Merge branch 'for_linus' of git://git.kernel.org/pub/scm/linux/kernel/git/tytso/ext4
[GitHub/LineageOS/android_kernel_samsung_universal7580.git] / kernel / trace / ftrace.c
1 /*
2 * Infrastructure for profiling code inserted by 'gcc -pg'.
3 *
4 * Copyright (C) 2007-2008 Steven Rostedt <srostedt@redhat.com>
5 * Copyright (C) 2004-2008 Ingo Molnar <mingo@redhat.com>
6 *
7 * Originally ported from the -rt patch by:
8 * Copyright (C) 2007 Arnaldo Carvalho de Melo <acme@redhat.com>
9 *
10 * Based on code in the latency_tracer, that is:
11 *
12 * Copyright (C) 2004-2006 Ingo Molnar
13 * Copyright (C) 2004 William Lee Irwin III
14 */
15
16 #include <linux/stop_machine.h>
17 #include <linux/clocksource.h>
18 #include <linux/kallsyms.h>
19 #include <linux/seq_file.h>
20 #include <linux/suspend.h>
21 #include <linux/debugfs.h>
22 #include <linux/hardirq.h>
23 #include <linux/kthread.h>
24 #include <linux/uaccess.h>
25 #include <linux/kprobes.h>
26 #include <linux/ftrace.h>
27 #include <linux/sysctl.h>
28 #include <linux/ctype.h>
29 #include <linux/list.h>
30 #include <linux/hash.h>
31
32 #include <trace/events/sched.h>
33
34 #include <asm/ftrace.h>
35 #include <asm/setup.h>
36
37 #include "trace_output.h"
38 #include "trace_stat.h"
39
40 #define FTRACE_WARN_ON(cond) \
41 do { \
42 if (WARN_ON(cond)) \
43 ftrace_kill(); \
44 } while (0)
45
46 #define FTRACE_WARN_ON_ONCE(cond) \
47 do { \
48 if (WARN_ON_ONCE(cond)) \
49 ftrace_kill(); \
50 } while (0)
51
52 /* hash bits for specific function selection */
53 #define FTRACE_HASH_BITS 7
54 #define FTRACE_FUNC_HASHSIZE (1 << FTRACE_HASH_BITS)
55
56 /* ftrace_enabled is a method to turn ftrace on or off */
57 int ftrace_enabled __read_mostly;
58 static int last_ftrace_enabled;
59
60 /* Quick disabling of function tracer. */
61 int function_trace_stop;
62
63 /*
64 * ftrace_disabled is set when an anomaly is discovered.
65 * ftrace_disabled is much stronger than ftrace_enabled.
66 */
67 static int ftrace_disabled __read_mostly;
68
69 static DEFINE_MUTEX(ftrace_lock);
70
71 static struct ftrace_ops ftrace_list_end __read_mostly =
72 {
73 .func = ftrace_stub,
74 };
75
76 static struct ftrace_ops *ftrace_list __read_mostly = &ftrace_list_end;
77 ftrace_func_t ftrace_trace_function __read_mostly = ftrace_stub;
78 ftrace_func_t __ftrace_trace_function __read_mostly = ftrace_stub;
79 ftrace_func_t ftrace_pid_function __read_mostly = ftrace_stub;
80
81 static void ftrace_list_func(unsigned long ip, unsigned long parent_ip)
82 {
83 struct ftrace_ops *op = ftrace_list;
84
85 /* in case someone actually ports this to alpha! */
86 read_barrier_depends();
87
88 while (op != &ftrace_list_end) {
89 /* silly alpha */
90 read_barrier_depends();
91 op->func(ip, parent_ip);
92 op = op->next;
93 };
94 }
95
96 static void ftrace_pid_func(unsigned long ip, unsigned long parent_ip)
97 {
98 if (!test_tsk_trace_trace(current))
99 return;
100
101 ftrace_pid_function(ip, parent_ip);
102 }
103
104 static void set_ftrace_pid_function(ftrace_func_t func)
105 {
106 /* do not set ftrace_pid_function to itself! */
107 if (func != ftrace_pid_func)
108 ftrace_pid_function = func;
109 }
110
111 /**
112 * clear_ftrace_function - reset the ftrace function
113 *
114 * This NULLs the ftrace function and in essence stops
115 * tracing. There may be lag
116 */
117 void clear_ftrace_function(void)
118 {
119 ftrace_trace_function = ftrace_stub;
120 __ftrace_trace_function = ftrace_stub;
121 ftrace_pid_function = ftrace_stub;
122 }
123
124 #ifndef CONFIG_HAVE_FUNCTION_TRACE_MCOUNT_TEST
125 /*
126 * For those archs that do not test ftrace_trace_stop in their
127 * mcount call site, we need to do it from C.
128 */
129 static void ftrace_test_stop_func(unsigned long ip, unsigned long parent_ip)
130 {
131 if (function_trace_stop)
132 return;
133
134 __ftrace_trace_function(ip, parent_ip);
135 }
136 #endif
137
138 static int __register_ftrace_function(struct ftrace_ops *ops)
139 {
140 ops->next = ftrace_list;
141 /*
142 * We are entering ops into the ftrace_list but another
143 * CPU might be walking that list. We need to make sure
144 * the ops->next pointer is valid before another CPU sees
145 * the ops pointer included into the ftrace_list.
146 */
147 smp_wmb();
148 ftrace_list = ops;
149
150 if (ftrace_enabled) {
151 ftrace_func_t func;
152
153 if (ops->next == &ftrace_list_end)
154 func = ops->func;
155 else
156 func = ftrace_list_func;
157
158 if (ftrace_pid_trace) {
159 set_ftrace_pid_function(func);
160 func = ftrace_pid_func;
161 }
162
163 /*
164 * For one func, simply call it directly.
165 * For more than one func, call the chain.
166 */
167 #ifdef CONFIG_HAVE_FUNCTION_TRACE_MCOUNT_TEST
168 ftrace_trace_function = func;
169 #else
170 __ftrace_trace_function = func;
171 ftrace_trace_function = ftrace_test_stop_func;
172 #endif
173 }
174
175 return 0;
176 }
177
178 static int __unregister_ftrace_function(struct ftrace_ops *ops)
179 {
180 struct ftrace_ops **p;
181
182 /*
183 * If we are removing the last function, then simply point
184 * to the ftrace_stub.
185 */
186 if (ftrace_list == ops && ops->next == &ftrace_list_end) {
187 ftrace_trace_function = ftrace_stub;
188 ftrace_list = &ftrace_list_end;
189 return 0;
190 }
191
192 for (p = &ftrace_list; *p != &ftrace_list_end; p = &(*p)->next)
193 if (*p == ops)
194 break;
195
196 if (*p != ops)
197 return -1;
198
199 *p = (*p)->next;
200
201 if (ftrace_enabled) {
202 /* If we only have one func left, then call that directly */
203 if (ftrace_list->next == &ftrace_list_end) {
204 ftrace_func_t func = ftrace_list->func;
205
206 if (ftrace_pid_trace) {
207 set_ftrace_pid_function(func);
208 func = ftrace_pid_func;
209 }
210 #ifdef CONFIG_HAVE_FUNCTION_TRACE_MCOUNT_TEST
211 ftrace_trace_function = func;
212 #else
213 __ftrace_trace_function = func;
214 #endif
215 }
216 }
217
218 return 0;
219 }
220
221 static void ftrace_update_pid_func(void)
222 {
223 ftrace_func_t func;
224
225 if (ftrace_trace_function == ftrace_stub)
226 return;
227
228 func = ftrace_trace_function;
229
230 if (ftrace_pid_trace) {
231 set_ftrace_pid_function(func);
232 func = ftrace_pid_func;
233 } else {
234 if (func == ftrace_pid_func)
235 func = ftrace_pid_function;
236 }
237
238 #ifdef CONFIG_HAVE_FUNCTION_TRACE_MCOUNT_TEST
239 ftrace_trace_function = func;
240 #else
241 __ftrace_trace_function = func;
242 #endif
243 }
244
245 #ifdef CONFIG_FUNCTION_PROFILER
246 struct ftrace_profile {
247 struct hlist_node node;
248 unsigned long ip;
249 unsigned long counter;
250 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
251 unsigned long long time;
252 #endif
253 };
254
255 struct ftrace_profile_page {
256 struct ftrace_profile_page *next;
257 unsigned long index;
258 struct ftrace_profile records[];
259 };
260
261 struct ftrace_profile_stat {
262 atomic_t disabled;
263 struct hlist_head *hash;
264 struct ftrace_profile_page *pages;
265 struct ftrace_profile_page *start;
266 struct tracer_stat stat;
267 };
268
269 #define PROFILE_RECORDS_SIZE \
270 (PAGE_SIZE - offsetof(struct ftrace_profile_page, records))
271
272 #define PROFILES_PER_PAGE \
273 (PROFILE_RECORDS_SIZE / sizeof(struct ftrace_profile))
274
275 static int ftrace_profile_bits __read_mostly;
276 static int ftrace_profile_enabled __read_mostly;
277
278 /* ftrace_profile_lock - synchronize the enable and disable of the profiler */
279 static DEFINE_MUTEX(ftrace_profile_lock);
280
281 static DEFINE_PER_CPU(struct ftrace_profile_stat, ftrace_profile_stats);
282
283 #define FTRACE_PROFILE_HASH_SIZE 1024 /* must be power of 2 */
284
285 static void *
286 function_stat_next(void *v, int idx)
287 {
288 struct ftrace_profile *rec = v;
289 struct ftrace_profile_page *pg;
290
291 pg = (struct ftrace_profile_page *)((unsigned long)rec & PAGE_MASK);
292
293 again:
294 if (idx != 0)
295 rec++;
296
297 if ((void *)rec >= (void *)&pg->records[pg->index]) {
298 pg = pg->next;
299 if (!pg)
300 return NULL;
301 rec = &pg->records[0];
302 if (!rec->counter)
303 goto again;
304 }
305
306 return rec;
307 }
308
309 static void *function_stat_start(struct tracer_stat *trace)
310 {
311 struct ftrace_profile_stat *stat =
312 container_of(trace, struct ftrace_profile_stat, stat);
313
314 if (!stat || !stat->start)
315 return NULL;
316
317 return function_stat_next(&stat->start->records[0], 0);
318 }
319
320 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
321 /* function graph compares on total time */
322 static int function_stat_cmp(void *p1, void *p2)
323 {
324 struct ftrace_profile *a = p1;
325 struct ftrace_profile *b = p2;
326
327 if (a->time < b->time)
328 return -1;
329 if (a->time > b->time)
330 return 1;
331 else
332 return 0;
333 }
334 #else
335 /* not function graph compares against hits */
336 static int function_stat_cmp(void *p1, void *p2)
337 {
338 struct ftrace_profile *a = p1;
339 struct ftrace_profile *b = p2;
340
341 if (a->counter < b->counter)
342 return -1;
343 if (a->counter > b->counter)
344 return 1;
345 else
346 return 0;
347 }
348 #endif
349
350 static int function_stat_headers(struct seq_file *m)
351 {
352 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
353 seq_printf(m, " Function "
354 "Hit Time Avg\n"
355 " -------- "
356 "--- ---- ---\n");
357 #else
358 seq_printf(m, " Function Hit\n"
359 " -------- ---\n");
360 #endif
361 return 0;
362 }
363
364 static int function_stat_show(struct seq_file *m, void *v)
365 {
366 struct ftrace_profile *rec = v;
367 char str[KSYM_SYMBOL_LEN];
368 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
369 static DEFINE_MUTEX(mutex);
370 static struct trace_seq s;
371 unsigned long long avg;
372 #endif
373
374 kallsyms_lookup(rec->ip, NULL, NULL, NULL, str);
375 seq_printf(m, " %-30.30s %10lu", str, rec->counter);
376
377 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
378 seq_printf(m, " ");
379 avg = rec->time;
380 do_div(avg, rec->counter);
381
382 mutex_lock(&mutex);
383 trace_seq_init(&s);
384 trace_print_graph_duration(rec->time, &s);
385 trace_seq_puts(&s, " ");
386 trace_print_graph_duration(avg, &s);
387 trace_print_seq(m, &s);
388 mutex_unlock(&mutex);
389 #endif
390 seq_putc(m, '\n');
391
392 return 0;
393 }
394
395 static void ftrace_profile_reset(struct ftrace_profile_stat *stat)
396 {
397 struct ftrace_profile_page *pg;
398
399 pg = stat->pages = stat->start;
400
401 while (pg) {
402 memset(pg->records, 0, PROFILE_RECORDS_SIZE);
403 pg->index = 0;
404 pg = pg->next;
405 }
406
407 memset(stat->hash, 0,
408 FTRACE_PROFILE_HASH_SIZE * sizeof(struct hlist_head));
409 }
410
411 int ftrace_profile_pages_init(struct ftrace_profile_stat *stat)
412 {
413 struct ftrace_profile_page *pg;
414 int functions;
415 int pages;
416 int i;
417
418 /* If we already allocated, do nothing */
419 if (stat->pages)
420 return 0;
421
422 stat->pages = (void *)get_zeroed_page(GFP_KERNEL);
423 if (!stat->pages)
424 return -ENOMEM;
425
426 #ifdef CONFIG_DYNAMIC_FTRACE
427 functions = ftrace_update_tot_cnt;
428 #else
429 /*
430 * We do not know the number of functions that exist because
431 * dynamic tracing is what counts them. With past experience
432 * we have around 20K functions. That should be more than enough.
