1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * event tracer
4 *
5 * Copyright (C) 2008 Red Hat Inc, Steven Rostedt <srostedt@redhat.com>
6 *
7 * - Added format output of fields of the trace point.
8 * This was based off of work by Tom Zanussi <tzanussi@gmail.com>.
9 *
10 */
11
12 #define pr_fmt(fmt) fmt
13
14 #include <linux/workqueue.h>
15 #include <linux/security.h>
16 #include <linux/spinlock.h>
17 #include <linux/kthread.h>
18 #include <linux/tracefs.h>
19 #include <linux/uaccess.h>
20 #include <linux/module.h>
21 #include <linux/ctype.h>
22 #include <linux/sort.h>
23 #include <linux/slab.h>
24 #include <linux/delay.h>
25
26 #include <trace/events/sched.h>
27 #include <trace/syscall.h>
28
29 #include <asm/setup.h>
30
31 #include "trace_output.h"
32
33 #undef TRACE_SYSTEM
34 #define TRACE_SYSTEM "TRACE_SYSTEM"
35
36 DEFINE_MUTEX(event_mutex);
37
38 LIST_HEAD(ftrace_events);
39 static LIST_HEAD(ftrace_generic_fields);
40 static LIST_HEAD(ftrace_common_fields);
41 static bool eventdir_initialized;
42
43 #define GFP_TRACE (GFP_KERNEL | __GFP_ZERO)
44
45 static struct kmem_cache *field_cachep;
46 static struct kmem_cache *file_cachep;
47
system_refcount(struct event_subsystem * system)48 static inline int system_refcount(struct event_subsystem *system)
49 {
50 return system->ref_count;
51 }
52
system_refcount_inc(struct event_subsystem * system)53 static int system_refcount_inc(struct event_subsystem *system)
54 {
55 return system->ref_count++;
56 }
57
system_refcount_dec(struct event_subsystem * system)58 static int system_refcount_dec(struct event_subsystem *system)
59 {
60 return --system->ref_count;
61 }
62
63 /* Double loops, do not use break, only goto's work */
64 #define do_for_each_event_file(tr, file) \
65 list_for_each_entry(tr, &ftrace_trace_arrays, list) { \
66 list_for_each_entry(file, &tr->events, list)
67
68 #define do_for_each_event_file_safe(tr, file) \
69 list_for_each_entry(tr, &ftrace_trace_arrays, list) { \
70 struct trace_event_file *___n; \
71 list_for_each_entry_safe(file, ___n, &tr->events, list)
72
73 #define while_for_each_event_file() \
74 }
75
76 static struct ftrace_event_field *
__find_event_field(struct list_head * head,char * name)77 __find_event_field(struct list_head *head, char *name)
78 {
79 struct ftrace_event_field *field;
80
81 list_for_each_entry(field, head, link) {
82 if (!strcmp(field->name, name))
83 return field;
84 }
85
86 return NULL;
87 }
88
89 struct ftrace_event_field *
trace_find_event_field(struct trace_event_call * call,char * name)90 trace_find_event_field(struct trace_event_call *call, char *name)
91 {
92 struct ftrace_event_field *field;
93 struct list_head *head;
94
95 head = trace_get_fields(call);
96 field = __find_event_field(head, name);
97 if (field)
98 return field;
99
100 field = __find_event_field(&ftrace_generic_fields, name);
101 if (field)
102 return field;
103
104 return __find_event_field(&ftrace_common_fields, name);
105 }
106
__trace_define_field(struct list_head * head,const char * type,const char * name,int offset,int size,int is_signed,int filter_type)107 static int __trace_define_field(struct list_head *head, const char *type,
108 const char *name, int offset, int size,
109 int is_signed, int filter_type)
110 {
111 struct ftrace_event_field *field;
112
113 field = kmem_cache_alloc(field_cachep, GFP_TRACE);
114 if (!field)
115 return -ENOMEM;
116
117 field->name = name;
118 field->type = type;
119
120 if (filter_type == FILTER_OTHER)
121 field->filter_type = filter_assign_type(type);
122 else
123 field->filter_type = filter_type;
124
125 field->offset = offset;
126 field->size = size;
127 field->is_signed = is_signed;
128
129 list_add(&field->link, head);
130
131 return 0;
132 }
133
trace_define_field(struct trace_event_call * call,const char * type,const char * name,int offset,int size,int is_signed,int filter_type)134 int trace_define_field(struct trace_event_call *call, const char *type,
135 const char *name, int offset, int size, int is_signed,
136 int filter_type)
137 {
138 struct list_head *head;
139
140 if (WARN_ON(!call->class))
141 return 0;
142
143 head = trace_get_fields(call);
144 return __trace_define_field(head, type, name, offset, size,
145 is_signed, filter_type);
146 }
147 EXPORT_SYMBOL_GPL(trace_define_field);
148
149 #define __generic_field(type, item, filter_type) \
150 ret = __trace_define_field(&ftrace_generic_fields, #type, \
151 #item, 0, 0, is_signed_type(type), \
152 filter_type); \
153 if (ret) \
154 return ret;
155
156 #define __common_field(type, item) \
157 ret = __trace_define_field(&ftrace_common_fields, #type, \
158 "common_" #item, \
159 offsetof(typeof(ent), item), \
160 sizeof(ent.item), \
161 is_signed_type(type), FILTER_OTHER); \
162 if (ret) \
163 return ret;
164
trace_define_generic_fields(void)165 static int trace_define_generic_fields(void)
166 {
167 int ret;
168
169 __generic_field(int, CPU, FILTER_CPU);
170 __generic_field(int, cpu, FILTER_CPU);
171 __generic_field(char *, COMM, FILTER_COMM);
172 __generic_field(char *, comm, FILTER_COMM);
173
174 return ret;
175 }
176
trace_define_common_fields(void)177 static int trace_define_common_fields(void)
178 {
179 int ret;
180 struct trace_entry ent;
181
182 __common_field(unsigned short, type);
183 __common_field(unsigned char, flags);
184 __common_field(unsigned char, preempt_count);
185 __common_field(int, pid);
186
187 return ret;
188 }
189
trace_destroy_fields(struct trace_event_call * call)190 static void trace_destroy_fields(struct trace_event_call *call)
191 {
192 struct ftrace_event_field *field, *next;
193 struct list_head *head;
194
195 head = trace_get_fields(call);
196 list_for_each_entry_safe(field, next, head, link) {
197 list_del(&field->link);
198 kmem_cache_free(field_cachep, field);
199 }
200 }
201
202 /*
203 * run-time version of trace_event_get_offsets_<call>() that returns the last
204 * accessible offset of trace fields excluding __dynamic_array bytes
205 */
trace_event_get_offsets(struct trace_event_call * call)206 int trace_event_get_offsets(struct trace_event_call *call)
207 {
208 struct ftrace_event_field *tail;
209 struct list_head *head;
210
211 head = trace_get_fields(call);
212 /*
213 * head->next points to the last field with the largest offset,
214 * since it was added last by trace_define_field()
215 */
216 tail = list_first_entry(head, struct ftrace_event_field, link);
217 return tail->offset + tail->size;
218 }
219
trace_event_raw_init(struct trace_event_call * call)220 int trace_event_raw_init(struct trace_event_call *call)
221 {
222 int id;
223
224 id = register_trace_event(&call->event);
225 if (!id)
226 return -ENODEV;
227
228 return 0;
229 }
230 EXPORT_SYMBOL_GPL(trace_event_raw_init);
231
trace_event_ignore_this_pid(struct trace_event_file * trace_file)232 bool trace_event_ignore_this_pid(struct trace_event_file *trace_file)
233 {
234 struct trace_array *tr = trace_file->tr;
235 struct trace_array_cpu *data;
236 struct trace_pid_list *no_pid_list;
237 struct trace_pid_list *pid_list;
238
239 pid_list = rcu_dereference_raw(tr->filtered_pids);
240 no_pid_list = rcu_dereference_raw(tr->filtered_no_pids);
241
242 if (!pid_list && !no_pid_list)
243 return false;
244
245 data = this_cpu_ptr(tr->array_buffer.data);
246
247 return data->ignore_pid;
248 }
249 EXPORT_SYMBOL_GPL(trace_event_ignore_this_pid);
250
trace_event_buffer_reserve(struct trace_event_buffer * fbuffer,struct trace_event_file * trace_file,unsigned long len)251 void *trace_event_buffer_reserve(struct trace_event_buffer *fbuffer,
252 struct trace_event_file *trace_file,
253 unsigned long len)
254 {
255 struct trace_event_call *event_call = trace_file->event_call;
256
257 if ((trace_file->flags & EVENT_FILE_FL_PID_FILTER) &&
258 trace_event_ignore_this_pid(trace_file))
259 return NULL;
260
261 local_save_flags(fbuffer->flags);
262 fbuffer->pc = preempt_count();
263 /*
264 * If CONFIG_PREEMPTION is enabled, then the tracepoint itself disables
265 * preemption (adding one to the preempt_count). Since we are
266 * interested in the preempt_count at the time the tracepoint was
267 * hit, we need to subtract one to offset the increment.
268 */
269 if (IS_ENABLED(CONFIG_PREEMPTION))
270 fbuffer->pc--;
271 fbuffer->trace_file = trace_file;
272
273 fbuffer->event =
274 trace_event_buffer_lock_reserve(&fbuffer->buffer, trace_file,
275 event_call->event.type, len,
276 fbuffer->flags, fbuffer->pc);
277 if (!fbuffer->event)
278 return NULL;
279
280 fbuffer->regs = NULL;
281 fbuffer->entry = ring_buffer_event_data(fbuffer->event);
282 return fbuffer->entry;
283 }
284 EXPORT_SYMBOL_GPL(trace_event_buffer_reserve);
285
trace_event_reg(struct trace_event_call * call,enum trace_reg type,void * data)286 int trace_event_reg(struct trace_event_call *call,
287 enum trace_reg type, void *data)
288 {
289 struct trace_event_file *file = data;
290
291 WARN_ON(!(call->flags & TRACE_EVENT_FL_TRACEPOINT));
292 switch (type) {
293 case TRACE_REG_REGISTER:
294 return tracepoint_probe_register(call->tp,
295 call->class->probe,
296 file);
297 case TRACE_REG_UNREGISTER:
298 tracepoint_probe_unregister(call->tp,
299 call->class->probe,
300 file);
301 return 0;
302
303 #ifdef CONFIG_PERF_EVENTS
304 case TRACE_REG_PERF_REGISTER:
305 return tracepoint_probe_register(call->tp,
306 call->class->perf_probe,
307 call);
308 case TRACE_REG_PERF_UNREGISTER:
309 tracepoint_probe_unregister(call->tp,
310 call->class->perf_probe,
311 call);
312 return 0;
313 case TRACE_REG_PERF_OPEN:
314 case TRACE_REG_PERF_CLOSE:
315 case TRACE_REG_PERF_ADD:
316 case TRACE_REG_PERF_DEL:
317 return 0;
318 #endif
319 }
320 return 0;
321 }
322 EXPORT_SYMBOL_GPL(trace_event_reg);
323
trace_event_enable_cmd_record(bool enable)324 void trace_event_enable_cmd_record(bool enable)
325 {
326 struct trace_event_file *file;
327 struct trace_array *tr;
328
329 lockdep_assert_held(&event_mutex);
330
331 do_for_each_event_file(tr, file) {
332
333 if (!(file->flags & EVENT_FILE_FL_ENABLED))
334 continue;
335
336 if (enable) {
337 tracing_start_cmdline_record();
338 set_bit(EVENT_FILE_FL_RECORDED_CMD_BIT, &file->flags);
339 } else {
340 tracing_stop_cmdline_record();
341 clear_bit(EVENT_FILE_FL_RECORDED_CMD_BIT, &file->flags);
342 }
343 } while_for_each_event_file();
344 }
345
trace_event_enable_tgid_record(bool enable)346 void trace_event_enable_tgid_record(bool enable)
347 {
348 struct trace_event_file *file;
349 struct trace_array *tr;
350
351 lockdep_assert_held(&event_mutex);
352
353 do_for_each_event_file(tr, file) {
354 if (!(file->flags & EVENT_FILE_FL_ENABLED))
355 continue;
356
357 if (enable) {
358 tracing_start_tgid_record();
359 set_bit(EVENT_FILE_FL_RECORDED_TGID_BIT, &file->flags);
360 } else {
361 tracing_stop_tgid_record();
362 clear_bit(EVENT_FILE_FL_RECORDED_TGID_BIT,
363 &file->flags);
364 }
365 } while_for_each_event_file();
366 }
367
__ftrace_event_enable_disable(struct trace_event_file * file,int enable,int soft_disable)368 static int __ftrace_event_enable_disable(struct trace_event_file *file,
369 int enable, int soft_disable)
370 {
371 struct trace_event_call *call = file->event_call;
372 struct trace_array *tr = file->tr;
373 unsigned long file_flags = file->flags;
374 int ret = 0;
375 int disable;
376
377 switch (enable) {
378 case 0:
379 /*
380 * When soft_disable is set and enable is cleared, the sm_ref
381 * reference counter is decremented. If it reaches 0, we want
382 * to clear the SOFT_DISABLED flag but leave the event in the
383 * state that it was. That is, if the event was enabled and
384 * SOFT_DISABLED isn't set, then do nothing. But if SOFT_DISABLED
385 * is set we do not want the event to be enabled before we
386 * clear the bit.
387 *
388 * When soft_disable is not set but the SOFT_MODE flag is,
389 * we do nothing. Do not disable the tracepoint, otherwise
390 * "soft enable"s (clearing the SOFT_DISABLED bit) wont work.
391 */
392 if (soft_disable) {
393 if (atomic_dec_return(&file->sm_ref) > 0)
394 break;
395 disable = file->flags & EVENT_FILE_FL_SOFT_DISABLED;
396 clear_bit(EVENT_FILE_FL_SOFT_MODE_BIT, &file->flags);
397 } else
398 disable = !(file->flags & EVENT_FILE_FL_SOFT_MODE);
399
400 if (disable && (file->flags & EVENT_FILE_FL_ENABLED)) {
401 clear_bit(EVENT_FILE_FL_ENABLED_BIT, &file->flags);
402 if (file->flags & EVENT_FILE_FL_RECORDED_CMD) {
403 tracing_stop_cmdline_record();
404 clear_bit(EVENT_FILE_FL_RECORDED_CMD_BIT, &file->flags);
405 }
406
407 if (file->flags & EVENT_FILE_FL_RECORDED_TGID) {
408 tracing_stop_tgid_record();
409 clear_bit(EVENT_FILE_FL_RECORDED_TGID_BIT, &file->flags);
410 }
411
412 call->class->reg(call, TRACE_REG_UNREGISTER, file);
413 }
414 /* If in SOFT_MODE, just set the SOFT_DISABLE_BIT, else clear it */
415 if (file->flags & EVENT_FILE_FL_SOFT_MODE)
416 set_bit(EVENT_FILE_FL_SOFT_DISABLED_BIT, &file->flags);
417 else
418 clear_bit(EVENT_FILE_FL_SOFT_DISABLED_BIT, &file->flags);
419 break;
420 case 1:
421 /*
422 * When soft_disable is set and enable is set, we want to
423 * register the tracepoint for the event, but leave the event
424 * as is. That means, if the event was already enabled, we do
425 * nothing (but set SOFT_MODE). If the event is disabled, we
426 * set SOFT_DISABLED before enabling the event tracepoint, so
427 * it still seems to be disabled.
