776 */
3777 if (cpumask_test_cpu(cpu, tr->tracing_cpumask) &&
3778 !cpumask_test_cpu(cpu, tracing_cpumask_new)) {
3779 atomic_inc(&per_cpu_ptr(tr->trace_buffer.data, cpu)->disabled);
3780 ring_buffer_record_disable_cpu(tr->trace_buffer.buffer, cpu);
3781 }
3782 if (!cpumask_test_cpu(cpu, tr->tracing_cpumask) &&
3783 cpumask_test_cpu(cpu, tracing_cpumask_new)) {
3784 atomic_dec(&per_cpu_ptr(tr->trace_buffer.data, cpu)->disabled);
3785 ring_buffer_record_enable_cpu(tr->trace_buffer.buffer, cpu);
3786 }
3787 }
3788 arch_spin_unlock(&tr->max_lock);
3789 local_irq_enable();
3790
3791 cpumask_copy(tr->tracing_cpumask, tracing_cpumask_new);
3792
3793 mutex_unlock(&tracing_cpumask_update_lock);
3794 free_cpumask_var(tracing_cpumask_new);
3795
3796 return count;
3797
3798 err_unlock:
3799 free_cpumask_var(tracing_cpumask_new);
3800
3801 return err;
3802 }
3803
3804 static const struct file_operations tracing_cpumask_fops = {
3805 .open = tracing_open_generic_tr,
3806 .read = tracing_cpumask_read,
3807 .write = tracing_cpumask_write,
3808 .release = tracing_release_generic_tr,
3809 .llseek = generic_file_llseek,
3810 };
3811
3812 static int tracing_trace_options_show(struct seq_file *m, void *v)
3813 {
3814 struct tracer_opt *trace_opts;
3815 struct trace_array *tr = m->private;
3816 u32 tracer_flags;
3817 int i;
3818
3819 mutex_lock(&trace_types_lock);
3820 tracer_flags = tr->current_trace->flags->val;
3821 trace_opts = tr->current_trace->flags->opts;
3822
3823 for (i = 0; trace_options[i]; i++) {
3824 if (tr->trace_flags & (1 << i))
3825 seq_printf(m, "%s\n", trace_options[i]);
3826 else
3827 seq_printf(m, "no%s\n", trace_options[i]);
3828 }
3829
3830 for (i = 0; trace_opts[i].name; i++) {
3831 if (tracer_flags & trace_opts[i].bit)
3832 seq_printf(m, "%s\n", trace_opts[i].name);
3833 else
3834 seq_printf(m, "no%s\n", trace_opts[i].name);
3835 }
3836 mutex_unlock(&trace_types_lock);
3837
3838 return 0;
3839 }
3840
3841 static int __set_tracer_option(struct trace_array *tr,
3842 struct tracer_flags *tracer_flags,
3843 struct tracer_opt *opts, int neg)
3844 {
3845 struct tracer *trace = tracer_flags->trace;
3846 int ret;
3847
3848 ret = trace->set_flag(tr, tracer_flags->val, opts->bit, !neg);
3849 if (ret)
3850 return ret;
3851
3852 if (neg)
3853 tracer_flags->val &= ~opts->bit;
3854 else
3855 tracer_flags->val |= opts->bit;
3856 return 0;
3857 }
3858
3859 /* Try to assign a tracer specific option */
3860 static int set_tracer_option(struct trace_array *tr, char *cmp, int neg)
3861 {
3862 struct tracer *trace = tr->current_trace;
3863 struct tracer_flags *tracer_flags = trace->flags;
3864 struct tracer_opt *opts = NULL;
3865 int i;
3866
3867 for (i = 0; tracer_flags->opts[i].name; i++) {
3868 opts = &tracer_flags->opts[i];
3869
3870 if (strcmp(cmp, opts->name) == 0)
3871 return __set_tracer_option(tr, trace->flags, opts, neg);
3872 }
3873
3874 return -EINVAL;
3875 }
3876
3877 /* Some tracers require overwrite to stay enabled */
3878 int trace_keep_overwrite(struct tracer *tracer, u32 mask, int set)
3879 {
3880 if (tracer->enabled && (mask & TRACE_ITER_OVERWRITE) && !set)
3881 return -1;
3882
3883 return 0;
3884 }
3885
3886 int set_tracer_flag(struct trace_array *tr, unsigned int mask, int enabled)
3887 {
3888 /* do nothing if flag is already set */
3889 if (!!(tr->trace_flags & mask) == !!enabled)
3890 return 0;
3891
3892 /* Give the tracer a chance to approve the change */
3893 if (tr->current_trace->flag_changed)
3894 if (tr->current_trace->flag_changed(tr, mask, !!enabled))
3895 return -EINVAL;
3896
3897 if (enabled)
3898 tr->trace_flags |= mask;
3899 else
3900 tr->trace_flags &= ~mask;
3901
3902 if (mask == TRACE_ITER_RECORD_CMD)
3903 trace_event_enable_cmd_record(enabled);
3904
3905 if (mask == TRACE_ITER_EVENT_FORK)
3906 trace_event_follow_fork(tr, enabled);
3907
3908 if (mask == TRACE_ITER_OVERWRITE) {
3909 ring_buffer_change_overwrite(tr->trace_buffer.buffer, enabled);
3910 #ifdef CONFIG_TRACER_MAX_TRACE
3911 ring_buffer_change_overwrite(tr->max_buffer.buffer, enabled);
3912 #endif
3913 }
3914
3915 if (mask == TRACE_ITER_PRINTK) {
3916 trace_printk_start_stop_comm(enabled);
3917 trace_printk_control(enabled);
3918 }
3919
3920 return 0;
3921 }
3922
3923 static int trace_set_options(struct trace_array *tr, char *option)
3924 {
3925 char *cmp;
3926 int neg = 0;
3927 int ret = -ENODEV;
3928 int i;
3929 size_t orig_len = strlen(option);
3930
3931 cmp = strstrip(option);
3932
3933 if (strncmp(cmp, "no", 2) == 0) {
3934 neg = 1;
3935 cmp += 2;
3936 }
3937
3938 mutex_lock(&trace_types_lock);
3939
3940 for (i = 0; trace_options[i]; i++) {
3941 if (strcmp(cmp, trace_options[i]) == 0) {
3942 ret = set_tracer_flag(tr, 1 << i, !neg);
3943 break;
3944 }
3945 }
3946
3947 /* If no option could be set, test the specific tracer options */
3948 if (!trace_options[i])
3949 ret = set_tracer_option(tr, cmp, neg);
3950
3951 mutex_unlock(&trace_types_lock);
3952
3953 /*
3954 * If the first trailing whitespace is replaced with '\0' by strstrip,
3955 * turn it back into a space.
3956 */
3957 if (orig_len > strlen(option))
3958 option[strlen(option)] = ' ';
3959
3960 return ret;
3961 }
3962
3963 static void __init apply_trace_boot_options(void)
3964 {
3965 char *buf = trace_boot_options_buf;
3966 char *option;
3967
3968 while (true) {
3969 option = strsep(&buf, ",");
3970
3971 if (!option)
3972 break;
3973
3974 if (*option)
3975 trace_set_options(&global_trace, option);
3976
3977 /* Put back the comma to allow this to be called again */
3978 if (buf)
3979 *(buf - 1) = ',';
3980 }
3981 }
3982
3983 static ssize_t
3984 tracing_trace_options_write(struct file *filp, const char __user *ubuf,
3985 size_t cnt, loff_t *ppos)
3986 {
3987 struct seq_file *m = filp->private_data;
3988 struct trace_array *tr = m->private;
3989 char buf[64];
3990 int ret;
3991
3992 if (cnt >= sizeof(buf))
3993 return -EINVAL;
3994
3995 if (copy_from_user(buf, ubuf, cnt))
3996 return -EFAULT;
3997
3998 buf[cnt] = 0;
3999
4000 ret = trace_set_options(tr, buf);
4001 if (ret < 0)
4002 return ret;
4003
4004 *ppos += cnt;
4005
4006 return cnt;
4007 }
4008
4009 static int tracing_trace_options_open(struct inode *inode, struct file *file)
4010 {
4011 struct trace_array *tr = inode->i_private;
4012 int ret;
4013
4014 if (tracing_disabled)
4015 return -ENODEV;
4016
4017 if (trace_array_get(tr) < 0)
4018 return -ENODEV;
4019
4020 ret = single_open(file, tracing_trace_options_show, inode->i_private);
4021 if (ret < 0)
4022 trace_array_put(tr);
4023
4024 return ret;
4025 }
4026
4027 static const struct file_operations tracing_iter_fops = {
4028 .open = tracing_trace_options_open,
4029 .read = seq_read,
4030 .llseek = seq_lseek,
4031 .release = tracing_single_release_tr,
4032 .write = tracing_trace_options_write,
4033 };
4034
4035 static const char readme_msg[] =
4036 "tracing mini-HOWTO:\n\n"
4037 "# echo 0 > tracing_on : quick way to disable tracing\n"
4038 "# echo 1 > tracing_on : quick way to re-enable tracing\n\n"
4039 " Important files:\n"
4040 " trace\t\t\t- The static contents of the buffer\n"
4041 "\t\t\t To clear the buffer write into this file: echo > trace\n"
4042 " trace_pipe\t\t- A consuming read to see the contents of the buffer\n"
4043 " current_tracer\t- function and latency tracers\n"
4044 " available_tracers\t- list of configured tracers for current_tracer\n"
4045 " buffer_size_kb\t- view and modify size of per cpu buffer\n"
4046 " buffer_total_size_kb - view total size of all cpu buffers\n\n"
4047 " trace_clock\t\t-change the clock used to order events\n"
4048 " local: Per cpu clock but may not be synced across CPUs\n"
4049 " global: Synced across CPUs but slows tracing down.\n"
4050 " counter: Not a clock, but just an increment\n"
4051 " uptime: Jiffy counter from time of boot\n"
4052 " perf: Same clock that perf events use\n"
4053 #ifdef CONFIG_X86_64
4054 " x86-tsc: TSC cycle counter\n"
4055 #endif
4056 "\n trace_marker\t\t- Writes into this file writes into the kernel buffer\n"
4057 " tracing_cpumask\t- Limit which CPUs to trace\n"
4058 " instances\t\t- Make sub-buffers with: mkdir instances/foo\n"
4059 "\t\t\t Remove sub-buffer with rmdir\n"
4060 " trace_options\t\t- Set format or modify how tracing happens\n"
4061 "\t\t\t Disable an option by adding a suffix 'no' to the\n"
4062 "\t\t\t option name\n"
4063 " saved_cmdlines_size\t- echo command number in here to store comm-pid list\n"
4064 #ifdef CONFIG_DYNAMIC_FTRACE
4065 "\n available_filter_functions - list of functions that can be filtered on\n"
4066 " set_ftrace_filter\t- echo function name in here to only trace these\n"
4067 "\t\t\t functions\n"
4068 "\t accepts: func_full_name, *func_end, func_begin*, *func_middle*\n"
4069 "\t modules: Can select a group via module\n"
4070 "\t Format: :mod:<module-name>\n"
4071 "\t example: echo :mod:ext3 > set_ftrace_filter\n"
4072 "\t triggers: a command to perform when function is hit\n"
4073 "\t Format: <function>:<trigger>[:count]\n"
4074 "\t trigger: traceon, traceoff\n"
4075 "\t\t enable_event:<system>:<event>\n"
4076 "\t\t disable_event:<system>:<event>\n"
4077 #ifdef CONFIG_STACKTRACE
4078 "\t\t stacktrace\n"
4079 #endif
4080 #ifdef CONFIG_TRACER_SNAPSHOT
4081 "\t\t snapshot\n"
4082 #endif
4083 "\t\t dump\n"
4084 "\t\t cpudump\n"
4085 "\t example: echo do_fault:traceoff > set_ftrace_filter\n"
4086 "\t echo do_trap:traceoff:3 > set_ftrace_filter\n"
4087 "\t The first one will disable tracing every time do_fault is hit\n"
4088 "\t The second will disable tracing at most 3 times when do_trap is hit\n"
4089 "\t The first time do trap is hit and it disables tracing, the\n"
4090 "\t counter will decrement to 2. If tracing is already disabled,\n"
4091 "\t the counter will not decrement. It only decrements when the\n"
4092 "\t trigger did work\n"
4093 "\t To remove trigger without count:\n"
4094 "\t echo '!<function>:<trigger> > set_ftrace_filter\n"
4095 "\t To remove trigger with a count:\n"
4096 "\t echo '!<function>:<trigger>:0 > set_ftrace_filter\n"
4097 " set_ftrace_notrace\t- echo function name in here to never trace.\n"
4098 "\t accepts: func_full_name, *func_end, func_begin*, *func_middle*\n"
4099 "\t modules: Can select a group via module command :mod:\n"
4100 "\t Does not accept triggers\n"
4101 #endif /* CONFIG_DYNAMIC_FTRACE */
4102 #ifdef CONFIG_FUNCTION_TRACER
4103 " set_ftrace_pid\t- Write pid(s) to only function trace those pids\n"
4104 "\t\t (function)\n"
4105 #endif
4106 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
4107 " set_graph_function\t- Trace the nested calls of a function (function_graph)\n"
4108 " set_graph_notrace\t- Do not trace the nested calls of a function (function_graph)\n"
4109 " max_graph_depth\t- Trace a limited depth of nested calls (0 is unlimited)\n"
4110 #endif
4111 #ifdef CONFIG_TRACER_SNAPSHOT
4112 "\n snapshot\t\t- Like 'trace' but shows the content of the static\n"
4113 "\t\t\t snapshot buffer. Read the contents for more\n"
4114 "\t\t\t information\n"
4115 #endif
4116 #ifdef CONFIG_STACK_TRACER
4117 " stack_trace\t\t- Shows the max stack trace when active\n"
4118 " stack_max_size\t- Shows current max stack size that was traced\n"
4119 "\t\t\t Write into this file to reset the max size (trigger a\n"
4120 "\t\t\t new trace)\n"
4121 #ifdef CONFIG_DYNAMIC_FTRACE
4122 " stack_trace_filter\t- Like set_ftrace_filter but limits what stack_trace\n"
4123 "\t\t\t traces\n"
4124 #endif
4125 #endif /* CONFIG_STACK_TRACER */
4126 " events/\t\t- Directory containing all trace event subsystems:\n"
4127 " enable\t\t- Write 0/1 to enable/disable tracing of all events\n"
4128 " events/<system>/\t- Directory containing all trace events for <system>:\n"
4129 " enable\t\t- Write 0/1 to enable/disable tracing of all <system>\n"
4130 "\t\t\t events\n"
4131 " filter\t\t- If set, only events passing filter are traced\n"
4132 " events/<system>/<event>/\t- Directory containing control files for\n"
4133 "\t\t\t <event>:\n"
4134 " enable\t\t- Write 0/1 to enable/disable tracing of <event>\n"
4135 " filter\t\t- If set, only events passing filter are traced\n"
4136 " trigger\t\t- If set, a command to perform when event is hit\n"
4137 "\t Format: <trigger>[:count][if <filter>]\n"
4138 "\t trigger: traceon, traceoff\n"
4139 "\t enable_event:<system>:<event>\n"
4140 "\t disable_event:<system>:<event>\n"
4141 #ifdef CONFIG_HIST_TRIGGERS
4142 "\t enable_hist:<system>:<event>\n"
4143 "\t disable_hist:<system>:<event>\n"
4144 #endif
4145 #ifdef CONFIG_STACKTRACE
4146 "\t\t stacktrace\n"
4147 #endif
4148 #ifdef CONFIG_TRACER_SNAPSHOT
4149 "\t\t snapshot\n"
4150 #endif
4151 #ifdef CONFIG_HIST_TRIGGERS
4152 "\t\t hist (see below)\n"
4153 #endif
4154 "\t example: echo traceoff > events/block/block_unplug/trigger\n"
4155 "\t echo traceoff:3 > events/block/block_unplug/trigger\n"
4156 "\t echo 'enable_event:kmem:kmalloc:3 if nr_rq > 1' > \\\n"
4157 "\t events/block/block_unplug/trigger\n"
4158 "\t The first disables tracing every time block_unplug is hit.\n"
4159 "\t The second disables tracing the first 3 times block_unplug is hit.\n"
4160 "\t The third enables the kmalloc event the first 3 times block_unplug\n"
4161 "\t is hit and has value of greater than 1 for the 'nr_rq' event field.\n"
4162 "\t Like function triggers, the counter is only decremented if it\n"
4163 "\t enabled or disabled tracing.\n"
4164 "\t To remove a trigger without a count:\n"
4165 "\t echo '!<trigger> > <system>/<event>/trigger\n"
4166 "\t To remove a trigger with a count:\n"
4167 "\t echo '!<trigger>:0 > <system>/<event>/trigger\n"
4168 "\t Filters can be ignored when removing a trigger.\n"
4169 #ifdef CONFIG_HIST_TRIGGERS
4170 " hist trigger\t- If set, event hits are aggregated into a hash table\n"
4171 "\t Format: hist:keys=<field1[,field2,...]>\n"
4172 "\t [:values=<field1[,field2,...]>]\n"
4173 "\t [:sort=<field1[,field2,...]>]\n"
4174 "\t [:size=#entries]\n"
4175 "\t [:pause][:continue][:clear]\n"
4176 "\t [:name=histname1]\n"