433 * It is highly unlikely we will execute every function in
434 * the kernel.
435 */
436 functions = 20000;
437 #endif
438
439 pg = stat->start = stat->pages;
440
441 pages = DIV_ROUND_UP(functions, PROFILES_PER_PAGE);
442
443 for (i = 0; i < pages; i++) {
444 pg->next = (void *)get_zeroed_page(GFP_KERNEL);
445 if (!pg->next)
446 goto out_free;
447 pg = pg->next;
448 }
449
450 return 0;
451
452 out_free:
453 pg = stat->start;
454 while (pg) {
455 unsigned long tmp = (unsigned long)pg;
456
457 pg = pg->next;
458 free_page(tmp);
459 }
460
461 free_page((unsigned long)stat->pages);
462 stat->pages = NULL;
463 stat->start = NULL;
464
465 return -ENOMEM;
466 }
467
468 static int ftrace_profile_init_cpu(int cpu)
469 {
470 struct ftrace_profile_stat *stat;
471 int size;
472
473 stat = &per_cpu(ftrace_profile_stats, cpu);
474
475 if (stat->hash) {
476 /* If the profile is already created, simply reset it */
477 ftrace_profile_reset(stat);
478 return 0;
479 }
480
481 /*
482 * We are profiling all functions, but usually only a few thousand
483 * functions are hit. We'll make a hash of 1024 items.
484 */
485 size = FTRACE_PROFILE_HASH_SIZE;
486
487 stat->hash = kzalloc(sizeof(struct hlist_head) * size, GFP_KERNEL);
488
489 if (!stat->hash)
490 return -ENOMEM;
491
492 if (!ftrace_profile_bits) {
493 size--;
494
495 for (; size; size >>= 1)
496 ftrace_profile_bits++;
497 }
498
499 /* Preallocate the function profiling pages */
500 if (ftrace_profile_pages_init(stat) < 0) {
501 kfree(stat->hash);
502 stat->hash = NULL;
503 return -ENOMEM;
504 }
505
506 return 0;
507 }
508
509 static int ftrace_profile_init(void)
510 {
511 int cpu;
512 int ret = 0;
513
514 for_each_online_cpu(cpu) {
515 ret = ftrace_profile_init_cpu(cpu);
516 if (ret)
517 break;
518 }
519
520 return ret;
521 }
522
523 /* interrupts must be disabled */
524 static struct ftrace_profile *
525 ftrace_find_profiled_func(struct ftrace_profile_stat *stat, unsigned long ip)
526 {
527 struct ftrace_profile *rec;
528 struct hlist_head *hhd;
529 struct hlist_node *n;
530 unsigned long key;
531
532 key = hash_long(ip, ftrace_profile_bits);
533 hhd = &stat->hash[key];
534
535 if (hlist_empty(hhd))
536 return NULL;
537
538 hlist_for_each_entry_rcu(rec, n, hhd, node) {
539 if (rec->ip == ip)
540 return rec;
541 }
542
543 return NULL;
544 }
545
546 static void ftrace_add_profile(struct ftrace_profile_stat *stat,
547 struct ftrace_profile *rec)
548 {
549 unsigned long key;
550
551 key = hash_long(rec->ip, ftrace_profile_bits);
552 hlist_add_head_rcu(&rec->node, &stat->hash[key]);
553 }
554
555 /*
556 * The memory is already allocated, this simply finds a new record to use.
557 */
558 static struct ftrace_profile *
559 ftrace_profile_alloc(struct ftrace_profile_stat *stat, unsigned long ip)
560 {
561 struct ftrace_profile *rec = NULL;
562
563 /* prevent recursion (from NMIs) */
564 if (atomic_inc_return(&stat->disabled) != 1)
565 goto out;
566
567 /*
568 * Try to find the function again since an NMI
569 * could have added it
570 */
571 rec = ftrace_find_profiled_func(stat, ip);
572 if (rec)
573 goto out;
574
575 if (stat->pages->index == PROFILES_PER_PAGE) {
576 if (!stat->pages->next)
577 goto out;
578 stat->pages = stat->pages->next;
579 }
580
581 rec = &stat->pages->records[stat->pages->index++];
582 rec->ip = ip;
583 ftrace_add_profile(stat, rec);
584
585 out:
586 atomic_dec(&stat->disabled);
587
588 return rec;
589 }
590
591 static void
592 function_profile_call(unsigned long ip, unsigned long parent_ip)
593 {
594 struct ftrace_profile_stat *stat;
595 struct ftrace_profile *rec;
596 unsigned long flags;
597
598 if (!ftrace_profile_enabled)
599 return;
600
601 local_irq_save(flags);
602
603 stat = &__get_cpu_var(ftrace_profile_stats);
604 if (!stat->hash || !ftrace_profile_enabled)
605 goto out;
606
607 rec = ftrace_find_profiled_func(stat, ip);
608 if (!rec) {
609 rec = ftrace_profile_alloc(stat, ip);
610 if (!rec)
611 goto out;
612 }
613
614 rec->counter++;
615 out:
616 local_irq_restore(flags);
617 }
618
619 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
620 static int profile_graph_entry(struct ftrace_graph_ent *trace)
621 {
622 function_profile_call(trace->func, 0);
623 return 1;
624 }
625
626 static void profile_graph_return(struct ftrace_graph_ret *trace)
627 {
628 struct ftrace_profile_stat *stat;
629 unsigned long long calltime;
630 struct ftrace_profile *rec;
631 unsigned long flags;
632
633 local_irq_save(flags);
634 stat = &__get_cpu_var(ftrace_profile_stats);
635 if (!stat->hash || !ftrace_profile_enabled)
636 goto out;
637
638 calltime = trace->rettime - trace->calltime;
639
640 if (!(trace_flags & TRACE_ITER_GRAPH_TIME)) {
641 int index;
642
643 index = trace->depth;
644
645 /* Append this call time to the parent time to subtract */
646 if (index)
647 current->ret_stack[index - 1].subtime += calltime;
648
649 if (current->ret_stack[index].subtime < calltime)
650 calltime -= current->ret_stack[index].subtime;
651 else
652 calltime = 0;
653 }
654
655 rec = ftrace_find_profiled_func(stat, trace->func);
656 if (rec)
657 rec->time += calltime;
658
659 out:
660 local_irq_restore(flags);
661 }
662
663 static int register_ftrace_profiler(void)
664 {
665 return register_ftrace_graph(&profile_graph_return,
666 &profile_graph_entry);
667 }
668
669 static void unregister_ftrace_profiler(void)
670 {
671 unregister_ftrace_graph();
672 }
673 #else
674 static struct ftrace_ops ftrace_profile_ops __read_mostly =
675 {
676 .func = function_profile_call,
677 };
678
679 static int register_ftrace_profiler(void)
680 {
681 return register_ftrace_function(&ftrace_profile_ops);
682 }
683
684 static void unregister_ftrace_profiler(void)
685 {
686 unregister_ftrace_function(&ftrace_profile_ops);
687 }
688 #endif /* CONFIG_FUNCTION_GRAPH_TRACER */
689
690 static ssize_t
691 ftrace_profile_write(struct file *filp, const char __user *ubuf,
692 size_t cnt, loff_t *ppos)
693 {
694 unsigned long val;
695 char buf[64]; /* big enough to hold a number */
696 int ret;
697
698 if (cnt >= sizeof(buf))
699 return -EINVAL;
700
701 if (copy_from_user(&buf, ubuf, cnt))
702 return -EFAULT;
703
704 buf[cnt] = 0;
705
706 ret = strict_strtoul(buf, 10, &val);
707 if (ret < 0)
708 return ret;
709
710 val = !!val;
711
712 mutex_lock(&ftrace_profile_lock);
713 if (ftrace_profile_enabled ^ val) {
714 if (val) {
715 ret = ftrace_profile_init();
716 if (ret < 0) {
717 cnt = ret;
718 goto out;
719 }
720
721 ret = register_ftrace_profiler();
722 if (ret < 0) {
723 cnt = ret;
724 goto out;
725 }
726 ftrace_profile_enabled = 1;
727 } else {
728 ftrace_profile_enabled = 0;
729 /*
730 * unregister_ftrace_profiler calls stop_machine
731 * so this acts like an synchronize_sched.