428 */
429 if (!soft_disable)
430 clear_bit(EVENT_FILE_FL_SOFT_DISABLED_BIT, &file->flags);
431 else {
432 if (atomic_inc_return(&file->sm_ref) > 1)
433 break;
434 set_bit(EVENT_FILE_FL_SOFT_MODE_BIT, &file->flags);
435 }
436
437 if (!(file->flags & EVENT_FILE_FL_ENABLED)) {
438 bool cmd = false, tgid = false;
439
440 /* Keep the event disabled, when going to SOFT_MODE. */
441 if (soft_disable)
442 set_bit(EVENT_FILE_FL_SOFT_DISABLED_BIT, &file->flags);
443
444 if (tr->trace_flags & TRACE_ITER_RECORD_CMD) {
445 cmd = true;
446 tracing_start_cmdline_record();
447 set_bit(EVENT_FILE_FL_RECORDED_CMD_BIT, &file->flags);
448 }
449
450 if (tr->trace_flags & TRACE_ITER_RECORD_TGID) {
451 tgid = true;
452 tracing_start_tgid_record();
453 set_bit(EVENT_FILE_FL_RECORDED_TGID_BIT, &file->flags);
454 }
455
456 ret = call->class->reg(call, TRACE_REG_REGISTER, file);
457 if (ret) {
458 if (cmd)
459 tracing_stop_cmdline_record();
460 if (tgid)
461 tracing_stop_tgid_record();
462 pr_info("event trace: Could not enable event "
463 "%s\n", trace_event_name(call));
464 break;
465 }
466 set_bit(EVENT_FILE_FL_ENABLED_BIT, &file->flags);
467
468 /* WAS_ENABLED gets set but never cleared. */
469 set_bit(EVENT_FILE_FL_WAS_ENABLED_BIT, &file->flags);
470 }
471 break;
472 }
473
474 /* Enable or disable use of trace_buffered_event */
475 if ((file_flags & EVENT_FILE_FL_SOFT_DISABLED) !=
476 (file->flags & EVENT_FILE_FL_SOFT_DISABLED)) {
477 if (file->flags & EVENT_FILE_FL_SOFT_DISABLED)
478 trace_buffered_event_enable();
479 else
480 trace_buffered_event_disable();
481 }
482
483 return ret;
484 }
485
trace_event_enable_disable(struct trace_event_file * file,int enable,int soft_disable)486 int trace_event_enable_disable(struct trace_event_file *file,
487 int enable, int soft_disable)
488 {
489 return __ftrace_event_enable_disable(file, enable, soft_disable);
490 }
491
ftrace_event_enable_disable(struct trace_event_file * file,int enable)492 static int ftrace_event_enable_disable(struct trace_event_file *file,
493 int enable)
494 {
495 return __ftrace_event_enable_disable(file, enable, 0);
496 }
497
ftrace_clear_events(struct trace_array * tr)498 static void ftrace_clear_events(struct trace_array *tr)
499 {
500 struct trace_event_file *file;
501
502 mutex_lock(&event_mutex);
503 list_for_each_entry(file, &tr->events, list) {
504 ftrace_event_enable_disable(file, 0);
505 }
506 mutex_unlock(&event_mutex);
507 }
508
509 static void
event_filter_pid_sched_process_exit(void * data,struct task_struct * task)510 event_filter_pid_sched_process_exit(void *data, struct task_struct *task)
511 {
512 struct trace_pid_list *pid_list;
513 struct trace_array *tr = data;
514
515 pid_list = rcu_dereference_raw(tr->filtered_pids);
516 trace_filter_add_remove_task(pid_list, NULL, task);
517
518 pid_list = rcu_dereference_raw(tr->filtered_no_pids);
519 trace_filter_add_remove_task(pid_list, NULL, task);
520 }
521
522 static void
event_filter_pid_sched_process_fork(void * data,struct task_struct * self,struct task_struct * task)523 event_filter_pid_sched_process_fork(void *data,
524 struct task_struct *self,
525 struct task_struct *task)
526 {
527 struct trace_pid_list *pid_list;
528 struct trace_array *tr = data;
529
530 pid_list = rcu_dereference_sched(tr->filtered_pids);
531 trace_filter_add_remove_task(pid_list, self, task);
532
533 pid_list = rcu_dereference_sched(tr->filtered_no_pids);
534 trace_filter_add_remove_task(pid_list, self, task);
535 }
536
trace_event_follow_fork(struct trace_array * tr,bool enable)537 void trace_event_follow_fork(struct trace_array *tr, bool enable)
538 {
539 if (enable) {
540 register_trace_prio_sched_process_fork(event_filter_pid_sched_process_fork,
541 tr, INT_MIN);
542 register_trace_prio_sched_process_free(event_filter_pid_sched_process_exit,
543 tr, INT_MAX);
544 } else {
545 unregister_trace_sched_process_fork(event_filter_pid_sched_process_fork,
546 tr);
547 unregister_trace_sched_process_free(event_filter_pid_sched_process_exit,
548 tr);
549 }
550 }
551
552 static void
event_filter_pid_sched_switch_probe_pre(void * data,bool preempt,struct task_struct * prev,struct task_struct * next)553 event_filter_pid_sched_switch_probe_pre(void *data, bool preempt,
554 struct task_struct *prev, struct task_struct *next)
555 {
556 struct trace_array *tr = data;
557 struct trace_pid_list *no_pid_list;
558 struct trace_pid_list *pid_list;
559 bool ret;
560
561 pid_list = rcu_dereference_sched(tr->filtered_pids);
562 no_pid_list = rcu_dereference_sched(tr->filtered_no_pids);
563
564 /*
565 * Sched switch is funny, as we only want to ignore it
566 * in the notrace case if both prev and next should be ignored.
567 */
568 ret = trace_ignore_this_task(NULL, no_pid_list, prev) &&
569 trace_ignore_this_task(NULL, no_pid_list, next);
570
571 this_cpu_write(tr->array_buffer.data->ignore_pid, ret ||
572 (trace_ignore_this_task(pid_list, NULL, prev) &&
573 trace_ignore_this_task(pid_list, NULL, next)));
574 }
575
576 static void
event_filter_pid_sched_switch_probe_post(void * data,bool preempt,struct task_struct * prev,struct task_struct * next)577 event_filter_pid_sched_switch_probe_post(void *data, bool preempt,
578 struct task_struct *prev, struct task_struct *next)
579 {
580 struct trace_array *tr = data;
581 struct trace_pid_list *no_pid_list;
582 struct trace_pid_list *pid_list;
583
584 pid_list = rcu_dereference_sched(tr->filtered_pids);
585 no_pid_list = rcu_dereference_sched(tr->filtered_no_pids);
586
587 this_cpu_write(tr->array_buffer.data->ignore_pid,
588 trace_ignore_this_task(pid_list, no_pid_list, next));
589 }
590
591 static void
event_filter_pid_sched_wakeup_probe_pre(void * data,struct task_struct * task)592 event_filter_pid_sched_wakeup_probe_pre(void *data, struct task_struct *task)
593 {
594 struct trace_array *tr = data;
595 struct trace_pid_list *no_pid_list;
596 struct trace_pid_list *pid_list;
597
598 /* Nothing to do if we are already tracing */
599 if (!this_cpu_read(tr->array_buffer.data->ignore_pid))
600 return;
601
602 pid_list = rcu_dereference_sched(tr->filtered_pids);
603 no_pid_list = rcu_dereference_sched(tr->filtered_no_pids);
604
605 this_cpu_write(tr->array_buffer.data->ignore_pid,
606 trace_ignore_this_task(pid_list, no_pid_list, task));
607 }
608
609 static void
event_filter_pid_sched_wakeup_probe_post(void * data,struct task_struct * task)610 event_filter_pid_sched_wakeup_probe_post(void *data, struct task_struct *task)
611 {
612 struct trace_array *tr = data;
613 struct trace_pid_list *no_pid_list;
614 struct trace_pid_list *pid_list;
615
616 /* Nothing to do if we are not tracing */
617 if (this_cpu_read(tr->array_buffer.data->ignore_pid))
618 return;
619
620 pid_list = rcu_dereference_sched(tr->filtered_pids);
621 no_pid_list = rcu_dereference_sched(tr->filtered_no_pids);
622
623 /* Set tracing if current is enabled */
624 this_cpu_write(tr->array_buffer.data->ignore_pid,
625 trace_ignore_this_task(pid_list, no_pid_list, current));
626 }
627
unregister_pid_events(struct trace_array * tr)628 static void unregister_pid_events(struct trace_array *tr)
629 {
630 unregister_trace_sched_switch(event_filter_pid_sched_switch_probe_pre, tr);
631 unregister_trace_sched_switch(event_filter_pid_sched_switch_probe_post, tr);
632
633 unregister_trace_sched_wakeup(event_filter_pid_sched_wakeup_probe_pre, tr);
634 unregister_trace_sched_wakeup(event_filter_pid_sched_wakeup_probe_post, tr);
635
636 unregister_trace_sched_wakeup_new(event_filter_pid_sched_wakeup_probe_pre, tr);
637 unregister_trace_sched_wakeup_new(event_filter_pid_sched_wakeup_probe_post, tr);
638
639 unregister_trace_sched_waking(event_filter_pid_sched_wakeup_probe_pre, tr);
640 unregister_trace_sched_waking(event_filter_pid_sched_wakeup_probe_post, tr);
641 }
642
__ftrace_clear_event_pids(struct trace_array * tr,int type)643 static void __ftrace_clear_event_pids(struct trace_array *tr, int type)
644 {
645 struct trace_pid_list *pid_list;
646 struct trace_pid_list *no_pid_list;
647 struct trace_event_file *file;
648 int cpu;
649
650 pid_list = rcu_dereference_protected(tr->filtered_pids,
651 lockdep_is_held(&event_mutex));
652 no_pid_list = rcu_dereference_protected(tr->filtered_no_pids,
653 lockdep_is_held(&event_mutex));
654
655 /* Make sure there's something to do */
656 if (!pid_type_enabled(type, pid_list, no_pid_list))
657 return;
658
659 if (!still_need_pid_events(type, pid_list, no_pid_list)) {
660 unregister_pid_events(tr);
661
662 list_for_each_entry(file, &tr->events, list) {
663 clear_bit(EVENT_FILE_FL_PID_FILTER_BIT, &file->flags);
664 }
665
666 for_each_possible_cpu(cpu)
667 per_cpu_ptr(tr->array_buffer.data, cpu)->ignore_pid = false;
668 }
669
670 if (type & TRACE_PIDS)
671 rcu_assign_pointer(tr->filtered_pids, NULL);
672
673 if (type & TRACE_NO_PIDS)
674 rcu_assign_pointer(tr->filtered_no_pids, NULL);
675
676 /* Wait till all users are no longer using pid filtering */
677 tracepoint_synchronize_unregister();
678
679 if ((type & TRACE_PIDS) && pid_list)
680 trace_free_pid_list(pid_list);
681
682 if ((type & TRACE_NO_PIDS) && no_pid_list)
683 trace_free_pid_list(no_pid_list);
684 }
685
ftrace_clear_event_pids(struct trace_array * tr,int type)686 static void ftrace_clear_event_pids(struct trace_array *tr, int type)
687 {
688 mutex_lock(&event_mutex);
689 __ftrace_clear_event_pids(tr, type);
690 mutex_unlock(&event_mutex);
691 }
692
__put_system(struct event_subsystem * system)693 static void __put_system(struct event_subsystem *system)
694 {
695 struct event_filter *filter = system->filter;
696
697 WARN_ON_ONCE(system_refcount(system) == 0);
698 if (system_refcount_dec(system))
699 return;
700
701 list_del(&system->list);
702
703 if (filter) {
704 kfree(filter->filter_string);
705 kfree(filter);
706 }
707 kfree_const(system->name);
708 kfree(system);
709 }
710
__get_system(struct event_subsystem * system)711 static void __get_system(struct event_subsystem *system)
712 {
713 WARN_ON_ONCE(system_refcount(system) == 0);
714 system_refcount_inc(system);
715 }
716
__get_system_dir(struct trace_subsystem_dir * dir)717 static void __get_system_dir(struct trace_subsystem_dir *dir)
718 {
719 WARN_ON_ONCE(dir->ref_count == 0);
720 dir->ref_count++;
721 __get_system(dir->subsystem);
722 }
723
__put_system_dir(struct trace_subsystem_dir * dir)724 static void __put_system_dir(struct trace_subsystem_dir *dir)
725 {
726 WARN_ON_ONCE(dir->ref_count == 0);
727 /* If the subsystem is about to be freed, the dir must be too */
728 WARN_ON_ONCE(system_refcount(dir->subsystem) == 1 && dir->ref_count != 1);
729
730 __put_system(dir->subsystem);
731 if (!--dir->ref_count)
732 kfree(dir);
733 }
734
put_system(struct trace_subsystem_dir * dir)735 static void put_system(struct trace_subsystem_dir *dir)
736 {
737 mutex_lock(&event_mutex);
738 __put_system_dir(dir);
739 mutex_unlock(&event_mutex);
740 }
741
remove_subsystem(struct trace_subsystem_dir * dir)742 static void remove_subsystem(struct trace_subsystem_dir *dir)
743 {
744 if (!dir)
745 return;
746
747 if (!--dir->nr_events) {
748 tracefs_remove(dir->entry);
749 list_del(&dir->list);
750 __put_system_dir(dir);
751 }
752 }
753
remove_event_file_dir(struct trace_event_file * file)754 static void remove_event_file_dir(struct trace_event_file *file)
755 {
756 struct dentry *dir = file->dir;
757 struct dentry *child;
758
759 if (dir) {
760 spin_lock(&dir->d_lock); /* probably unneeded */
761 list_for_each_entry(child, &dir->d_subdirs, d_child) {
762 if (d_really_is_positive(child)) /* probably unneeded */
763 d_inode(child)->i_private = NULL;
764 }
765 spin_unlock(&dir->d_lock);
766
767 tracefs_remove(dir);
768 }
769
770 list_del(&file->list);
771 remove_subsystem(file->system);
772 free_event_filter(file->filter);
773 kmem_cache_free(file_cachep, file);
774 }
775
776 /*
777 * __ftrace_set_clr_event(NULL, NULL, NULL, set) will set/unset all events.
778 */
779 static int
__ftrace_set_clr_event_nolock(struct trace_array * tr,const char * match,const char * sub,const char * event,int set)780 __ftrace_set_clr_event_nolock(struct trace_array *tr, const char *match,
781 const char *sub, const char *event, int set)
782 {
783 struct trace_event_file *file;
784 struct trace_event_call *call;
785 const char *name;
786 int ret = -EINVAL;
787 int eret = 0;
788
789 list_for_each_entry(file, &tr->events, list) {
790
791 call = file->event_call;
792 name = trace_event_name(call);
793
794 if (!name || !call->class || !call->class->reg)
795 continue;
796
797 if (call->flags & TRACE_EVENT_FL_IGNORE_ENABLE)
798 continue;
799
800 if (match &&
801 strcmp(match, name) != 0 &&
802 strcmp(match, call->class->system) != 0)
803 continue;
804
805 if (sub && strcmp(sub, call->class->system) != 0)
806 continue;
807
808 if (event && strcmp(event, name) != 0)
809 continue;
810
811 ret = ftrace_event_enable_disable(file, set);
812
813 /*
814 * Save the first error and return that. Some events
815 * may still have been enabled, but let the user
816 * know that something went wrong.
817 */
818 if (ret && !eret)
819 eret = ret;
820
821 ret = eret;
822 }
823
824 return ret;
825 }
826
__ftrace_set_clr_event(struct trace_array * tr,const char * match,const char * sub,const char * event,int set)827 static int __ftrace_set_clr_event(struct trace_array *tr, const char *match,
828 const char *sub, const char *event, int set)
829 {
830 int ret;
831
832 mutex_lock(&event_mutex);
833 ret = __ftrace_set_clr_event_nolock(tr, match, sub, event, set);
834 mutex_unlock(&event_mutex);
835
836 return ret;
837 }
838
ftrace_set_clr_event(struct trace_array * tr,char * buf,int set)839 int ftrace_set_clr_event(struct trace_array *tr, char *buf, int set)
840 {
841 char *event = NULL, *sub = NULL, *match;
842 int ret;
843
844 if (!tr)
845 return -ENOENT;
846 /*
847 * The buf format can be <subsystem>:<event-name>
848 * *:<event-name> means any event by that name.
849 * :<event-name> is the same.
850 *
851 * <subsystem>:* means all events in that subsystem
852 * <subsystem>: means the same.