4177 "\t [if <filter>]\n\n"
4178 "\t When a matching event is hit, an entry is added to a hash\n"
4179 "\t table using the key(s) and value(s) named, and the value of a\n"
4180 "\t sum called 'hitcount' is incremented. Keys and values\n"
4181 "\t correspond to fields in the event's format description. Keys\n"
4182 "\t can be any field, or the special string 'stacktrace'.\n"
4183 "\t Compound keys consisting of up to two fields can be specified\n"
4184 "\t by the 'keys' keyword. Values must correspond to numeric\n"
4185 "\t fields. Sort keys consisting of up to two fields can be\n"
4186 "\t specified using the 'sort' keyword. The sort direction can\n"
4187 "\t be modified by appending '.descending' or '.ascending' to a\n"
4188 "\t sort field. The 'size' parameter can be used to specify more\n"
4189 "\t or fewer than the default 2048 entries for the hashtable size.\n"
4190 "\t If a hist trigger is given a name using the 'name' parameter,\n"
4191 "\t its histogram data will be shared with other triggers of the\n"
4192 "\t same name, and trigger hits will update this common data.\n\n"
4193 "\t Reading the 'hist' file for the event will dump the hash\n"
4194 "\t table in its entirety to stdout. If there are multiple hist\n"
4195 "\t triggers attached to an event, there will be a table for each\n"
4196 "\t trigger in the output. The table displayed for a named\n"
4197 "\t trigger will be the same as any other instance having the\n"
4198 "\t same name. The default format used to display a given field\n"
4199 "\t can be modified by appending any of the following modifiers\n"
4200 "\t to the field name, as applicable:\n\n"
4201 "\t .hex display a number as a hex value\n"
4202 "\t .sym display an address as a symbol\n"
4203 "\t .sym-offset display an address as a symbol and offset\n"
4204 "\t .execname display a common_pid as a program name\n"
4205 "\t .syscall display a syscall id as a syscall name\n\n"
4206 "\t .log2 display log2 value rather than raw number\n\n"
4207 "\t The 'pause' parameter can be used to pause an existing hist\n"
4208 "\t trigger or to start a hist trigger but not log any events\n"
4209 "\t until told to do so. 'continue' can be used to start or\n"
4210 "\t restart a paused hist trigger.\n\n"
4211 "\t The 'clear' parameter will clear the contents of a running\n"
4212 "\t hist trigger and leave its current paused/active state\n"
4213 "\t unchanged.\n\n"
4214 "\t The enable_hist and disable_hist triggers can be used to\n"
4215 "\t have one event conditionally start and stop another event's\n"
4216 "\t already-attached hist trigger. The syntax is analagous to\n"
4217 "\t the enable_event and disable_event triggers.\n"
4218 #endif
4219 ;
4220
4221 static ssize_t
4222 tracing_readme_read(struct file *filp, char __user *ubuf,
4223 size_t cnt, loff_t *ppos)
4224 {
4225 return simple_read_from_buffer(ubuf, cnt, ppos,
4226 readme_msg, strlen(readme_msg));
4227 }
4228
4229 static const struct file_operations tracing_readme_fops = {
4230 .open = tracing_open_generic,
4231 .read = tracing_readme_read,
4232 .llseek = generic_file_llseek,
4233 };
4234
4235 static void *saved_cmdlines_next(struct seq_file *m, void *v, loff_t *pos)
4236 {
4237 unsigned int *ptr = v;
4238
4239 if (*pos || m->count)
4240 ptr++;
4241
4242 (*pos)++;
4243
4244 for (; ptr < &savedcmd->map_cmdline_to_pid[savedcmd->cmdline_num];
4245 ptr++) {
4246 if (*ptr == -1 || *ptr == NO_CMDLINE_MAP)
4247 continue;
4248
4249 return ptr;
4250 }
4251
4252 return NULL;
4253 }
4254
4255 static void *saved_cmdlines_start(struct seq_file *m, loff_t *pos)
4256 {
4257 void *v;
4258 loff_t l = 0;
4259
4260 preempt_disable();
4261 arch_spin_lock(&trace_cmdline_lock);
4262
4263 v = &savedcmd->map_cmdline_to_pid[0];
4264 while (l <= *pos) {
4265 v = saved_cmdlines_next(m, v, &l);
4266 if (!v)
4267 return NULL;
4268 }
4269
4270 return v;
4271 }
4272
4273 static void saved_cmdlines_stop(struct seq_file *m, void *v)
4274 {
4275 arch_spin_unlock(&trace_cmdline_lock);
4276 preempt_enable();
4277 }
4278
4279 static int saved_cmdlines_show(struct seq_file *m, void *v)
4280 {
4281 char buf[TASK_COMM_LEN];
4282 unsigned int *pid = v;
4283
4284 __trace_find_cmdline(*pid, buf);
4285 seq_printf(m, "%d %s\n", *pid, buf);
4286 return 0;
4287 }
4288
4289 static const struct seq_operations tracing_saved_cmdlines_seq_ops = {
4290 .start = saved_cmdlines_start,
4291 .next = saved_cmdlines_next,
4292 .stop = saved_cmdlines_stop,
4293 .show = saved_cmdlines_show,
4294 };
4295
4296 static int tracing_saved_cmdlines_open(struct inode *inode, struct file *filp)
4297 {
4298 if (tracing_disabled)
4299 return -ENODEV;
4300
4301 return seq_open(filp, &tracing_saved_cmdlines_seq_ops);
4302 }
4303
4304 static const struct file_operations tracing_saved_cmdlines_fops = {
4305 .open = tracing_saved_cmdlines_open,
4306 .read = seq_read,
4307 .llseek = seq_lseek,
4308 .release = seq_release,
4309 };
4310
4311 static ssize_t
4312 tracing_saved_cmdlines_size_read(struct file *filp, char __user *ubuf,
4313 size_t cnt, loff_t *ppos)
4314 {
4315 char buf[64];
4316 int r;
4317
4318 arch_spin_lock(&trace_cmdline_lock);
4319 r = scnprintf(buf, sizeof(buf), "%u\n", savedcmd->cmdline_num);
4320 arch_spin_unlock(&trace_cmdline_lock);
4321
4322 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
4323 }
4324
4325 static void free_saved_cmdlines_buffer(struct saved_cmdlines_buffer *s)
4326 {
4327 kfree(s->saved_cmdlines);
4328 kfree(s->map_cmdline_to_pid);
4329 kfree(s);
4330 }
4331
4332 static int tracing_resize_saved_cmdlines(unsigned int val)
4333 {
4334 struct saved_cmdlines_buffer *s, *savedcmd_temp;
4335
4336 s = kmalloc(sizeof(*s), GFP_KERNEL);
4337 if (!s)
4338 return -ENOMEM;
4339
4340 if (allocate_cmdlines_buffer(val, s) < 0) {
4341 kfree(s);
4342 return -ENOMEM;
4343 }
4344
4345 arch_spin_lock(&trace_cmdline_lock);
4346 savedcmd_temp = savedcmd;
4347 savedcmd = s;
4348 arch_spin_unlock(&trace_cmdline_lock);
4349 free_saved_cmdlines_buffer(savedcmd_temp);
4350
4351 return 0;
4352 }
4353
4354 static ssize_t
4355 tracing_saved_cmdlines_size_write(struct file *filp, const char __user *ubuf,
4356 size_t cnt, loff_t *ppos)
4357 {
4358 unsigned long val;
4359 int ret;
4360
4361 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
4362 if (ret)
4363 return ret;
4364
4365 /* must have at least 1 entry or less than PID_MAX_DEFAULT */
4366 if (!val || val > PID_MAX_DEFAULT)
4367 return -EINVAL;
4368
4369 ret = tracing_resize_saved_cmdlines((unsigned int)val);
4370 if (ret < 0)
4371 return ret;
4372
4373 *ppos += cnt;
4374
4375 return cnt;
4376 }
4377
4378 static const struct file_operations tracing_saved_cmdlines_size_fops = {
4379 .open = tracing_open_generic,
4380 .read = tracing_saved_cmdlines_size_read,
4381 .write = tracing_saved_cmdlines_size_write,
4382 };
4383
4384 #ifdef CONFIG_TRACE_ENUM_MAP_FILE
4385 static union trace_enum_map_item *
4386 update_enum_map(union trace_enum_map_item *ptr)
4387 {
4388 if (!ptr->map.enum_string) {
4389 if (ptr->tail.next) {
4390 ptr = ptr->tail.next;
4391 /* Set ptr to the next real item (skip head) */
4392 ptr++;
4393 } else
4394 return NULL;
4395 }
4396 return ptr;
4397 }
4398
4399 static void *enum_map_next(struct seq_file *m, void *v, loff_t *pos)
4400 {
4401 union trace_enum_map_item *ptr = v;
4402
4403 /*
4404 * Paranoid! If ptr points to end, we don't want to increment past it.
4405 * This really should never happen.
4406 */
4407 ptr = update_enum_map(ptr);
4408 if (WARN_ON_ONCE(!ptr))
4409 return NULL;
4410
4411 ptr++;
4412
4413 (*pos)++;
4414
4415 ptr = update_enum_map(ptr);
4416
4417 return ptr;
4418 }
4419
4420 static void *enum_map_start(struct seq_file *m, loff_t *pos)
4421 {
4422 union trace_enum_map_item *v;
4423 loff_t l = 0;
4424
4425 mutex_lock(&trace_enum_mutex);
4426
4427 v = trace_enum_maps;
4428 if (v)
4429 v++;
4430
4431 while (v && l < *pos) {
4432 v = enum_map_next(m, v, &l);
4433 }
4434
4435 return v;
4436 }
4437
4438 static void enum_map_stop(struct seq_file *m, void *v)
4439 {
4440 mutex_unlock(&trace_enum_mutex);
4441 }
4442
4443 static int enum_map_show(struct seq_file *m, void *v)
4444 {
4445 union trace_enum_map_item *ptr = v;
4446
4447 seq_printf(m, "%s %ld (%s)\n",
4448 ptr->map.enum_string, ptr->map.enum_value,
4449 ptr->map.system);
4450
4451 return 0;
4452 }
4453
4454 static const struct seq_operations tracing_enum_map_seq_ops = {
4455 .start = enum_map_start,
4456 .next = enum_map_next,
4457 .stop = enum_map_stop,
4458 .show = enum_map_show,
4459 };
4460
4461 static int tracing_enum_map_open(struct inode *inode, struct file *filp)
4462 {
4463 if (tracing_disabled)
4464 return -ENODEV;
4465
4466 return seq_open(filp, &tracing_enum_map_seq_ops);
4467 }
4468
4469 static const struct file_operations tracing_enum_map_fops = {
4470 .open = tracing_enum_map_open,
4471 .read = seq_read,
4472 .llseek = seq_lseek,
4473 .release = seq_release,
4474 };
4475
4476 static inline union trace_enum_map_item *
4477 trace_enum_jmp_to_tail(union trace_enum_map_item *ptr)
4478 {
4479 /* Return tail of array given the head */
4480 return ptr + ptr->head.length + 1;
4481 }
4482
4483 static void
4484 trace_insert_enum_map_file(struct module *mod, struct trace_enum_map **start,
4485 int len)
4486 {
4487 struct trace_enum_map **stop;
4488 struct trace_enum_map **map;
4489 union trace_enum_map_item *map_array;
4490 union trace_enum_map_item *ptr;
4491
4492 stop = start + len;
4493
4494 /*
4495 * The trace_enum_maps contains the map plus a head and tail item,
4496 * where the head holds the module and length of array, and the
4497 * tail holds a pointer to the next list.
4498 */
4499 map_array = kmalloc(sizeof(*map_array) * (len + 2), GFP_KERNEL);
4500 if (!map_array) {
4501 pr_warn("Unable to allocate trace enum mapping\n");
4502 return;
4503 }
4504
4505 mutex_lock(&trace_enum_mutex);
4506
4507 if (!trace_enum_maps)
4508 trace_enum_maps = map_array;
4509 else {
4510 ptr = trace_enum_maps;
4511 for (;;) {
4512 ptr = trace_enum_jmp_to_tail(ptr);
4513 if (!ptr->tail.next)
4514 break;
4515 ptr = ptr->tail.next;
4516
4517 }
4518 ptr->tail.next = map_array;
4519 }
4520 map_array->head.mod = mod;
4521 map_array->head.length = len;
4522 map_array++;
4523
4524 for (map = start; (unsigned long)map < (unsigned long)stop; map++) {
4525 map_array->map = **map;
4526 map_array++;
4527 }
4528 memset(map_array, 0, sizeof(*map_array));
4529
4530 mutex_unlock(&trace_enum_mutex);
4531 }
4532
4533 static void trace_create_enum_file(struct dentry *d_tracer)
4534 {
4535 trace_create_file("enum_map", 0444, d_tracer,
4536 NULL, &tracing_enum_map_fops);
4537 }
4538
4539 #else /* CONFIG_TRACE_ENUM_MAP_FILE */
4540 static inline void trace_create_enum_file(struct dentry *d_tracer) { }
4541 static inline void trace_insert_enum_map_file(struct module *mod,
4542 struct trace_enum_map **start, int len) { }
4543 #endif /* !CONFIG_TRACE_ENUM_MAP_FILE */
4544
4545 static void trace_insert_enum_map(struct module *mod,
4546 struct trace_enum_map **start, int len)
4547 {
4548 struct trace_enum_map **map;
4549
4550 if (len <= 0)
4551 return;
4552
4553 map = start;
4554
4555 trace_event_enum_update(map, len);
4556
4557 trace_insert_enum_map_file(mod, start, len);
4558 }
4559
4560 static ssize_t
4561 tracing_set_trace_read(struct file *filp, char __user *ubuf,
4562 size_t cnt, loff_t *ppos)
4563 {
4564 struct trace_array *tr = filp->private_data;
4565 char buf[MAX_TRACER_SIZE+2];
4566 int r;
4567
4568 mutex_lock(&trace_types_lock);
4569 r = sprintf(buf, "%s\n", tr->current_trace->name);
4570 mutex_unlock(&trace_types_lock);
4571
4572 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
4573 }
4574
4575 int tracer_init(struct tracer *t, struct trace_array *tr)
4576 {
4577 tracing_reset_online_cpus(&tr->trace_buffer);
4578 return t->init(tr);
4579 }
4580
4581 static void set_buffer_entries(struct trace_buffer *buf, unsigned long val)
4582 {
4583 int cpu;
4584
4585 for_each_tracing_cpu(cpu)
4586 per_cpu_ptr(buf->data, cpu)->entries = val;
4587 }
4588
4589 #ifdef CONFIG_TRACER_MAX_TRACE
4590 /* resize @tr's buffer to the size of @size_tr's entries */
4591 static int resize_buffer_duplicate_size(struct trace_buffer *trace_buf,
4592 struct trace_buffer *size_buf, int cpu_id)
4593 {
4594 int cpu, ret = 0;
4595
4596 if (cpu_id == RING_BUFFER_ALL_CPUS) {
4597 for_each_tracing_cpu(cpu) {
4598 ret = ring_buffer_resize(trace_buf->buffer,
4599 per_cpu_ptr(size_buf->data, cpu)->entries, cpu);
4600 if (ret < 0)
4601 break;
4602 per_cpu_ptr(trace_buf->data, cpu)->entries =
4603 per_cpu_ptr(size_buf->data, cpu)->entries;
4604 }
4605 } else {
4606 ret = ring_buffer_resize(trace_buf->buffer,
4607 per_cpu_ptr(size_buf->data, cpu_id)->entries, cpu_id);
4608 if (ret == 0)
4609 per_cpu_ptr(trace_buf->data, cpu_id)->entries =
4610 per_cpu_ptr(size_buf->data, cpu_id)->entries;
4611 }
4612
4613 return ret;
4614 }
4615 #endif /* CONFIG_TRACER_MAX_TRACE */
4616
4617 static int __tracing_resize_ring_buffer(struct trace_array *tr,
4618 unsigned long size, int cpu)
4619 {
4620 int ret;
4621
4622 /*
4623 * If kernel or user changes the size of the ring buffer
4624 * we use the size that was given, and we can forget about
4625 * expanding it later.
4626 */
4627 ring_buffer_expanded = true;
4628
4629 /* May be called before buffers are initialized */
4630 if (!tr->trace_buffer.buffer)
4631 return 0;
4632
4633 ret = ring_buffer_resize(tr->trace_buffer.buffer, size, cpu);
4634 if (ret < 0)
4635 return ret;
4636
4637 #ifdef CONFIG_TRACER_MAX_TRACE
4638 if (!(tr->flags & TRACE_ARRAY_FL_GLOBAL) ||
4639 !tr->current_trace->use_max_tr)
4640 goto out;
4641
4642 ret = ring_buffer_resize(tr->max_buffer.buffer, size, cpu);
4643 if (ret < 0) {
4644 int r = resize_buffer_duplicate_size(&tr->trace_buffer,
4645 &tr->trace_buffer, cpu);
4646 if (r < 0) {
4647 /*
4648 * AARGH! We are left with different
4649 * size max buffer!!!!
4650 * The max buffer is our "snapshot" buffer.