732 */
733 unregister_ftrace_profiler();
734 }
735 }
736 out:
737 mutex_unlock(&ftrace_profile_lock);
738
739 filp->f_pos += cnt;
740
741 return cnt;
742 }
743
744 static ssize_t
745 ftrace_profile_read(struct file *filp, char __user *ubuf,
746 size_t cnt, loff_t *ppos)
747 {
748 char buf[64]; /* big enough to hold a number */
749 int r;
750
751 r = sprintf(buf, "%u\n", ftrace_profile_enabled);
752 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
753 }
754
755 static const struct file_operations ftrace_profile_fops = {
756 .open = tracing_open_generic,
757 .read = ftrace_profile_read,
758 .write = ftrace_profile_write,
759 };
760
761 /* used to initialize the real stat files */
762 static struct tracer_stat function_stats __initdata = {
763 .name = "functions",
764 .stat_start = function_stat_start,
765 .stat_next = function_stat_next,
766 .stat_cmp = function_stat_cmp,
767 .stat_headers = function_stat_headers,
768 .stat_show = function_stat_show
769 };
770
771 static __init void ftrace_profile_debugfs(struct dentry *d_tracer)
772 {
773 struct ftrace_profile_stat *stat;
774 struct dentry *entry;
775 char *name;
776 int ret;
777 int cpu;
778
779 for_each_possible_cpu(cpu) {
780 stat = &per_cpu(ftrace_profile_stats, cpu);
781
782 /* allocate enough for function name + cpu number */
783 name = kmalloc(32, GFP_KERNEL);
784 if (!name) {
785 /*
786 * The files created are permanent, if something happens
787 * we still do not free memory.
788 */
789 WARN(1,
790 "Could not allocate stat file for cpu %d\n",
791 cpu);
792 return;
793 }
794 stat->stat = function_stats;
795 snprintf(name, 32, "function%d", cpu);
796 stat->stat.name = name;
797 ret = register_stat_tracer(&stat->stat);
798 if (ret) {
799 WARN(1,
800 "Could not register function stat for cpu %d\n",
801 cpu);
802 kfree(name);
803 return;
804 }
805 }
806
807 entry = debugfs_create_file("function_profile_enabled", 0644,
808 d_tracer, NULL, &ftrace_profile_fops);
809 if (!entry)
810 pr_warning("Could not create debugfs "
811 "'function_profile_enabled' entry\n");
812 }
813
814 #else /* CONFIG_FUNCTION_PROFILER */
815 static __init void ftrace_profile_debugfs(struct dentry *d_tracer)
816 {
817 }
818 #endif /* CONFIG_FUNCTION_PROFILER */
819
820 /* set when tracing only a pid */
821 struct pid *ftrace_pid_trace;
822 static struct pid * const ftrace_swapper_pid = &init_struct_pid;
823
824 #ifdef CONFIG_DYNAMIC_FTRACE
825
826 #ifndef CONFIG_FTRACE_MCOUNT_RECORD
827 # error Dynamic ftrace depends on MCOUNT_RECORD
828 #endif
829
830 static struct hlist_head ftrace_func_hash[FTRACE_FUNC_HASHSIZE] __read_mostly;
831
832 struct ftrace_func_probe {
833 struct hlist_node node;
834 struct ftrace_probe_ops *ops;
835 unsigned long flags;
836 unsigned long ip;
837 void *data;
838 struct rcu_head rcu;
839 };
840
841 enum {
842 FTRACE_ENABLE_CALLS = (1 << 0),
843 FTRACE_DISABLE_CALLS = (1 << 1),
844 FTRACE_UPDATE_TRACE_FUNC = (1 << 2),
845 FTRACE_ENABLE_MCOUNT = (1 << 3),
846 FTRACE_DISABLE_MCOUNT = (1 << 4),
847 FTRACE_START_FUNC_RET = (1 << 5),
848 FTRACE_STOP_FUNC_RET = (1 << 6),
849 };
850
851 static int ftrace_filtered;
852
853 static struct dyn_ftrace *ftrace_new_addrs;
854
855 static DEFINE_MUTEX(ftrace_regex_lock);
856
857 struct ftrace_page {
858 struct ftrace_page *next;
859 int index;
860 struct dyn_ftrace records[];
861 };
862
863 #define ENTRIES_PER_PAGE \
864 ((PAGE_SIZE - sizeof(struct ftrace_page)) / sizeof(struct dyn_ftrace))
865
866 /* estimate from running different kernels */
867 #define NR_TO_INIT 10000
868
869 static struct ftrace_page *ftrace_pages_start;
870 static struct ftrace_page *ftrace_pages;
871
872 static struct dyn_ftrace *ftrace_free_records;
873
874 /*
875 * This is a double for. Do not use 'break' to break out of the loop,
876 * you must use a goto.
877 */
878 #define do_for_each_ftrace_rec(pg, rec) \
879 for (pg = ftrace_pages_start; pg; pg = pg->next) { \
880 int _____i; \
881 for (_____i = 0; _____i < pg->index; _____i++) { \
882 rec = &pg->records[_____i];
883
884 #define while_for_each_ftrace_rec() \
885 } \
886 }
887
888 #ifdef CONFIG_KPROBES
889
890 static int frozen_record_count;
891
892 static inline void freeze_record(struct dyn_ftrace *rec)
893 {
894 if (!(rec->flags & FTRACE_FL_FROZEN)) {
895 rec->flags |= FTRACE_FL_FROZEN;
896 frozen_record_count++;
897 }
898 }
899
900 static inline void unfreeze_record(struct dyn_ftrace *rec)
901 {
902 if (rec->flags & FTRACE_FL_FROZEN) {
903 rec->flags &= ~FTRACE_FL_FROZEN;
904 frozen_record_count--;
905 }
906 }
907
908 static inline int record_frozen(struct dyn_ftrace *rec)
909 {
910 return rec->flags & FTRACE_FL_FROZEN;
911 }
912 #else
913 # define freeze_record(rec) ({ 0; })
914 # define unfreeze_record(rec) ({ 0; })
915 # define record_frozen(rec) ({ 0; })
916 #endif /* CONFIG_KPROBES */
917
918 static void ftrace_free_rec(struct dyn_ftrace *rec)
919 {
920 rec->freelist = ftrace_free_records;
921 ftrace_free_records = rec;
922 rec->flags |= FTRACE_FL_FREE;
923 }
924
925 static struct dyn_ftrace *ftrace_alloc_dyn_node(unsigned long ip)
926 {
927 struct dyn_ftrace *rec;
928
929 /* First check for freed records */
930 if (ftrace_free_records) {
931 rec = ftrace_free_records;
932
933 if (unlikely(!(rec->flags & FTRACE_FL_FREE))) {
934 FTRACE_WARN_ON_ONCE(1);
935 ftrace_free_records = NULL;
936 return NULL;
937 }
938
939 ftrace_free_records = rec->freelist;
940 memset(rec, 0, sizeof(*rec));
941 return rec;
942 }
943
944 if (ftrace_pages->index == ENTRIES_PER_PAGE) {
945 if (!ftrace_pages->next) {
946 /* allocate another page */
947 ftrace_pages->next =
948 (void *)get_zeroed_page(GFP_KERNEL);
949 if (!ftrace_pages->next)
950 return NULL;
951 }
952 ftrace_pages = ftrace_pages->next;
953 }
954
955 return &ftrace_pages->records[ftrace_pages->index++];
956 }
957
958 static struct dyn_ftrace *
959 ftrace_record_ip(unsigned long ip)
960 {
961 struct dyn_ftrace *rec;
962
963 if (ftrace_disabled)
964 return NULL;
965
966 rec = ftrace_alloc_dyn_node(ip);
967 if (!rec)
968 return NULL;
969
970 rec->ip = ip;
971 rec->newlist = ftrace_new_addrs;
972 ftrace_new_addrs = rec;
973
974 return rec;
975 }
976
977 static void print_ip_ins(const char *fmt, unsigned char *p)
978 {
979 int i;
980
981 printk(KERN_CONT "%s", fmt);
982
983 for (i = 0; i < MCOUNT_INSN_SIZE; i++)
984 printk(KERN_CONT "%s%02x", i ? ":" : "", p[i]);
985 }
986
987 static void ftrace_bug(int failed, unsigned long ip)
988 {
989 switch (failed) {
990 case -EFAULT:
991 FTRACE_WARN_ON_ONCE(1);
992 pr_info("ftrace faulted on modifying ");
993 print_ip_sym(ip);
994 break;
995 case -EINVAL:
996 FTRACE_WARN_ON_ONCE(1);
997 pr_info("ftrace failed to modify ");
998 print_ip_sym(ip);
999 print_ip_ins(" actual: ", (unsigned char *)ip);
1000 printk(KERN_CONT "\n");
1001 break;
1002 case -EPERM:
1003 FTRACE_WARN_ON_ONCE(1);
1004 pr_info("ftrace faulted on writing ");
1005 print_ip_sym(ip);
1006 break;
1007 default:
1008 FTRACE_WARN_ON_ONCE(1);
1009 pr_info("ftrace faulted on unknown error ");
1010 print_ip_sym(ip);
1011 }
1012 }
1013
1014
1015 static int
1016 __ftrace_replace_code(struct dyn_ftrace *rec, int enable)
1017 {
1018 unsigned long ftrace_addr;
1019 unsigned long flag = 0UL;
1020
1021 ftrace_addr = (unsigned long)FTRACE_ADDR;
1022
1023 /*
1024 * If this record is not to be traced or we want to disable it,
1025 * then disable it.
1026 *
1027 * If we want to enable it and filtering is off, then enable it.
1028 *
1029 * If we want to enable it and filtering is on, enable it only if
1030 * it's filtered
1031 */
1032 if (enable && !(rec->flags & FTRACE_FL_NOTRACE)) {
1033 if (!ftrace_filtered || (rec->flags & FTRACE_FL_FILTER))
1034 flag = FTRACE_FL_ENABLED;
1035 }
1036
1037 /* If the state of this record hasn't changed, then do nothing */
1038 if ((rec->flags & FTRACE_FL_ENABLED) == flag)
1039 return 0;
1040
1041 if (flag) {
1042 rec->flags |= FTRACE_FL_ENABLED;
1043 return ftrace_make_call(rec, ftrace_addr);
1044 }
1045
1046 rec->flags &= ~FTRACE_FL_ENABLED;
1047 return ftrace_make_nop(NULL, rec, ftrace_addr);
1048 }
1049
1050 static void ftrace_replace_code(int enable)
1051 {
1052 struct dyn_ftrace *rec;
1053 struct ftrace_page *pg;
1054 int failed;
1055
1056 do_for_each_ftrace_rec(pg, rec) {
1057 /*
1058 * Skip over free records, records that have
1059 * failed and not converted.