853 *
854 * <name> (no ':') means all events in a subsystem with
855 * the name <name> or any event that matches <name>
856 */
857
858 match = strsep(&buf, ":");
859 if (buf) {
860 sub = match;
861 event = buf;
862 match = NULL;
863
864 if (!strlen(sub) || strcmp(sub, "*") == 0)
865 sub = NULL;
866 if (!strlen(event) || strcmp(event, "*") == 0)
867 event = NULL;
868 }
869
870 ret = __ftrace_set_clr_event(tr, match, sub, event, set);
871
872 /* Put back the colon to allow this to be called again */
873 if (buf)
874 *(buf - 1) = ':';
875
876 return ret;
877 }
878
879 /**
880 * trace_set_clr_event - enable or disable an event
881 * @system: system name to match (NULL for any system)
882 * @event: event name to match (NULL for all events, within system)
883 * @set: 1 to enable, 0 to disable
884 *
885 * This is a way for other parts of the kernel to enable or disable
886 * event recording.
887 *
888 * Returns 0 on success, -EINVAL if the parameters do not match any
889 * registered events.
890 */
trace_set_clr_event(const char * system,const char * event,int set)891 int trace_set_clr_event(const char *system, const char *event, int set)
892 {
893 struct trace_array *tr = top_trace_array();
894
895 if (!tr)
896 return -ENODEV;
897
898 return __ftrace_set_clr_event(tr, NULL, system, event, set);
899 }
900 EXPORT_SYMBOL_GPL(trace_set_clr_event);
901
902 /**
903 * trace_array_set_clr_event - enable or disable an event for a trace array.
904 * @tr: concerned trace array.
905 * @system: system name to match (NULL for any system)
906 * @event: event name to match (NULL for all events, within system)
907 * @enable: true to enable, false to disable
908 *
909 * This is a way for other parts of the kernel to enable or disable
910 * event recording.
911 *
912 * Returns 0 on success, -EINVAL if the parameters do not match any
913 * registered events.
914 */
trace_array_set_clr_event(struct trace_array * tr,const char * system,const char * event,bool enable)915 int trace_array_set_clr_event(struct trace_array *tr, const char *system,
916 const char *event, bool enable)
917 {
918 int set;
919
920 if (!tr)
921 return -ENOENT;
922
923 set = (enable == true) ? 1 : 0;
924 return __ftrace_set_clr_event(tr, NULL, system, event, set);
925 }
926 EXPORT_SYMBOL_GPL(trace_array_set_clr_event);
927
928 /* 128 should be much more than enough */
929 #define EVENT_BUF_SIZE 127
930
931 static ssize_t
ftrace_event_write(struct file * file,const char __user * ubuf,size_t cnt,loff_t * ppos)932 ftrace_event_write(struct file *file, const char __user *ubuf,
933 size_t cnt, loff_t *ppos)
934 {
935 struct trace_parser parser;
936 struct seq_file *m = file->private_data;
937 struct trace_array *tr = m->private;
938 ssize_t read, ret;
939
940 if (!cnt)
941 return 0;
942
943 ret = tracing_update_buffers();
944 if (ret < 0)
945 return ret;
946
947 if (trace_parser_get_init(&parser, EVENT_BUF_SIZE + 1))
948 return -ENOMEM;
949
950 read = trace_get_user(&parser, ubuf, cnt, ppos);
951
952 if (read >= 0 && trace_parser_loaded((&parser))) {
953 int set = 1;
954
955 if (*parser.buffer == '!')
956 set = 0;
957
958 ret = ftrace_set_clr_event(tr, parser.buffer + !set, set);
959 if (ret)
960 goto out_put;
961 }
962
963 ret = read;
964
965 out_put:
966 trace_parser_put(&parser);
967
968 return ret;
969 }
970
971 static void *
t_next(struct seq_file * m,void * v,loff_t * pos)972 t_next(struct seq_file *m, void *v, loff_t *pos)
973 {
974 struct trace_event_file *file = v;
975 struct trace_event_call *call;
976 struct trace_array *tr = m->private;
977
978 (*pos)++;
979
980 list_for_each_entry_continue(file, &tr->events, list) {
981 call = file->event_call;
982 /*
983 * The ftrace subsystem is for showing formats only.
984 * They can not be enabled or disabled via the event files.
985 */
986 if (call->class && call->class->reg &&
987 !(call->flags & TRACE_EVENT_FL_IGNORE_ENABLE))
988 return file;
989 }
990
991 return NULL;
992 }
993
t_start(struct seq_file * m,loff_t * pos)994 static void *t_start(struct seq_file *m, loff_t *pos)
995 {
996 struct trace_event_file *file;
997 struct trace_array *tr = m->private;
998 loff_t l;
999
1000 mutex_lock(&event_mutex);
1001
1002 file = list_entry(&tr->events, struct trace_event_file, list);
1003 for (l = 0; l <= *pos; ) {
1004 file = t_next(m, file, &l);
1005 if (!file)
1006 break;
1007 }
1008 return file;
1009 }
1010
1011 static void *
s_next(struct seq_file * m,void * v,loff_t * pos)1012 s_next(struct seq_file *m, void *v, loff_t *pos)
1013 {
1014 struct trace_event_file *file = v;
1015 struct trace_array *tr = m->private;
1016
1017 (*pos)++;
1018
1019 list_for_each_entry_continue(file, &tr->events, list) {
1020 if (file->flags & EVENT_FILE_FL_ENABLED)
1021 return file;
1022 }
1023
1024 return NULL;
1025 }
1026
s_start(struct seq_file * m,loff_t * pos)1027 static void *s_start(struct seq_file *m, loff_t *pos)
1028 {
1029 struct trace_event_file *file;
1030 struct trace_array *tr = m->private;
1031 loff_t l;
1032
1033 mutex_lock(&event_mutex);
1034
1035 file = list_entry(&tr->events, struct trace_event_file, list);
1036 for (l = 0; l <= *pos; ) {
1037 file = s_next(m, file, &l);
1038 if (!file)
1039 break;
1040 }
1041 return file;
1042 }
1043
t_show(struct seq_file * m,void * v)1044 static int t_show(struct seq_file *m, void *v)
1045 {
1046 struct trace_event_file *file = v;
1047 struct trace_event_call *call = file->event_call;
1048
1049 if (strcmp(call->class->system, TRACE_SYSTEM) != 0)
1050 seq_printf(m, "%s:", call->class->system);
1051 seq_printf(m, "%s\n", trace_event_name(call));
1052
1053 return 0;
1054 }
1055
t_stop(struct seq_file * m,void * p)1056 static void t_stop(struct seq_file *m, void *p)
1057 {
1058 mutex_unlock(&event_mutex);
1059 }
1060
1061 static void *
__next(struct seq_file * m,void * v,loff_t * pos,int type)1062 __next(struct seq_file *m, void *v, loff_t *pos, int type)
1063 {
1064 struct trace_array *tr = m->private;
1065 struct trace_pid_list *pid_list;
1066
1067 if (type == TRACE_PIDS)
1068 pid_list = rcu_dereference_sched(tr->filtered_pids);
1069 else
1070 pid_list = rcu_dereference_sched(tr->filtered_no_pids);
1071
1072 return trace_pid_next(pid_list, v, pos);
1073 }
1074
1075 static void *
p_next(struct seq_file * m,void * v,loff_t * pos)1076 p_next(struct seq_file *m, void *v, loff_t *pos)
1077 {
1078 return __next(m, v, pos, TRACE_PIDS);
1079 }
1080
1081 static void *
np_next(struct seq_file * m,void * v,loff_t * pos)1082 np_next(struct seq_file *m, void *v, loff_t *pos)
1083 {
1084 return __next(m, v, pos, TRACE_NO_PIDS);
1085 }
1086
__start(struct seq_file * m,loff_t * pos,int type)1087 static void *__start(struct seq_file *m, loff_t *pos, int type)
1088 __acquires(RCU)
1089 {
1090 struct trace_pid_list *pid_list;
1091 struct trace_array *tr = m->private;
1092
1093 /*
1094 * Grab the mutex, to keep calls to p_next() having the same
1095 * tr->filtered_pids as p_start() has.
1096 * If we just passed the tr->filtered_pids around, then RCU would
1097 * have been enough, but doing that makes things more complex.
1098 */
1099 mutex_lock(&event_mutex);
1100 rcu_read_lock_sched();
1101
1102 if (type == TRACE_PIDS)
1103 pid_list = rcu_dereference_sched(tr->filtered_pids);
1104 else
1105 pid_list = rcu_dereference_sched(tr->filtered_no_pids);
1106
1107 if (!pid_list)
1108 return NULL;
1109
1110 return trace_pid_start(pid_list, pos);
1111 }
1112
p_start(struct seq_file * m,loff_t * pos)1113 static void *p_start(struct seq_file *m, loff_t *pos)
1114 __acquires(RCU)
1115 {
1116 return __start(m, pos, TRACE_PIDS);
1117 }
1118
np_start(struct seq_file * m,loff_t * pos)1119 static void *np_start(struct seq_file *m, loff_t *pos)
1120 __acquires(RCU)
1121 {
1122 return __start(m, pos, TRACE_NO_PIDS);
1123 }
1124
p_stop(struct seq_file * m,void * p)1125 static void p_stop(struct seq_file *m, void *p)
1126 __releases(RCU)
1127 {
1128 rcu_read_unlock_sched();
1129 mutex_unlock(&event_mutex);
1130 }
1131
1132 static ssize_t
event_enable_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)1133 event_enable_read(struct file *filp, char __user *ubuf, size_t cnt,
1134 loff_t *ppos)
1135 {
1136 struct trace_event_file *file;
1137 unsigned long flags;
1138 char buf[4] = "0";
1139
1140 mutex_lock(&event_mutex);
1141 file = event_file_data(filp);
1142 if (likely(file))
1143 flags = file->flags;
1144 mutex_unlock(&event_mutex);
1145
1146 if (!file)
1147 return -ENODEV;
1148
1149 if (flags & EVENT_FILE_FL_ENABLED &&
1150 !(flags & EVENT_FILE_FL_SOFT_DISABLED))
1151 strcpy(buf, "1");
1152
1153 if (flags & EVENT_FILE_FL_SOFT_DISABLED ||
1154 flags & EVENT_FILE_FL_SOFT_MODE)
1155 strcat(buf, "*");
1156
1157 strcat(buf, "\n");
1158
1159 return simple_read_from_buffer(ubuf, cnt, ppos, buf, strlen(buf));
1160 }
1161
1162 static ssize_t
event_enable_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)1163 event_enable_write(struct file *filp, const char __user *ubuf, size_t cnt,
1164 loff_t *ppos)
1165 {
1166 struct trace_event_file *file;
1167 unsigned long val;
1168 int ret;
1169
1170 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
1171 if (ret)
1172 return ret;
1173
1174 ret = tracing_update_buffers();
1175 if (ret < 0)
1176 return ret;
1177
1178 switch (val) {
1179 case 0:
1180 case 1:
1181 ret = -ENODEV;
1182 mutex_lock(&event_mutex);
1183 file = event_file_data(filp);
1184 if (likely(file))
1185 ret = ftrace_event_enable_disable(file, val);
1186 mutex_unlock(&event_mutex);
1187 break;
1188
1189 default:
1190 return -EINVAL;
1191 }
1192
1193 *ppos += cnt;
1194
1195 return ret ? ret : cnt;
1196 }
1197
1198 static ssize_t
system_enable_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)1199 system_enable_read(struct file *filp, char __user *ubuf, size_t cnt,
1200 loff_t *ppos)
1201 {
1202 const char set_to_char[4] = { '?', '0', '1', 'X' };
1203 struct trace_subsystem_dir *dir = filp->private_data;
1204 struct event_subsystem *system = dir->subsystem;
1205 struct trace_event_call *call;
1206 struct trace_event_file *file;
1207 struct trace_array *tr = dir->tr;
1208 char buf[2];
1209 int set = 0;
1210 int ret;
1211
1212 mutex_lock(&event_mutex);
1213 list_for_each_entry(file, &tr->events, list) {
1214 call = file->event_call;
1215 if ((call->flags & TRACE_EVENT_FL_IGNORE_ENABLE) ||
1216 !trace_event_name(call) || !call->class || !call->class->reg)
1217 continue;
1218
1219 if (system && strcmp(call->class->system, system->name) != 0)
1220 continue;
1221
1222 /*
1223 * We need to find out if all the events are set
1224 * or if all events or cleared, or if we have
1225 * a mixture.
1226 */
1227 set |= (1 << !!(file->flags & EVENT_FILE_FL_ENABLED));
1228
1229 /*
1230 * If we have a mixture, no need to look further.
1231 */
1232 if (set == 3)
1233 break;
1234 }
1235 mutex_unlock(&event_mutex);
1236
1237 buf[0] = set_to_char[set];
1238 buf[1] = '\n';
1239
1240 ret = simple_read_from_buffer(ubuf, cnt, ppos, buf, 2);
1241
1242 return ret;
1243 }
1244
1245 static ssize_t
system_enable_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)1246 system_enable_write(struct file *filp, const char __user *ubuf, size_t cnt,
1247 loff_t *ppos)
1248 {
1249 struct trace_subsystem_dir *dir = filp->private_data;
1250 struct event_subsystem *system = dir->subsystem;
1251 const char *name = NULL;
1252 unsigned long val;
1253 ssize_t ret;
1254
1255 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
1256 if (ret)
1257 return ret;
1258
1259 ret = tracing_update_buffers();
1260 if (ret < 0)
1261 return ret;
1262
1263 if (val != 0 && val != 1)
1264 return -EINVAL;
1265
1266 /*
1267 * Opening of "enable" adds a ref count to system,
1268 * so the name is safe to use.
1269 */
1270 if (system)
1271 name = system->name;
1272
1273 ret = __ftrace_set_clr_event(dir->tr, NULL, name, NULL, val);
1274 if (ret)
1275 goto out;
1276
1277 ret = cnt;
1278
1279 out:
1280 *ppos += cnt;
1281
1282 return ret;
1283 }
1284
1285 enum {
1286 FORMAT_HEADER = 1,
1287 FORMAT_FIELD_SEPERATOR = 2,
1288 FORMAT_PRINTFMT = 3,
1289 };
1290
f_next(struct seq_file * m,void * v,loff_t * pos)1291 static void *f_next(struct seq_file *m, void *v, loff_t *pos)
1292 {
1293 struct trace_event_call *call = event_file_data(m->private);
1294 struct list_head *common_head = &ftrace_common_fields;
1295 struct list_head *head = trace_get_fields(call);
1296 struct list_head *node = v;
1297
1298 (*pos)++;
1299
1300 switch ((unsigned long)v) {
1301 case FORMAT_HEADER:
1302 node = common_head;
1303 break;
1304
1305 case FORMAT_FIELD_SEPERATOR:
1306 node = head;
1307 break;
1308
1309 case FORMAT_PRINTFMT:
1310 /* all done */
1311 return NULL;
1312 }
1313
1314 node = node->prev;
1315 if (node == common_head)
1316 return (void *)FORMAT_FIELD_SEPERATOR;
1317 else if (node == head)
1318 return (void *)FORMAT_PRINTFMT;
1319 else
1320 return node;
1321 }
1322
f_show(struct seq_file * m,void * v)1323 static int f_show(struct seq_file *m, void *v)
1324 {
1325 struct trace_event_call *call = event_file_data(m->private);
1326 struct ftrace_event_field *field;
1327 const char *array_descriptor;
1328
1329 switch ((unsigned long)v) {
1330 case FORMAT_HEADER:
1331 seq_printf(m, "name: %s\n", trace_event_name(call));
1332 seq_printf(m, "ID: %d\n", call->event.type);
1333 seq_puts(m, "format:\n");
1334 return 0;
1335
1336 case FORMAT_FIELD_SEPERATOR:
1337 seq_putc(m, '\n');
1338 return 0;
1339
1340 case FORMAT_PRINTFMT:
1341 seq_printf(m, "\nprint fmt: %s\n",
1342 call->print_fmt);
1343 return 0;
1344 }
1345
1346 field = list_entry(v, struct ftrace_event_field, link);
1347 /*
1348 * Smartly shows the array type(except dynamic array).