4651 * When a tracer needs a snapshot (one of the
4652 * latency tracers), it swaps the max buffer
4653 * with the saved snap shot. We succeeded to
4654 * update the size of the main buffer, but failed to
4655 * update the size of the max buffer. But when we tried
4656 * to reset the main buffer to the original size, we
4657 * failed there too. This is very unlikely to
4658 * happen, but if it does, warn and kill all
4659 * tracing.
4660 */
4661 WARN_ON(1);
4662 tracing_disabled = 1;
4663 }
4664 return ret;
4665 }
4666
4667 if (cpu == RING_BUFFER_ALL_CPUS)
4668 set_buffer_entries(&tr->max_buffer, size);
4669 else
4670 per_cpu_ptr(tr->max_buffer.data, cpu)->entries = size;
4671
4672 out:
4673 #endif /* CONFIG_TRACER_MAX_TRACE */
4674
4675 if (cpu == RING_BUFFER_ALL_CPUS)
4676 set_buffer_entries(&tr->trace_buffer, size);
4677 else
4678 per_cpu_ptr(tr->trace_buffer.data, cpu)->entries = size;
4679
4680 return ret;
4681 }
4682
4683 static ssize_t tracing_resize_ring_buffer(struct trace_array *tr,
4684 unsigned long size, int cpu_id)
4685 {
4686 int ret = size;
4687
4688 mutex_lock(&trace_types_lock);
4689
4690 if (cpu_id != RING_BUFFER_ALL_CPUS) {
4691 /* make sure, this cpu is enabled in the mask */
4692 if (!cpumask_test_cpu(cpu_id, tracing_buffer_mask)) {
4693 ret = -EINVAL;
4694 goto out;
4695 }
4696 }
4697
4698 ret = __tracing_resize_ring_buffer(tr, size, cpu_id);
4699 if (ret < 0)
4700 ret = -ENOMEM;
4701
4702 out:
4703 mutex_unlock(&trace_types_lock);
4704
4705 return ret;
4706 }
4707
4708
4709 /**
4710 * tracing_update_buffers - used by tracing facility to expand ring buffers
4711 *
4712 * To save on memory when the tracing is never used on a system with it
4713 * configured in. The ring buffers are set to a minimum size. But once
4714 * a user starts to use the tracing facility, then they need to grow
4715 * to their default size.
4716 *
4717 * This function is to be called when a tracer is about to be used.
4718 */
4719 int tracing_update_buffers(void)
4720 {
4721 int ret = 0;
4722
4723 mutex_lock(&trace_types_lock);
4724 if (!ring_buffer_expanded)
4725 ret = __tracing_resize_ring_buffer(&global_trace, trace_buf_size,
4726 RING_BUFFER_ALL_CPUS);
4727 mutex_unlock(&trace_types_lock);
4728
4729 return ret;
4730 }
4731
4732 struct trace_option_dentry;
4733
4734 static void
4735 create_trace_option_files(struct trace_array *tr, struct tracer *tracer);
4736
4737 /*
4738 * Used to clear out the tracer before deletion of an instance.
4739 * Must have trace_types_lock held.
4740 */
4741 static void tracing_set_nop(struct trace_array *tr)
4742 {
4743 if (tr->current_trace == &nop_trace)
4744 return;
4745
4746 tr->current_trace->enabled--;
4747
4748 if (tr->current_trace->reset)
4749 tr->current_trace->reset(tr);
4750
4751 tr->current_trace = &nop_trace;
4752 }
4753
4754 static void add_tracer_options(struct trace_array *tr, struct tracer *t)
4755 {
4756 /* Only enable if the directory has been created already. */
4757 if (!tr->dir)
4758 return;
4759
4760 create_trace_option_files(tr, t);
4761 }
4762
4763 static int tracing_set_tracer(struct trace_array *tr, const char *buf)
4764 {
4765 struct tracer *t;
4766 #ifdef CONFIG_TRACER_MAX_TRACE
4767 bool had_max_tr;
4768 #endif
4769 int ret = 0;
4770
4771 mutex_lock(&trace_types_lock);
4772
4773 if (!ring_buffer_expanded) {
4774 ret = __tracing_resize_ring_buffer(tr, trace_buf_size,
4775 RING_BUFFER_ALL_CPUS);
4776 if (ret < 0)
4777 goto out;
4778 ret = 0;
4779 }
4780
4781 for (t = trace_types; t; t = t->next) {
4782 if (strcmp(t->name, buf) == 0)
4783 break;
4784 }
4785 if (!t) {
4786 ret = -EINVAL;
4787 goto out;
4788 }
4789 if (t == tr->current_trace)
4790 goto out;
4791
4792 /* Some tracers are only allowed for the top level buffer */
4793 if (!trace_ok_for_array(t, tr)) {
4794 ret = -EINVAL;
4795 goto out;
4796 }
4797
4798 /* If trace pipe files are being read, we can't change the tracer */
4799 if (tr->current_trace->ref) {
4800 ret = -EBUSY;
4801 goto out;
4802 }
4803
4804 trace_branch_disable();
4805
4806 tr->current_trace->enabled--;
4807
4808 if (tr->current_trace->reset)
4809 tr->current_trace->reset(tr);
4810
4811 /* Current trace needs to be nop_trace before synchronize_sched */
4812 tr->current_trace = &nop_trace;
4813
4814 #ifdef CONFIG_TRACER_MAX_TRACE
4815 had_max_tr = tr->allocated_snapshot;
4816
4817 if (had_max_tr && !t->use_max_tr) {
4818 /*
4819 * We need to make sure that the update_max_tr sees that
4820 * current_trace changed to nop_trace to keep it from
4821 * swapping the buffers after we resize it.
4822 * The update_max_tr is called from interrupts disabled
4823 * so a synchronized_sched() is sufficient.
4824 */
4825 synchronize_sched();
4826 free_snapshot(tr);
4827 }
4828 #endif
4829
4830 #ifdef CONFIG_TRACER_MAX_TRACE
4831 if (t->use_max_tr && !had_max_tr) {
4832 ret = alloc_snapshot(tr);
4833 if (ret < 0)
4834 goto out;
4835 }
4836 #endif
4837
4838 if (t->init) {
4839 ret = tracer_init(t, tr);
4840 if (ret)
4841 goto out;
4842 }
4843
4844 tr->current_trace = t;
4845 tr->current_trace->enabled++;
4846 trace_branch_enable(tr);
4847 out:
4848 mutex_unlock(&trace_types_lock);
4849
4850 return ret;
4851 }
4852
4853 static ssize_t
4854 tracing_set_trace_write(struct file *filp, const char __user *ubuf,
4855 size_t cnt, loff_t *ppos)
4856 {
4857 struct trace_array *tr = filp->private_data;
4858 char buf[MAX_TRACER_SIZE+1];
4859 int i;
4860 size_t ret;
4861 int err;
4862
4863 ret = cnt;
4864
4865 if (cnt > MAX_TRACER_SIZE)
4866 cnt = MAX_TRACER_SIZE;
4867
4868 if (copy_from_user(buf, ubuf, cnt))
4869 return -EFAULT;
4870
4871 buf[cnt] = 0;
4872
4873 /* strip ending whitespace. */
4874 for (i = cnt - 1; i > 0 && isspace(buf[i]); i--)
4875 buf[i] = 0;
4876
4877 err = tracing_set_tracer(tr, buf);
4878 if (err)
4879 return err;
4880
4881 *ppos += ret;
4882
4883 return ret;
4884 }
4885
4886 static ssize_t
4887 tracing_nsecs_read(unsigned long *ptr, char __user *ubuf,
4888 size_t cnt, loff_t *ppos)
4889 {
4890 char buf[64];
4891 int r;
4892
4893 r = snprintf(buf, sizeof(buf), "%ld\n",
4894 *ptr == (unsigned long)-1 ? -1 : nsecs_to_usecs(*ptr));
4895 if (r > sizeof(buf))
4896 r = sizeof(buf);
4897 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
4898 }
4899
4900 static ssize_t
4901 tracing_nsecs_write(unsigned long *ptr, const char __user *ubuf,
4902 size_t cnt, loff_t *ppos)
4903 {
4904 unsigned long val;
4905 int ret;
4906
4907 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
4908 if (ret)
4909 return ret;
4910
4911 *ptr = val * 1000;
4912
4913 return cnt;
4914 }
4915
4916 static ssize_t
4917 tracing_thresh_read(struct file *filp, char __user *ubuf,
4918 size_t cnt, loff_t *ppos)
4919 {
4920 return tracing_nsecs_read(&tracing_thresh, ubuf, cnt, ppos);
4921 }
4922
4923 static ssize_t
4924 tracing_thresh_write(struct file *filp, const char __user *ubuf,
4925 size_t cnt, loff_t *ppos)
4926 {
4927 struct trace_array *tr = filp->private_data;
4928 int ret;
4929
4930 mutex_lock(&trace_types_lock);
4931 ret = tracing_nsecs_write(&tracing_thresh, ubuf, cnt, ppos);
4932 if (ret < 0)
4933 goto out;
4934
4935 if (tr->current_trace->update_thresh) {
4936 ret = tr->current_trace->update_thresh(tr);
4937 if (ret < 0)
4938 goto out;
4939 }
4940
4941 ret = cnt;
4942 out:
4943 mutex_unlock(&trace_types_lock);
4944
4945 return ret;
4946 }
4947
4948 #ifdef CONFIG_TRACER_MAX_TRACE
4949
4950 static ssize_t
4951 tracing_max_lat_read(struct file *filp, char __user *ubuf,
4952 size_t cnt, loff_t *ppos)
4953 {
4954 return tracing_nsecs_read(filp->private_data, ubuf, cnt, ppos);
4955 }
4956
4957 static ssize_t
4958 tracing_max_lat_write(struct file *filp, const char __user *ubuf,
4959 size_t cnt, loff_t *ppos)
4960 {
4961 return tracing_nsecs_write(filp->private_data, ubuf, cnt, ppos);
4962 }
4963
4964 #endif
4965
4966 static int tracing_open_pipe(struct inode *inode, struct file *filp)
4967 {
4968 struct trace_array *tr = inode->i_private;
4969 struct trace_iterator *iter;
4970 int ret = 0;
4971
4972 if (tracing_disabled)
4973 return -ENODEV;
4974
4975 if (trace_array_get(tr) < 0)
4976 return -ENODEV;
4977
4978 mutex_lock(&trace_types_lock);
4979
4980 /* create a buffer to store the information to pass to userspace */
4981 iter = kzalloc(sizeof(*iter), GFP_KERNEL);
4982 if (!iter) {
4983 ret = -ENOMEM;
4984 __trace_array_put(tr);
4985 goto out;
4986 }
4987
4988 trace_seq_init(&iter->seq);
4989 iter->trace = tr->current_trace;
4990
4991 if (!alloc_cpumask_var(&iter->started, GFP_KERNEL)) {
4992 ret = -ENOMEM;
4993 goto fail;
4994 }
4995
4996 /* trace pipe does not show start of buffer */
4997 cpumask_setall(iter->started);
4998
4999 if (tr->trace_flags & TRACE_ITER_LATENCY_FMT)
5000 iter->iter_flags |= TRACE_FILE_LAT_FMT;
5001
5002 /* Output in nanoseconds only if we are using a clock in nanoseconds. */
5003 if (trace_clocks[tr->clock_id].in_ns)
5004 iter->iter_flags |= TRACE_FILE_TIME_IN_NS;
5005
5006 iter->tr = tr;
5007 iter->trace_buffer = &tr->trace_buffer;
5008 iter->cpu_file = tracing_get_cpu(inode);
5009 mutex_init(&iter->mutex);
5010 filp->private_data = iter;
5011
5012 if (iter->trace->pipe_open)
5013 iter->trace->pipe_open(iter);
5014
5015 nonseekable_open(inode, filp);
5016
5017 tr->current_trace->ref++;
5018 out:
5019 mutex_unlock(&trace_types_lock);
5020 return ret;
5021
5022 fail:
5023 kfree(iter->trace);
5024 kfree(iter);
5025 __trace_array_put(tr);
5026 mutex_unlock(&trace_types_lock);
5027 return ret;
5028 }
5029
5030 static int tracing_release_pipe(struct inode *inode, struct file *file)
5031 {
5032 struct trace_iterator *iter = file->private_data;
5033 struct trace_array *tr = inode->i_private;
5034
5035 mutex_lock(&trace_types_lock);
5036
5037 tr->current_trace->ref--;
5038
5039 if (iter->trace->pipe_close)
5040 iter->trace->pipe_close(iter);
5041
5042 mutex_unlock(&trace_types_lock);
5043
5044 free_cpumask_var(iter->started);
5045 mutex_destroy(&iter->mutex);
5046 kfree(iter);
5047
5048 trace_array_put(tr);
5049
5050 return 0;
5051 }
5052
5053 static unsigned int
5054 trace_poll(struct trace_iterator *iter, struct file *filp, poll_table *poll_table)
5055 {
5056 struct trace_array *tr = iter->tr;
5057
5058 /* Iterators are static, they should be filled or empty */
5059 if (trace_buffer_iter(iter, iter->cpu_file))
5060 return POLLIN | POLLRDNORM;
5061
5062 if (tr->trace_flags & TRACE_ITER_BLOCK)
5063 /*
5064 * Always select as readable when in blocking mode
5065 */
5066 return POLLIN | POLLRDNORM;
5067 else
5068 return ring_buffer_poll_wait(iter->trace_buffer->buffer, iter->cpu_file,
5069 filp, poll_table);
5070 }
5071
5072 static unsigned int
5073 tracing_poll_pipe(struct file *filp, poll_table *poll_table)
5074 {
5075 struct trace_iterator *iter = filp->private_data;
5076
5077 return trace_poll(iter, filp, poll_table);
5078 }
5079
5080 /* Must be called with iter->mutex held. */
5081 static int tracing_wait_pipe(struct file *filp)
5082 {
5083 struct trace_iterator *iter = filp->private_data;
5084 int ret;
5085
5086 while (trace_empty(iter)) {
5087
5088 if ((filp->f_flags & O_NONBLOCK)) {
5089 return -EAGAIN;
5090 }
5091
5092 /*
5093 * We block until we read something and tracing is disabled.
5094 * We still block if tracing is disabled, but we have never
5095 * read anything. This allows a user to cat this file, and
5096 * then enable tracing. But after we have read something,
5097 * we give an EOF when tracing is again disabled.
5098 *
5099 * iter->pos will be 0 if we haven't read anything.
5100 */
5101 if (!tracing_is_on() && iter->pos)
5102 break;
5103
5104 mutex_unlock(&iter->mutex);
5105
5106 ret = wait_on_pipe(iter, false);
5107
5108 mutex_lock(&iter->mutex);
5109
5110 if (ret)
5111 return ret;
5112 }
5113
5114 return 1;
5115 }
5116
5117 /*
5118 * Consumer reader.
5119 */
5120 static ssize_t
5121 tracing_read_pipe(struct file *filp, char __user *ubuf,
5122 size_t cnt, loff_t *ppos)
5123 {
5124 struct trace_iterator *iter = filp->private_data;
5125 ssize_t sret;
5126
5127 /* return any leftover data */
5128 sret = trace_seq_to_user(&iter->seq, ubuf, cnt);
5129 if (sret != -EBUSY)
5130 return sret;
5131
5132 trace_seq_init(&iter->seq);
5133
5134 /*
5135 * Avoid more than one consumer on a single file descriptor
5136 * This is just a matter of traces coherency, the ring buffer itself
5137 * is protected.
5138 */
5139 mutex_lock(&iter->mutex);
5140 if (iter->trace->read) {
5141 sret = iter->trace->read(iter, filp, ubuf, cnt, ppos);
5142 if (sret)
5143 goto out;
5144 }
5145
5146 waitagain:
5147 sret = tracing_wait_pipe(filp);
5148 if (sret <= 0)
5149 goto out;
5150
5151 /* stop when tracing is finished */
5152 if (trace_empty(iter)) {
5153 sret = 0;
5154 goto out;
5155 }
5156
5157 if (cnt >= PAGE_SIZE)
5158 cnt = PAGE_SIZE - 1;
5159
5160 /* reset all but tr, trace, and overruns */
5161 memset(&iter->seq, 0,
5162 sizeof(struct trace_iterator) -
5163 offsetof(struct trace_iterator, seq));
5164 cpumask_clear(iter->started);
5165 iter->pos = -1;
5166
5167 trace_event_read_lock();
5168 trace_access_lock(iter->cpu_file);
5169 while (trace_find_next_entry_inc(iter) != NULL) {
5170 enum print_line_t ret;
5171 int save_len = iter->seq.seq.len;
5172
5173 ret = print_trace_line(iter);
5174 if (ret == TRACE_TYPE_PARTIAL_LINE) {
5175 /* don't print partial lines */
5176 iter->seq.seq.len = save_len;
5177 break;
5178 }
5179 if (ret != TRACE_TYPE_NO_CONSUME)
5180 trace_consume(iter);
5181
5182 if (trace_seq_used(&iter->seq) >= cnt)
5183 break;
5184
5185 /*
5186 * Setting the full flag means we reached the trace_seq buffer
5187 * size and we should leave by partial output condition above.
5188 * One of the trace_seq_* functions is not used properly.