1060 */
1061 if (rec->flags & FTRACE_FL_FREE ||
1062 rec->flags & FTRACE_FL_FAILED ||
1063 !(rec->flags & FTRACE_FL_CONVERTED))
1064 continue;
1065
1066 /* ignore updates to this record's mcount site */
1067 if (get_kprobe((void *)rec->ip)) {
1068 freeze_record(rec);
1069 continue;
1070 } else {
1071 unfreeze_record(rec);
1072 }
1073
1074 failed = __ftrace_replace_code(rec, enable);
1075 if (failed) {
1076 rec->flags |= FTRACE_FL_FAILED;
1077 if ((system_state == SYSTEM_BOOTING) ||
1078 !core_kernel_text(rec->ip)) {
1079 ftrace_free_rec(rec);
1080 } else {
1081 ftrace_bug(failed, rec->ip);
1082 /* Stop processing */
1083 return;
1084 }
1085 }
1086 } while_for_each_ftrace_rec();
1087 }
1088
1089 static int
1090 ftrace_code_disable(struct module *mod, struct dyn_ftrace *rec)
1091 {
1092 unsigned long ip;
1093 int ret;
1094
1095 ip = rec->ip;
1096
1097 ret = ftrace_make_nop(mod, rec, MCOUNT_ADDR);
1098 if (ret) {
1099 ftrace_bug(ret, ip);
1100 rec->flags |= FTRACE_FL_FAILED;
1101 return 0;
1102 }
1103 return 1;
1104 }
1105
1106 /*
1107 * archs can override this function if they must do something
1108 * before the modifying code is performed.
1109 */
1110 int __weak ftrace_arch_code_modify_prepare(void)
1111 {
1112 return 0;
1113 }
1114
1115 /*
1116 * archs can override this function if they must do something
1117 * after the modifying code is performed.
1118 */
1119 int __weak ftrace_arch_code_modify_post_process(void)
1120 {
1121 return 0;
1122 }
1123
1124 static int __ftrace_modify_code(void *data)
1125 {
1126 int *command = data;
1127
1128 if (*command & FTRACE_ENABLE_CALLS)
1129 ftrace_replace_code(1);
1130 else if (*command & FTRACE_DISABLE_CALLS)
1131 ftrace_replace_code(0);
1132
1133 if (*command & FTRACE_UPDATE_TRACE_FUNC)
1134 ftrace_update_ftrace_func(ftrace_trace_function);
1135
1136 if (*command & FTRACE_START_FUNC_RET)
1137 ftrace_enable_ftrace_graph_caller();
1138 else if (*command & FTRACE_STOP_FUNC_RET)
1139 ftrace_disable_ftrace_graph_caller();
1140
1141 return 0;
1142 }
1143
1144 static void ftrace_run_update_code(int command)
1145 {
1146 int ret;
1147
1148 ret = ftrace_arch_code_modify_prepare();
1149 FTRACE_WARN_ON(ret);
1150 if (ret)
1151 return;
1152
1153 stop_machine(__ftrace_modify_code, &command, NULL);
1154
1155 ret = ftrace_arch_code_modify_post_process();
1156 FTRACE_WARN_ON(ret);
1157 }
1158
1159 static ftrace_func_t saved_ftrace_func;
1160 static int ftrace_start_up;
1161
1162 static void ftrace_startup_enable(int command)
1163 {
1164 if (saved_ftrace_func != ftrace_trace_function) {
1165 saved_ftrace_func = ftrace_trace_function;
1166 command |= FTRACE_UPDATE_TRACE_FUNC;
1167 }
1168
1169 if (!command || !ftrace_enabled)
1170 return;
1171
1172 ftrace_run_update_code(command);
1173 }
1174
1175 static void ftrace_startup(int command)
1176 {
1177 if (unlikely(ftrace_disabled))
1178 return;
1179
1180 ftrace_start_up++;
1181 command |= FTRACE_ENABLE_CALLS;
1182
1183 ftrace_startup_enable(command);
1184 }
1185
1186 static void ftrace_shutdown(int command)
1187 {
1188 if (unlikely(ftrace_disabled))
1189 return;
1190
1191 ftrace_start_up--;
1192 /*
1193 * Just warn in case of unbalance, no need to kill ftrace, it's not
1194 * critical but the ftrace_call callers may be never nopped again after
1195 * further ftrace uses.
1196 */
1197 WARN_ON_ONCE(ftrace_start_up < 0);
1198
1199 if (!ftrace_start_up)
1200 command |= FTRACE_DISABLE_CALLS;
1201
1202 if (saved_ftrace_func != ftrace_trace_function) {
1203 saved_ftrace_func = ftrace_trace_function;
1204 command |= FTRACE_UPDATE_TRACE_FUNC;
1205 }
1206
1207 if (!command || !ftrace_enabled)
1208 return;
1209
1210 ftrace_run_update_code(command);
1211 }
1212
1213 static void ftrace_startup_sysctl(void)
1214 {
1215 int command = FTRACE_ENABLE_MCOUNT;
1216
1217 if (unlikely(ftrace_disabled))
1218 return;
1219
1220 /* Force update next time */
1221 saved_ftrace_func = NULL;
1222 /* ftrace_start_up is true if we want ftrace running */
1223 if (ftrace_start_up)
1224 command |= FTRACE_ENABLE_CALLS;
1225
1226 ftrace_run_update_code(command);
1227 }
1228
1229 static void ftrace_shutdown_sysctl(void)
1230 {
1231 int command = FTRACE_DISABLE_MCOUNT;
1232
1233 if (unlikely(ftrace_disabled))
1234 return;
1235
1236 /* ftrace_start_up is true if ftrace is running */
1237 if (ftrace_start_up)
1238 command |= FTRACE_DISABLE_CALLS;
1239
1240 ftrace_run_update_code(command);
1241 }
1242
1243 static cycle_t ftrace_update_time;
1244 static unsigned long ftrace_update_cnt;
1245 unsigned long ftrace_update_tot_cnt;
1246
1247 static int ftrace_update_code(struct module *mod)
1248 {
1249 struct dyn_ftrace *p;
1250 cycle_t start, stop;
1251
1252 start = ftrace_now(raw_smp_processor_id());
1253 ftrace_update_cnt = 0;
1254
1255 while (ftrace_new_addrs) {
1256
1257 /* If something went wrong, bail without enabling anything */
1258 if (unlikely(ftrace_disabled))
1259 return -1;
1260
1261 p = ftrace_new_addrs;
1262 ftrace_new_addrs = p->newlist;
1263 p->flags = 0L;
1264
1265 /* convert record (i.e, patch mcount-call with NOP) */
1266 if (ftrace_code_disable(mod, p)) {
1267 p->flags |= FTRACE_FL_CONVERTED;
1268 ftrace_update_cnt++;
1269 } else
1270 ftrace_free_rec(p);
1271 }
1272
1273 stop = ftrace_now(raw_smp_processor_id());
1274 ftrace_update_time = stop - start;
1275 ftrace_update_tot_cnt += ftrace_update_cnt;
1276
1277 return 0;
1278 }
1279
1280 static int __init ftrace_dyn_table_alloc(unsigned long num_to_init)
1281 {
1282 struct ftrace_page *pg;
1283 int cnt;
1284 int i;
1285
1286 /* allocate a few pages */
1287 ftrace_pages_start = (void *)get_zeroed_page(GFP_KERNEL);
1288 if (!ftrace_pages_start)
1289 return -1;
1290
1291 /*
1292 * Allocate a few more pages.
1293 *
1294 * TODO: have some parser search vmlinux before
1295 * final linking to find all calls to ftrace.
1296 * Then we can:
1297 * a) know how many pages to allocate.
1298 * and/or
1299 * b) set up the table then.
1300 *
1301 * The dynamic code is still necessary for
1302 * modules.
1303 */
1304
1305 pg = ftrace_pages = ftrace_pages_start;
1306
1307 cnt = num_to_init / ENTRIES_PER_PAGE;
1308 pr_info("ftrace: allocating %ld entries in %d pages\n",
1309 num_to_init, cnt + 1);
1310
1311 for (i = 0; i < cnt; i++) {
1312 pg->next = (void *)get_zeroed_page(GFP_KERNEL);
1313
1314 /* If we fail, we'll try later anyway */
1315 if (!pg->next)
1316 break;
1317
1318 pg = pg->next;
1319 }
1320
1321 return 0;
1322 }
1323
1324 enum {
1325 FTRACE_ITER_FILTER = (1 << 0),
1326 FTRACE_ITER_NOTRACE = (1 << 1),
1327 FTRACE_ITER_FAILURES = (1 << 2),
1328 FTRACE_ITER_PRINTALL = (1 << 3),
1329 FTRACE_ITER_HASH = (1 << 4),
1330 };
1331
1332 #define FTRACE_BUFF_MAX (KSYM_SYMBOL_LEN+4) /* room for wildcards */
1333
1334 struct ftrace_iterator {
1335 struct ftrace_page *pg;
1336 int hidx;
1337 int idx;
1338 unsigned flags;
1339 struct trace_parser parser;
1340 };
1341
1342 static void *
1343 t_hash_next(struct seq_file *m, void *v, loff_t *pos)
1344 {
1345 struct ftrace_iterator *iter = m->private;
1346 struct hlist_node *hnd = v;
1347 struct hlist_head *hhd;
1348
1349 WARN_ON(!(iter->flags & FTRACE_ITER_HASH));
1350
1351 (*pos)++;
1352
1353 retry:
1354 if (iter->hidx >= FTRACE_FUNC_HASHSIZE)
1355 return NULL;
1356
1357 hhd = &ftrace_func_hash[iter->hidx];
1358
1359 if (hlist_empty(hhd)) {
1360 iter->hidx++;
1361 hnd = NULL;
1362 goto retry;
1363 }
1364
1365 if (!hnd)
1366 hnd = hhd->first;
1367 else {
1368 hnd = hnd->next;
1369 if (!hnd) {
1370 iter->hidx++;
1371 goto retry;
1372 }
1373 }
1374
1375 return hnd;
1376 }
1377
1378 static void *t_hash_start(struct seq_file *m, loff_t *pos)
1379 {
1380 struct ftrace_iterator *iter = m->private;
1381 void *p = NULL;
1382 loff_t l;
1383
1384 if (!(iter->flags & FTRACE_ITER_HASH))
1385 *pos = 0;
1386
1387 iter->flags |= FTRACE_ITER_HASH;
1388
1389 iter->hidx = 0;
1390 for (l = 0; l <= *pos; ) {
1391 p = t_hash_next(m, p, &l);
1392 if (!p)
1393 break;
1394 }
1395 return p;
1396 }
1397
1398 static int t_hash_show(struct seq_file *m, void *v)
1399 {
1400 struct ftrace_func_probe *rec;
1401 struct hlist_node *hnd = v;
1402
1403 rec = hlist_entry(hnd, struct ftrace_func_probe, node);
1404
1405 if (rec->ops->print)
1406 return rec->ops->print(m, rec->ip, rec->ops, rec->data);
1407
1408 seq_printf(m, "%ps:%ps", (void *)rec->ip, (void *)rec->ops->func);
1409
1410 if (rec->data)
1411 seq_printf(m, ":%p", rec->data);
1412 seq_putc(m, '\n');
1413
1414 return 0;
1415 }
1416
1417 static void *
1418 t_next(struct seq_file *m, void *v, loff_t *pos)
1419 {
1420 struct ftrace_iterator *iter = m->private;
1421 struct dyn_ftrace *rec = NULL;
1422
1423 if (iter->flags & FTRACE_ITER_HASH)
1424 return t_hash_next(m, v, pos);
1425
1426 (*pos)++;
1427
1428 if (iter->flags & FTRACE_ITER_PRINTALL)
1429 return NULL;
1430
1431 retry:
1432 if (iter->idx >= iter->pg->index) {
1433 if (iter->pg->next) {
1434 iter->pg = iter->pg->next;
1435 iter->idx = 0;
1436 goto retry;
1437 }
1438 } else {
1439 rec = &iter->pg->records[iter->idx++];
1440 if ((rec->flags & FTRACE_FL_FREE) ||
1441
1442 (!(iter->flags & FTRACE_ITER_FAILURES) &&
1443 (rec->flags & FTRACE_FL_FAILED)) ||
1444
1445 ((iter->flags & FTRACE_ITER_FAILURES) &&
1446 !(rec->flags & FTRACE_FL_FAILED)) ||
1447
1448 ((iter->flags & FTRACE_ITER_FILTER) &&
1449 !(rec->flags & FTRACE_FL_FILTER)) ||
1450
1451 ((iter->flags & FTRACE_ITER_NOTRACE) &&
1452 !(rec->flags & FTRACE_FL_NOTRACE))) {
1453 rec = NULL;
1454 goto retry;
1455 }
1456 }
1457
1458 return rec;
1459 }
1460
1461 static void *t_start(struct seq_file *m, loff_t *pos)
1462 {
1463 struct ftrace_iterator *iter = m->private;
1464 void *p = NULL;
1465 loff_t l;
1466
1467 mutex_lock(&ftrace_lock);
1468 /*
1469 * For set_ftrace_filter reading, if we have the filter
1470 * off, we can short cut and just print out that all
1471 * functions are enabled.