1349 * Normal:
1350 * field:TYPE VAR
1351 * If TYPE := TYPE[LEN], it is shown:
1352 * field:TYPE VAR[LEN]
1353 */
1354 array_descriptor = strchr(field->type, '[');
1355
1356 if (str_has_prefix(field->type, "__data_loc"))
1357 array_descriptor = NULL;
1358
1359 if (!array_descriptor)
1360 seq_printf(m, "\tfield:%s %s;\toffset:%u;\tsize:%u;\tsigned:%d;\n",
1361 field->type, field->name, field->offset,
1362 field->size, !!field->is_signed);
1363 else
1364 seq_printf(m, "\tfield:%.*s %s%s;\toffset:%u;\tsize:%u;\tsigned:%d;\n",
1365 (int)(array_descriptor - field->type),
1366 field->type, field->name,
1367 array_descriptor, field->offset,
1368 field->size, !!field->is_signed);
1369
1370 return 0;
1371 }
1372
f_start(struct seq_file * m,loff_t * pos)1373 static void *f_start(struct seq_file *m, loff_t *pos)
1374 {
1375 void *p = (void *)FORMAT_HEADER;
1376 loff_t l = 0;
1377
1378 /* ->stop() is called even if ->start() fails */
1379 mutex_lock(&event_mutex);
1380 if (!event_file_data(m->private))
1381 return ERR_PTR(-ENODEV);
1382
1383 while (l < *pos && p)
1384 p = f_next(m, p, &l);
1385
1386 return p;
1387 }
1388
f_stop(struct seq_file * m,void * p)1389 static void f_stop(struct seq_file *m, void *p)
1390 {
1391 mutex_unlock(&event_mutex);
1392 }
1393
1394 static const struct seq_operations trace_format_seq_ops = {
1395 .start = f_start,
1396 .next = f_next,
1397 .stop = f_stop,
1398 .show = f_show,
1399 };
1400
trace_format_open(struct inode * inode,struct file * file)1401 static int trace_format_open(struct inode *inode, struct file *file)
1402 {
1403 struct seq_file *m;
1404 int ret;
1405
1406 /* Do we want to hide event format files on tracefs lockdown? */
1407
1408 ret = seq_open(file, &trace_format_seq_ops);
1409 if (ret < 0)
1410 return ret;
1411
1412 m = file->private_data;
1413 m->private = file;
1414
1415 return 0;
1416 }
1417
1418 static ssize_t
event_id_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)1419 event_id_read(struct file *filp, char __user *ubuf, size_t cnt, loff_t *ppos)
1420 {
1421 int id = (long)event_file_data(filp);
1422 char buf[32];
1423 int len;
1424
1425 if (unlikely(!id))
1426 return -ENODEV;
1427
1428 len = sprintf(buf, "%d\n", id);
1429
1430 return simple_read_from_buffer(ubuf, cnt, ppos, buf, len);
1431 }
1432
1433 static ssize_t
event_filter_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)1434 event_filter_read(struct file *filp, char __user *ubuf, size_t cnt,
1435 loff_t *ppos)
1436 {
1437 struct trace_event_file *file;
1438 struct trace_seq *s;
1439 int r = -ENODEV;
1440
1441 if (*ppos)
1442 return 0;
1443
1444 s = kmalloc(sizeof(*s), GFP_KERNEL);
1445
1446 if (!s)
1447 return -ENOMEM;
1448
1449 trace_seq_init(s);
1450
1451 mutex_lock(&event_mutex);
1452 file = event_file_data(filp);
1453 if (file)
1454 print_event_filter(file, s);
1455 mutex_unlock(&event_mutex);
1456
1457 if (file)
1458 r = simple_read_from_buffer(ubuf, cnt, ppos,
1459 s->buffer, trace_seq_used(s));
1460
1461 kfree(s);
1462
1463 return r;
1464 }
1465
1466 static ssize_t
event_filter_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)1467 event_filter_write(struct file *filp, const char __user *ubuf, size_t cnt,
1468 loff_t *ppos)
1469 {
1470 struct trace_event_file *file;
1471 char *buf;
1472 int err = -ENODEV;
1473
1474 if (cnt >= PAGE_SIZE)
1475 return -EINVAL;
1476
1477 buf = memdup_user_nul(ubuf, cnt);
1478 if (IS_ERR(buf))
1479 return PTR_ERR(buf);
1480
1481 mutex_lock(&event_mutex);
1482 file = event_file_data(filp);
1483 if (file)
1484 err = apply_event_filter(file, buf);
1485 mutex_unlock(&event_mutex);
1486
1487 kfree(buf);
1488 if (err < 0)
1489 return err;
1490
1491 *ppos += cnt;
1492
1493 return cnt;
1494 }
1495
1496 static LIST_HEAD(event_subsystems);
1497
subsystem_open(struct inode * inode,struct file * filp)1498 static int subsystem_open(struct inode *inode, struct file *filp)
1499 {
1500 struct event_subsystem *system = NULL;
1501 struct trace_subsystem_dir *dir = NULL; /* Initialize for gcc */
1502 struct trace_array *tr;
1503 int ret;
1504
1505 if (tracing_is_disabled())
1506 return -ENODEV;
1507
1508 /* Make sure the system still exists */
1509 mutex_lock(&event_mutex);
1510 mutex_lock(&trace_types_lock);
1511 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
1512 list_for_each_entry(dir, &tr->systems, list) {
1513 if (dir == inode->i_private) {
1514 /* Don't open systems with no events */
1515 if (dir->nr_events) {
1516 __get_system_dir(dir);
1517 system = dir->subsystem;
1518 }
1519 goto exit_loop;
1520 }
1521 }
1522 }
1523 exit_loop:
1524 mutex_unlock(&trace_types_lock);
1525 mutex_unlock(&event_mutex);
1526
1527 if (!system)
1528 return -ENODEV;
1529
1530 /* Some versions of gcc think dir can be uninitialized here */
1531 WARN_ON(!dir);
1532
1533 /* Still need to increment the ref count of the system */
1534 if (trace_array_get(tr) < 0) {
1535 put_system(dir);
1536 return -ENODEV;
1537 }
1538
1539 ret = tracing_open_generic(inode, filp);
1540 if (ret < 0) {
1541 trace_array_put(tr);
1542 put_system(dir);
1543 }
1544
1545 return ret;
1546 }
1547
system_tr_open(struct inode * inode,struct file * filp)1548 static int system_tr_open(struct inode *inode, struct file *filp)
1549 {
1550 struct trace_subsystem_dir *dir;
1551 struct trace_array *tr = inode->i_private;
1552 int ret;
1553
1554 /* Make a temporary dir that has no system but points to tr */
1555 dir = kzalloc(sizeof(*dir), GFP_KERNEL);
1556 if (!dir)
1557 return -ENOMEM;
1558
1559 ret = tracing_open_generic_tr(inode, filp);
1560 if (ret < 0) {
1561 kfree(dir);
1562 return ret;
1563 }
1564 dir->tr = tr;
1565 filp->private_data = dir;
1566
1567 return 0;
1568 }
1569
subsystem_release(struct inode * inode,struct file * file)1570 static int subsystem_release(struct inode *inode, struct file *file)
1571 {
1572 struct trace_subsystem_dir *dir = file->private_data;
1573
1574 trace_array_put(dir->tr);
1575
1576 /*
1577 * If dir->subsystem is NULL, then this is a temporary
1578 * descriptor that was made for a trace_array to enable
1579 * all subsystems.
1580 */
1581 if (dir->subsystem)
1582 put_system(dir);
1583 else
1584 kfree(dir);
1585
1586 return 0;
1587 }
1588
1589 static ssize_t
subsystem_filter_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)1590 subsystem_filter_read(struct file *filp, char __user *ubuf, size_t cnt,
1591 loff_t *ppos)
1592 {
1593 struct trace_subsystem_dir *dir = filp->private_data;
1594 struct event_subsystem *system = dir->subsystem;
1595 struct trace_seq *s;
1596 int r;
1597
1598 if (*ppos)
1599 return 0;
1600
1601 s = kmalloc(sizeof(*s), GFP_KERNEL);
1602 if (!s)
1603 return -ENOMEM;
1604
1605 trace_seq_init(s);
1606
1607 print_subsystem_event_filter(system, s);
1608 r = simple_read_from_buffer(ubuf, cnt, ppos,
1609 s->buffer, trace_seq_used(s));
1610
1611 kfree(s);
1612
1613 return r;
1614 }
1615
1616 static ssize_t
subsystem_filter_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)1617 subsystem_filter_write(struct file *filp, const char __user *ubuf, size_t cnt,
1618 loff_t *ppos)
1619 {
1620 struct trace_subsystem_dir *dir = filp->private_data;
1621 char *buf;
1622 int err;
1623
1624 if (cnt >= PAGE_SIZE)
1625 return -EINVAL;
1626
1627 buf = memdup_user_nul(ubuf, cnt);
1628 if (IS_ERR(buf))
1629 return PTR_ERR(buf);
1630
1631 err = apply_subsystem_event_filter(dir, buf);
1632 kfree(buf);
1633 if (err < 0)
1634 return err;
1635
1636 *ppos += cnt;
1637
1638 return cnt;
1639 }
1640
1641 static ssize_t
show_header(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)1642 show_header(struct file *filp, char __user *ubuf, size_t cnt, loff_t *ppos)
1643 {
1644 int (*func)(struct trace_seq *s) = filp->private_data;
1645 struct trace_seq *s;
1646 int r;
1647
1648 if (*ppos)
1649 return 0;
1650
1651 s = kmalloc(sizeof(*s), GFP_KERNEL);
1652 if (!s)
1653 return -ENOMEM;
1654
1655 trace_seq_init(s);
1656
1657 func(s);
1658 r = simple_read_from_buffer(ubuf, cnt, ppos,
1659 s->buffer, trace_seq_used(s));
1660
1661 kfree(s);
1662
1663 return r;
1664 }
1665
ignore_task_cpu(void * data)1666 static void ignore_task_cpu(void *data)
1667 {
1668 struct trace_array *tr = data;
1669 struct trace_pid_list *pid_list;
1670 struct trace_pid_list *no_pid_list;
1671
1672 /*
1673 * This function is called by on_each_cpu() while the
1674 * event_mutex is held.
1675 */
1676 pid_list = rcu_dereference_protected(tr->filtered_pids,
1677 mutex_is_locked(&event_mutex));
1678 no_pid_list = rcu_dereference_protected(tr->filtered_no_pids,
1679 mutex_is_locked(&event_mutex));
1680
1681 this_cpu_write(tr->array_buffer.data->ignore_pid,
1682 trace_ignore_this_task(pid_list, no_pid_list, current));
1683 }
1684
register_pid_events(struct trace_array * tr)1685 static void register_pid_events(struct trace_array *tr)
1686 {
1687 /*
1688 * Register a probe that is called before all other probes
1689 * to set ignore_pid if next or prev do not match.
1690 * Register a probe this is called after all other probes
1691 * to only keep ignore_pid set if next pid matches.
1692 */
1693 register_trace_prio_sched_switch(event_filter_pid_sched_switch_probe_pre,
1694 tr, INT_MAX);
1695 register_trace_prio_sched_switch(event_filter_pid_sched_switch_probe_post,
1696 tr, 0);
1697
1698 register_trace_prio_sched_wakeup(event_filter_pid_sched_wakeup_probe_pre,
1699 tr, INT_MAX);
1700 register_trace_prio_sched_wakeup(event_filter_pid_sched_wakeup_probe_post,
1701 tr, 0);
1702
1703 register_trace_prio_sched_wakeup_new(event_filter_pid_sched_wakeup_probe_pre,
1704 tr, INT_MAX);
1705 register_trace_prio_sched_wakeup_new(event_filter_pid_sched_wakeup_probe_post,
1706 tr, 0);
1707
1708 register_trace_prio_sched_waking(event_filter_pid_sched_wakeup_probe_pre,
1709 tr, INT_MAX);
1710 register_trace_prio_sched_waking(event_filter_pid_sched_wakeup_probe_post,
1711 tr, 0);
1712 }
1713
1714 static ssize_t
event_pid_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos,int type)1715 event_pid_write(struct file *filp, const char __user *ubuf,
1716 size_t cnt, loff_t *ppos, int type)
1717 {
1718 struct seq_file *m = filp->private_data;
1719 struct trace_array *tr = m->private;
1720 struct trace_pid_list *filtered_pids = NULL;
1721 struct trace_pid_list *other_pids = NULL;
1722 struct trace_pid_list *pid_list;
1723 struct trace_event_file *file;
1724 ssize_t ret;
1725
1726 if (!cnt)
1727 return 0;
1728
1729 ret = tracing_update_buffers();
1730 if (ret < 0)
1731 return ret;
1732
1733 mutex_lock(&event_mutex);
1734
1735 if (type == TRACE_PIDS) {
1736 filtered_pids = rcu_dereference_protected(tr->filtered_pids,
1737 lockdep_is_held(&event_mutex));
1738 other_pids = rcu_dereference_protected(tr->filtered_no_pids,
1739 lockdep_is_held(&event_mutex));
1740 } else {
1741 filtered_pids = rcu_dereference_protected(tr->filtered_no_pids,
1742 lockdep_is_held(&event_mutex));
1743 other_pids = rcu_dereference_protected(tr->filtered_pids,
1744 lockdep_is_held(&event_mutex));
1745 }
1746
1747 ret = trace_pid_write(filtered_pids, &pid_list, ubuf, cnt);
1748 if (ret < 0)
1749 goto out;
1750
1751 if (type == TRACE_PIDS)
1752 rcu_assign_pointer(tr->filtered_pids, pid_list);
1753 else
1754 rcu_assign_pointer(tr->filtered_no_pids, pid_list);
1755
1756 list_for_each_entry(file, &tr->events, list) {
1757 set_bit(EVENT_FILE_FL_PID_FILTER_BIT, &file->flags);
1758 }
1759
1760 if (filtered_pids) {
1761 tracepoint_synchronize_unregister();
1762 trace_free_pid_list(filtered_pids);
1763 } else if (pid_list && !other_pids) {
1764 register_pid_events(tr);
1765 }
1766
1767 /*
1768 * Ignoring of pids is done at task switch. But we have to
1769 * check for those tasks that are currently running.
1770 * Always do this in case a pid was appended or removed.