5189 */
5190 WARN_ONCE(iter->seq.full, "full flag set for trace type %d",
5191 iter->ent->type);
5192 }
5193 trace_access_unlock(iter->cpu_file);
5194 trace_event_read_unlock();
5195
5196 /* Now copy what we have to the user */
5197 sret = trace_seq_to_user(&iter->seq, ubuf, cnt);
5198 if (iter->seq.seq.readpos >= trace_seq_used(&iter->seq))
5199 trace_seq_init(&iter->seq);
5200
5201 /*
5202 * If there was nothing to send to user, in spite of consuming trace
5203 * entries, go back to wait for more entries.
5204 */
5205 if (sret == -EBUSY)
5206 goto waitagain;
5207
5208 out:
5209 mutex_unlock(&iter->mutex);
5210
5211 return sret;
5212 }
5213
5214 static void tracing_spd_release_pipe(struct splice_pipe_desc *spd,
5215 unsigned int idx)
5216 {
5217 __free_page(spd->pages[idx]);
5218 }
5219
5220 static const struct pipe_buf_operations tracing_pipe_buf_ops = {
5221 .can_merge = 0,
5222 .confirm = generic_pipe_buf_confirm,
5223 .release = generic_pipe_buf_release,
5224 .steal = generic_pipe_buf_steal,
5225 .get = generic_pipe_buf_get,
5226 };
5227
5228 static size_t
5229 tracing_fill_pipe_page(size_t rem, struct trace_iterator *iter)
5230 {
5231 size_t count;
5232 int save_len;
5233 int ret;
5234
5235 /* Seq buffer is page-sized, exactly what we need. */
5236 for (;;) {
5237 save_len = iter->seq.seq.len;
5238 ret = print_trace_line(iter);
5239
5240 if (trace_seq_has_overflowed(&iter->seq)) {
5241 iter->seq.seq.len = save_len;
5242 break;
5243 }
5244
5245 /*
5246 * This should not be hit, because it should only
5247 * be set if the iter->seq overflowed. But check it
5248 * anyway to be safe.
5249 */
5250 if (ret == TRACE_TYPE_PARTIAL_LINE) {
5251 iter->seq.seq.len = save_len;
5252 break;
5253 }
5254
5255 count = trace_seq_used(&iter->seq) - save_len;
5256 if (rem < count) {
5257 rem = 0;
5258 iter->seq.seq.len = save_len;
5259 break;
5260 }
5261
5262 if (ret != TRACE_TYPE_NO_CONSUME)
5263 trace_consume(iter);
5264 rem -= count;
5265 if (!trace_find_next_entry_inc(iter)) {
5266 rem = 0;
5267 iter->ent = NULL;
5268 break;
5269 }
5270 }
5271
5272 return rem;
5273 }
5274
5275 static ssize_t tracing_splice_read_pipe(struct file *filp,
5276 loff_t *ppos,
5277 struct pipe_inode_info *pipe,
5278 size_t len,
5279 unsigned int flags)
5280 {
5281 struct page *pages_def[PIPE_DEF_BUFFERS];
5282 struct partial_page partial_def[PIPE_DEF_BUFFERS];
5283 struct trace_iterator *iter = filp->private_data;
5284 struct splice_pipe_desc spd = {
5285 .pages = pages_def,
5286 .partial = partial_def,
5287 .nr_pages = 0, /* This gets updated below. */
5288 .nr_pages_max = PIPE_DEF_BUFFERS,
5289 .flags = flags,
5290 .ops = &tracing_pipe_buf_ops,
5291 .spd_release = tracing_spd_release_pipe,
5292 };
5293 ssize_t ret;
5294 size_t rem;
5295 unsigned int i;
5296
5297 if (splice_grow_spd(pipe, &spd))
5298 return -ENOMEM;
5299
5300 mutex_lock(&iter->mutex);
5301
5302 if (iter->trace->splice_read) {
5303 ret = iter->trace->splice_read(iter, filp,
5304 ppos, pipe, len, flags);
5305 if (ret)
5306 goto out_err;
5307 }
5308
5309 ret = tracing_wait_pipe(filp);
5310 if (ret <= 0)
5311 goto out_err;
5312
5313 if (!iter->ent && !trace_find_next_entry_inc(iter)) {
5314 ret = -EFAULT;
5315 goto out_err;
5316 }
5317
5318 trace_event_read_lock();
5319 trace_access_lock(iter->cpu_file);
5320
5321 /* Fill as many pages as possible. */
5322 for (i = 0, rem = len; i < spd.nr_pages_max && rem; i++) {
5323 spd.pages[i] = alloc_page(GFP_KERNEL);
5324 if (!spd.pages[i])
5325 break;
5326
5327 rem = tracing_fill_pipe_page(rem, iter);
5328
5329 /* Copy the data into the page, so we can start over. */
5330 ret = trace_seq_to_buffer(&iter->seq,
5331 page_address(spd.pages[i]),
5332 trace_seq_used(&iter->seq));
5333 if (ret < 0) {
5334 __free_page(spd.pages[i]);
5335 break;
5336 }
5337 spd.partial[i].offset = 0;
5338 spd.partial[i].len = trace_seq_used(&iter->seq);
5339
5340 trace_seq_init(&iter->seq);
5341 }
5342
5343 trace_access_unlock(iter->cpu_file);
5344 trace_event_read_unlock();
5345 mutex_unlock(&iter->mutex);
5346
5347 spd.nr_pages = i;
5348
5349 if (i)
5350 ret = splice_to_pipe(pipe, &spd);
5351 else
5352 ret = 0;
5353 out:
5354 splice_shrink_spd(&spd);
5355 return ret;
5356
5357 out_err:
5358 mutex_unlock(&iter->mutex);
5359 goto out;
5360 }
5361
5362 static ssize_t
5363 tracing_entries_read(struct file *filp, char __user *ubuf,
5364 size_t cnt, loff_t *ppos)
5365 {
5366 struct inode *inode = file_inode(filp);
5367 struct trace_array *tr = inode->i_private;
5368 int cpu = tracing_get_cpu(inode);
5369 char buf[64];
5370 int r = 0;
5371 ssize_t ret;
5372
5373 mutex_lock(&trace_types_lock);
5374
5375 if (cpu == RING_BUFFER_ALL_CPUS) {
5376 int cpu, buf_size_same;
5377 unsigned long size;
5378
5379 size = 0;
5380 buf_size_same = 1;
5381 /* check if all cpu sizes are same */
5382 for_each_tracing_cpu(cpu) {
5383 /* fill in the size from first enabled cpu */
5384 if (size == 0)
5385 size = per_cpu_ptr(tr->trace_buffer.data, cpu)->entries;
5386 if (size != per_cpu_ptr(tr->trace_buffer.data, cpu)->entries) {
5387 buf_size_same = 0;
5388 break;
5389 }
5390 }
5391
5392 if (buf_size_same) {
5393 if (!ring_buffer_expanded)
5394 r = sprintf(buf, "%lu (expanded: %lu)\n",
5395 size >> 10,
5396 trace_buf_size >> 10);
5397 else
5398 r = sprintf(buf, "%lu\n", size >> 10);
5399 } else
5400 r = sprintf(buf, "X\n");
5401 } else
5402 r = sprintf(buf, "%lu\n", per_cpu_ptr(tr->trace_buffer.data, cpu)->entries >> 10);
5403
5404 mutex_unlock(&trace_types_lock);
5405
5406 ret = simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
5407 return ret;
5408 }
5409
5410 static ssize_t
5411 tracing_entries_write(struct file *filp, const char __user *ubuf,
5412 size_t cnt, loff_t *ppos)
5413 {
5414 struct inode *inode = file_inode(filp);
5415 struct trace_array *tr = inode->i_private;
5416 unsigned long val;
5417 int ret;
5418
5419 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
5420 if (ret)
5421 return ret;
5422
5423 /* must have at least 1 entry */
5424 if (!val)
5425 return -EINVAL;
5426
5427 /* value is in KB */
5428 val <<= 10;
5429 ret = tracing_resize_ring_buffer(tr, val, tracing_get_cpu(inode));
5430 if (ret < 0)
5431 return ret;
5432
5433 *ppos += cnt;
5434
5435 return cnt;
5436 }
5437
5438 static ssize_t
5439 tracing_total_entries_read(struct file *filp, char __user *ubuf,
5440 size_t cnt, loff_t *ppos)
5441 {
5442 struct trace_array *tr = filp->private_data;
5443 char buf[64];
5444 int r, cpu;
5445 unsigned long size = 0, expanded_size = 0;
5446
5447 mutex_lock(&trace_types_lock);
5448 for_each_tracing_cpu(cpu) {
5449 size += per_cpu_ptr(tr->trace_buffer.data, cpu)->entries >> 10;
5450 if (!ring_buffer_expanded)
5451 expanded_size += trace_buf_size >> 10;
5452 }
5453 if (ring_buffer_expanded)
5454 r = sprintf(buf, "%lu\n", size);
5455 else
5456 r = sprintf(buf, "%lu (expanded: %lu)\n", size, expanded_size);
5457 mutex_unlock(&trace_types_lock);
5458
5459 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
5460 }
5461
5462 static ssize_t
5463 tracing_free_buffer_write(struct file *filp, const char __user *ubuf,
5464 size_t cnt, loff_t *ppos)
5465 {
5466 /*
5467 * There is no need to read what the user has written, this function
5468 * is just to make sure that there is no error when "echo" is used
5469 */
5470
5471 *ppos += cnt;
5472
5473 return cnt;
5474 }
5475
5476 static int
5477 tracing_free_buffer_release(struct inode *inode, struct file *filp)
5478 {
5479 struct trace_array *tr = inode->i_private;
5480
5481 /* disable tracing ? */
5482 if (tr->trace_flags & TRACE_ITER_STOP_ON_FREE)
5483 tracer_tracing_off(tr);
5484 /* resize the ring buffer to 0 */
5485 tracing_resize_ring_buffer(tr, 0, RING_BUFFER_ALL_CPUS);
5486
5487 trace_array_put(tr);
5488
5489 return 0;
5490 }
5491
5492 static ssize_t
5493 tracing_mark_write(struct file *filp, const char __user *ubuf,
5494 size_t cnt, loff_t *fpos)
5495 {
5496 unsigned long addr = (unsigned long)ubuf;
5497 struct trace_array *tr = filp->private_data;
5498 struct ring_buffer_event *event;
5499 struct ring_buffer *buffer;
5500 struct print_entry *entry;
5501 unsigned long irq_flags;
5502 struct page *pages[2];
5503 void *map_page[2];
5504 int nr_pages = 1;
5505 ssize_t written;
5506 int offset;
5507 int size;
5508 int len;
5509 int ret;
5510 int i;
5511
5512 if (tracing_disabled)
5513 return -EINVAL;
5514
5515 if (!(tr->trace_flags & TRACE_ITER_MARKERS))
5516 return -EINVAL;
5517
5518 if (cnt > TRACE_BUF_SIZE)
5519 cnt = TRACE_BUF_SIZE;
5520
5521 /*
5522 * Userspace is injecting traces into the kernel trace buffer.
5523 * We want to be as non intrusive as possible.
5524 * To do so, we do not want to allocate any special buffers
5525 * or take any locks, but instead write the userspace data
5526 * straight into the ring buffer.
5527 *
5528 * First we need to pin the userspace buffer into memory,
5529 * which, most likely it is, because it just referenced it.
5530 * But there's no guarantee that it is. By using get_user_pages_fast()
5531 * and kmap_atomic/kunmap_atomic() we can get access to the
5532 * pages directly. We then write the data directly into the
5533 * ring buffer.
5534 */
5535 BUILD_BUG_ON(TRACE_BUF_SIZE >= PAGE_SIZE);
5536
5537 /* check if we cross pages */
5538 if ((addr & PAGE_MASK) != ((addr + cnt) & PAGE_MASK))
5539 nr_pages = 2;
5540
5541 offset = addr & (PAGE_SIZE - 1);
5542 addr &= PAGE_MASK;
5543
5544 ret = get_user_pages_fast(addr, nr_pages, 0, pages);
5545 if (ret < nr_pages) {
5546 while (--ret >= 0)
5547 put_page(pages[ret]);
5548 written = -EFAULT;
5549 goto out;
5550 }
5551
5552 for (i = 0; i < nr_pages; i++)
5553 map_page[i] = kmap_atomic(pages[i]);
5554
5555 local_save_flags(irq_flags);
5556 size = sizeof(*entry) + cnt + 2; /* possible \n added */
5557 buffer = tr->trace_buffer.buffer;
5558 event = trace_buffer_lock_reserve(buffer, TRACE_PRINT, size,
5559 irq_flags, preempt_count());
5560 if (!event) {
5561 /* Ring buffer disabled, return as if not open for write */
5562 written = -EBADF;
5563 goto out_unlock;
5564 }
5565
5566 entry = ring_buffer_event_data(event);
5567 entry->ip = _THIS_IP_;
5568
5569 if (nr_pages == 2) {
5570 len = PAGE_SIZE - offset;
5571 memcpy(&entry->buf, map_page[0] + offset, len);
5572 memcpy(&entry->buf[len], map_page[1], cnt - len);
5573 } else
5574 memcpy(&entry->buf, map_page[0] + offset, cnt);
5575
5576 if (entry->buf[cnt - 1] != '\n') {
5577 entry->buf[cnt] = '\n';
5578 entry->buf[cnt + 1] = '\0';
5579 } else
5580 entry->buf[cnt] = '\0';
5581
5582 __buffer_unlock_commit(buffer, event);
5583
5584 written = cnt;
5585
5586 *fpos += written;
5587
5588 out_unlock:
5589 for (i = nr_pages - 1; i >= 0; i--) {
5590 kunmap_atomic(map_page[i]);
5591 put_page(pages[i]);
5592 }
5593 out:
5594 return written;
5595 }
5596
5597 static int tracing_clock_show(struct seq_file *m, void *v)
5598 {
5599 struct trace_array *tr = m->private;
5600 int i;
5601
5602 for (i = 0; i < ARRAY_SIZE(trace_clocks); i++)
5603 seq_printf(m,
5604 "%s%s%s%s", i ? " " : "",
5605 i == tr->clock_id ? "[" : "", trace_clocks[i].name,
5606 i == tr->clock_id ? "]" : "");
5607 seq_putc(m, '\n');
5608
5609 return 0;
5610 }
5611
5612 static int tracing_set_clock(struct trace_array *tr, const char *clockstr)
5613 {
5614 int i;
5615
5616 for (i = 0; i < ARRAY_SIZE(trace_clocks); i++) {
5617 if (strcmp(trace_clocks[i].name, clockstr) == 0)
5618 break;
5619 }
5620 if (i == ARRAY_SIZE(trace_clocks))
5621 return -EINVAL;
5622
5623 mutex_lock(&trace_types_lock);
5624
5625 tr->clock_id = i;
5626
5627 ring_buffer_set_clock(tr->trace_buffer.buffer, trace_clocks[i].func);
5628
5629 /*
5630 * New clock may not be consistent with the previous clock.
5631 * Reset the buffer so that it doesn't have incomparable timestamps.