1472 */
1473 if (iter->flags & FTRACE_ITER_FILTER && !ftrace_filtered) {
1474 if (*pos > 0)
1475 return t_hash_start(m, pos);
1476 iter->flags |= FTRACE_ITER_PRINTALL;
1477 return iter;
1478 }
1479
1480 if (iter->flags & FTRACE_ITER_HASH)
1481 return t_hash_start(m, pos);
1482
1483 iter->pg = ftrace_pages_start;
1484 iter->idx = 0;
1485 for (l = 0; l <= *pos; ) {
1486 p = t_next(m, p, &l);
1487 if (!p)
1488 break;
1489 }
1490
1491 if (!p && iter->flags & FTRACE_ITER_FILTER)
1492 return t_hash_start(m, pos);
1493
1494 return p;
1495 }
1496
1497 static void t_stop(struct seq_file *m, void *p)
1498 {
1499 mutex_unlock(&ftrace_lock);
1500 }
1501
1502 static int t_show(struct seq_file *m, void *v)
1503 {
1504 struct ftrace_iterator *iter = m->private;
1505 struct dyn_ftrace *rec = v;
1506
1507 if (iter->flags & FTRACE_ITER_HASH)
1508 return t_hash_show(m, v);
1509
1510 if (iter->flags & FTRACE_ITER_PRINTALL) {
1511 seq_printf(m, "#### all functions enabled ####\n");
1512 return 0;
1513 }
1514
1515 if (!rec)
1516 return 0;
1517
1518 seq_printf(m, "%ps\n", (void *)rec->ip);
1519
1520 return 0;
1521 }
1522
1523 static const struct seq_operations show_ftrace_seq_ops = {
1524 .start = t_start,
1525 .next = t_next,
1526 .stop = t_stop,
1527 .show = t_show,
1528 };
1529
1530 static int
1531 ftrace_avail_open(struct inode *inode, struct file *file)
1532 {
1533 struct ftrace_iterator *iter;
1534 int ret;
1535
1536 if (unlikely(ftrace_disabled))
1537 return -ENODEV;
1538
1539 iter = kzalloc(sizeof(*iter), GFP_KERNEL);
1540 if (!iter)
1541 return -ENOMEM;
1542
1543 iter->pg = ftrace_pages_start;
1544
1545 ret = seq_open(file, &show_ftrace_seq_ops);
1546 if (!ret) {
1547 struct seq_file *m = file->private_data;
1548
1549 m->private = iter;
1550 } else {
1551 kfree(iter);
1552 }
1553
1554 return ret;
1555 }
1556
1557 static int
1558 ftrace_failures_open(struct inode *inode, struct file *file)
1559 {
1560 int ret;
1561 struct seq_file *m;
1562 struct ftrace_iterator *iter;
1563
1564 ret = ftrace_avail_open(inode, file);
1565 if (!ret) {
1566 m = (struct seq_file *)file->private_data;
1567 iter = (struct ftrace_iterator *)m->private;
1568 iter->flags = FTRACE_ITER_FAILURES;
1569 }
1570
1571 return ret;
1572 }
1573
1574
1575 static void ftrace_filter_reset(int enable)
1576 {
1577 struct ftrace_page *pg;
1578 struct dyn_ftrace *rec;
1579 unsigned long type = enable ? FTRACE_FL_FILTER : FTRACE_FL_NOTRACE;
1580
1581 mutex_lock(&ftrace_lock);
1582 if (enable)
1583 ftrace_filtered = 0;
1584 do_for_each_ftrace_rec(pg, rec) {
1585 if (rec->flags & FTRACE_FL_FAILED)
1586 continue;
1587 rec->flags &= ~type;
1588 } while_for_each_ftrace_rec();
1589 mutex_unlock(&ftrace_lock);
1590 }
1591
1592 static int
1593 ftrace_regex_open(struct inode *inode, struct file *file, int enable)
1594 {
1595 struct ftrace_iterator *iter;
1596 int ret = 0;
1597
1598 if (unlikely(ftrace_disabled))
1599 return -ENODEV;
1600
1601 iter = kzalloc(sizeof(*iter), GFP_KERNEL);
1602 if (!iter)
1603 return -ENOMEM;
1604
1605 if (trace_parser_get_init(&iter->parser, FTRACE_BUFF_MAX)) {
1606 kfree(iter);
1607 return -ENOMEM;
1608 }
1609
1610 mutex_lock(&ftrace_regex_lock);
1611 if ((file->f_mode & FMODE_WRITE) &&
1612 (file->f_flags & O_TRUNC))
1613 ftrace_filter_reset(enable);
1614
1615 if (file->f_mode & FMODE_READ) {
1616 iter->pg = ftrace_pages_start;
1617 iter->flags = enable ? FTRACE_ITER_FILTER :
1618 FTRACE_ITER_NOTRACE;
1619
1620 ret = seq_open(file, &show_ftrace_seq_ops);
1621 if (!ret) {
1622 struct seq_file *m = file->private_data;
1623 m->private = iter;
1624 } else {
1625 trace_parser_put(&iter->parser);
1626 kfree(iter);
1627 }
1628 } else
1629 file->private_data = iter;
1630 mutex_unlock(&ftrace_regex_lock);
1631
1632 return ret;
1633 }
1634
1635 static int
1636 ftrace_filter_open(struct inode *inode, struct file *file)
1637 {
1638 return ftrace_regex_open(inode, file, 1);
1639 }
1640
1641 static int
1642 ftrace_notrace_open(struct inode *inode, struct file *file)
1643 {
1644 return ftrace_regex_open(inode, file, 0);
1645 }
1646
1647 static loff_t
1648 ftrace_regex_lseek(struct file *file, loff_t offset, int origin)
1649 {
1650 loff_t ret;
1651
1652 if (file->f_mode & FMODE_READ)
1653 ret = seq_lseek(file, offset, origin);
1654 else
1655 file->f_pos = ret = 1;
1656
1657 return ret;
1658 }
1659
1660 enum {
1661 MATCH_FULL,
1662 MATCH_FRONT_ONLY,
1663 MATCH_MIDDLE_ONLY,
1664 MATCH_END_ONLY,
1665 };
1666
1667 /*
1668 * (static function - no need for kernel doc)
1669 *
1670 * Pass in a buffer containing a glob and this function will
1671 * set search to point to the search part of the buffer and
1672 * return the type of search it is (see enum above).
1673 * This does modify buff.
1674 *
1675 * Returns enum type.
1676 * search returns the pointer to use for comparison.
1677 * not returns 1 if buff started with a '!'
1678 * 0 otherwise.
1679 */
1680 static int
1681 ftrace_setup_glob(char *buff, int len, char **search, int *not)
1682 {
1683 int type = MATCH_FULL;
1684 int i;
1685
1686 if (buff[0] == '!') {
1687 *not = 1;
1688 buff++;
1689 len--;
1690 } else
1691 *not = 0;
1692
1693 *search = buff;
1694
1695 for (i = 0; i < len; i++) {
1696 if (buff[i] == '*') {
1697 if (!i) {
1698 *search = buff + 1;
1699 type = MATCH_END_ONLY;
1700 } else {
1701 if (type == MATCH_END_ONLY)
1702 type = MATCH_MIDDLE_ONLY;
1703 else
1704 type = MATCH_FRONT_ONLY;
1705 buff[i] = 0;
1706 break;
1707 }
1708 }
1709 }
1710
1711 return type;
1712 }
1713
1714 static int ftrace_match(char *str, char *regex, int len, int type)
1715 {
1716 int matched = 0;
1717 char *ptr;
1718
1719 switch (type) {
1720 case MATCH_FULL:
1721 if (strcmp(str, regex) == 0)
1722 matched = 1;
1723 break;
1724 case MATCH_FRONT_ONLY:
1725 if (strncmp(str, regex, len) == 0)
1726 matched = 1;
1727 break;
1728 case MATCH_MIDDLE_ONLY:
1729 if (strstr(str, regex))
1730 matched = 1;
1731 break;
1732 case MATCH_END_ONLY:
1733 ptr = strstr(str, regex);
1734 if (ptr && (ptr[len] == 0))
1735 matched = 1;
1736 break;
1737 }
1738
1739 return matched;
1740 }
1741
1742 static int
1743 ftrace_match_record(struct dyn_ftrace *rec, char *regex, int len, int type)
1744 {
1745 char str[KSYM_SYMBOL_LEN];
1746
1747 kallsyms_lookup(rec->ip, NULL, NULL, NULL, str);
1748 return ftrace_match(str, regex, len, type);
1749 }
1750
1751 static void ftrace_match_records(char *buff, int len, int enable)
1752 {
1753 unsigned int search_len;
1754 struct ftrace_page *pg;
1755 struct dyn_ftrace *rec;
1756 unsigned long flag;
1757 char *search;
1758 int type;
1759 int not;
1760
1761 flag = enable ? FTRACE_FL_FILTER : FTRACE_FL_NOTRACE;
1762 type = ftrace_setup_glob(buff, len, &search, &not);
1763
1764 search_len = strlen(search);
1765
1766 mutex_lock(&ftrace_lock);
1767 do_for_each_ftrace_rec(pg, rec) {
1768
1769 if (rec->flags & FTRACE_FL_FAILED)
1770 continue;
1771
1772 if (ftrace_match_record(rec, search, search_len, type)) {
1773 if (not)
1774 rec->flags &= ~flag;
1775 else
1776 rec->flags |= flag;
1777 }
1778 /*
1779 * Only enable filtering if we have a function that
1780 * is filtered on.