1771 */
1772 on_each_cpu(ignore_task_cpu, tr, 1);
1773
1774 out:
1775 mutex_unlock(&event_mutex);
1776
1777 if (ret > 0)
1778 *ppos += ret;
1779
1780 return ret;
1781 }
1782
1783 static ssize_t
ftrace_event_pid_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)1784 ftrace_event_pid_write(struct file *filp, const char __user *ubuf,
1785 size_t cnt, loff_t *ppos)
1786 {
1787 return event_pid_write(filp, ubuf, cnt, ppos, TRACE_PIDS);
1788 }
1789
1790 static ssize_t
ftrace_event_npid_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)1791 ftrace_event_npid_write(struct file *filp, const char __user *ubuf,
1792 size_t cnt, loff_t *ppos)
1793 {
1794 return event_pid_write(filp, ubuf, cnt, ppos, TRACE_NO_PIDS);
1795 }
1796
1797 static int ftrace_event_avail_open(struct inode *inode, struct file *file);
1798 static int ftrace_event_set_open(struct inode *inode, struct file *file);
1799 static int ftrace_event_set_pid_open(struct inode *inode, struct file *file);
1800 static int ftrace_event_set_npid_open(struct inode *inode, struct file *file);
1801 static int ftrace_event_release(struct inode *inode, struct file *file);
1802
1803 static const struct seq_operations show_event_seq_ops = {
1804 .start = t_start,
1805 .next = t_next,
1806 .show = t_show,
1807 .stop = t_stop,
1808 };
1809
1810 static const struct seq_operations show_set_event_seq_ops = {
1811 .start = s_start,
1812 .next = s_next,
1813 .show = t_show,
1814 .stop = t_stop,
1815 };
1816
1817 static const struct seq_operations show_set_pid_seq_ops = {
1818 .start = p_start,
1819 .next = p_next,
1820 .show = trace_pid_show,
1821 .stop = p_stop,
1822 };
1823
1824 static const struct seq_operations show_set_no_pid_seq_ops = {
1825 .start = np_start,
1826 .next = np_next,
1827 .show = trace_pid_show,
1828 .stop = p_stop,
1829 };
1830
1831 static const struct file_operations ftrace_avail_fops = {
1832 .open = ftrace_event_avail_open,
1833 .read = seq_read,
1834 .llseek = seq_lseek,
1835 .release = seq_release,
1836 };
1837
1838 static const struct file_operations ftrace_set_event_fops = {
1839 .open = ftrace_event_set_open,
1840 .read = seq_read,
1841 .write = ftrace_event_write,
1842 .llseek = seq_lseek,
1843 .release = ftrace_event_release,
1844 };
1845
1846 static const struct file_operations ftrace_set_event_pid_fops = {
1847 .open = ftrace_event_set_pid_open,
1848 .read = seq_read,
1849 .write = ftrace_event_pid_write,
1850 .llseek = seq_lseek,
1851 .release = ftrace_event_release,
1852 };
1853
1854 static const struct file_operations ftrace_set_event_notrace_pid_fops = {
1855 .open = ftrace_event_set_npid_open,
1856 .read = seq_read,
1857 .write = ftrace_event_npid_write,
1858 .llseek = seq_lseek,
1859 .release = ftrace_event_release,
1860 };
1861
1862 static const struct file_operations ftrace_enable_fops = {
1863 .open = tracing_open_generic,
1864 .read = event_enable_read,
1865 .write = event_enable_write,
1866 .llseek = default_llseek,
1867 };
1868
1869 static const struct file_operations ftrace_event_format_fops = {
1870 .open = trace_format_open,
1871 .read = seq_read,
1872 .llseek = seq_lseek,
1873 .release = seq_release,
1874 };
1875
1876 static const struct file_operations ftrace_event_id_fops = {
1877 .read = event_id_read,
1878 .llseek = default_llseek,
1879 };
1880
1881 static const struct file_operations ftrace_event_filter_fops = {
1882 .open = tracing_open_generic,
1883 .read = event_filter_read,
1884 .write = event_filter_write,
1885 .llseek = default_llseek,
1886 };
1887
1888 static const struct file_operations ftrace_subsystem_filter_fops = {
1889 .open = subsystem_open,
1890 .read = subsystem_filter_read,
1891 .write = subsystem_filter_write,
1892 .llseek = default_llseek,
1893 .release = subsystem_release,
1894 };
1895
1896 static const struct file_operations ftrace_system_enable_fops = {
1897 .open = subsystem_open,
1898 .read = system_enable_read,
1899 .write = system_enable_write,
1900 .llseek = default_llseek,
1901 .release = subsystem_release,
1902 };
1903
1904 static const struct file_operations ftrace_tr_enable_fops = {
1905 .open = system_tr_open,
1906 .read = system_enable_read,
1907 .write = system_enable_write,
1908 .llseek = default_llseek,
1909 .release = subsystem_release,
1910 };
1911
1912 static const struct file_operations ftrace_show_header_fops = {
1913 .open = tracing_open_generic,
1914 .read = show_header,
1915 .llseek = default_llseek,
1916 };
1917
1918 static int
ftrace_event_open(struct inode * inode,struct file * file,const struct seq_operations * seq_ops)1919 ftrace_event_open(struct inode *inode, struct file *file,
1920 const struct seq_operations *seq_ops)
1921 {
1922 struct seq_file *m;
1923 int ret;
1924
1925 ret = security_locked_down(LOCKDOWN_TRACEFS);
1926 if (ret)
1927 return ret;
1928
1929 ret = seq_open(file, seq_ops);
1930 if (ret < 0)
1931 return ret;
1932 m = file->private_data;
1933 /* copy tr over to seq ops */
1934 m->private = inode->i_private;
1935
1936 return ret;
1937 }
1938
ftrace_event_release(struct inode * inode,struct file * file)1939 static int ftrace_event_release(struct inode *inode, struct file *file)
1940 {
1941 struct trace_array *tr = inode->i_private;
1942
1943 trace_array_put(tr);
1944
1945 return seq_release(inode, file);
1946 }
1947
1948 static int
ftrace_event_avail_open(struct inode * inode,struct file * file)1949 ftrace_event_avail_open(struct inode *inode, struct file *file)
1950 {
1951 const struct seq_operations *seq_ops = &show_event_seq_ops;
1952
1953 /* Checks for tracefs lockdown */
1954 return ftrace_event_open(inode, file, seq_ops);
1955 }
1956
1957 static int
ftrace_event_set_open(struct inode * inode,struct file * file)1958 ftrace_event_set_open(struct inode *inode, struct file *file)
1959 {
1960 const struct seq_operations *seq_ops = &show_set_event_seq_ops;
1961 struct trace_array *tr = inode->i_private;
1962 int ret;
1963
1964 ret = tracing_check_open_get_tr(tr);
1965 if (ret)
1966 return ret;
1967
1968 if ((file->f_mode & FMODE_WRITE) &&
1969 (file->f_flags & O_TRUNC))
1970 ftrace_clear_events(tr);
1971
1972 ret = ftrace_event_open(inode, file, seq_ops);
1973 if (ret < 0)
1974 trace_array_put(tr);
1975 return ret;
1976 }
1977
1978 static int
ftrace_event_set_pid_open(struct inode * inode,struct file * file)1979 ftrace_event_set_pid_open(struct inode *inode, struct file *file)
1980 {
1981 const struct seq_operations *seq_ops = &show_set_pid_seq_ops;
1982 struct trace_array *tr = inode->i_private;
1983 int ret;
1984
1985 ret = tracing_check_open_get_tr(tr);
1986 if (ret)
1987 return ret;
1988
1989 if ((file->f_mode & FMODE_WRITE) &&
1990 (file->f_flags & O_TRUNC))
1991 ftrace_clear_event_pids(tr, TRACE_PIDS);
1992
1993 ret = ftrace_event_open(inode, file, seq_ops);
1994 if (ret < 0)
1995 trace_array_put(tr);
1996 return ret;
1997 }
1998
1999 static int
ftrace_event_set_npid_open(struct inode * inode,struct file * file)2000 ftrace_event_set_npid_open(struct inode *inode, struct file *file)
2001 {
2002 const struct seq_operations *seq_ops = &show_set_no_pid_seq_ops;
2003 struct trace_array *tr = inode->i_private;
2004 int ret;
2005
2006 ret = tracing_check_open_get_tr(tr);
2007 if (ret)
2008 return ret;
2009
2010 if ((file->f_mode & FMODE_WRITE) &&
2011 (file->f_flags & O_TRUNC))
2012 ftrace_clear_event_pids(tr, TRACE_NO_PIDS);
2013
2014 ret = ftrace_event_open(inode, file, seq_ops);
2015 if (ret < 0)
2016 trace_array_put(tr);
2017 return ret;
2018 }
2019
2020 static struct event_subsystem *
create_new_subsystem(const char * name)2021 create_new_subsystem(const char *name)
2022 {
2023 struct event_subsystem *system;
2024
2025 /* need to create new entry */
2026 system = kmalloc(sizeof(*system), GFP_KERNEL);
2027 if (!system)
2028 return NULL;
2029
2030 system->ref_count = 1;
2031
2032 /* Only allocate if dynamic (kprobes and modules) */
2033 system->name = kstrdup_const(name, GFP_KERNEL);
2034 if (!system->name)
2035 goto out_free;
2036
2037 system->filter = NULL;
2038
2039 system->filter = kzalloc(sizeof(struct event_filter), GFP_KERNEL);
2040 if (!system->filter)
2041 goto out_free;
2042
2043 list_add(&system->list, &event_subsystems);
2044
2045 return system;
2046
2047 out_free:
2048 kfree_const(system->name);
2049 kfree(system);
2050 return NULL;
2051 }
2052
2053 static struct dentry *
event_subsystem_dir(struct trace_array * tr,const char * name,struct trace_event_file * file,struct dentry * parent)2054 event_subsystem_dir(struct trace_array *tr, const char *name,
2055 struct trace_event_file *file, struct dentry *parent)
2056 {
2057 struct trace_subsystem_dir *dir;
2058 struct event_subsystem *system;
2059 struct dentry *entry;
2060
2061 /* First see if we did not already create this dir */
2062 list_for_each_entry(dir, &tr->systems, list) {
2063 system = dir->subsystem;
2064 if (strcmp(system->name, name) == 0) {
2065 dir->nr_events++;
2066 file->system = dir;
2067 return dir->entry;
2068 }
2069 }
2070
2071 /* Now see if the system itself exists. */
2072 list_for_each_entry(system, &event_subsystems, list) {
2073 if (strcmp(system->name, name) == 0)
2074 break;
2075 }
2076 /* Reset system variable when not found */
2077 if (&system->list == &event_subsystems)
2078 system = NULL;
2079
2080 dir = kmalloc(sizeof(*dir), GFP_KERNEL);
2081 if (!dir)
2082 goto out_fail;
2083
2084 if (!system) {
2085 system = create_new_subsystem(name);
2086 if (!system)
2087 goto out_free;
2088 } else
2089 __get_system(system);
2090
2091 dir->entry = tracefs_create_dir(name, parent);
2092 if (!dir->entry) {
2093 pr_warn("Failed to create system directory %s\n", name);
2094 __put_system(system);
2095 goto out_free;
2096 }
2097
2098 dir->tr = tr;
2099 dir->ref_count = 1;
2100 dir->nr_events = 1;
2101 dir->subsystem = system;
2102 file->system = dir;
2103
2104 entry = tracefs_create_file("filter", 0644, dir->entry, dir,
2105 &ftrace_subsystem_filter_fops);
2106 if (!entry) {
2107 kfree(system->filter);
2108 system->filter = NULL;
2109 pr_warn("Could not create tracefs '%s/filter' entry\n", name);
2110 }
2111
2112 trace_create_file("enable", 0644, dir->entry, dir,
2113 &ftrace_system_enable_fops);
2114
2115 list_add(&dir->list, &tr->systems);
2116
2117 return dir->entry;
2118
2119 out_free:
2120 kfree(dir);
2121 out_fail:
2122 /* Only print this message if failed on memory allocation */
2123 if (!dir || !system)
2124 pr_warn("No memory to create event subsystem %s\n", name);
2125 return NULL;
2126 }
2127
2128 static int
event_define_fields(struct trace_event_call * call)2129 event_define_fields(struct trace_event_call *call)
2130 {
2131 struct list_head *head;
2132 int ret = 0;
2133
2134 /*
2135 * Other events may have the same class. Only update
2136 * the fields if they are not already defined.
2137 */
2138 head = trace_get_fields(call);
2139 if (list_empty(head)) {
2140 struct trace_event_fields *field = call->class->fields_array;
2141 unsigned int offset = sizeof(struct trace_entry);
2142
2143 for (; field->type; field++) {
2144 if (field->type == TRACE_FUNCTION_TYPE) {
2145 field->define_fields(call);
2146 break;
2147 }
2148
2149 offset = ALIGN(offset, field->align);
2150 ret = trace_define_field(call, field->type, field->name,
2151 offset, field->size,
2152 field->is_signed, field->filter_type);
2153 if (WARN_ON_ONCE(ret)) {
2154 pr_err("error code is %d\n", ret);
2155 break;
2156 }
2157
2158 offset += field->size;
2159 }
2160 }
2161
2162 return ret;
2163 }
2164
2165 static int
event_create_dir(struct dentry * parent,struct trace_event_file * file)2166 event_create_dir(struct dentry *parent, struct trace_event_file *file)
2167 {
2168 struct trace_event_call *call = file->event_call;
2169 struct trace_array *tr = file->tr;
2170 struct dentry *d_events;
2171 const char *name;
2172 int ret;
2173
2174 /*
2175 * If the trace point header did not define TRACE_SYSTEM
2176 * then the system would be called "TRACE_SYSTEM".
2177 */
2178 if (strcmp(call->class->system, TRACE_SYSTEM) != 0) {
2179 d_events = event_subsystem_dir(tr, call->class->system, file, parent);
2180 if (!d_events)
2181 return -ENOMEM;
2182 } else
2183 d_events = parent;
2184
2185 name = trace_event_name(call);
2186 file->dir = tracefs_create_dir(name, d_events);
2187 if (!file->dir) {
2188 pr_warn("Could not create tracefs '%s' directory\n", name);
2189 return -1;
2190 }
2191
2192 if (call->class->reg && !(call->flags & TRACE_EVENT_FL_IGNORE_ENABLE))
2193 trace_create_file("enable", 0644, file->dir, file,
2194 &ftrace_enable_fops);
2195
2196 #ifdef CONFIG_PERF_EVENTS
2197 if (call->event.type && call->class->reg)
2198 trace_create_file("id", 0444, file->dir,
2199 (void *)(long)call->event.type,
2200 &ftrace_event_id_fops);
2201 #endif
2202
2203 ret = event_define_fields(call);
2204 if (ret < 0) {
2205 pr_warn("Could not initialize trace point events/%s\n", name);
2206 return ret;
2207 }
2208
2209 /*
2210 * Only event directories that can be enabled should have
2211 * triggers or filters.
2212 */
2213 if (!(call->flags & TRACE_EVENT_FL_IGNORE_ENABLE)) {
2214 trace_create_file("filter", 0644, file->dir, file,
2215 &ftrace_event_filter_fops);
2216
2217 trace_create_file("trigger", 0644, file->dir, file,
2218 &event_trigger_fops);
2219 }
2220
2221 #ifdef CONFIG_HIST_TRIGGERS
2222 trace_create_file("hist", 0444, file->dir, file,
2223 &event_hist_fops);
2224 #endif
2225 #ifdef CONFIG_HIST_TRIGGERS_DEBUG
2226 trace_create_file("hist_debug", 0444, file->dir, file,
2227 &event_hist_debug_fops);
2228 #endif
2229 trace_create_file("format", 0444, file->dir, call,
2230 &ftrace_event_format_fops);
2231
2232 #ifdef CONFIG_TRACE_EVENT_INJECT
2233 if (call->event.type && call->class->reg)
2234 trace_create_file("inject", 0200, file->dir, file,
2235 &event_inject_fops);
2236 #endif
2237
2238 return 0;
2239 }
2240
remove_event_from_tracers(struct trace_event_call * call)2241 static void remove_event_from_tracers(struct trace_event_call *call)
2242 {
2243 struct trace_event_file *file;
2244 struct trace_array *tr;
2245
2246 do_for_each_event_file_safe(tr, file) {
2247 if (file->event_call != call)
2248 continue;
2249
2250 remove_event_file_dir(file);
2251 /*
2252 * The do_for_each_event_file_safe() is
2253 * a double loop. After finding the call for this
2254 * trace_array, we use break to jump to the next
2255 * trace_array.
2256 */
2257 break;
2258 } while_for_each_event_file();
2259 }
2260
event_remove(struct trace_event_call * call)2261 static void event_remove(struct trace_event_call *call)
2262 {
2263 struct trace_array *tr;
2264 struct trace_event_file *file;
2265
2266 do_for_each_event_file(tr, file) {
2267 if (file->event_call != call)
2268 continue;
2269
2270 if (file->flags & EVENT_FILE_FL_WAS_ENABLED)
2271 tr->clear_trace = true;
2272
2273 ftrace_event_enable_disable(file, 0);
2274 /*
2275 * The do_for_each_event_file() is
2276 * a double loop. After finding the call for this
2277 * trace_array, we use break to jump to the next
2278 * trace_array.