5632 */
5633 tracing_reset_online_cpus(&tr->trace_buffer);
5634
5635 #ifdef CONFIG_TRACER_MAX_TRACE
5636 if (tr->flags & TRACE_ARRAY_FL_GLOBAL && tr->max_buffer.buffer)
5637 ring_buffer_set_clock(tr->max_buffer.buffer, trace_clocks[i].func);
5638 tracing_reset_online_cpus(&tr->max_buffer);
5639 #endif
5640
5641 mutex_unlock(&trace_types_lock);
5642
5643 return 0;
5644 }
5645
5646 static ssize_t tracing_clock_write(struct file *filp, const char __user *ubuf,
5647 size_t cnt, loff_t *fpos)
5648 {
5649 struct seq_file *m = filp->private_data;
5650 struct trace_array *tr = m->private;
5651 char buf[64];
5652 const char *clockstr;
5653 int ret;
5654
5655 if (cnt >= sizeof(buf))
5656 return -EINVAL;
5657
5658 if (copy_from_user(buf, ubuf, cnt))
5659 return -EFAULT;
5660
5661 buf[cnt] = 0;
5662
5663 clockstr = strstrip(buf);
5664
5665 ret = tracing_set_clock(tr, clockstr);
5666 if (ret)
5667 return ret;
5668
5669 *fpos += cnt;
5670
5671 return cnt;
5672 }
5673
5674 static int tracing_clock_open(struct inode *inode, struct file *file)
5675 {
5676 struct trace_array *tr = inode->i_private;
5677 int ret;
5678
5679 if (tracing_disabled)
5680 return -ENODEV;
5681
5682 if (trace_array_get(tr))
5683 return -ENODEV;
5684
5685 ret = single_open(file, tracing_clock_show, inode->i_private);
5686 if (ret < 0)
5687 trace_array_put(tr);
5688
5689 return ret;
5690 }
5691
5692 struct ftrace_buffer_info {
5693 struct trace_iterator iter;
5694 void *spare;
5695 unsigned int read;
5696 };
5697
5698 #ifdef CONFIG_TRACER_SNAPSHOT
5699 static int tracing_snapshot_open(struct inode *inode, struct file *file)
5700 {
5701 struct trace_array *tr = inode->i_private;
5702 struct trace_iterator *iter;
5703 struct seq_file *m;
5704 int ret = 0;
5705
5706 if (trace_array_get(tr) < 0)
5707 return -ENODEV;
5708
5709 if (file->f_mode & FMODE_READ) {
5710 iter = __tracing_open(inode, file, true);
5711 if (IS_ERR(iter))
5712 ret = PTR_ERR(iter);
5713 } else {
5714 /* Writes still need the seq_file to hold the private data */
5715 ret = -ENOMEM;
5716 m = kzalloc(sizeof(*m), GFP_KERNEL);
5717 if (!m)
5718 goto out;
5719 iter = kzalloc(sizeof(*iter), GFP_KERNEL);
5720 if (!iter) {
5721 kfree(m);
5722 goto out;
5723 }
5724 ret = 0;
5725
5726 iter->tr = tr;
5727 iter->trace_buffer = &tr->max_buffer;
5728 iter->cpu_file = tracing_get_cpu(inode);
5729 m->private = iter;
5730 file->private_data = m;
5731 }
5732 out:
5733 if (ret < 0)
5734 trace_array_put(tr);
5735
5736 return ret;
5737 }
5738
5739 static ssize_t
5740 tracing_snapshot_write(struct file *filp, const char __user *ubuf, size_t cnt,
5741 loff_t *ppos)
5742 {
5743 struct seq_file *m = filp->private_data;
5744 struct trace_iterator *iter = m->private;
5745 struct trace_array *tr = iter->tr;
5746 unsigned long val;
5747 int ret;
5748
5749 ret = tracing_update_buffers();
5750 if (ret < 0)
5751 return ret;
5752
5753 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
5754 if (ret)
5755 return ret;
5756
5757 mutex_lock(&trace_types_lock);
5758
5759 if (tr->current_trace->use_max_tr) {
5760 ret = -EBUSY;
5761 goto out;
5762 }
5763
5764 switch (val) {
5765 case 0:
5766 if (iter->cpu_file != RING_BUFFER_ALL_CPUS) {
5767 ret = -EINVAL;
5768 break;
5769 }
5770 if (tr->allocated_snapshot)
5771 free_snapshot(tr);
5772 break;
5773 case 1:
5774 /* Only allow per-cpu swap if the ring buffer supports it */
5775 #ifndef CONFIG_RING_BUFFER_ALLOW_SWAP
5776 if (iter->cpu_file != RING_BUFFER_ALL_CPUS) {
5777 ret = -EINVAL;
5778 break;
5779 }
5780 #endif
5781 if (!tr->allocated_snapshot) {
5782 ret = alloc_snapshot(tr);
5783 if (ret < 0)
5784 break;
5785 }
5786 local_irq_disable();
5787 /* Now, we're going to swap */
5788 if (iter->cpu_file == RING_BUFFER_ALL_CPUS)
5789 update_max_tr(tr, current, smp_processor_id());
5790 else
5791 update_max_tr_single(tr, current, iter->cpu_file);
5792 local_irq_enable();
5793 break;
5794 default:
5795 if (tr->allocated_snapshot) {
5796 if (iter->cpu_file == RING_BUFFER_ALL_CPUS)
5797 tracing_reset_online_cpus(&tr->max_buffer);
5798 else
5799 tracing_reset(&tr->max_buffer, iter->cpu_file);
5800 }
5801 break;
5802 }
5803
5804 if (ret >= 0) {
5805 *ppos += cnt;
5806 ret = cnt;
5807 }
5808 out:
5809 mutex_unlock(&trace_types_lock);
5810 return ret;
5811 }
5812
5813 static int tracing_snapshot_release(struct inode *inode, struct file *file)
5814 {
5815 struct seq_file *m = file->private_data;
5816 int ret;
5817
5818 ret = tracing_release(inode, file);
5819
5820 if (file->f_mode & FMODE_READ)
5821 return ret;
5822
5823 /* If write only, the seq_file is just a stub */
5824 if (m)
5825 kfree(m->private);
5826 kfree(m);
5827
5828 return 0;
5829 }
5830
5831 static int tracing_buffers_open(struct inode *inode, struct file *filp);
5832 static ssize_t tracing_buffers_read(struct file *filp, char __user *ubuf,
5833 size_t count, loff_t *ppos);
5834 static int tracing_buffers_release(struct inode *inode, struct file *file);
5835 static ssize_t tracing_buffers_splice_read(struct file *file, loff_t *ppos,
5836 struct pipe_inode_info *pipe, size_t len, unsigned int flags);
5837
5838 static int snapshot_raw_open(struct inode *inode, struct file *filp)
5839 {
5840 struct ftrace_buffer_info *info;
5841 int ret;
5842
5843 ret = tracing_buffers_open(inode, filp);
5844 if (ret < 0)
5845 return ret;
5846
5847 info = filp->private_data;
5848
5849 if (info->iter.trace->use_max_tr) {
5850 tracing_buffers_release(inode, filp);
5851 return -EBUSY;
5852 }
5853
5854 info->iter.snapshot = true;
5855 info->iter.trace_buffer = &info->iter.tr->max_buffer;
5856
5857 return ret;
5858 }
5859
5860 #endif /* CONFIG_TRACER_SNAPSHOT */
5861
5862
5863 static const struct file_operations tracing_thresh_fops = {
5864 .open = tracing_open_generic,
5865 .read = tracing_thresh_read,
5866 .write = tracing_thresh_write,
5867 .llseek = generic_file_llseek,
5868 };
5869
5870 #ifdef CONFIG_TRACER_MAX_TRACE
5871 static const struct file_operations tracing_max_lat_fops = {
5872 .open = tracing_open_generic,
5873 .read = tracing_max_lat_read,
5874 .write = tracing_max_lat_write,
5875 .llseek = generic_file_llseek,
5876 };
5877 #endif
5878
5879 static const struct file_operations set_tracer_fops = {
5880 .open = tracing_open_generic,
5881 .read = tracing_set_trace_read,
5882 .write = tracing_set_trace_write,
5883 .llseek = generic_file_llseek,
5884 };
5885
5886 static const struct file_operations tracing_pipe_fops = {
5887 .open = tracing_open_pipe,
5888 .poll = tracing_poll_pipe,
5889 .read = tracing_read_pipe,
5890 .splice_read = tracing_splice_read_pipe,
5891 .release = tracing_release_pipe,
5892 .llseek = no_llseek,
5893 };
5894
5895 static const struct file_operations tracing_entries_fops = {
5896 .open = tracing_open_generic_tr,
5897 .read = tracing_entries_read,
5898 .write = tracing_entries_write,
5899 .llseek = generic_file_llseek,
5900 .release = tracing_release_generic_tr,
5901 };
5902
5903 static const struct file_operations tracing_total_entries_fops = {
5904 .open = tracing_open_generic_tr,
5905 .read = tracing_total_entries_read,
5906 .llseek = generic_file_llseek,
5907 .release = tracing_release_generic_tr,
5908 };
5909
5910 static const struct file_operations tracing_free_buffer_fops = {
5911 .open = tracing_open_generic_tr,
5912 .write = tracing_free_buffer_write,
5913 .release = tracing_free_buffer_release,
5914 };
5915
5916 static const struct file_operations tracing_mark_fops = {
5917 .open = tracing_open_generic_tr,
5918 .write = tracing_mark_write,
5919 .llseek = generic_file_llseek,
5920 .release = tracing_release_generic_tr,
5921 };
5922
5923 static const struct file_operations trace_clock_fops = {
5924 .open = tracing_clock_open,
5925 .read = seq_read,
5926 .llseek = seq_lseek,
5927 .release = tracing_single_release_tr,
5928 .write = tracing_clock_write,
5929 };
5930
5931 #ifdef CONFIG_TRACER_SNAPSHOT
5932 static const struct file_operations snapshot_fops = {
5933 .open = tracing_snapshot_open,
5934 .read = seq_read,
5935 .write = tracing_snapshot_write,
5936 .llseek = tracing_lseek,
5937 .release = tracing_snapshot_release,
5938 };
5939
5940 static const struct file_operations snapshot_raw_fops = {
5941 .open = snapshot_raw_open,
5942 .read = tracing_buffers_read,
5943 .release = tracing_buffers_release,
5944 .splice_read = tracing_buffers_splice_read,
5945 .llseek = no_llseek,
5946 };
5947
5948 #endif /* CONFIG_TRACER_SNAPSHOT */
5949
5950 static int tracing_buffers_open(struct inode *inode, struct file *filp)
5951 {
5952 struct trace_array *tr = inode->i_private;
5953 struct ftrace_buffer_info *info;
5954 int ret;
5955
5956 if (tracing_disabled)
5957 return -ENODEV;
5958
5959 if (trace_array_get(tr) < 0)
5960 return -ENODEV;
5961
5962 info = kzalloc(sizeof(*info), GFP_KERNEL);
5963 if (!info) {
5964 trace_array_put(tr);
5965 return -ENOMEM;
5966 }
5967
5968 mutex_lock(&trace_types_lock);
5969
5970 info->iter.tr = tr;
5971 info->iter.cpu_file = tracing_get_cpu(inode);
5972 info->iter.trace = tr->current_trace;
5973 info->iter.trace_buffer = &tr->trace_buffer;
5974 info->spare = NULL;
5975 /* Force reading ring buffer for first read */
5976 info->read = (unsigned int)-1;
5977
5978 filp->private_data = info;
5979
5980 tr->current_trace->ref++;
5981
5982 mutex_unlock(&trace_types_lock);
5983
5984 ret = nonseekable_open(inode, filp);
5985 if (ret < 0)
5986 trace_array_put(tr);
5987
5988 return ret;
5989 }
5990
5991 static unsigned int
5992 tracing_buffers_poll(struct file *filp, poll_table *poll_table)
5993 {
5994 struct ftrace_buffer_info *info = filp->private_data;
5995 struct trace_iterator *iter = &info->iter;
5996
5997 return trace_poll(iter, filp, poll_table);
5998 }
5999
6000 static ssize_t
6001 tracing_buffers_read(struct file *filp, char __user *ubuf,
6002 size_t count, loff_t *ppos)
6003 {
6004 struct ftrace_buffer_info *info = filp->private_data;
6005 struct trace_iterator *iter = &info->iter;
6006 ssize_t ret;
6007 ssize_t size;
6008
6009 if (!count)
6010 return 0;
6011
6012 #ifdef CONFIG_TRACER_MAX_TRACE
6013 if (iter->snapshot && iter->tr->current_trace->use_max_tr)
6014 return -EBUSY;
6015 #endif
6016
6017 if (!info->spare)
6018 info->spare = ring_buffer_alloc_read_page(iter->trace_buffer->buffer,
6019 iter->cpu_file);
6020 if (!info->spare)
6021 return -ENOMEM;
6022
6023 /* Do we have previous read data to read? */
6024 if (info->read < PAGE_SIZE)
6025 goto read;
6026
6027 again:
6028 trace_access_lock(iter->cpu_file);
6029 ret = ring_buffer_read_page(iter->trace_buffer->buffer,
6030 &info->spare,
6031 count,
6032 iter->cpu_file, 0);
6033 trace_access_unlock(iter->cpu_file);
6034
6035 if (ret < 0) {
6036 if (trace_empty(iter)) {
6037 if ((filp->f_flags & O_NONBLOCK))
6038 return -EAGAIN;
6039
6040 ret = wait_on_pipe(iter, false);
6041 if (ret)
6042 return ret;
6043
6044 goto again;
6045 }
6046 return 0;
6047 }
6048
6049 info->read = 0;
6050 read:
6051 size = PAGE_SIZE - info->read;
6052 if (size > count)
6053 size = count;
6054
6055 ret = copy_to_user(ubuf, info->spare + info->read, size);
6056 if (ret == size)
6057 return -EFAULT;
6058
6059 size -= ret;
6060
6061 *ppos += size;
6062 info->read += size;
6063
6064 return size;
6065 }
6066
6067 static int tracing_buffers_release(struct inode *inode, struct file *file)
6068 {
6069 struct ftrace_buffer_info *info = file->private_data;
6070 struct trace_iterator *iter = &info->iter;
6071
6072 mutex_lock(&trace_types_lock);
6073
6074 iter->tr->current_trace->ref--;
6075
6076 __trace_array_put(iter->tr);
6077
6078 if (info->spare)
6079 ring_buffer_free_read_page(iter->trace_buffer->buffer, info->spare);
6080 kfree(info);
6081
6082 mutex_unlock(&trace_types_lock);
6083
6084 return 0;
6085 }
6086
6087 struct buffer_ref {
6088 struct ring_buffer *buffer;
6089 void *page;
6090 int ref;
6091 };
6092
6093 static void buffer_pipe_buf_release(struct pipe_inode_info *pipe,
6094 struct pipe_buffer *buf)
6095 {
6096 struct buffer_ref *ref = (struct buffer_ref *)buf->private;
6097
6098 if (--ref->ref)
6099 return;
6100
6101 ring_buffer_free_read_page(ref->buffer, ref->page);
6102 kfree(ref);
6103 buf->private = 0;
6104 }
6105
6106 static void buffer_pipe_buf_get(struct pipe_inode_info *pipe,
6107 struct pipe_buffer *buf)
6108 {
6109 struct buffer_ref *ref = (struct buffer_ref *)buf->private;
6110
6111 ref->ref++;
6112 }
6113
6114 /* Pipe buffer operations for a buffer. */
6115 static const struct pipe_buf_operations buffer_pipe_buf_ops = {
6116 .can_merge = 0,
6117 .confirm = generic_pipe_buf_confirm,
6118 .release = buffer_pipe_buf_release,
6119 .steal = generic_pipe_buf_steal,
6120 .get = buffer_pipe_buf_get,
6121 };
6122
6123 /*
6124 * Callback from splice_to_pipe(), if we need to release some pages
6125 * at the end of the spd in case we error'ed out in filling the pipe.
6126 */
6127 static void buffer_spd_release(struct splice_pipe_desc *spd, unsigned int i)
6128 {
6129 struct buffer_ref *ref =
6130 (struct buffer_ref *)spd->partial[i].private;
6131
6132 if (--ref->ref)
6133 return;
6134
6135 ring_buffer_free_read_page(ref->buffer, ref->page);
6136 kfree(ref);
6137 spd->partial[i].private = 0;
6138 }
6139
6140 static ssize_t
6141 tracing_buffers_splice_read(struct file *file, loff_t *ppos,
6142 struct pipe_inode_info *pipe, size_t len,
6143 unsigned int flags)
6144 {
6145 struct ftrace_buffer_info *info = file->private_data;
6146 struct trace_iterator *iter = &info->iter;
6147 struct partial_page partial_def[PIPE_DEF_BUFFERS];
6148 struct page *pages_def[PIPE_DEF_BUFFERS];
6149 struct splice_pipe_desc spd = {
6150 .pages = pages_def,
6151 .partial = partial_def,
6152 .nr_pages_max = PIPE_DEF_BUFFERS,
6153 .flags = flags,
6154 .ops = &buffer_pipe_buf_ops,
6155 .spd_release = buffer_spd_release,
6156 };
6157 struct buffer_ref *ref;
6158 int entries, size, i;
6159 ssize_t ret = 0;
6160
6161 #ifdef CONFIG_TRACER_MAX_TRACE
6162 if (iter->snapshot && iter->tr->current_trace->use_max_tr)
6163 return -EBUSY;
6164 #endif
6165
6166 if (splice_grow_spd(pipe, &spd))
6167 return -ENOMEM;
6168
6169 if (*ppos & (PAGE_SIZE - 1))
6170 return -EINVAL;
6171
6172 if (len & (PAGE_SIZE - 1)) {
6173 if (len < PAGE_SIZE)
6174 return -EINVAL;
6175 len &= PAGE_MASK;
6176 }
6177
6178 again:
6179 trace_access_lock(iter->cpu_file);
6180 entries = ring_buffer_entries_cpu(iter->trace_buffer->buffer, iter->cpu_file);
6181
6182 for (i = 0; i < spd.nr_pages_max && len && entries; i++, len -= PAGE_SIZE) {
6183 struct page *page;
6184 int r;
6185
6186 ref = kzalloc(sizeof(*ref), GFP_KERNEL);
6187 if (!ref) {
6188 ret = -ENOMEM;
6189 break;
6190 }
6191
6192 ref->ref = 1;
6193 ref->buffer = iter->trace_buffer->buffer;
6194 ref->page = ring_buffer_alloc_read_page(ref->buffer, iter->cpu_file);
6195 if (!ref->page) {
6196 ret = -ENOMEM;
6197 kfree(ref);
6198 break;
6199 }
6200
6201 r = ring_buffer_read_page(ref->buffer, &ref->page,
6202 len, iter->cpu_file, 1);
6203 if (r < 0) {
6204 ring_buffer_free_read_page(ref->buffer, ref->page);
6205 kfree(ref);
6206 break;
6207 }
6208
6209 /*
6210 * zero out any left over data, this is going to
6211 * user land.