1781 */
1782 if (enable && (rec->flags & FTRACE_FL_FILTER))
1783 ftrace_filtered = 1;
1784 } while_for_each_ftrace_rec();
1785 mutex_unlock(&ftrace_lock);
1786 }
1787
1788 static int
1789 ftrace_match_module_record(struct dyn_ftrace *rec, char *mod,
1790 char *regex, int len, int type)
1791 {
1792 char str[KSYM_SYMBOL_LEN];
1793 char *modname;
1794
1795 kallsyms_lookup(rec->ip, NULL, NULL, &modname, str);
1796
1797 if (!modname || strcmp(modname, mod))
1798 return 0;
1799
1800 /* blank search means to match all funcs in the mod */
1801 if (len)
1802 return ftrace_match(str, regex, len, type);
1803 else
1804 return 1;
1805 }
1806
1807 static void ftrace_match_module_records(char *buff, char *mod, int enable)
1808 {
1809 unsigned search_len = 0;
1810 struct ftrace_page *pg;
1811 struct dyn_ftrace *rec;
1812 int type = MATCH_FULL;
1813 char *search = buff;
1814 unsigned long flag;
1815 int not = 0;
1816
1817 flag = enable ? FTRACE_FL_FILTER : FTRACE_FL_NOTRACE;
1818
1819 /* blank or '*' mean the same */
1820 if (strcmp(buff, "*") == 0)
1821 buff[0] = 0;
1822
1823 /* handle the case of 'dont filter this module' */
1824 if (strcmp(buff, "!") == 0 || strcmp(buff, "!*") == 0) {
1825 buff[0] = 0;
1826 not = 1;
1827 }
1828
1829 if (strlen(buff)) {
1830 type = ftrace_setup_glob(buff, strlen(buff), &search, &not);
1831 search_len = strlen(search);
1832 }
1833
1834 mutex_lock(&ftrace_lock);
1835 do_for_each_ftrace_rec(pg, rec) {
1836
1837 if (rec->flags & FTRACE_FL_FAILED)
1838 continue;
1839
1840 if (ftrace_match_module_record(rec, mod,
1841 search, search_len, type)) {
1842 if (not)
1843 rec->flags &= ~flag;
1844 else
1845 rec->flags |= flag;
1846 }
1847 if (enable && (rec->flags & FTRACE_FL_FILTER))
1848 ftrace_filtered = 1;
1849
1850 } while_for_each_ftrace_rec();
1851 mutex_unlock(&ftrace_lock);
1852 }
1853
1854 /*
1855 * We register the module command as a template to show others how
1856 * to register the a command as well.
1857 */
1858
1859 static int
1860 ftrace_mod_callback(char *func, char *cmd, char *param, int enable)
1861 {
1862 char *mod;
1863
1864 /*
1865 * cmd == 'mod' because we only registered this func
1866 * for the 'mod' ftrace_func_command.
1867 * But if you register one func with multiple commands,
1868 * you can tell which command was used by the cmd
1869 * parameter.
1870 */
1871
1872 /* we must have a module name */
1873 if (!param)
1874 return -EINVAL;
1875
1876 mod = strsep(&param, ":");
1877 if (!strlen(mod))
1878 return -EINVAL;
1879
1880 ftrace_match_module_records(func, mod, enable);
1881 return 0;
1882 }
1883
1884 static struct ftrace_func_command ftrace_mod_cmd = {
1885 .name = "mod",
1886 .func = ftrace_mod_callback,
1887 };
1888
1889 static int __init ftrace_mod_cmd_init(void)
1890 {
1891 return register_ftrace_command(&ftrace_mod_cmd);
1892 }
1893 device_initcall(ftrace_mod_cmd_init);
1894
1895 static void
1896 function_trace_probe_call(unsigned long ip, unsigned long parent_ip)
1897 {
1898 struct ftrace_func_probe *entry;
1899 struct hlist_head *hhd;
1900 struct hlist_node *n;
1901 unsigned long key;
1902 int resched;
1903
1904 key = hash_long(ip, FTRACE_HASH_BITS);
1905
1906 hhd = &ftrace_func_hash[key];
1907
1908 if (hlist_empty(hhd))
1909 return;
1910
1911 /*
1912 * Disable preemption for these calls to prevent a RCU grace
1913 * period. This syncs the hash iteration and freeing of items
1914 * on the hash. rcu_read_lock is too dangerous here.
1915 */
1916 resched = ftrace_preempt_disable();
1917 hlist_for_each_entry_rcu(entry, n, hhd, node) {
1918 if (entry->ip == ip)
1919 entry->ops->func(ip, parent_ip, &entry->data);
1920 }
1921 ftrace_preempt_enable(resched);
1922 }
1923
1924 static struct ftrace_ops trace_probe_ops __read_mostly =
1925 {
1926 .func = function_trace_probe_call,
1927 };
1928
1929 static int ftrace_probe_registered;
1930
1931 static void __enable_ftrace_function_probe(void)
1932 {
1933 int i;
1934
1935 if (ftrace_probe_registered)
1936 return;
1937
1938 for (i = 0; i < FTRACE_FUNC_HASHSIZE; i++) {
1939 struct hlist_head *hhd = &ftrace_func_hash[i];
1940 if (hhd->first)
1941 break;
1942 }
1943 /* Nothing registered? */
1944 if (i == FTRACE_FUNC_HASHSIZE)
1945 return;
1946
1947 __register_ftrace_function(&trace_probe_ops);
1948 ftrace_startup(0);
1949 ftrace_probe_registered = 1;
1950 }
1951
1952 static void __disable_ftrace_function_probe(void)
1953 {
1954 int i;
1955
1956 if (!ftrace_probe_registered)
1957 return;
1958
1959 for (i = 0; i < FTRACE_FUNC_HASHSIZE; i++) {
1960 struct hlist_head *hhd = &ftrace_func_hash[i];
1961 if (hhd->first)
1962 return;
1963 }
1964
1965 /* no more funcs left */
1966 __unregister_ftrace_function(&trace_probe_ops);
1967 ftrace_shutdown(0);
1968 ftrace_probe_registered = 0;
1969 }
1970
1971
1972 static void ftrace_free_entry_rcu(struct rcu_head *rhp)
1973 {
1974 struct ftrace_func_probe *entry =
1975 container_of(rhp, struct ftrace_func_probe, rcu);
1976
1977 if (entry->ops->free)
1978 entry->ops->free(&entry->data);
1979 kfree(entry);
1980 }
1981
1982
1983 int
1984 register_ftrace_function_probe(char *glob, struct ftrace_probe_ops *ops,
1985 void *data)
1986 {
1987 struct ftrace_func_probe *entry;
1988 struct ftrace_page *pg;
1989 struct dyn_ftrace *rec;
1990 int type, len, not;
1991 unsigned long key;
1992 int count = 0;
1993 char *search;
1994
1995 type = ftrace_setup_glob(glob, strlen(glob), &search, &not);
1996 len = strlen(search);
1997
1998 /* we do not support '!' for function probes */
1999 if (WARN_ON(not))
2000 return -EINVAL;
2001
2002 mutex_lock(&ftrace_lock);
2003 do_for_each_ftrace_rec(pg, rec) {
2004
2005 if (rec->flags & FTRACE_FL_FAILED)
2006 continue;
2007
2008 if (!ftrace_match_record(rec, search, len, type))
2009 continue;
2010
2011 entry = kmalloc(sizeof(*entry), GFP_KERNEL);
2012 if (!entry) {
2013 /* If we did not process any, then return error */
2014 if (!count)
2015 count = -ENOMEM;
2016 goto out_unlock;
2017 }
2018
2019 count++;
2020
2021 entry->data = data;
2022
2023 /*
2024 * The caller might want to do something special
2025 * for each function we find. We call the callback
2026 * to give the caller an opportunity to do so.