2279 */
2280 break;
2281 } while_for_each_event_file();
2282
2283 if (call->event.funcs)
2284 __unregister_trace_event(&call->event);
2285 remove_event_from_tracers(call);
2286 list_del(&call->list);
2287 }
2288
event_init(struct trace_event_call * call)2289 static int event_init(struct trace_event_call *call)
2290 {
2291 int ret = 0;
2292 const char *name;
2293
2294 name = trace_event_name(call);
2295 if (WARN_ON(!name))
2296 return -EINVAL;
2297
2298 if (call->class->raw_init) {
2299 ret = call->class->raw_init(call);
2300 if (ret < 0 && ret != -ENOSYS)
2301 pr_warn("Could not initialize trace events/%s\n", name);
2302 }
2303
2304 return ret;
2305 }
2306
2307 static int
__register_event(struct trace_event_call * call,struct module * mod)2308 __register_event(struct trace_event_call *call, struct module *mod)
2309 {
2310 int ret;
2311
2312 ret = event_init(call);
2313 if (ret < 0)
2314 return ret;
2315
2316 list_add(&call->list, &ftrace_events);
2317 call->mod = mod;
2318
2319 return 0;
2320 }
2321
eval_replace(char * ptr,struct trace_eval_map * map,int len)2322 static char *eval_replace(char *ptr, struct trace_eval_map *map, int len)
2323 {
2324 int rlen;
2325 int elen;
2326
2327 /* Find the length of the eval value as a string */
2328 elen = snprintf(ptr, 0, "%ld", map->eval_value);
2329 /* Make sure there's enough room to replace the string with the value */
2330 if (len < elen)
2331 return NULL;
2332
2333 snprintf(ptr, elen + 1, "%ld", map->eval_value);
2334
2335 /* Get the rest of the string of ptr */
2336 rlen = strlen(ptr + len);
2337 memmove(ptr + elen, ptr + len, rlen);
2338 /* Make sure we end the new string */
2339 ptr[elen + rlen] = 0;
2340
2341 return ptr + elen;
2342 }
2343
update_event_printk(struct trace_event_call * call,struct trace_eval_map * map)2344 static void update_event_printk(struct trace_event_call *call,
2345 struct trace_eval_map *map)
2346 {
2347 char *ptr;
2348 int quote = 0;
2349 int len = strlen(map->eval_string);
2350
2351 for (ptr = call->print_fmt; *ptr; ptr++) {
2352 if (*ptr == '\\') {
2353 ptr++;
2354 /* paranoid */
2355 if (!*ptr)
2356 break;
2357 continue;
2358 }
2359 if (*ptr == '"') {
2360 quote ^= 1;
2361 continue;
2362 }
2363 if (quote)
2364 continue;
2365 if (isdigit(*ptr)) {
2366 /* skip numbers */
2367 do {
2368 ptr++;
2369 /* Check for alpha chars like ULL */
2370 } while (isalnum(*ptr));
2371 if (!*ptr)
2372 break;
2373 /*
2374 * A number must have some kind of delimiter after
2375 * it, and we can ignore that too.
2376 */
2377 continue;
2378 }
2379 if (isalpha(*ptr) || *ptr == '_') {
2380 if (strncmp(map->eval_string, ptr, len) == 0 &&
2381 !isalnum(ptr[len]) && ptr[len] != '_') {
2382 ptr = eval_replace(ptr, map, len);
2383 /* enum/sizeof string smaller than value */
2384 if (WARN_ON_ONCE(!ptr))
2385 return;
2386 /*
2387 * No need to decrement here, as eval_replace()
2388 * returns the pointer to the character passed
2389 * the eval, and two evals can not be placed
2390 * back to back without something in between.
2391 * We can skip that something in between.
2392 */
2393 continue;
2394 }
2395 skip_more:
2396 do {
2397 ptr++;
2398 } while (isalnum(*ptr) || *ptr == '_');
2399 if (!*ptr)
2400 break;
2401 /*
2402 * If what comes after this variable is a '.' or
2403 * '->' then we can continue to ignore that string.
2404 */
2405 if (*ptr == '.' || (ptr[0] == '-' && ptr[1] == '>')) {
2406 ptr += *ptr == '.' ? 1 : 2;
2407 if (!*ptr)
2408 break;
2409 goto skip_more;
2410 }
2411 /*
2412 * Once again, we can skip the delimiter that came
2413 * after the string.
2414 */
2415 continue;
2416 }
2417 }
2418 }
2419
trace_event_eval_update(struct trace_eval_map ** map,int len)2420 void trace_event_eval_update(struct trace_eval_map **map, int len)
2421 {
2422 struct trace_event_call *call, *p;
2423 const char *last_system = NULL;
2424 bool first = false;
2425 int last_i;
2426 int i;
2427
2428 down_write(&trace_event_sem);
2429 list_for_each_entry_safe(call, p, &ftrace_events, list) {
2430 /* events are usually grouped together with systems */
2431 if (!last_system || call->class->system != last_system) {
2432 first = true;
2433 last_i = 0;
2434 last_system = call->class->system;
2435 }
2436
2437 /*
2438 * Since calls are grouped by systems, the likelyhood that the
2439 * next call in the iteration belongs to the same system as the
2440 * previous call is high. As an optimization, we skip seaching
2441 * for a map[] that matches the call's system if the last call
2442 * was from the same system. That's what last_i is for. If the
2443 * call has the same system as the previous call, then last_i
2444 * will be the index of the first map[] that has a matching
2445 * system.
2446 */
2447 for (i = last_i; i < len; i++) {
2448 if (call->class->system == map[i]->system) {
2449 /* Save the first system if need be */
2450 if (first) {
2451 last_i = i;
2452 first = false;
2453 }
2454 update_event_printk(call, map[i]);
2455 }
2456 }
2457 }
2458 up_write(&trace_event_sem);
2459 }
2460
2461 static struct trace_event_file *
trace_create_new_event(struct trace_event_call * call,struct trace_array * tr)2462 trace_create_new_event(struct trace_event_call *call,
2463 struct trace_array *tr)
2464 {
2465 struct trace_pid_list *no_pid_list;
2466 struct trace_pid_list *pid_list;
2467 struct trace_event_file *file;
2468
2469 file = kmem_cache_alloc(file_cachep, GFP_TRACE);
2470 if (!file)
2471 return NULL;
2472
2473 pid_list = rcu_dereference_protected(tr->filtered_pids,
2474 lockdep_is_held(&event_mutex));
2475 no_pid_list = rcu_dereference_protected(tr->filtered_no_pids,
2476 lockdep_is_held(&event_mutex));
2477
2478 if (pid_list || no_pid_list)
2479 file->flags |= EVENT_FILE_FL_PID_FILTER;
2480
2481 file->event_call = call;
2482 file->tr = tr;
2483 atomic_set(&file->sm_ref, 0);
2484 atomic_set(&file->tm_ref, 0);
2485 INIT_LIST_HEAD(&file->triggers);
2486 list_add(&file->list, &tr->events);
2487
2488 return file;
2489 }
2490
2491 /* Add an event to a trace directory */
2492 static int
__trace_add_new_event(struct trace_event_call * call,struct trace_array * tr)2493 __trace_add_new_event(struct trace_event_call *call, struct trace_array *tr)
2494 {
2495 struct trace_event_file *file;
2496
2497 file = trace_create_new_event(call, tr);
2498 if (!file)
2499 return -ENOMEM;
2500
2501 if (eventdir_initialized)
2502 return event_create_dir(tr->event_dir, file);
2503 else
2504 return event_define_fields(call);
2505 }
2506
2507 /*
2508 * Just create a decriptor for early init. A descriptor is required
2509 * for enabling events at boot. We want to enable events before
2510 * the filesystem is initialized.
2511 */
2512 static int
__trace_early_add_new_event(struct trace_event_call * call,struct trace_array * tr)2513 __trace_early_add_new_event(struct trace_event_call *call,
2514 struct trace_array *tr)
2515 {
2516 struct trace_event_file *file;
2517
2518 file = trace_create_new_event(call, tr);
2519 if (!file)
2520 return -ENOMEM;
2521
2522 return event_define_fields(call);
2523 }
2524
2525 struct ftrace_module_file_ops;
2526 static void __add_event_to_tracers(struct trace_event_call *call);
2527
2528 /* Add an additional event_call dynamically */
trace_add_event_call(struct trace_event_call * call)2529 int trace_add_event_call(struct trace_event_call *call)
2530 {
2531 int ret;
2532 lockdep_assert_held(&event_mutex);
2533
2534 mutex_lock(&trace_types_lock);
2535
2536 ret = __register_event(call, NULL);
2537 if (ret >= 0)
2538 __add_event_to_tracers(call);
2539
2540 mutex_unlock(&trace_types_lock);
2541 return ret;
2542 }
2543
2544 /*
2545 * Must be called under locking of trace_types_lock, event_mutex and
2546 * trace_event_sem.
2547 */
__trace_remove_event_call(struct trace_event_call * call)2548 static void __trace_remove_event_call(struct trace_event_call *call)
2549 {
2550 event_remove(call);
2551 trace_destroy_fields(call);
2552 free_event_filter(call->filter);
2553 call->filter = NULL;
2554 }
2555
probe_remove_event_call(struct trace_event_call * call)2556 static int probe_remove_event_call(struct trace_event_call *call)
2557 {
2558 struct trace_array *tr;
2559 struct trace_event_file *file;
2560
2561 #ifdef CONFIG_PERF_EVENTS
2562 if (call->perf_refcount)
2563 return -EBUSY;
2564 #endif
2565 do_for_each_event_file(tr, file) {
2566 if (file->event_call != call)
2567 continue;
2568 /*
2569 * We can't rely on ftrace_event_enable_disable(enable => 0)
2570 * we are going to do, EVENT_FILE_FL_SOFT_MODE can suppress
2571 * TRACE_REG_UNREGISTER.
2572 */
2573 if (file->flags & EVENT_FILE_FL_ENABLED)
2574 return -EBUSY;
2575 /*
2576 * The do_for_each_event_file_safe() is
2577 * a double loop. After finding the call for this
2578 * trace_array, we use break to jump to the next
2579 * trace_array.
2580 */
2581 break;
2582 } while_for_each_event_file();
2583
2584 __trace_remove_event_call(call);
2585
2586 return 0;
2587 }
2588
2589 /* Remove an event_call */
trace_remove_event_call(struct trace_event_call * call)2590 int trace_remove_event_call(struct trace_event_call *call)
2591 {
2592 int ret;
2593
2594 lockdep_assert_held(&event_mutex);
2595
2596 mutex_lock(&trace_types_lock);
2597 down_write(&trace_event_sem);
2598 ret = probe_remove_event_call(call);
2599 up_write(&trace_event_sem);
2600 mutex_unlock(&trace_types_lock);
2601
2602 return ret;
2603 }
2604
2605 #define for_each_event(event, start, end) \
2606 for (event = start; \
2607 (unsigned long)event < (unsigned long)end; \
2608 event++)
2609
2610 #ifdef CONFIG_MODULES
2611
trace_module_add_events(struct module * mod)2612 static void trace_module_add_events(struct module *mod)
2613 {
2614 struct trace_event_call **call, **start, **end;
2615
2616 if (!mod->num_trace_events)
2617 return;
2618
2619 /* Don't add infrastructure for mods without tracepoints */
2620 if (trace_module_has_bad_taint(mod)) {
2621 pr_err("%s: module has bad taint, not creating trace events\n",
2622 mod->name);
2623 return;
2624 }
2625
2626 start = mod->trace_events;
2627 end = mod->trace_events + mod->num_trace_events;
2628
2629 for_each_event(call, start, end) {
2630 __register_event(*call, mod);
2631 __add_event_to_tracers(*call);
2632 }
2633 }
2634
trace_module_remove_events(struct module * mod)2635 static void trace_module_remove_events(struct module *mod)
2636 {
2637 struct trace_event_call *call, *p;
2638
2639 down_write(&trace_event_sem);
2640 list_for_each_entry_safe(call, p, &ftrace_events, list) {
2641 if (call->mod == mod)
2642 __trace_remove_event_call(call);
2643 }
2644 up_write(&trace_event_sem);
2645
2646 /*
2647 * It is safest to reset the ring buffer if the module being unloaded
2648 * registered any events that were used. The only worry is if
2649 * a new module gets loaded, and takes on the same id as the events
2650 * of this module. When printing out the buffer, traced events left
2651 * over from this module may be passed to the new module events and
2652 * unexpected results may occur.
2653 */
2654 tracing_reset_all_online_cpus();
2655 }
2656
trace_module_notify(struct notifier_block * self,unsigned long val,void * data)2657 static int trace_module_notify(struct notifier_block *self,
2658 unsigned long val, void *data)
2659 {
2660 struct module *mod = data;
2661
2662 mutex_lock(&event_mutex);
2663 mutex_lock(&trace_types_lock);
2664 switch (val) {
2665 case MODULE_STATE_COMING:
2666 trace_module_add_events(mod);
2667 break;
2668 case MODULE_STATE_GOING:
2669 trace_module_remove_events(mod);
2670 break;
2671 }
2672 mutex_unlock(&trace_types_lock);
2673 mutex_unlock(&event_mutex);
2674
2675 return NOTIFY_OK;
2676 }
2677
2678 static struct notifier_block trace_module_nb = {
2679 .notifier_call = trace_module_notify,
2680 .priority = 1, /* higher than trace.c module notify */
2681 };
2682 #endif /* CONFIG_MODULES */
2683
2684 /* Create a new event directory structure for a trace directory. */
2685 static void
__trace_add_event_dirs(struct trace_array * tr)2686 __trace_add_event_dirs(struct trace_array *tr)
2687 {
2688 struct trace_event_call *call;
2689 int ret;
2690
2691 list_for_each_entry(call, &ftrace_events, list) {
2692 ret = __trace_add_new_event(call, tr);
2693 if (ret < 0)
2694 pr_warn("Could not create directory for event %s\n",
2695 trace_event_name(call));
2696 }
2697 }
2698
2699 /* Returns any file that matches the system and event */
2700 struct trace_event_file *
__find_event_file(struct trace_array * tr,const char * system,const char * event)2701 __find_event_file(struct trace_array *tr, const char *system, const char *event)
2702 {
2703 struct trace_event_file *file;
2704 struct trace_event_call *call;
2705 const char *name;
2706
2707 list_for_each_entry(file, &tr->events, list) {
2708
2709 call = file->event_call;
2710 name = trace_event_name(call);
2711
2712 if (!name || !call->class)
2713 continue;
2714
2715 if (strcmp(event, name) == 0 &&
2716 strcmp(system, call->class->system) == 0)
2717 return file;
2718 }
2719 return NULL;
2720 }
2721
2722 /* Returns valid trace event files that match system and event */
2723 struct trace_event_file *
find_event_file(struct trace_array * tr,const char * system,const char * event)2724 find_event_file(struct trace_array *tr, const char *system, const char *event)
2725 {
2726 struct trace_event_file *file;
2727
2728 file = __find_event_file(tr, system, event);
2729 if (!file || !file->event_call->class->reg ||
2730 file->event_call->flags & TRACE_EVENT_FL_IGNORE_ENABLE)
2731 return NULL;
2732
2733 return file;
2734 }
2735
2736 /**
2737 * trace_get_event_file - Find and return a trace event file
2738 * @instance: The name of the trace instance containing the event
2739 * @system: The name of the system containing the event
2740 * @event: The name of the event
2741 *
2742 * Return a trace event file given the trace instance name, trace
2743 * system, and trace event name. If the instance name is NULL, it
2744 * refers to the top-level trace array.
2745 *
2746 * This function will look it up and return it if found, after calling
2747 * trace_array_get() to prevent the instance from going away, and
2748 * increment the event's module refcount to prevent it from being
2749 * removed.
2750 *
2751 * To release the file, call trace_put_event_file(), which will call
2752 * trace_array_put() and decrement the event's module refcount.
2753 *
2754 * Return: The trace event on success, ERR_PTR otherwise.
2755 */
trace_get_event_file(const char * instance,const char * system,const char * event)2756 struct trace_event_file *trace_get_event_file(const char *instance,
2757 const char *system,
2758 const char *event)
2759 {
2760 struct trace_array *tr = top_trace_array();
2761 struct trace_event_file *file = NULL;
2762 int ret = -EINVAL;
2763
2764 if (instance) {
2765 tr = trace_array_find_get(instance);
2766 if (!tr)
2767 return ERR_PTR(-ENOENT);
2768 } else {
2769 ret = trace_array_get(tr);
2770 if (ret)
2771 return ERR_PTR(ret);
2772 }
2773
2774 mutex_lock(&event_mutex);
2775
2776 file = find_event_file(tr, system, event);
2777 if (!file) {
2778 trace_array_put(tr);
2779 ret = -EINVAL;
2780 goto out;
2781 }
2782
2783 /* Don't let event modules unload while in use */
2784 ret = try_module_get(file->event_call->mod);
2785 if (!ret) {
2786 trace_array_put(tr);
2787 ret = -EBUSY;
2788 goto out;
2789 }
2790
2791 ret = 0;
2792 out:
2793 mutex_unlock(&event_mutex);
2794
2795 if (ret)
2796 file = ERR_PTR(ret);
2797
2798 return file;
2799 }
2800 EXPORT_SYMBOL_GPL(trace_get_event_file);
2801
2802 /**
2803 * trace_put_event_file - Release a file from trace_get_event_file()
2804 * @file: The trace event file
2805 *
2806 * If a file was retrieved using trace_get_event_file(), this should
2807 * be called when it's no longer needed. It will cancel the previous
2808 * trace_array_get() called by that function, and decrement the
2809 * event's module refcount.