6212 */
6213 size = ring_buffer_page_len(ref->page);
6214 if (size < PAGE_SIZE)
6215 memset(ref->page + size, 0, PAGE_SIZE - size);
6216
6217 page = virt_to_page(ref->page);
6218
6219 spd.pages[i] = page;
6220 spd.partial[i].len = PAGE_SIZE;
6221 spd.partial[i].offset = 0;
6222 spd.partial[i].private = (unsigned long)ref;
6223 spd.nr_pages++;
6224 *ppos += PAGE_SIZE;
6225
6226 entries = ring_buffer_entries_cpu(iter->trace_buffer->buffer, iter->cpu_file);
6227 }
6228
6229 trace_access_unlock(iter->cpu_file);
6230 spd.nr_pages = i;
6231
6232 /* did we read anything? */
6233 if (!spd.nr_pages) {
6234 if (ret)
6235 return ret;
6236
6237 if ((file->f_flags & O_NONBLOCK) || (flags & SPLICE_F_NONBLOCK))
6238 return -EAGAIN;
6239
6240 ret = wait_on_pipe(iter, true);
6241 if (ret)
6242 return ret;
6243
6244 goto again;
6245 }
6246
6247 ret = splice_to_pipe(pipe, &spd);
6248 splice_shrink_spd(&spd);
6249
6250 return ret;
6251 }
6252
6253 static const struct file_operations tracing_buffers_fops = {
6254 .open = tracing_buffers_open,
6255 .read = tracing_buffers_read,
6256 .poll = tracing_buffers_poll,
6257 .release = tracing_buffers_release,
6258 .splice_read = tracing_buffers_splice_read,
6259 .llseek = no_llseek,
6260 };
6261
6262 static ssize_t
6263 tracing_stats_read(struct file *filp, char __user *ubuf,
6264 size_t count, loff_t *ppos)
6265 {
6266 struct inode *inode = file_inode(filp);
6267 struct trace_array *tr = inode->i_private;
6268 struct trace_buffer *trace_buf = &tr->trace_buffer;
6269 int cpu = tracing_get_cpu(inode);
6270 struct trace_seq *s;
6271 unsigned long cnt;
6272 unsigned long long t;
6273 unsigned long usec_rem;
6274
6275 s = kmalloc(sizeof(*s), GFP_KERNEL);
6276 if (!s)
6277 return -ENOMEM;
6278
6279 trace_seq_init(s);
6280
6281 cnt = ring_buffer_entries_cpu(trace_buf->buffer, cpu);
6282 trace_seq_printf(s, "entries: %ld\n", cnt);
6283
6284 cnt = ring_buffer_overrun_cpu(trace_buf->buffer, cpu);
6285 trace_seq_printf(s, "overrun: %ld\n", cnt);
6286
6287 cnt = ring_buffer_commit_overrun_cpu(trace_buf->buffer, cpu);
6288 trace_seq_printf(s, "commit overrun: %ld\n", cnt);
6289
6290 cnt = ring_buffer_bytes_cpu(trace_buf->buffer, cpu);
6291 trace_seq_printf(s, "bytes: %ld\n", cnt);
6292
6293 if (trace_clocks[tr->clock_id].in_ns) {
6294 /* local or global for trace_clock */
6295 t = ns2usecs(ring_buffer_oldest_event_ts(trace_buf->buffer, cpu));
6296 usec_rem = do_div(t, USEC_PER_SEC);
6297 trace_seq_printf(s, "oldest event ts: %5llu.%06lu\n",
6298 t, usec_rem);
6299
6300 t = ns2usecs(ring_buffer_time_stamp(trace_buf->buffer, cpu));
6301 usec_rem = do_div(t, USEC_PER_SEC);
6302 trace_seq_printf(s, "now ts: %5llu.%06lu\n", t, usec_rem);
6303 } else {
6304 /* counter or tsc mode for trace_clock */
6305 trace_seq_printf(s, "oldest event ts: %llu\n",
6306 ring_buffer_oldest_event_ts(trace_buf->buffer, cpu));
6307
6308 trace_seq_printf(s, "now ts: %llu\n",
6309 ring_buffer_time_stamp(trace_buf->buffer, cpu));
6310 }
6311
6312 cnt = ring_buffer_dropped_events_cpu(trace_buf->buffer, cpu);
6313 trace_seq_printf(s, "dropped events: %ld\n", cnt);
6314
6315 cnt = ring_buffer_read_events_cpu(trace_buf->buffer, cpu);
6316 trace_seq_printf(s, "read events: %ld\n", cnt);
6317
6318 count = simple_read_from_buffer(ubuf, count, ppos,
6319 s->buffer, trace_seq_used(s));
6320
6321 kfree(s);
6322
6323 return count;
6324 }
6325
6326 static const struct file_operations tracing_stats_fops = {
6327 .open = tracing_open_generic_tr,
6328 .read = tracing_stats_read,
6329 .llseek = generic_file_llseek,
6330 .release = tracing_release_generic_tr,
6331 };
6332
6333 #ifdef CONFIG_DYNAMIC_FTRACE
6334
6335 int __weak ftrace_arch_read_dyn_info(char *buf, int size)
6336 {
6337 return 0;
6338 }
6339
6340 static ssize_t
6341 tracing_read_dyn_info(struct file *filp, char __user *ubuf,
6342 size_t cnt, loff_t *ppos)
6343 {
6344 static char ftrace_dyn_info_buffer[1024];
6345 static DEFINE_MUTEX(dyn_info_mutex);
6346 unsigned long *p = filp->private_data;
6347 char *buf = ftrace_dyn_info_buffer;
6348 int size = ARRAY_SIZE(ftrace_dyn_info_buffer);
6349 int r;
6350
6351 mutex_lock(&dyn_info_mutex);
6352 r = sprintf(buf, "%ld ", *p);
6353
6354 r += ftrace_arch_read_dyn_info(buf+r, (size-1)-r);
6355 buf[r++] = '\n';
6356
6357 r = simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
6358
6359 mutex_unlock(&dyn_info_mutex);
6360
6361 return r;
6362 }
6363
6364 static const struct file_operations tracing_dyn_info_fops = {
6365 .open = tracing_open_generic,
6366 .read = tracing_read_dyn_info,
6367 .llseek = generic_file_llseek,
6368 };
6369 #endif /* CONFIG_DYNAMIC_FTRACE */
6370
6371 #if defined(CONFIG_TRACER_SNAPSHOT) && defined(CONFIG_DYNAMIC_FTRACE)
6372 static void
6373 ftrace_snapshot(unsigned long ip, unsigned long parent_ip, void **data)
6374 {
6375 tracing_snapshot();
6376 }
6377
6378 static void
6379 ftrace_count_snapshot(unsigned long ip, unsigned long parent_ip, void **data)
6380 {
6381 unsigned long *count = (long *)data;
6382
6383 if (!*count)
6384 return;
6385
6386 if (*count != -1)
6387 (*count)--;
6388
6389 tracing_snapshot();
6390 }
6391
6392 static int
6393 ftrace_snapshot_print(struct seq_file *m, unsigned long ip,
6394 struct ftrace_probe_ops *ops, void *data)
6395 {
6396 long count = (long)data;
6397
6398 seq_printf(m, "%ps:", (void *)ip);
6399
6400 seq_puts(m, "snapshot");
6401
6402 if (count == -1)
6403 seq_puts(m, ":unlimited\n");
6404 else
6405 seq_printf(m, ":count=%ld\n", count);
6406
6407 return 0;
6408 }
6409
6410 static struct ftrace_probe_ops snapshot_probe_ops = {
6411 .func = ftrace_snapshot,
6412 .print = ftrace_snapshot_print,
6413 };
6414
6415 static struct ftrace_probe_ops snapshot_count_probe_ops = {
6416 .func = ftrace_count_snapshot,
6417 .print = ftrace_snapshot_print,
6418 };
6419
6420 static int
6421 ftrace_trace_snapshot_callback(struct ftrace_hash *hash,
6422 char *glob, char *cmd, char *param, int enable)
6423 {
6424 struct ftrace_probe_ops *ops;
6425 void *count = (void *)-1;
6426 char *number;
6427 int ret;
6428
6429 /* hash funcs only work with set_ftrace_filter */
6430 if (!enable)
6431 return -EINVAL;
6432
6433 ops = param ? &snapshot_count_probe_ops : &snapshot_probe_ops;
6434
6435 if (glob[0] == '!') {
6436 unregister_ftrace_function_probe_func(glob+1, ops);
6437 return 0;
6438 }
6439
6440 if (!param)
6441 goto out_reg;
6442
6443 number = strsep(&param, ":");
6444
6445 if (!strlen(number))
6446 goto out_reg;
6447
6448 /*
6449 * We use the callback data field (which is a pointer)
6450 * as our counter.
6451 */
6452 ret = kstrtoul(number, 0, (unsigned long *)&count);
6453 if (ret)
6454 return ret;
6455
6456 out_reg:
6457 ret = register_ftrace_function_probe(glob, ops, count);
6458
6459 if (ret >= 0)
6460 alloc_snapshot(&global_trace);
6461
6462 return ret < 0 ? ret : 0;
6463 }
6464
6465 static struct ftrace_func_command ftrace_snapshot_cmd = {
6466 .name = "snapshot",
6467 .func = ftrace_trace_snapshot_callback,
6468 };
6469
6470 static __init int register_snapshot_cmd(void)
6471 {
6472 return register_ftrace_command(&ftrace_snapshot_cmd);
6473 }
6474 #else
6475 static inline __init int register_snapshot_cmd(void) { return 0; }
6476 #endif /* defined(CONFIG_TRACER_SNAPSHOT) && defined(CONFIG_DYNAMIC_FTRACE) */
6477
6478 static struct dentry *tracing_get_dentry(struct trace_array *tr)
6479 {
6480 if (WARN_ON(!tr->dir))
6481 return ERR_PTR(-ENODEV);
6482
6483 /* Top directory uses NULL as the parent */
6484 if (tr->flags & TRACE_ARRAY_FL_GLOBAL)
6485 return NULL;
6486
6487 /* All sub buffers have a descriptor */
6488 return tr->dir;
6489 }
6490
6491 static struct dentry *tracing_dentry_percpu(struct trace_array *tr, int cpu)
6492 {
6493 struct dentry *d_tracer;
6494
6495 if (tr->percpu_dir)
6496 return tr->percpu_dir;
6497
6498 d_tracer = tracing_get_dentry(tr);
6499 if (IS_ERR(d_tracer))
6500 return NULL;
6501
6502 tr->percpu_dir = tracefs_create_dir("per_cpu", d_tracer);
6503
6504 WARN_ONCE(!tr->percpu_dir,
6505 "Could not create tracefs directory 'per_cpu/%d'\n", cpu);
6506
6507 return tr->percpu_dir;
6508 }
6509
6510 static struct dentry *
6511 trace_create_cpu_file(const char *name, umode_t mode, struct dentry *parent,
6512 void *data, long cpu, const struct file_operations *fops)
6513 {
6514 struct dentry *ret = trace_create_file(name, mode, parent, data, fops);
6515
6516 if (ret) /* See tracing_get_cpu() */
6517 d_inode(ret)->i_cdev = (void *)(cpu + 1);
6518 return ret;
6519 }
6520
6521 static void
6522 tracing_init_tracefs_percpu(struct trace_array *tr, long cpu)
6523 {
6524 struct dentry *d_percpu = tracing_dentry_percpu(tr, cpu);
6525 struct dentry *d_cpu;
6526 char cpu_dir[30]; /* 30 characters should be more than enough */
6527
6528 if (!d_percpu)
6529 return;
6530
6531 snprintf(cpu_dir, 30, "cpu%ld", cpu);
6532 d_cpu = tracefs_create_dir(cpu_dir, d_percpu);
6533 if (!d_cpu) {
6534 pr_warn("Could not create tracefs '%s' entry\n", cpu_dir);
6535 return;
6536 }
6537
6538 /* per cpu trace_pipe */
6539 trace_create_cpu_file("trace_pipe", 0444, d_cpu,
6540 tr, cpu, &tracing_pipe_fops);
6541
6542 /* per cpu trace */
6543 trace_create_cpu_file("trace", 0644, d_cpu,
6544 tr, cpu, &tracing_fops);
6545
6546 trace_create_cpu_file("trace_pipe_raw", 0444, d_cpu,
6547 tr, cpu, &tracing_buffers_fops);
6548
6549 trace_create_cpu_file("stats", 0444, d_cpu,
6550 tr, cpu, &tracing_stats_fops);
6551
6552 trace_create_cpu_file("buffer_size_kb", 0444, d_cpu,
6553 tr, cpu, &tracing_entries_fops);
6554
6555 #ifdef CONFIG_TRACER_SNAPSHOT
6556 trace_create_cpu_file("snapshot", 0644, d_cpu,
6557 tr, cpu, &snapshot_fops);
6558
6559 trace_create_cpu_file("snapshot_raw", 0444, d_cpu,
6560 tr, cpu, &snapshot_raw_fops);
6561 #endif
6562 }
6563
6564 #ifdef CONFIG_FTRACE_SELFTEST
6565 /* Let selftest have access to static functions in this file */
6566 #include "trace_selftest.c"
6567 #endif
6568
6569 static ssize_t
6570 trace_options_read(struct file *filp, char __user *ubuf, size_t cnt,
6571 loff_t *ppos)
6572 {
6573 struct trace_option_dentry *topt = filp->private_data;
6574 char *buf;
6575
6576 if (topt->flags->val & topt->opt->bit)
6577 buf = "1\n";
6578 else
6579 buf = "0\n";
6580
6581 return simple_read_from_buffer(ubuf, cnt, ppos, buf, 2);
6582 }
6583
6584 static ssize_t
6585 trace_options_write(struct file *filp, const char __user *ubuf, size_t cnt,
6586 loff_t *ppos)
6587 {
6588 struct trace_option_dentry *topt = filp->private_data;
6589 unsigned long val;
6590 int ret;
6591
6592 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
6593 if (ret)
6594 return ret;
6595
6596 if (val != 0 && val != 1)
6597 return -EINVAL;
6598
6599 if (!!(topt->flags->val & topt->opt->bit) != val) {
6600 mutex_lock(&trace_types_lock);
6601 ret = __set_tracer_option(topt->tr, topt->flags,
6602 topt->opt, !val);
6603 mutex_unlock(&trace_types_lock);
6604 if (ret)
6605 return ret;
6606 }
6607
6608 *ppos += cnt;
6609
6610 return cnt;
6611 }
6612
6613
6614 static const struct file_operations trace_options_fops = {
6615 .open = tracing_open_generic,
6616 .read = trace_options_read,
6617 .write = trace_options_write,
6618 .llseek = generic_file_llseek,
6619 };
6620
6621 /*
6622 * In order to pass in both the trace_array descriptor as well as the index
6623 * to the flag that the trace option file represents, the trace_array
6624 * has a character array of trace_flags_index[], which holds the index
6625 * of the bit for the flag it represents. index[0] == 0, index[1] == 1, etc.
6626 * The address of this character array is passed to the flag option file
6627 * read/write callbacks.
6628 *
6629 * In order to extract both the index and the trace_array descriptor,
6630 * get_tr_index() uses the following algorithm.
6631 *
6632 * idx = *ptr;
6633 *
6634 * As the pointer itself contains the address of the index (remember
6635 * index[1] == 1).
6636 *
6637 * Then to get the trace_array descriptor, by subtracting that index
6638 * from the ptr, we get to the start of the index itself.
6639 *
6640 * ptr - idx == &index[0]
6641 *
6642 * Then a simple container_of() from that pointer gets us to the
6643 * trace_array descriptor.
6644 */
6645 static void get_tr_index(void *data, struct trace_array **ptr,
6646 unsigned int *pindex)
6647 {
6648 *pindex = *(unsigned char *)data;
6649
6650 *ptr = container_of(data - *pindex, struct trace_array,
6651 trace_flags_index);
6652 }
6653
6654 static ssize_t
6655 trace_options_core_read(struct file *filp, char __user *ubuf, size_t cnt,
6656 loff_t *ppos)
6657 {
6658 void *tr_index = filp->private_data;
6659 struct trace_array *tr;
6660 unsigned int index;
6661 char *buf;
6662
6663 get_tr_index(tr_index, &tr, &index);
6664
6665 if (tr->trace_flags & (1 << index))
6666 buf = "1\n";
6667 else
6668 buf = "0\n";
6669
6670 return simple_read_from_buffer(ubuf, cnt, ppos, buf, 2);
6671 }
6672
6673 static ssize_t
6674 trace_options_core_write(struct file *filp, const char __user *ubuf, size_t cnt,
6675 loff_t *ppos)
6676 {
6677 void *tr_index = filp->private_data;
6678 struct trace_array *tr;
6679 unsigned int index;
6680 unsigned long val;
6681 int ret;
6682
6683 get_tr_index(tr_index, &tr, &index);
6684
6685 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
6686 if (ret)
6687 return ret;
6688
6689 if (val != 0 && val != 1)
6690 return -EINVAL;
6691
6692 mutex_lock(&trace_types_lock);
6693 ret = set_tracer_flag(tr, 1 << index, val);
6694 mutex_unlock(&trace_types_lock);
6695
6696 if (ret < 0)
6697 return ret;
6698
6699 *ppos += cnt;
6700
6701 return cnt;
6702 }
6703
6704 static const struct file_operations trace_options_core_fops = {
6705 .open = tracing_open_generic,
6706 .read = trace_options_core_read,
6707 .write = trace_options_core_write,
6708 .llseek = generic_file_llseek,
6709 };
6710
6711 struct dentry *trace_create_file(const char *name,
6712 umode_t mode,
6713 struct dentry *parent,
6714 void *data,
6715 const struct file_operations *fops)
6716 {
6717 struct dentry *ret;
6718
6719 ret = tracefs_create_file(name, mode, parent, data, fops);
6720 if (!ret)
6721 pr_warn("Could not create tracefs '%s' entry\n", name);
6722
6723 return ret;
6724 }
6725
6726
6727 static struct dentry *trace_options_init_dentry(struct trace_array *tr)
6728 {
6729 struct dentry *d_tracer;
6730
6731 if (tr->options)
6732 return tr->options;
6733
6734 d_tracer = tracing_get_dentry(tr);
6735 if (IS_ERR(d_tracer))
6736 return NULL;
6737
6738 tr->options = tracefs_create_dir("options", d_tracer);
6739 if (!tr->options) {
6740 pr_warn("Could not create tracefs directory 'options'\n");
6741 return NULL;
6742 }
6743
6744 return tr->options;
6745 }
6746
6747 static void
6748 create_trace_option_file(struct trace_array *tr,
6749 struct trace_option_dentry *topt,
6750 struct tracer_flags *flags,
6751 struct tracer_opt *opt)
6752 {
6753 struct dentry *t_options;
6754
6755 t_options = trace_options_init_dentry(tr);
6756 if (!t_options)
6757 return;
6758
6759 topt->flags = flags;
6760 topt->opt = opt;
6761 topt->tr = tr;
6762
6763 topt->entry = trace_create_file(opt->name, 0644, t_options, topt,
6764 &trace_options_fops);
6765
6766 }
6767
6768 static void
6769 create_trace_option_files(struct trace_array *tr, struct tracer *tracer)
6770 {
6771 struct trace_option_dentry *topts;
6772 struct trace_options *tr_topts;
6773 struct tracer_flags *flags;
6774 struct tracer_opt *opts;
6775 int cnt;
6776 int i;
6777
6778 if (!tracer)
6779 return;
6780
6781 flags = tracer->flags;
6782
6783 if (!flags || !flags->opts)
6784 return;
6785
6786 /*
6787 * If this is an instance, only create flags for tracers
6788 * the instance may have.