2027 */
2028 if (ops->callback) {
2029 if (ops->callback(rec->ip, &entry->data) < 0) {
2030 /* caller does not like this func */
2031 kfree(entry);
2032 continue;
2033 }
2034 }
2035
2036 entry->ops = ops;
2037 entry->ip = rec->ip;
2038
2039 key = hash_long(entry->ip, FTRACE_HASH_BITS);
2040 hlist_add_head_rcu(&entry->node, &ftrace_func_hash[key]);
2041
2042 } while_for_each_ftrace_rec();
2043 __enable_ftrace_function_probe();
2044
2045 out_unlock:
2046 mutex_unlock(&ftrace_lock);
2047
2048 return count;
2049 }
2050
2051 enum {
2052 PROBE_TEST_FUNC = 1,
2053 PROBE_TEST_DATA = 2
2054 };
2055
2056 static void
2057 __unregister_ftrace_function_probe(char *glob, struct ftrace_probe_ops *ops,
2058 void *data, int flags)
2059 {
2060 struct ftrace_func_probe *entry;
2061 struct hlist_node *n, *tmp;
2062 char str[KSYM_SYMBOL_LEN];
2063 int type = MATCH_FULL;
2064 int i, len = 0;
2065 char *search;
2066
2067 if (glob && (strcmp(glob, "*") == 0 || !strlen(glob)))
2068 glob = NULL;
2069 else if (glob) {
2070 int not;
2071
2072 type = ftrace_setup_glob(glob, strlen(glob), &search, &not);
2073 len = strlen(search);
2074
2075 /* we do not support '!' for function probes */
2076 if (WARN_ON(not))
2077 return;
2078 }
2079
2080 mutex_lock(&ftrace_lock);
2081 for (i = 0; i < FTRACE_FUNC_HASHSIZE; i++) {
2082 struct hlist_head *hhd = &ftrace_func_hash[i];
2083
2084 hlist_for_each_entry_safe(entry, n, tmp, hhd, node) {
2085
2086 /* break up if statements for readability */
2087 if ((flags & PROBE_TEST_FUNC) && entry->ops != ops)
2088 continue;
2089
2090 if ((flags & PROBE_TEST_DATA) && entry->data != data)
2091 continue;
2092
2093 /* do this last, since it is the most expensive */
2094 if (glob) {
2095 kallsyms_lookup(entry->ip, NULL, NULL,
2096 NULL, str);
2097 if (!ftrace_match(str, glob, len, type))
2098 continue;
2099 }
2100
2101 hlist_del(&entry->node);
2102 call_rcu(&entry->rcu, ftrace_free_entry_rcu);
2103 }
2104 }
2105 __disable_ftrace_function_probe();
2106 mutex_unlock(&ftrace_lock);
2107 }
2108
2109 void
2110 unregister_ftrace_function_probe(char *glob, struct ftrace_probe_ops *ops,
2111 void *data)
2112 {
2113 __unregister_ftrace_function_probe(glob, ops, data,
2114 PROBE_TEST_FUNC | PROBE_TEST_DATA);
2115 }
2116
2117 void
2118 unregister_ftrace_function_probe_func(char *glob, struct ftrace_probe_ops *ops)
2119 {
2120 __unregister_ftrace_function_probe(glob, ops, NULL, PROBE_TEST_FUNC);
2121 }
2122
2123 void unregister_ftrace_function_probe_all(char *glob)
2124 {
2125 __unregister_ftrace_function_probe(glob, NULL, NULL, 0);
2126 }
2127
2128 static LIST_HEAD(ftrace_commands);
2129 static DEFINE_MUTEX(ftrace_cmd_mutex);
2130
2131 int register_ftrace_command(struct ftrace_func_command *cmd)
2132 {
2133 struct ftrace_func_command *p;
2134 int ret = 0;
2135
2136 mutex_lock(&ftrace_cmd_mutex);
2137 list_for_each_entry(p, &ftrace_commands, list) {
2138 if (strcmp(cmd->name, p->name) == 0) {
2139 ret = -EBUSY;
2140 goto out_unlock;
2141 }
2142 }
2143 list_add(&cmd->list, &ftrace_commands);
2144 out_unlock:
2145 mutex_unlock(&ftrace_cmd_mutex);
2146
2147 return ret;
2148 }
2149
2150 int unregister_ftrace_command(struct ftrace_func_command *cmd)
2151 {
2152 struct ftrace_func_command *p, *n;
2153 int ret = -ENODEV;
2154
2155 mutex_lock(&ftrace_cmd_mutex);
2156 list_for_each_entry_safe(p, n, &ftrace_commands, list) {
2157 if (strcmp(cmd->name, p->name) == 0) {
2158 ret = 0;
2159 list_del_init(&p->list);
2160 goto out_unlock;
2161 }
2162 }
2163 out_unlock:
2164 mutex_unlock(&ftrace_cmd_mutex);
2165
2166 return ret;
2167 }
2168
2169 static int ftrace_process_regex(char *buff, int len, int enable)
2170 {
2171 char *func, *command, *next = buff;
2172 struct ftrace_func_command *p;
2173 int ret = -EINVAL;
2174
2175 func = strsep(&next, ":");
2176
2177 if (!next) {
2178 ftrace_match_records(func, len, enable);
2179 return 0;
2180 }
2181
2182 /* command found */
2183
2184 command = strsep(&next, ":");
2185
2186 mutex_lock(&ftrace_cmd_mutex);
2187 list_for_each_entry(p, &ftrace_commands, list) {
2188 if (strcmp(p->name, command) == 0) {
2189 ret = p->func(func, command, next, enable);
2190 goto out_unlock;
2191 }
2192 }
2193 out_unlock:
2194 mutex_unlock(&ftrace_cmd_mutex);
2195
2196 return ret;
2197 }
2198
2199 static ssize_t
2200 ftrace_regex_write(struct file *file, const char __user *ubuf,
2201 size_t cnt, loff_t *ppos, int enable)
2202 {
2203 struct ftrace_iterator *iter;
2204 struct trace_parser *parser;
2205 ssize_t ret, read;
2206
2207 if (!cnt)
2208 return 0;
2209
2210 mutex_lock(&ftrace_regex_lock);
2211
2212 if (file->f_mode & FMODE_READ) {
2213 struct seq_file *m = file->private_data;
2214 iter = m->private;
2215 } else
2216 iter = file->private_data;
2217
2218 parser = &iter->parser;
2219 read = trace_get_user(parser, ubuf, cnt, ppos);
2220
2221 if (read >= 0 && trace_parser_loaded(parser) &&
2222 !trace_parser_cont(parser)) {
2223 ret = ftrace_process_regex(parser->buffer,
2224 parser->idx, enable);
2225 if (ret)
2226 goto out;
2227
2228 trace_parser_clear(parser);
2229 }
2230
2231 ret = read;
2232
2233 mutex_unlock(&ftrace_regex_lock);
2234 out:
2235 return ret;
2236 }
2237
2238 static ssize_t
2239 ftrace_filter_write(struct file *file, const char __user *ubuf,
2240 size_t cnt, loff_t *ppos)
2241 {
2242 return ftrace_regex_write(file, ubuf, cnt, ppos, 1);
2243 }
2244
2245 static ssize_t
2246 ftrace_notrace_write(struct file *file, const char __user *ubuf,
2247 size_t cnt, loff_t *ppos)
2248 {
2249 return ftrace_regex_write(file, ubuf, cnt, ppos, 0);
2250 }
2251
2252 static void
2253 ftrace_set_regex(unsigned char *buf, int len, int reset, int enable)
2254 {
2255 if (unlikely(ftrace_disabled))
2256 return;
2257
2258 mutex_lock(&ftrace_regex_lock);
2259 if (reset)
2260 ftrace_filter_reset(enable);
2261 if (buf)
2262 ftrace_match_records(buf, len, enable);
2263 mutex_unlock(&ftrace_regex_lock);
2264 }
2265
2266 /**
2267 * ftrace_set_filter - set a function to filter on in ftrace
2268 * @buf - the string that holds the function filter text.
2269 * @len - the length of the string.
2270 * @reset - non zero to reset all filters before applying this filter.
2271 *
2272 * Filters denote which functions should be enabled when tracing is enabled.
2273 * If @buf is NULL and reset is set, all functions will be enabled for tracing.
2274 */
2275 void ftrace_set_filter(unsigned char *buf, int len, int reset)
2276 {
2277 ftrace_set_regex(buf, len, reset, 1);
2278 }
2279
2280 /**
2281 * ftrace_set_notrace - set a function to not trace in ftrace
2282 * @buf - the string that holds the function notrace text.
2283 * @len - the length of the string.
2284 * @reset - non zero to reset all filters before applying this filter.
2285 *
2286 * Notrace Filters denote which functions should not be enabled when tracing
2287 * is enabled. If @buf is NULL and reset is set, all functions will be enabled
2288 * for tracing.
2289 */
2290 void ftrace_set_notrace(unsigned char *buf, int len, int reset)
2291 {
2292 ftrace_set_regex(buf, len, reset, 0);
2293 }
2294
2295 /*
2296 * command line interface to allow users to set filters on boot up.
2297 */
2298 #define FTRACE_FILTER_SIZE COMMAND_LINE_SIZE
2299 static char ftrace_notrace_buf[FTRACE_FILTER_SIZE] __initdata;
2300 static char ftrace_filter_buf[FTRACE_FILTER_SIZE] __initdata;
2301
2302 static int __init set_ftrace_notrace(char *str)
2303 {
2304 strncpy(ftrace_notrace_buf, str, FTRACE_FILTER_SIZE);
2305 return 1;
2306 }
2307 __setup("ftrace_notrace=", set_ftrace_notrace);
2308
2309 static int __init set_ftrace_filter(char *str)
2310 {
2311 strncpy(ftrace_filter_buf, str, FTRACE_FILTER_SIZE);
2312 return 1;
2313 }
2314 __setup("ftrace_filter=", set_ftrace_filter);
2315
2316 static void __init set_ftrace_early_filter(char *buf, int enable)
2317 {
2318 char *func;
2319
2320 while (buf) {
2321 func = strsep(&buf, ",");
2322 ftrace_set_regex(func, strlen(func), 0, enable);
2323 }
2324 }
2325
2326 static void __init set_ftrace_early_filters(void)
2327 {
2328 if (ftrace_filter_buf[0])
2329 set_ftrace_early_filter(ftrace_filter_buf, 1);
2330 if (ftrace_notrace_buf[0])
2331 set_ftrace_early_filter(ftrace_notrace_buf, 0);
2332 }
2333
2334 static int
2335 ftrace_regex_release(struct inode *inode, struct file *file, int enable)
2336 {
2337 struct seq_file *m = (struct seq_file *)file->private_data;
2338 struct ftrace_iterator *iter;
2339 struct trace_parser *parser;
2340
2341 mutex_lock(&ftrace_regex_lock);
2342 if (file->f_mode & FMODE_READ) {
2343 iter = m->private;
2344
2345 seq_release(inode, file);
2346 } else
2347 iter = file->private_data;
2348
2349 parser = &iter->parser;
2350 if (trace_parser_loaded(parser)) {
2351 parser->buffer[parser->idx] = 0;
2352 ftrace_match_records(parser->buffer, parser->idx, enable);
2353 }
2354
2355 mutex_lock(&ftrace_lock);
2356 if (ftrace_start_up && ftrace_enabled)
2357 ftrace_run_update_code(FTRACE_ENABLE_CALLS);
2358 mutex_unlock(&ftrace_lock);
2359
2360 trace_parser_put(parser);
2361 kfree(iter);
2362
2363 mutex_unlock(&ftrace_regex_lock);
2364 return 0;
2365 }
2366
2367 static int
2368 ftrace_filter_release(struct inode *inode, struct file *file)
2369 {
2370 return ftrace_regex_release(inode, file, 1);
2371 }
2372
2373 static int
2374 ftrace_notrace_release(struct inode *inode, struct file *file)
2375 {
2376 return ftrace_regex_release(inode, file, 0);
2377 }
2378
2379 static const struct file_operations ftrace_avail_fops = {