2810 */
trace_put_event_file(struct trace_event_file * file)2811 void trace_put_event_file(struct trace_event_file *file)
2812 {
2813 mutex_lock(&event_mutex);
2814 module_put(file->event_call->mod);
2815 mutex_unlock(&event_mutex);
2816
2817 trace_array_put(file->tr);
2818 }
2819 EXPORT_SYMBOL_GPL(trace_put_event_file);
2820
2821 #ifdef CONFIG_DYNAMIC_FTRACE
2822
2823 /* Avoid typos */
2824 #define ENABLE_EVENT_STR "enable_event"
2825 #define DISABLE_EVENT_STR "disable_event"
2826
2827 struct event_probe_data {
2828 struct trace_event_file *file;
2829 unsigned long count;
2830 int ref;
2831 bool enable;
2832 };
2833
update_event_probe(struct event_probe_data * data)2834 static void update_event_probe(struct event_probe_data *data)
2835 {
2836 if (data->enable)
2837 clear_bit(EVENT_FILE_FL_SOFT_DISABLED_BIT, &data->file->flags);
2838 else
2839 set_bit(EVENT_FILE_FL_SOFT_DISABLED_BIT, &data->file->flags);
2840 }
2841
2842 static void
event_enable_probe(unsigned long ip,unsigned long parent_ip,struct trace_array * tr,struct ftrace_probe_ops * ops,void * data)2843 event_enable_probe(unsigned long ip, unsigned long parent_ip,
2844 struct trace_array *tr, struct ftrace_probe_ops *ops,
2845 void *data)
2846 {
2847 struct ftrace_func_mapper *mapper = data;
2848 struct event_probe_data *edata;
2849 void **pdata;
2850
2851 pdata = ftrace_func_mapper_find_ip(mapper, ip);
2852 if (!pdata || !*pdata)
2853 return;
2854
2855 edata = *pdata;
2856 update_event_probe(edata);
2857 }
2858
2859 static void
event_enable_count_probe(unsigned long ip,unsigned long parent_ip,struct trace_array * tr,struct ftrace_probe_ops * ops,void * data)2860 event_enable_count_probe(unsigned long ip, unsigned long parent_ip,
2861 struct trace_array *tr, struct ftrace_probe_ops *ops,
2862 void *data)
2863 {
2864 struct ftrace_func_mapper *mapper = data;
2865 struct event_probe_data *edata;
2866 void **pdata;
2867
2868 pdata = ftrace_func_mapper_find_ip(mapper, ip);
2869 if (!pdata || !*pdata)
2870 return;
2871
2872 edata = *pdata;
2873
2874 if (!edata->count)
2875 return;
2876
2877 /* Skip if the event is in a state we want to switch to */
2878 if (edata->enable == !(edata->file->flags & EVENT_FILE_FL_SOFT_DISABLED))
2879 return;
2880
2881 if (edata->count != -1)
2882 (edata->count)--;
2883
2884 update_event_probe(edata);
2885 }
2886
2887 static int
event_enable_print(struct seq_file * m,unsigned long ip,struct ftrace_probe_ops * ops,void * data)2888 event_enable_print(struct seq_file *m, unsigned long ip,
2889 struct ftrace_probe_ops *ops, void *data)
2890 {
2891 struct ftrace_func_mapper *mapper = data;
2892 struct event_probe_data *edata;
2893 void **pdata;
2894
2895 pdata = ftrace_func_mapper_find_ip(mapper, ip);
2896
2897 if (WARN_ON_ONCE(!pdata || !*pdata))
2898 return 0;
2899
2900 edata = *pdata;
2901
2902 seq_printf(m, "%ps:", (void *)ip);
2903
2904 seq_printf(m, "%s:%s:%s",
2905 edata->enable ? ENABLE_EVENT_STR : DISABLE_EVENT_STR,
2906 edata->file->event_call->class->system,
2907 trace_event_name(edata->file->event_call));
2908
2909 if (edata->count == -1)
2910 seq_puts(m, ":unlimited\n");
2911 else
2912 seq_printf(m, ":count=%ld\n", edata->count);
2913
2914 return 0;
2915 }
2916
2917 static int
event_enable_init(struct ftrace_probe_ops * ops,struct trace_array * tr,unsigned long ip,void * init_data,void ** data)2918 event_enable_init(struct ftrace_probe_ops *ops, struct trace_array *tr,
2919 unsigned long ip, void *init_data, void **data)
2920 {
2921 struct ftrace_func_mapper *mapper = *data;
2922 struct event_probe_data *edata = init_data;
2923 int ret;
2924
2925 if (!mapper) {
2926 mapper = allocate_ftrace_func_mapper();
2927 if (!mapper)
2928 return -ENODEV;
2929 *data = mapper;
2930 }
2931
2932 ret = ftrace_func_mapper_add_ip(mapper, ip, edata);
2933 if (ret < 0)
2934 return ret;
2935
2936 edata->ref++;
2937
2938 return 0;
2939 }
2940
free_probe_data(void * data)2941 static int free_probe_data(void *data)
2942 {
2943 struct event_probe_data *edata = data;
2944
2945 edata->ref--;
2946 if (!edata->ref) {
2947 /* Remove the SOFT_MODE flag */
2948 __ftrace_event_enable_disable(edata->file, 0, 1);
2949 module_put(edata->file->event_call->mod);
2950 kfree(edata);
2951 }
2952 return 0;
2953 }
2954
2955 static void
event_enable_free(struct ftrace_probe_ops * ops,struct trace_array * tr,unsigned long ip,void * data)2956 event_enable_free(struct ftrace_probe_ops *ops, struct trace_array *tr,
2957 unsigned long ip, void *data)
2958 {
2959 struct ftrace_func_mapper *mapper = data;
2960 struct event_probe_data *edata;
2961
2962 if (!ip) {
2963 if (!mapper)
2964 return;
2965 free_ftrace_func_mapper(mapper, free_probe_data);
2966 return;
2967 }
2968
2969 edata = ftrace_func_mapper_remove_ip(mapper, ip);
2970
2971 if (WARN_ON_ONCE(!edata))
2972 return;
2973
2974 if (WARN_ON_ONCE(edata->ref <= 0))
2975 return;
2976
2977 free_probe_data(edata);
2978 }
2979
2980 static struct ftrace_probe_ops event_enable_probe_ops = {
2981 .func = event_enable_probe,
2982 .print = event_enable_print,
2983 .init = event_enable_init,
2984 .free = event_enable_free,
2985 };
2986
2987 static struct ftrace_probe_ops event_enable_count_probe_ops = {
2988 .func = event_enable_count_probe,
2989 .print = event_enable_print,
2990 .init = event_enable_init,
2991 .free = event_enable_free,
2992 };
2993
2994 static struct ftrace_probe_ops event_disable_probe_ops = {
2995 .func = event_enable_probe,
2996 .print = event_enable_print,
2997 .init = event_enable_init,
2998 .free = event_enable_free,
2999 };
3000
3001 static struct ftrace_probe_ops event_disable_count_probe_ops = {
3002 .func = event_enable_count_probe,
3003 .print = event_enable_print,
3004 .init = event_enable_init,
3005 .free = event_enable_free,
3006 };
3007
3008 static int
event_enable_func(struct trace_array * tr,struct ftrace_hash * hash,char * glob,char * cmd,char * param,int enabled)3009 event_enable_func(struct trace_array *tr, struct ftrace_hash *hash,
3010 char *glob, char *cmd, char *param, int enabled)
3011 {
3012 struct trace_event_file *file;
3013 struct ftrace_probe_ops *ops;
3014 struct event_probe_data *data;
3015 const char *system;
3016 const char *event;
3017 char *number;
3018 bool enable;
3019 int ret;
3020
3021 if (!tr)
3022 return -ENODEV;
3023
3024 /* hash funcs only work with set_ftrace_filter */
3025 if (!enabled || !param)
3026 return -EINVAL;
3027
3028 system = strsep(¶m, ":");
3029 if (!param)
3030 return -EINVAL;
3031
3032 event = strsep(¶m, ":");
3033
3034 mutex_lock(&event_mutex);
3035
3036 ret = -EINVAL;
3037 file = find_event_file(tr, system, event);
3038 if (!file)
3039 goto out;
3040
3041 enable = strcmp(cmd, ENABLE_EVENT_STR) == 0;
3042
3043 if (enable)
3044 ops = param ? &event_enable_count_probe_ops : &event_enable_probe_ops;
3045 else
3046 ops = param ? &event_disable_count_probe_ops : &event_disable_probe_ops;
3047
3048 if (glob[0] == '!') {
3049 ret = unregister_ftrace_function_probe_func(glob+1, tr, ops);
3050 goto out;
3051 }
3052
3053 ret = -ENOMEM;
3054
3055 data = kzalloc(sizeof(*data), GFP_KERNEL);
3056 if (!data)
3057 goto out;
3058
3059 data->enable = enable;
3060 data->count = -1;
3061 data->file = file;
3062
3063 if (!param)
3064 goto out_reg;
3065
3066 number = strsep(¶m, ":");
3067
3068 ret = -EINVAL;
3069 if (!strlen(number))
3070 goto out_free;
3071
3072 /*
3073 * We use the callback data field (which is a pointer)
3074 * as our counter.
3075 */
3076 ret = kstrtoul(number, 0, &data->count);
3077 if (ret)
3078 goto out_free;
3079
3080 out_reg:
3081 /* Don't let event modules unload while probe registered */
3082 ret = try_module_get(file->event_call->mod);
3083 if (!ret) {
3084 ret = -EBUSY;
3085 goto out_free;
3086 }
3087
3088 ret = __ftrace_event_enable_disable(file, 1, 1);
3089 if (ret < 0)
3090 goto out_put;
3091
3092 ret = register_ftrace_function_probe(glob, tr, ops, data);
3093 /*
3094 * The above returns on success the # of functions enabled,
3095 * but if it didn't find any functions it returns zero.
3096 * Consider no functions a failure too.
3097 */
3098 if (!ret) {
3099 ret = -ENOENT;
3100 goto out_disable;
3101 } else if (ret < 0)
3102 goto out_disable;
3103 /* Just return zero, not the number of enabled functions */
3104 ret = 0;
3105 out:
3106 mutex_unlock(&event_mutex);
3107 return ret;
3108
3109 out_disable:
3110 __ftrace_event_enable_disable(file, 0, 1);
3111 out_put:
3112 module_put(file->event_call->mod);
3113 out_free:
3114 kfree(data);
3115 goto out;
3116 }
3117
3118 static struct ftrace_func_command event_enable_cmd = {
3119 .name = ENABLE_EVENT_STR,
3120 .func = event_enable_func,
3121 };
3122
3123 static struct ftrace_func_command event_disable_cmd = {
3124 .name = DISABLE_EVENT_STR,
3125 .func = event_enable_func,
3126 };
3127
register_event_cmds(void)3128 static __init int register_event_cmds(void)
3129 {
3130 int ret;
3131
3132 ret = register_ftrace_command(&event_enable_cmd);
3133 if (WARN_ON(ret < 0))
3134 return ret;
3135 ret = register_ftrace_command(&event_disable_cmd);
3136 if (WARN_ON(ret < 0))
3137 unregister_ftrace_command(&event_enable_cmd);
3138 return ret;
3139 }
3140 #else
register_event_cmds(void)3141 static inline int register_event_cmds(void) { return 0; }
3142 #endif /* CONFIG_DYNAMIC_FTRACE */
3143
3144 /*
3145 * The top level array and trace arrays created by boot-time tracing
3146 * have already had its trace_event_file descriptors created in order
3147 * to allow for early events to be recorded.
3148 * This function is called after the tracefs has been initialized,
3149 * and we now have to create the files associated to the events.
3150 */
__trace_early_add_event_dirs(struct trace_array * tr)3151 static void __trace_early_add_event_dirs(struct trace_array *tr)
3152 {
3153 struct trace_event_file *file;
3154 int ret;
3155
3156
3157 list_for_each_entry(file, &tr->events, list) {
3158 ret = event_create_dir(tr->event_dir, file);
3159 if (ret < 0)
3160 pr_warn("Could not create directory for event %s\n",
3161 trace_event_name(file->event_call));
3162 }
3163 }
3164
3165 /*
3166 * For early boot up, the top trace array and the trace arrays created
3167 * by boot-time tracing require to have a list of events that can be
3168 * enabled. This must be done before the filesystem is set up in order
3169 * to allow events to be traced early.
3170 */
__trace_early_add_events(struct trace_array * tr)3171 void __trace_early_add_events(struct trace_array *tr)
3172 {
3173 struct trace_event_call *call;
3174 int ret;
3175
3176 list_for_each_entry(call, &ftrace_events, list) {
3177 /* Early boot up should not have any modules loaded */
3178 if (WARN_ON_ONCE(call->mod))
3179 continue;
3180
3181 ret = __trace_early_add_new_event(call, tr);
3182 if (ret < 0)
3183 pr_warn("Could not create early event %s\n",
3184 trace_event_name(call));
3185 }
3186 }
3187
3188 /* Remove the event directory structure for a trace directory. */
3189 static void
__trace_remove_event_dirs(struct trace_array * tr)3190 __trace_remove_event_dirs(struct trace_array *tr)
3191 {
3192 struct trace_event_file *file, *next;
3193
3194 list_for_each_entry_safe(file, next, &tr->events, list)
3195 remove_event_file_dir(file);
3196 }
3197
__add_event_to_tracers(struct trace_event_call * call)3198 static void __add_event_to_tracers(struct trace_event_call *call)
3199 {
3200 struct trace_array *tr;
3201
3202 list_for_each_entry(tr, &ftrace_trace_arrays, list)
3203 __trace_add_new_event(call, tr);
3204 }
3205
3206 extern struct trace_event_call *__start_ftrace_events[];
3207 extern struct trace_event_call *__stop_ftrace_events[];
3208
3209 static char bootup_event_buf[COMMAND_LINE_SIZE] __initdata;
3210
setup_trace_event(char * str)3211 static __init int setup_trace_event(char *str)
3212 {
3213 strlcpy(bootup_event_buf, str, COMMAND_LINE_SIZE);
3214 ring_buffer_expanded = true;
3215 disable_tracing_selftest("running event tracing");
3216
3217 return 1;
3218 }
3219 __setup("trace_event=", setup_trace_event);
3220
3221 /* Expects to have event_mutex held when called */
3222 static int
create_event_toplevel_files(struct dentry * parent,struct trace_array * tr)3223 create_event_toplevel_files(struct dentry *parent, struct trace_array *tr)
3224 {
3225 struct dentry *d_events;
3226 struct dentry *entry;
3227
3228 entry = tracefs_create_file("set_event", 0644, parent,
3229 tr, &ftrace_set_event_fops);
3230 if (!entry) {
3231 pr_warn("Could not create tracefs 'set_event' entry\n");
3232 return -ENOMEM;
3233 }
3234
3235 d_events = tracefs_create_dir("events", parent);
3236 if (!d_events) {
3237 pr_warn("Could not create tracefs 'events' directory\n");
3238 return -ENOMEM;
3239 }
3240
3241 entry = trace_create_file("enable", 0644, d_events,
3242 tr, &ftrace_tr_enable_fops);
3243 if (!entry) {
3244 pr_warn("Could not create tracefs 'enable' entry\n");
3245 return -ENOMEM;
3246 }
3247
3248 /* There are not as crucial, just warn if they are not created */
3249
3250 entry = tracefs_create_file("set_event_pid", 0644, parent,
3251 tr, &ftrace_set_event_pid_fops);
3252 if (!entry)
3253 pr_warn("Could not create tracefs 'set_event_pid' entry\n");
3254
3255 entry = tracefs_create_file("set_event_notrace_pid", 0644, parent,
3256 tr, &ftrace_set_event_notrace_pid_fops);
3257 if (!entry)
3258 pr_warn("Could not create tracefs 'set_event_notrace_pid' entry\n");
3259
3260 /* ring buffer internal formats */
3261 entry = trace_create_file("header_page", 0444, d_events,
3262 ring_buffer_print_page_header,
3263 &ftrace_show_header_fops);
3264 if (!entry)
3265 pr_warn("Could not create tracefs 'header_page' entry\n");
3266
3267 entry = trace_create_file("header_event", 0444, d_events,
3268 ring_buffer_print_entry_header,
3269 &ftrace_show_header_fops);
3270 if (!entry)
3271 pr_warn("Could not create tracefs 'header_event' entry\n");
3272
3273 tr->event_dir = d_events;
3274
3275 return 0;
3276 }
3277
3278 /**
3279 * event_trace_add_tracer - add a instance of a trace_array to events
3280 * @parent: The parent dentry to place the files/directories for events in
3281 * @tr: The trace array associated with these events
3282 *
3283 * When a new instance is created, it needs to set up its events
3284 * directory, as well as other files associated with events. It also
3285 * creates the event hierachry in the @parent/events directory.