6789 */
6790 if (!trace_ok_for_array(tracer, tr))
6791 return;
6792
6793 for (i = 0; i < tr->nr_topts; i++) {
6794 /* Make sure there's no duplicate flags. */
6795 if (WARN_ON_ONCE(tr->topts[i].tracer->flags == tracer->flags))
6796 return;
6797 }
6798
6799 opts = flags->opts;
6800
6801 for (cnt = 0; opts[cnt].name; cnt++)
6802 ;
6803
6804 topts = kcalloc(cnt + 1, sizeof(*topts), GFP_KERNEL);
6805 if (!topts)
6806 return;
6807
6808 tr_topts = krealloc(tr->topts, sizeof(*tr->topts) * (tr->nr_topts + 1),
6809 GFP_KERNEL);
6810 if (!tr_topts) {
6811 kfree(topts);
6812 return;
6813 }
6814
6815 tr->topts = tr_topts;
6816 tr->topts[tr->nr_topts].tracer = tracer;
6817 tr->topts[tr->nr_topts].topts = topts;
6818 tr->nr_topts++;
6819
6820 for (cnt = 0; opts[cnt].name; cnt++) {
6821 create_trace_option_file(tr, &topts[cnt], flags,
6822 &opts[cnt]);
6823 WARN_ONCE(topts[cnt].entry == NULL,
6824 "Failed to create trace option: %s",
6825 opts[cnt].name);
6826 }
6827 }
6828
6829 static struct dentry *
6830 create_trace_option_core_file(struct trace_array *tr,
6831 const char *option, long index)
6832 {
6833 struct dentry *t_options;
6834
6835 t_options = trace_options_init_dentry(tr);
6836 if (!t_options)
6837 return NULL;
6838
6839 return trace_create_file(option, 0644, t_options,
6840 (void *)&tr->trace_flags_index[index],
6841 &trace_options_core_fops);
6842 }
6843
6844 static void create_trace_options_dir(struct trace_array *tr)
6845 {
6846 struct dentry *t_options;
6847 bool top_level = tr == &global_trace;
6848 int i;
6849
6850 t_options = trace_options_init_dentry(tr);
6851 if (!t_options)
6852 return;
6853
6854 for (i = 0; trace_options[i]; i++) {
6855 if (top_level ||
6856 !((1 << i) & TOP_LEVEL_TRACE_FLAGS))
6857 create_trace_option_core_file(tr, trace_options[i], i);
6858 }
6859 }
6860
6861 static ssize_t
6862 rb_simple_read(struct file *filp, char __user *ubuf,
6863 size_t cnt, loff_t *ppos)
6864 {
6865 struct trace_array *tr = filp->private_data;
6866 char buf[64];
6867 int r;
6868
6869 r = tracer_tracing_is_on(tr);
6870 r = sprintf(buf, "%d\n", r);
6871
6872 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
6873 }
6874
6875 static ssize_t
6876 rb_simple_write(struct file *filp, const char __user *ubuf,
6877 size_t cnt, loff_t *ppos)
6878 {
6879 struct trace_array *tr = filp->private_data;
6880 struct ring_buffer *buffer = tr->trace_buffer.buffer;
6881 unsigned long val;
6882 int ret;
6883
6884 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
6885 if (ret)
6886 return ret;
6887
6888 if (buffer) {
6889 mutex_lock(&trace_types_lock);
6890 if (val) {
6891 tracer_tracing_on(tr);
6892 if (tr->current_trace->start)
6893 tr->current_trace->start(tr);
6894 } else {
6895 tracer_tracing_off(tr);
6896 if (tr->current_trace->stop)
6897 tr->current_trace->stop(tr);
6898 }
6899 mutex_unlock(&trace_types_lock);
6900 }
6901
6902 (*ppos)++;
6903
6904 return cnt;
6905 }
6906
6907 static const struct file_operations rb_simple_fops = {
6908 .open = tracing_open_generic_tr,
6909 .read = rb_simple_read,
6910 .write = rb_simple_write,
6911 .release = tracing_release_generic_tr,
6912 .llseek = default_llseek,
6913 };
6914
6915 struct dentry *trace_instance_dir;
6916
6917 static void
6918 init_tracer_tracefs(struct trace_array *tr, struct dentry *d_tracer);
6919
6920 static int
6921 allocate_trace_buffer(struct trace_array *tr, struct trace_buffer *buf, int size)
6922 {
6923 enum ring_buffer_flags rb_flags;
6924
6925 rb_flags = tr->trace_flags & TRACE_ITER_OVERWRITE ? RB_FL_OVERWRITE : 0;
6926
6927 buf->tr = tr;
6928
6929 buf->buffer = ring_buffer_alloc(size, rb_flags);
6930 if (!buf->buffer)
6931 return -ENOMEM;
6932
6933 buf->data = alloc_percpu(struct trace_array_cpu);
6934 if (!buf->data) {
6935 ring_buffer_free(buf->buffer);
6936 return -ENOMEM;
6937 }
6938
6939 /* Allocate the first page for all buffers */
6940 set_buffer_entries(&tr->trace_buffer,
6941 ring_buffer_size(tr->trace_buffer.buffer, 0));
6942
6943 return 0;
6944 }
6945
6946 static int allocate_trace_buffers(struct trace_array *tr, int size)
6947 {
6948 int ret;
6949
6950 ret = allocate_trace_buffer(tr, &tr->trace_buffer, size);
6951 if (ret)
6952 return ret;
6953
6954 #ifdef CONFIG_TRACER_MAX_TRACE
6955 ret = allocate_trace_buffer(tr, &tr->max_buffer,
6956 allocate_snapshot ? size : 1);
6957 if (WARN_ON(ret)) {
6958 ring_buffer_free(tr->trace_buffer.buffer);
6959 free_percpu(tr->trace_buffer.data);
6960 return -ENOMEM;
6961 }
6962 tr->allocated_snapshot = allocate_snapshot;
6963
6964 /*
6965 * Only the top level trace array gets its snapshot allocated
6966 * from the kernel command line.
6967 */
6968 allocate_snapshot = false;
6969 #endif
6970 return 0;
6971 }
6972
6973 static void free_trace_buffer(struct trace_buffer *buf)
6974 {
6975 if (buf->buffer) {
6976 ring_buffer_free(buf->buffer);
6977 buf->buffer = NULL;
6978 free_percpu(buf->data);
6979 buf->data = NULL;
6980 }
6981 }
6982
6983 static void free_trace_buffers(struct trace_array *tr)
6984 {
6985 if (!tr)
6986 return;
6987
6988 free_trace_buffer(&tr->trace_buffer);
6989
6990 #ifdef CONFIG_TRACER_MAX_TRACE
6991 free_trace_buffer(&tr->max_buffer);
6992 #endif
6993 }
6994
6995 static void init_trace_flags_index(struct trace_array *tr)
6996 {
6997 int i;
6998
6999 /* Used by the trace options files */
7000 for (i = 0; i < TRACE_FLAGS_MAX_SIZE; i++)
7001 tr->trace_flags_index[i] = i;
7002 }
7003
7004 static void __update_tracer_options(struct trace_array *tr)
7005 {
7006 struct tracer *t;
7007
7008 for (t = trace_types; t; t = t->next)
7009 add_tracer_options(tr, t);
7010 }
7011
7012 static void update_tracer_options(struct trace_array *tr)
7013 {
7014 mutex_lock(&trace_types_lock);
7015 __update_tracer_options(tr);
7016 mutex_unlock(&trace_types_lock);
7017 }
7018
7019 static int instance_mkdir(const char *name)
7020 {
7021 struct trace_array *tr;
7022 int ret;
7023
7024 mutex_lock(&trace_types_lock);
7025
7026 ret = -EEXIST;
7027 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
7028 if (tr->name && strcmp(tr->name, name) == 0)
7029 goto out_unlock;
7030 }
7031
7032 ret = -ENOMEM;
7033 tr = kzalloc(sizeof(*tr), GFP_KERNEL);
7034 if (!tr)
7035 goto out_unlock;
7036
7037 tr->name = kstrdup(name, GFP_KERNEL);
7038 if (!tr->name)
7039 goto out_free_tr;
7040
7041 if (!alloc_cpumask_var(&tr->tracing_cpumask, GFP_KERNEL))
7042 goto out_free_tr;
7043
7044 tr->trace_flags = global_trace.trace_flags & ~ZEROED_TRACE_FLAGS;
7045
7046 cpumask_copy(tr->tracing_cpumask, cpu_all_mask);
7047
7048 raw_spin_lock_init(&tr->start_lock);
7049
7050 tr->max_lock = (arch_spinlock_t)__ARCH_SPIN_LOCK_UNLOCKED;
7051
7052 tr->current_trace = &nop_trace;
7053
7054 INIT_LIST_HEAD(&tr->systems);
7055 INIT_LIST_HEAD(&tr->events);
7056
7057 if (allocate_trace_buffers(tr, trace_buf_size) < 0)
7058 goto out_free_tr;
7059
7060 tr->dir = tracefs_create_dir(name, trace_instance_dir);
7061 if (!tr->dir)
7062 goto out_free_tr;
7063
7064 ret = event_trace_add_tracer(tr->dir, tr);
7065 if (ret) {
7066 tracefs_remove_recursive(tr->dir);
7067 goto out_free_tr;
7068 }
7069
7070 init_tracer_tracefs(tr, tr->dir);
7071 init_trace_flags_index(tr);
7072 __update_tracer_options(tr);
7073
7074 list_add(&tr->list, &ftrace_trace_arrays);
7075
7076 mutex_unlock(&trace_types_lock);
7077
7078 return 0;
7079
7080 out_free_tr:
7081 free_trace_buffers(tr);
7082 free_cpumask_var(tr->tracing_cpumask);
7083 kfree(tr->name);
7084 kfree(tr);
7085
7086 out_unlock:
7087 mutex_unlock(&trace_types_lock);
7088
7089 return ret;
7090
7091 }
7092
7093 static int instance_rmdir(const char *name)
7094 {
7095 struct trace_array *tr;
7096 int found = 0;
7097 int ret;
7098 int i;
7099
7100 mutex_lock(&trace_types_lock);
7101
7102 ret = -ENODEV;
7103 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
7104 if (tr->name && strcmp(tr->name, name) == 0) {
7105 found = 1;
7106 break;
7107 }
7108 }
7109 if (!found)
7110 goto out_unlock;
7111
7112 ret = -EBUSY;
7113 if (tr->ref || (tr->current_trace && tr->current_trace->ref))
7114 goto out_unlock;
7115
7116 list_del(&tr->list);
7117
7118 /* Disable all the flags that were enabled coming in */
7119 for (i = 0; i < TRACE_FLAGS_MAX_SIZE; i++) {
7120 if ((1 << i) & ZEROED_TRACE_FLAGS)
7121 set_tracer_flag(tr, 1 << i, 0);
7122 }
7123
7124 tracing_set_nop(tr);
7125 event_trace_del_tracer(tr);
7126 ftrace_destroy_function_files(tr);
7127 tracefs_remove_recursive(tr->dir);
7128 free_trace_buffers(tr);
7129
7130 for (i = 0; i < tr->nr_topts; i++) {
7131 kfree(tr->topts[i].topts);
7132 }
7133 kfree(tr->topts);
7134
7135 kfree(tr->name);
7136 kfree(tr);
7137
7138 ret = 0;
7139
7140 out_unlock:
7141 mutex_unlock(&trace_types_lock);
7142
7143 return ret;
7144 }
7145
7146 static __init void create_trace_instances(struct dentry *d_tracer)
7147 {
7148 trace_instance_dir = tracefs_create_instance_dir("instances", d_tracer,
7149 instance_mkdir,
7150 instance_rmdir);
7151 if (WARN_ON(!trace_instance_dir))
7152 return;
7153 }
7154
7155 static void
7156 init_tracer_tracefs(struct trace_array *tr, struct dentry *d_tracer)
7157 {
7158 int cpu;
7159
7160 trace_create_file("available_tracers", 0444, d_tracer,
7161 tr, &show_traces_fops);
7162
7163 trace_create_file("current_tracer", 0644, d_tracer,
7164 tr, &set_tracer_fops);
7165
7166 trace_create_file("tracing_cpumask", 0644, d_tracer,
7167 tr, &tracing_cpumask_fops);
7168
7169 trace_create_file("trace_options", 0644, d_tracer,
7170 tr, &tracing_iter_fops);
7171
7172 trace_create_file("trace", 0644, d_tracer,
7173 tr, &tracing_fops);
7174
7175 trace_create_file("trace_pipe", 0444, d_tracer,
7176 tr, &tracing_pipe_fops);
7177
7178 trace_create_file("buffer_size_kb", 0644, d_tracer,
7179 tr, &tracing_entries_fops);
7180
7181 trace_create_file("buffer_total_size_kb", 0444, d_tracer,
7182 tr, &tracing_total_entries_fops);
7183
7184 trace_create_file("free_buffer", 0200, d_tracer,
7185 tr, &tracing_free_buffer_fops);
7186
7187 trace_create_file("trace_marker", 0220, d_tracer,
7188 tr, &tracing_mark_fops);
7189
7190 trace_create_file("trace_clock", 0644, d_tracer, tr,
7191 &trace_clock_fops);
7192
7193 trace_create_file("tracing_on", 0644, d_tracer,
7194 tr, &rb_simple_fops);
7195
7196 create_trace_options_dir(tr);
7197
7198 #ifdef CONFIG_TRACER_MAX_TRACE
7199 trace_create_file("tracing_max_latency", 0644, d_tracer,
7200 &tr->max_latency, &tracing_max_lat_fops);
7201 #endif
7202
7203 if (ftrace_create_function_files(tr, d_tracer))
7204 WARN(1, "Could not allocate function filter files");
7205
7206 #ifdef CONFIG_TRACER_SNAPSHOT
7207 trace_create_file("snapshot", 0644, d_tracer,
7208 tr, &snapshot_fops);
7209 #endif
7210
7211 for_each_tracing_cpu(cpu)
7212 tracing_init_tracefs_percpu(tr, cpu);
7213
7214 ftrace_init_tracefs(tr, d_tracer);
7215 }
7216
7217 static struct vfsmount *trace_automount(void *ingore)
7218 {
7219 struct vfsmount *mnt;
7220 struct file_system_type *type;
7221
7222 /*
7223 * To maintain backward compatibility for tools that mount
7224 * debugfs to get to the tracing facility, tracefs is automatically
7225 * mounted to the debugfs/tracing directory.
7226 */
7227 type = get_fs_type("tracefs");
7228 if (!type)
7229 return NULL;
7230 mnt = vfs_kern_mount(type, 0, "tracefs", NULL);
7231 put_filesystem(type);
7232 if (IS_ERR(mnt))
7233 return NULL;
7234 mntget(mnt);
7235
7236 return mnt;
7237 }
7238
7239 /**
7240 * tracing_init_dentry - initialize top level trace array
7241 *
7242 * This is called when creating files or directories in the tracing
7243 * directory. It is called via fs_initcall() by any of the boot up code
7244 * and expects to return the dentry of the top level tracing directory.