3286 *
3287 * Returns 0 on success.
3288 *
3289 * Must be called with event_mutex held.
3290 */
event_trace_add_tracer(struct dentry * parent,struct trace_array * tr)3291 int event_trace_add_tracer(struct dentry *parent, struct trace_array *tr)
3292 {
3293 int ret;
3294
3295 lockdep_assert_held(&event_mutex);
3296
3297 ret = create_event_toplevel_files(parent, tr);
3298 if (ret)
3299 goto out;
3300
3301 down_write(&trace_event_sem);
3302 /* If tr already has the event list, it is initialized in early boot. */
3303 if (unlikely(!list_empty(&tr->events)))
3304 __trace_early_add_event_dirs(tr);
3305 else
3306 __trace_add_event_dirs(tr);
3307 up_write(&trace_event_sem);
3308
3309 out:
3310 return ret;
3311 }
3312
3313 /*
3314 * The top trace array already had its file descriptors created.
3315 * Now the files themselves need to be created.
3316 */
3317 static __init int
early_event_add_tracer(struct dentry * parent,struct trace_array * tr)3318 early_event_add_tracer(struct dentry *parent, struct trace_array *tr)
3319 {
3320 int ret;
3321
3322 mutex_lock(&event_mutex);
3323
3324 ret = create_event_toplevel_files(parent, tr);
3325 if (ret)
3326 goto out_unlock;
3327
3328 down_write(&trace_event_sem);
3329 __trace_early_add_event_dirs(tr);
3330 up_write(&trace_event_sem);
3331
3332 out_unlock:
3333 mutex_unlock(&event_mutex);
3334
3335 return ret;
3336 }
3337
3338 /* Must be called with event_mutex held */
event_trace_del_tracer(struct trace_array * tr)3339 int event_trace_del_tracer(struct trace_array *tr)
3340 {
3341 lockdep_assert_held(&event_mutex);
3342
3343 /* Disable any event triggers and associated soft-disabled events */
3344 clear_event_triggers(tr);
3345
3346 /* Clear the pid list */
3347 __ftrace_clear_event_pids(tr, TRACE_PIDS | TRACE_NO_PIDS);
3348
3349 /* Disable any running events */
3350 __ftrace_set_clr_event_nolock(tr, NULL, NULL, NULL, 0);
3351
3352 /* Make sure no more events are being executed */
3353 tracepoint_synchronize_unregister();
3354
3355 down_write(&trace_event_sem);
3356 __trace_remove_event_dirs(tr);
3357 tracefs_remove(tr->event_dir);
3358 up_write(&trace_event_sem);
3359
3360 tr->event_dir = NULL;
3361
3362 return 0;
3363 }
3364
event_trace_memsetup(void)3365 static __init int event_trace_memsetup(void)
3366 {
3367 field_cachep = KMEM_CACHE(ftrace_event_field, SLAB_PANIC);
3368 file_cachep = KMEM_CACHE(trace_event_file, SLAB_PANIC);
3369 return 0;
3370 }
3371
3372 static __init void
early_enable_events(struct trace_array * tr,bool disable_first)3373 early_enable_events(struct trace_array *tr, bool disable_first)
3374 {
3375 char *buf = bootup_event_buf;
3376 char *token;
3377 int ret;
3378
3379 while (true) {
3380 token = strsep(&buf, ",");
3381
3382 if (!token)
3383 break;
3384
3385 if (*token) {
3386 /* Restarting syscalls requires that we stop them first */
3387 if (disable_first)
3388 ftrace_set_clr_event(tr, token, 0);
3389
3390 ret = ftrace_set_clr_event(tr, token, 1);
3391 if (ret)
3392 pr_warn("Failed to enable trace event: %s\n", token);
3393 }
3394
3395 /* Put back the comma to allow this to be called again */
3396 if (buf)
3397 *(buf - 1) = ',';
3398 }
3399 }
3400
event_trace_enable(void)3401 static __init int event_trace_enable(void)
3402 {
3403 struct trace_array *tr = top_trace_array();
3404 struct trace_event_call **iter, *call;
3405 int ret;
3406
3407 if (!tr)
3408 return -ENODEV;
3409
3410 for_each_event(iter, __start_ftrace_events, __stop_ftrace_events) {
3411
3412 call = *iter;
3413 ret = event_init(call);
3414 if (!ret)
3415 list_add(&call->list, &ftrace_events);
3416 }
3417
3418 /*
3419 * We need the top trace array to have a working set of trace
3420 * points at early init, before the debug files and directories
3421 * are created. Create the file entries now, and attach them
3422 * to the actual file dentries later.
3423 */
3424 __trace_early_add_events(tr);
3425
3426 early_enable_events(tr, false);
3427
3428 trace_printk_start_comm();
3429
3430 register_event_cmds();
3431
3432 register_trigger_cmds();
3433
3434 return 0;
3435 }
3436
3437 /*
3438 * event_trace_enable() is called from trace_event_init() first to
3439 * initialize events and perhaps start any events that are on the
3440 * command line. Unfortunately, there are some events that will not
3441 * start this early, like the system call tracepoints that need
3442 * to set the TIF_SYSCALL_TRACEPOINT flag of pid 1. But event_trace_enable()
3443 * is called before pid 1 starts, and this flag is never set, making
3444 * the syscall tracepoint never get reached, but the event is enabled
3445 * regardless (and not doing anything).
3446 */
event_trace_enable_again(void)3447 static __init int event_trace_enable_again(void)
3448 {
3449 struct trace_array *tr;
3450
3451 tr = top_trace_array();
3452 if (!tr)
3453 return -ENODEV;
3454
3455 early_enable_events(tr, true);
3456
3457 return 0;
3458 }
3459
3460 early_initcall(event_trace_enable_again);
3461
3462 /* Init fields which doesn't related to the tracefs */
event_trace_init_fields(void)3463 static __init int event_trace_init_fields(void)
3464 {
3465 if (trace_define_generic_fields())
3466 pr_warn("tracing: Failed to allocated generic fields");
3467
3468 if (trace_define_common_fields())
3469 pr_warn("tracing: Failed to allocate common fields");
3470
3471 return 0;
3472 }
3473
event_trace_init(void)3474 __init int event_trace_init(void)
3475 {
3476 struct trace_array *tr;
3477 struct dentry *entry;
3478 int ret;
3479
3480 tr = top_trace_array();
3481 if (!tr)
3482 return -ENODEV;
3483
3484 entry = tracefs_create_file("available_events", 0444, NULL,
3485 tr, &ftrace_avail_fops);
3486 if (!entry)
3487 pr_warn("Could not create tracefs 'available_events' entry\n");
3488
3489 ret = early_event_add_tracer(NULL, tr);
3490 if (ret)
3491 return ret;
3492
3493 #ifdef CONFIG_MODULES
3494 ret = register_module_notifier(&trace_module_nb);
3495 if (ret)
3496 pr_warn("Failed to register trace events module notifier\n");
3497 #endif
3498
3499 eventdir_initialized = true;
3500
3501 return 0;
3502 }
3503
trace_event_init(void)3504 void __init trace_event_init(void)
3505 {
3506 event_trace_memsetup();
3507 init_ftrace_syscalls();
3508 event_trace_enable();
3509 event_trace_init_fields();
3510 }
3511
3512 #ifdef CONFIG_EVENT_TRACE_STARTUP_TEST
3513
3514 static DEFINE_SPINLOCK(test_spinlock);
3515 static DEFINE_SPINLOCK(test_spinlock_irq);
3516 static DEFINE_MUTEX(test_mutex);
3517
test_work(struct work_struct * dummy)3518 static __init void test_work(struct work_struct *dummy)
3519 {
3520 spin_lock(&test_spinlock);
3521 spin_lock_irq(&test_spinlock_irq);
3522 udelay(1);
3523 spin_unlock_irq(&test_spinlock_irq);
3524 spin_unlock(&test_spinlock);
3525
3526 mutex_lock(&test_mutex);
3527 msleep(1);
3528 mutex_unlock(&test_mutex);
3529 }
3530
event_test_thread(void * unused)3531 static __init int event_test_thread(void *unused)
3532 {
3533 void *test_malloc;
3534
3535 test_malloc = kmalloc(1234, GFP_KERNEL);
3536 if (!test_malloc)
3537 pr_info("failed to kmalloc\n");
3538
3539 schedule_on_each_cpu(test_work);
3540
3541 kfree(test_malloc);
3542
3543 set_current_state(TASK_INTERRUPTIBLE);
3544 while (!kthread_should_stop()) {
3545 schedule();
3546 set_current_state(TASK_INTERRUPTIBLE);
3547 }
3548 __set_current_state(TASK_RUNNING);
3549
3550 return 0;
3551 }
3552
3553 /*
3554 * Do various things that may trigger events.
3555 */
event_test_stuff(void)3556 static __init void event_test_stuff(void)
3557 {
3558 struct task_struct *test_thread;
3559
3560 test_thread = kthread_run(event_test_thread, NULL, "test-events");
3561 msleep(1);
3562 kthread_stop(test_thread);
3563 }
3564
3565 /*
3566 * For every trace event defined, we will test each trace point separately,
3567 * and then by groups, and finally all trace points.
3568 */
event_trace_self_tests(void)3569 static __init void event_trace_self_tests(void)
3570 {
3571 struct trace_subsystem_dir *dir;
3572 struct trace_event_file *file;
3573 struct trace_event_call *call;
3574 struct event_subsystem *system;
3575 struct trace_array *tr;
3576 int ret;
3577
3578 tr = top_trace_array();
3579 if (!tr)
3580 return;
3581
3582 pr_info("Running tests on trace events:\n");
3583
3584 list_for_each_entry(file, &tr->events, list) {
3585
3586 call = file->event_call;
3587
3588 /* Only test those that have a probe */
3589 if (!call->class || !call->class->probe)
3590 continue;
3591
3592 /*
3593 * Testing syscall events here is pretty useless, but
3594 * we still do it if configured. But this is time consuming.
3595 * What we really need is a user thread to perform the
3596 * syscalls as we test.
3597 */
3598 #ifndef CONFIG_EVENT_TRACE_TEST_SYSCALLS
3599 if (call->class->system &&
3600 strcmp(call->class->system, "syscalls") == 0)
3601 continue;
3602 #endif
3603
3604 pr_info("Testing event %s: ", trace_event_name(call));
3605
3606 /*
3607 * If an event is already enabled, someone is using
3608 * it and the self test should not be on.
3609 */
3610 if (file->flags & EVENT_FILE_FL_ENABLED) {
3611 pr_warn("Enabled event during self test!\n");
3612 WARN_ON_ONCE(1);
3613 continue;
3614 }
3615
3616 ftrace_event_enable_disable(file, 1);
3617 event_test_stuff();
3618 ftrace_event_enable_disable(file, 0);
3619
3620 pr_cont("OK\n");
3621 }
3622
3623 /* Now test at the sub system level */
3624
3625 pr_info("Running tests on trace event systems:\n");
3626
3627 list_for_each_entry(dir, &tr->systems, list) {
3628
3629 system = dir->subsystem;
3630
3631 /* the ftrace system is special, skip it */
3632 if (strcmp(system->name, "ftrace") == 0)
3633 continue;
3634
3635 pr_info("Testing event system %s: ", system->name);
3636
3637 ret = __ftrace_set_clr_event(tr, NULL, system->name, NULL, 1);
3638 if (WARN_ON_ONCE(ret)) {
3639 pr_warn("error enabling system %s\n",
3640 system->name);
3641 continue;
3642 }
3643
3644 event_test_stuff();
3645
3646 ret = __ftrace_set_clr_event(tr, NULL, system->name, NULL, 0);
3647 if (WARN_ON_ONCE(ret)) {
3648 pr_warn("error disabling system %s\n",
3649 system->name);
3650 continue;
3651 }
3652
3653 pr_cont("OK\n");
3654 }
3655
3656 /* Test with all events enabled */
3657
3658 pr_info("Running tests on all trace events:\n");
3659 pr_info("Testing all events: ");
3660
3661 ret = __ftrace_set_clr_event(tr, NULL, NULL, NULL, 1);
3662 if (WARN_ON_ONCE(ret)) {
3663 pr_warn("error enabling all events\n");
3664 return;
3665 }
3666
3667 event_test_stuff();
3668
3669 /* reset sysname */
3670 ret = __ftrace_set_clr_event(tr, NULL, NULL, NULL, 0);
3671 if (WARN_ON_ONCE(ret)) {
3672 pr_warn("error disabling all events\n");
3673 return;
3674 }
3675
3676 pr_cont("OK\n");
3677 }
3678
3679 #ifdef CONFIG_FUNCTION_TRACER
3680
3681 static DEFINE_PER_CPU(atomic_t, ftrace_test_event_disable);
3682
3683 static struct trace_event_file event_trace_file __initdata;
3684
3685 static void __init
function_test_events_call(unsigned long ip,unsigned long parent_ip,struct ftrace_ops * op,struct pt_regs * pt_regs)3686 function_test_events_call(unsigned long ip, unsigned long parent_ip,
3687 struct ftrace_ops *op, struct pt_regs *pt_regs)
3688 {
3689 struct trace_buffer *buffer;
3690 struct ring_buffer_event *event;
3691 struct ftrace_entry *entry;
3692 unsigned long flags;
3693 long disabled;
3694 int cpu;
3695 int pc;
3696
3697 pc = preempt_count();
3698 preempt_disable_notrace();
3699 cpu = raw_smp_processor_id();
3700 disabled = atomic_inc_return(&per_cpu(ftrace_test_event_disable, cpu));
3701
3702 if (disabled != 1)
3703 goto out;
3704
3705 local_save_flags(flags);
3706
3707 event = trace_event_buffer_lock_reserve(&buffer, &event_trace_file,
3708 TRACE_FN, sizeof(*entry),
3709 flags, pc);
3710 if (!event)
3711 goto out;
3712 entry = ring_buffer_event_data(event);
3713 entry->ip = ip;
3714 entry->parent_ip = parent_ip;
3715
3716 event_trigger_unlock_commit(&event_trace_file, buffer, event,
3717 entry, flags, pc);
3718 out:
3719 atomic_dec(&per_cpu(ftrace_test_event_disable, cpu));
3720 preempt_enable_notrace();
3721 }
3722
3723 static struct ftrace_ops trace_ops __initdata =
3724 {
3725 .func = function_test_events_call,
3726 .flags = FTRACE_OPS_FL_RECURSION_SAFE,
3727 };
3728
event_trace_self_test_with_function(void)3729 static __init void event_trace_self_test_with_function(void)
3730 {
3731 int ret;
3732
3733 event_trace_file.tr = top_trace_array();
3734 if (WARN_ON(!event_trace_file.tr))
3735 return;
3736
3737 ret = register_ftrace_function(&trace_ops);
3738 if (WARN_ON(ret < 0)) {
3739 pr_info("Failed to enable function tracer for event tests\n");
3740 return;
3741 }
3742 pr_info("Running tests again, along with the function tracer\n");
3743 event_trace_self_tests();
3744 unregister_ftrace_function(&trace_ops);
3745 }
3746 #else
event_trace_self_test_with_function(void)3747 static __init void event_trace_self_test_with_function(void)
3748 {
3749 }
3750 #endif
3751
event_trace_self_tests_init(void)3752 static __init int event_trace_self_tests_init(void)
3753 {
3754 if (!tracing_selftest_disabled) {
3755 event_trace_self_tests();
3756 event_trace_self_test_with_function();
3757 }
3758
3759 return 0;
3760 }
3761
3762 late_initcall(event_trace_self_tests_init);
3763
3764 #endif
3765