7245 */
7246 struct dentry *tracing_init_dentry(void)
7247 {
7248 struct trace_array *tr = &global_trace;
7249
7250 /* The top level trace array uses NULL as parent */
7251 if (tr->dir)
7252 return NULL;
7253
7254 if (WARN_ON(!tracefs_initialized()) ||
7255 (IS_ENABLED(CONFIG_DEBUG_FS) &&
7256 WARN_ON(!debugfs_initialized())))
7257 return ERR_PTR(-ENODEV);
7258
7259 /*
7260 * As there may still be users that expect the tracing
7261 * files to exist in debugfs/tracing, we must automount
7262 * the tracefs file system there, so older tools still
7263 * work with the newer kerenl.
7264 */
7265 tr->dir = debugfs_create_automount("tracing", NULL,
7266 trace_automount, NULL);
7267 if (!tr->dir) {
7268 pr_warn_once("Could not create debugfs directory 'tracing'\n");
7269 return ERR_PTR(-ENOMEM);
7270 }
7271
7272 return NULL;
7273 }
7274
7275 extern struct trace_enum_map *__start_ftrace_enum_maps[];
7276 extern struct trace_enum_map *__stop_ftrace_enum_maps[];
7277
7278 static void __init trace_enum_init(void)
7279 {
7280 int len;
7281
7282 len = __stop_ftrace_enum_maps - __start_ftrace_enum_maps;
7283 trace_insert_enum_map(NULL, __start_ftrace_enum_maps, len);
7284 }
7285
7286 #ifdef CONFIG_MODULES
7287 static void trace_module_add_enums(struct module *mod)
7288 {
7289 if (!mod->num_trace_enums)
7290 return;
7291
7292 /*
7293 * Modules with bad taint do not have events created, do
7294 * not bother with enums either.
7295 */
7296 if (trace_module_has_bad_taint(mod))
7297 return;
7298
7299 trace_insert_enum_map(mod, mod->trace_enums, mod->num_trace_enums);
7300 }
7301
7302 #ifdef CONFIG_TRACE_ENUM_MAP_FILE
7303 static void trace_module_remove_enums(struct module *mod)
7304 {
7305 union trace_enum_map_item *map;
7306 union trace_enum_map_item **last = &trace_enum_maps;
7307
7308 if (!mod->num_trace_enums)
7309 return;
7310
7311 mutex_lock(&trace_enum_mutex);
7312
7313 map = trace_enum_maps;
7314
7315 while (map) {
7316 if (map->head.mod == mod)
7317 break;
7318 map = trace_enum_jmp_to_tail(map);
7319 last = &map->tail.next;
7320 map = map->tail.next;
7321 }
7322 if (!map)
7323 goto out;
7324
7325 *last = trace_enum_jmp_to_tail(map)->tail.next;
7326 kfree(map);
7327 out:
7328 mutex_unlock(&trace_enum_mutex);
7329 }
7330 #else
7331 static inline void trace_module_remove_enums(struct module *mod) { }
7332 #endif /* CONFIG_TRACE_ENUM_MAP_FILE */
7333
7334 static int trace_module_notify(struct notifier_block *self,
7335 unsigned long val, void *data)
7336 {
7337 struct module *mod = data;
7338
7339 switch (val) {
7340 case MODULE_STATE_COMING:
7341 trace_module_add_enums(mod);
7342 break;
7343 case MODULE_STATE_GOING:
7344 trace_module_remove_enums(mod);
7345 break;
7346 }
7347
7348 return 0;
7349 }
7350
7351 static struct notifier_block trace_module_nb = {
7352 .notifier_call = trace_module_notify,
7353 .priority = 0,
7354 };
7355 #endif /* CONFIG_MODULES */
7356
7357 static __init int tracer_init_tracefs(void)
7358 {
7359 struct dentry *d_tracer;
7360
7361 trace_access_lock_init();
7362
7363 d_tracer = tracing_init_dentry();
7364 if (IS_ERR(d_tracer))
7365 return 0;
7366
7367 init_tracer_tracefs(&global_trace, d_tracer);
7368 ftrace_init_tracefs_toplevel(&global_trace, d_tracer);
7369
7370 trace_create_file("tracing_thresh", 0644, d_tracer,
7371 &global_trace, &tracing_thresh_fops);
7372
7373 trace_create_file("README", 0444, d_tracer,
7374 NULL, &tracing_readme_fops);
7375
7376 trace_create_file("saved_cmdlines", 0444, d_tracer,
7377 NULL, &tracing_saved_cmdlines_fops);
7378
7379 trace_create_file("saved_cmdlines_size", 0644, d_tracer,
7380 NULL, &tracing_saved_cmdlines_size_fops);
7381
7382 trace_enum_init();
7383
7384 trace_create_enum_file(d_tracer);
7385
7386 #ifdef CONFIG_MODULES
7387 register_module_notifier(&trace_module_nb);
7388 #endif
7389
7390 #ifdef CONFIG_DYNAMIC_FTRACE
7391 trace_create_file("dyn_ftrace_total_info", 0444, d_tracer,
7392 &ftrace_update_tot_cnt, &tracing_dyn_info_fops);
7393 #endif
7394
7395 create_trace_instances(d_tracer);
7396
7397 update_tracer_options(&global_trace);
7398
7399 return 0;
7400 }
7401
7402 static int trace_panic_handler(struct notifier_block *this,
7403 unsigned long event, void *unused)
7404 {
7405 if (ftrace_dump_on_oops)
7406 ftrace_dump(ftrace_dump_on_oops);
7407 return NOTIFY_OK;
7408 }
7409
7410 static struct notifier_block trace_panic_notifier = {
7411 .notifier_call = trace_panic_handler,
7412 .next = NULL,
7413 .priority = 150 /* priority: INT_MAX >= x >= 0 */
7414 };
7415
7416 static int trace_die_handler(struct notifier_block *self,
7417 unsigned long val,
7418 void *data)
7419 {
7420 switch (val) {
7421 case DIE_OOPS:
7422 if (ftrace_dump_on_oops)
7423 ftrace_dump(ftrace_dump_on_oops);
7424 break;
7425 default:
7426 break;
7427 }
7428 return NOTIFY_OK;
7429 }
7430
7431 static struct notifier_block trace_die_notifier = {
7432 .notifier_call = trace_die_handler,
7433 .priority = 200
7434 };
7435
7436 /*
7437 * printk is set to max of 1024, we really don't need it that big.
7438 * Nothing should be printing 1000 characters anyway.
7439 */
7440 #define TRACE_MAX_PRINT 1000
7441
7442 /*
7443 * Define here KERN_TRACE so that we have one place to modify
7444 * it if we decide to change what log level the ftrace dump
7445 * should be at.
7446 */
7447 #define KERN_TRACE KERN_EMERG
7448
7449 void
7450 trace_printk_seq(struct trace_seq *s)
7451 {
7452 /* Probably should print a warning here. */
7453 if (s->seq.len >= TRACE_MAX_PRINT)
7454 s->seq.len = TRACE_MAX_PRINT;
7455
7456 /*
7457 * More paranoid code. Although the buffer size is set to
7458 * PAGE_SIZE, and TRACE_MAX_PRINT is 1000, this is just
7459 * an extra layer of protection.
7460 */
7461 if (WARN_ON_ONCE(s->seq.len >= s->seq.size))
7462 s->seq.len = s->seq.size - 1;
7463
7464 /* should be zero ended, but we are paranoid. */
7465 s->buffer[s->seq.len] = 0;
7466
7467 printk(KERN_TRACE "%s", s->buffer);
7468
7469 trace_seq_init(s);
7470 }
7471
7472 void trace_init_global_iter(struct trace_iterator *iter)
7473 {
7474 iter->tr = &global_trace;
7475 iter->trace = iter->tr->current_trace;
7476 iter->cpu_file = RING_BUFFER_ALL_CPUS;
7477 iter->trace_buffer = &global_trace.trace_buffer;
7478
7479 if (iter->trace && iter->trace->open)
7480 iter->trace->open(iter);
7481
7482 /* Annotate start of buffers if we had overruns */
7483 if (ring_buffer_overruns(iter->trace_buffer->buffer))
7484 iter->iter_flags |= TRACE_FILE_ANNOTATE;
7485
7486 /* Output in nanoseconds only if we are using a clock in nanoseconds. */
7487 if (trace_clocks[iter->tr->clock_id].in_ns)
7488 iter->iter_flags |= TRACE_FILE_TIME_IN_NS;
7489 }
7490
7491 void ftrace_dump(enum ftrace_dump_mode oops_dump_mode)
7492 {
7493 /* use static because iter can be a bit big for the stack */
7494 static struct trace_iterator iter;
7495 static atomic_t dump_running;
7496 struct trace_array *tr = &global_trace;
7497 unsigned int old_userobj;
7498 unsigned long flags;
7499 int cnt = 0, cpu;
7500
7501 /* Only allow one dump user at a time. */
7502 if (atomic_inc_return(&dump_running) != 1) {
7503 atomic_dec(&dump_running);
7504 return;
7505 }
7506
7507 /*
7508 * Always turn off tracing when we dump.
7509 * We don't need to show trace output of what happens
7510 * between multiple crashes.
7511 *
7512 * If the user does a sysrq-z, then they can re-enable
7513 * tracing with echo 1 > tracing_on.
7514 */
7515 tracing_off();
7516
7517 local_irq_save(flags);
7518
7519 /* Simulate the iterator */
7520 trace_init_global_iter(&iter);
7521
7522 for_each_tracing_cpu(cpu) {
7523 atomic_inc(&per_cpu_ptr(iter.trace_buffer->data, cpu)->disabled);
7524 }
7525
7526 old_userobj = tr->trace_flags & TRACE_ITER_SYM_USEROBJ;
7527
7528 /* don't look at user memory in panic mode */
7529 tr->trace_flags &= ~TRACE_ITER_SYM_USEROBJ;
7530
7531 switch (oops_dump_mode) {
7532 case DUMP_ALL:
7533 iter.cpu_file = RING_BUFFER_ALL_CPUS;
7534 break;
7535 case DUMP_ORIG:
7536 iter.cpu_file = raw_smp_processor_id();
7537 break;
7538 case DUMP_NONE:
7539 goto out_enable;
7540 default:
7541 printk(KERN_TRACE "Bad dumping mode, switching to all CPUs dump\n");
7542 iter.cpu_file = RING_BUFFER_ALL_CPUS;
7543 }
7544
7545 printk(KERN_TRACE "Dumping ftrace buffer:\n");
7546
7547 /* Did function tracer already get disabled? */
7548 if (ftrace_is_dead()) {
7549 printk("# WARNING: FUNCTION TRACING IS CORRUPTED\n");
7550 printk("# MAY BE MISSING FUNCTION EVENTS\n");
7551 }
7552
7553 /*
7554 * We need to stop all tracing on all CPUS to read the
7555 * the next buffer. This is a bit expensive, but is
7556 * not done often. We fill all what we can read,
7557 * and then release the locks again.
7558 */
7559
7560 while (!trace_empty(&iter)) {
7561
7562 if (!cnt)
7563 printk(KERN_TRACE "---------------------------------\n");
7564
7565 cnt++;
7566
7567 /* reset all but tr, trace, and overruns */
7568 memset(&iter.seq, 0,
7569 sizeof(struct trace_iterator) -
7570 offsetof(struct trace_iterator, seq));
7571 iter.iter_flags |= TRACE_FILE_LAT_FMT;
7572 iter.pos = -1;
7573
7574 if (trace_find_next_entry_inc(&iter) != NULL) {
7575 int ret;
7576
7577 ret = print_trace_line(&iter);
7578 if (ret != TRACE_TYPE_NO_CONSUME)
7579 trace_consume(&iter);
7580 }
7581 touch_nmi_watchdog();
7582
7583 trace_printk_seq(&iter.seq);
7584 }
7585
7586 if (!cnt)
7587 printk(KERN_TRACE " (ftrace buffer empty)\n");
7588 else
7589 printk(KERN_TRACE "---------------------------------\n");
7590
7591 out_enable:
7592 tr->trace_flags |= old_userobj;
7593
7594 for_each_tracing_cpu(cpu) {
7595 atomic_dec(&per_cpu_ptr(iter.trace_buffer->data, cpu)->disabled);
7596 }
7597 atomic_dec(&dump_running);
7598 local_irq_restore(flags);
7599 }
7600 EXPORT_SYMBOL_GPL(ftrace_dump);
7601
7602 __init static int tracer_alloc_buffers(void)
7603 {
7604 int ring_buf_size;
7605 int ret = -ENOMEM;
7606
7607 /*
7608 * Make sure we don't accidently add more trace options
7609 * than we have bits for.
7610 */
7611 BUILD_BUG_ON(TRACE_ITER_LAST_BIT > TRACE_FLAGS_MAX_SIZE);
7612
7613 if (!alloc_cpumask_var(&tracing_buffer_mask, GFP_KERNEL))
7614 goto out;
7615
7616 if (!alloc_cpumask_var(&global_trace.tracing_cpumask, GFP_KERNEL))
7617 goto out_free_buffer_mask;
7618
7619 /* Only allocate trace_printk buffers if a trace_printk exists */
7620 if (__stop___trace_bprintk_fmt != __start___trace_bprintk_fmt)
7621 /* Must be called before global_trace.buffer is allocated */
7622 trace_printk_init_buffers();
7623
7624 /* To save memory, keep the ring buffer size to its minimum */
7625 if (ring_buffer_expanded)
7626 ring_buf_size = trace_buf_size;
7627 else
7628 ring_buf_size = 1;
7629
7630 cpumask_copy(tracing_buffer_mask, cpu_possible_mask);
7631 cpumask_copy(global_trace.tracing_cpumask, cpu_all_mask);
7632
7633 raw_spin_lock_init(&global_trace.start_lock);
7634
7635 /* Used for event triggers */
7636 temp_buffer = ring_buffer_alloc(PAGE_SIZE, RB_FL_OVERWRITE);
7637 if (!temp_buffer)
7638 goto out_free_cpumask;
7639
7640 if (trace_create_savedcmd() < 0)
7641 goto out_free_temp_buffer;
7642
7643 /* TODO: make the number of buffers hot pluggable with CPUS */
7644 if (allocate_trace_buffers(&global_trace, ring_buf_size) < 0) {
7645 printk(KERN_ERR "tracer: failed to allocate ring buffer!\n");
7646 WARN_ON(1);
7647 goto out_free_savedcmd;
7648 }
7649
7650 if (global_trace.buffer_disabled)
7651 tracing_off();
7652
7653 if (trace_boot_clock) {
7654 ret = tracing_set_clock(&global_trace, trace_boot_clock);
7655 if (ret < 0)
7656 pr_warn("Trace clock %s not defined, going back to default\n",
7657 trace_boot_clock);
7658 }
7659
7660 /*
7661 * register_tracer() might reference current_trace, so it
7662 * needs to be set before we register anything. This is
7663 * just a bootstrap of current_trace anyway.
7664 */
7665 global_trace.current_trace = &nop_trace;
7666
7667 global_trace.max_lock = (arch_spinlock_t)__ARCH_SPIN_LOCK_UNLOCKED;
7668
7669 ftrace_init_global_array_ops(&global_trace);
7670
7671 init_trace_flags_index(&global_trace);
7672
7673 register_tracer(&nop_trace);
7674
7675 /* All seems OK, enable tracing */
7676 tracing_disabled = 0;
7677
7678 atomic_notifier_chain_register(&panic_notifier_list,
7679 &trace_panic_notifier);
7680
7681 register_die_notifier(&trace_die_notifier);
7682
7683 global_trace.flags = TRACE_ARRAY_FL_GLOBAL;
7684
7685 INIT_LIST_HEAD(&global_trace.systems);
7686 INIT_LIST_HEAD(&global_trace.events);
7687 list_add(&global_trace.list, &ftrace_trace_arrays);
7688
7689 apply_trace_boot_options();
7690
7691 register_snapshot_cmd();
7692
7693 return 0;
7694
7695 out_free_savedcmd:
7696 free_saved_cmdlines_buffer(savedcmd);
7697 out_free_temp_buffer:
7698 ring_buffer_free(temp_buffer);
7699 out_free_cpumask:
7700 free_cpumask_var(global_trace.tracing_cpumask);
7701 out_free_buffer_mask:
7702 free_cpumask_var(tracing_buffer_mask);
7703 out:
7704 return ret;
7705 }
7706
7707 void __init trace_init(void)
7708 {
7709 if (tracepoint_printk) {
7710 tracepoint_print_iter =
7711 kmalloc(sizeof(*tracepoint_print_iter), GFP_KERNEL);
7712 if (WARN_ON(!tracepoint_print_iter))
7713 tracepoint_printk = 0;
7714 }
7715 tracer_alloc_buffers();
7716 trace_event_init();
7717 }
7718
7719 __init static int clear_boot_tracer(void)
7720 {
7721 /*
7722 * The default tracer at boot buffer is an init section.
7723 * This function is called in lateinit. If we did not
7724 * find the boot tracer, then clear it out, to prevent
7725 * later registration from accessing the buffer that is
7726 * about to be freed.
7727 */
7728 if (!default_bootup_tracer)
7729 return 0;
7730
7731 printk(KERN_INFO "ftrace bootup tracer '%s' not registered.\n",
7732 default_bootup_tracer);
7733 default_bootup_tracer = NULL;
7734
7735 return 0;
7736 }
7737
7738 fs_initcall(tracer_init_tracefs);
7739 late_initcall(clear_boot_tracer);
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