2380 .open = ftrace_avail_open,
2381 .read = seq_read,
2382 .llseek = seq_lseek,
2383 .release = seq_release_private,
2384 };
2385
2386 static const struct file_operations ftrace_failures_fops = {
2387 .open = ftrace_failures_open,
2388 .read = seq_read,
2389 .llseek = seq_lseek,
2390 .release = seq_release_private,
2391 };
2392
2393 static const struct file_operations ftrace_filter_fops = {
2394 .open = ftrace_filter_open,
2395 .read = seq_read,
2396 .write = ftrace_filter_write,
2397 .llseek = ftrace_regex_lseek,
2398 .release = ftrace_filter_release,
2399 };
2400
2401 static const struct file_operations ftrace_notrace_fops = {
2402 .open = ftrace_notrace_open,
2403 .read = seq_read,
2404 .write = ftrace_notrace_write,
2405 .llseek = ftrace_regex_lseek,
2406 .release = ftrace_notrace_release,
2407 };
2408
2409 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
2410
2411 static DEFINE_MUTEX(graph_lock);
2412
2413 int ftrace_graph_count;
2414 unsigned long ftrace_graph_funcs[FTRACE_GRAPH_MAX_FUNCS] __read_mostly;
2415
2416 static void *
2417 __g_next(struct seq_file *m, loff_t *pos)
2418 {
2419 if (*pos >= ftrace_graph_count)
2420 return NULL;
2421 return &ftrace_graph_funcs[*pos];
2422 }
2423
2424 static void *
2425 g_next(struct seq_file *m, void *v, loff_t *pos)
2426 {
2427 (*pos)++;
2428 return __g_next(m, pos);
2429 }
2430
2431 static void *g_start(struct seq_file *m, loff_t *pos)
2432 {
2433 mutex_lock(&graph_lock);
2434
2435 /* Nothing, tell g_show to print all functions are enabled */
2436 if (!ftrace_graph_count && !*pos)
2437 return (void *)1;
2438
2439 return __g_next(m, pos);
2440 }
2441
2442 static void g_stop(struct seq_file *m, void *p)
2443 {
2444 mutex_unlock(&graph_lock);
2445 }
2446
2447 static int g_show(struct seq_file *m, void *v)
2448 {
2449 unsigned long *ptr = v;
2450
2451 if (!ptr)
2452 return 0;
2453
2454 if (ptr == (unsigned long *)1) {
2455 seq_printf(m, "#### all functions enabled ####\n");
2456 return 0;
2457 }
2458
2459 seq_printf(m, "%ps\n", (void *)*ptr);
2460
2461 return 0;
2462 }
2463
2464 static const struct seq_operations ftrace_graph_seq_ops = {
2465 .start = g_start,
2466 .next = g_next,
2467 .stop = g_stop,
2468 .show = g_show,
2469 };
2470
2471 static int
2472 ftrace_graph_open(struct inode *inode, struct file *file)
2473 {
2474 int ret = 0;
2475
2476 if (unlikely(ftrace_disabled))
2477 return -ENODEV;
2478
2479 mutex_lock(&graph_lock);
2480 if ((file->f_mode & FMODE_WRITE) &&
2481 (file->f_flags & O_TRUNC)) {
2482 ftrace_graph_count = 0;
2483 memset(ftrace_graph_funcs, 0, sizeof(ftrace_graph_funcs));
2484 }
2485 mutex_unlock(&graph_lock);
2486
2487 if (file->f_mode & FMODE_READ)
2488 ret = seq_open(file, &ftrace_graph_seq_ops);
2489
2490 return ret;
2491 }
2492
2493 static int
2494 ftrace_graph_release(struct inode *inode, struct file *file)
2495 {
2496 if (file->f_mode & FMODE_READ)
2497 seq_release(inode, file);
2498 return 0;
2499 }
2500
2501 static int
2502 ftrace_set_func(unsigned long *array, int *idx, char *buffer)
2503 {
2504 struct dyn_ftrace *rec;
2505 struct ftrace_page *pg;
2506 int search_len;
2507 int found = 0;
2508 int type, not;
2509 char *search;
2510 bool exists;
2511 int i;
2512
2513 if (ftrace_disabled)
2514 return -ENODEV;
2515
2516 /* decode regex */
2517 type = ftrace_setup_glob(buffer, strlen(buffer), &search, &not);
2518 if (not)
2519 return -EINVAL;
2520
2521 search_len = strlen(search);
2522
2523 mutex_lock(&ftrace_lock);
2524 do_for_each_ftrace_rec(pg, rec) {
2525
2526 if (*idx >= FTRACE_GRAPH_MAX_FUNCS)
2527 break;
2528
2529 if (rec->flags & (FTRACE_FL_FAILED | FTRACE_FL_FREE))
2530 continue;
2531
2532 if (ftrace_match_record(rec, search, search_len, type)) {
2533 /* ensure it is not already in the array */
2534 exists = false;
2535 for (i = 0; i < *idx; i++)
2536 if (array[i] == rec->ip) {
2537 exists = true;
2538 break;
2539 }
2540 if (!exists) {
2541 array[(*idx)++] = rec->ip;
2542 found = 1;
2543 }
2544 }
2545 } while_for_each_ftrace_rec();
2546
2547 mutex_unlock(&ftrace_lock);
2548
2549 return found ? 0 : -EINVAL;
2550 }
2551
2552 static ssize_t
2553 ftrace_graph_write(struct file *file, const char __user *ubuf,
2554 size_t cnt, loff_t *ppos)
2555 {
2556 struct trace_parser parser;
2557 ssize_t read, ret;
2558
2559 if (!cnt || cnt < 0)
2560 return 0;
2561
2562 mutex_lock(&graph_lock);
2563
2564 if (ftrace_graph_count >= FTRACE_GRAPH_MAX_FUNCS) {
2565 ret = -EBUSY;
2566 goto out_unlock;
2567 }
2568
2569 if (trace_parser_get_init(&parser, FTRACE_BUFF_MAX)) {
2570 ret = -ENOMEM;
2571 goto out_unlock;
2572 }
2573
2574 read = trace_get_user(&parser, ubuf, cnt, ppos);
2575
2576 if (read >= 0 && trace_parser_loaded((&parser))) {
2577 parser.buffer[parser.idx] = 0;
2578
2579 /* we allow only one expression at a time */
2580 ret = ftrace_set_func(ftrace_graph_funcs, &ftrace_graph_count,
2581 parser.buffer);
2582 if (ret)
2583 goto out_free;
2584 }
2585
2586 ret = read;
2587
2588 out_free:
2589 trace_parser_put(&parser);
2590 out_unlock:
2591 mutex_unlock(&graph_lock);
2592
2593 return ret;
2594 }
2595
2596 static const struct file_operations ftrace_graph_fops = {
2597 .open = ftrace_graph_open,
2598 .read = seq_read,
2599 .write = ftrace_graph_write,
2600 .release = ftrace_graph_release,
2601 };
2602 #endif /* CONFIG_FUNCTION_GRAPH_TRACER */
2603
2604 static __init int ftrace_init_dyn_debugfs(struct dentry *d_tracer)
2605 {
2606
2607 trace_create_file("available_filter_functions", 0444,
2608 d_tracer, NULL, &ftrace_avail_fops);
2609
2610 trace_create_file("failures", 0444,
2611 d_tracer, NULL, &ftrace_failures_fops);
2612
2613 trace_create_file("set_ftrace_filter", 0644, d_tracer,
2614 NULL, &ftrace_filter_fops);
2615
2616 trace_create_file("set_ftrace_notrace", 0644, d_tracer,
2617 NULL, &ftrace_notrace_fops);
2618
2619 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
2620 trace_create_file("set_graph_function", 0444, d_tracer,
2621 NULL,
2622 &ftrace_graph_fops);
2623 #endif /* CONFIG_FUNCTION_GRAPH_TRACER */
2624
2625 return 0;
2626 }
2627
2628 static int ftrace_convert_nops(struct module *mod,
2629 unsigned long *start,
2630 unsigned long *end)
2631 {
2632 unsigned long *p;
2633 unsigned long addr;
2634 unsigned long flags;
2635
2636 mutex_lock(&ftrace_lock);
2637 p = start;
2638 while (p < end) {
2639 addr = ftrace_call_adjust(*p++);
2640 /*
2641 * Some architecture linkers will pad between
2642 * the different mcount_loc sections of different
2643 * object files to satisfy alignments.
2644 * Skip any NULL pointers.
2645 */
2646 if (!addr)
2647 continue;
2648 ftrace_record_ip(addr);
2649 }
2650
2651 /* disable interrupts to prevent kstop machine */
2652 local_irq_save(flags);
2653 ftrace_update_code(mod);
2654 local_irq_restore(flags);
2655 mutex_unlock(&ftrace_lock);
2656
2657 return 0;
2658 }
2659
2660 #ifdef CONFIG_MODULES
2661 void ftrace_release(void *start, void *end)
2662 {
2663 struct dyn_ftrace *rec;
2664 struct ftrace_page *pg;
2665 unsigned long s = (unsigned long)start;
2666 unsigned long e = (unsigned long)end;
2667
2668 if (ftrace_disabled || !start || start == end)
2669 return;
2670
2671 mutex_lock(&ftrace_lock);
2672 do_for_each_ftrace_rec(pg, rec) {
2673 if ((rec->ip >= s) && (rec->ip < e)) {
2674 /*
2675 * rec->ip is changed in ftrace_free_rec()
2676 * It should not between s and e if record was freed.
2677 */
2678 FTRACE_WARN_ON(rec->flags & FTRACE_FL_FREE);
2679 ftrace_free_rec(rec);
2680 }
2681 } while_for_each_ftrace_rec();
2682 mutex_unlock(&ftrace_lock);
2683 }
2684
2685 static void ftrace_init_module(struct module *mod,
2686 unsigned long *start, unsigned long *end)
2687 {
2688 if (ftrace_disabled || start == end)
2689 return;
2690 ftrace_convert_nops(mod, start, end);
2691 }
2692
2693 static int ftrace_module_notify(struct notifier_block *self,
2694 unsigned long val, void *data)
2695 {
2696 struct module *mod = data;
2697
2698 switch (val) {
2699 case MODULE_STATE_COMING:
2700 ftrace_init_module(mod, mod->ftrace_callsites,
2701 mod->ftrace_callsites +
2702 mod->num_ftrace_callsites);
2703 break;
2704 case MODULE_STATE_GOING:
2705 ftrace_release(mod->ftrace_callsites,
2706 mod->ftrace_callsites +
2707 mod->num_ftrace_callsites);
2708 break;
2709 }
2710
2711 return 0;
2712 }
2713 #else
2714 static int ftrace_module_notify(struct notifier_block *self,
2715 unsigned long val, void *data)
2716 {
2717 return 0;
2718 }
2719 #endif /* CONFIG_MODULES */
2720
2721 struct notifier_block ftrace_module_nb = {
2722 .notifier_call = ftrace_module_notify,
2723 .priority = 0,
2724 };
2725
2726 extern unsigned long __start_mcount_loc[];
2727 extern unsigned long __stop_mcount_loc[];
2728
2729 void __init ftrace_init(void)
2730 {
2731 unsigned long count, addr, flags;
2732 int ret;
2733
2734 /* Keep the ftrace pointer to the stub */
2735 addr = (unsigned long)ftrace_stub;
2736
2737 local_irq_save(flags);
2738 ftrace_dyn_arch_init(&addr);
2739 local_irq_restore(flags);
2740
2741 /* ftrace_dyn_arch_init places the return code in addr */
2742 if (addr)
2743 goto failed;
2744
2745 count = __stop_mcount_loc - __start_mcount_loc;
2746
2747 ret = ftrace_dyn_table_alloc(count);
2748 if (ret)
2749 goto failed;
2750
2751 last_ftrace_enabled = ftrace_enabled = 1;
2752
2753 ret = ftrace_convert_nops(NULL,
2754 __start_mcount_loc,
2755 __stop_mcount_loc);
2756
2757 ret = register_module_notifier(&ftrace_module_nb);
2758 if (ret)
2759 pr_warning("Failed to register trace ftrace module notifier\n");
2760
2761 set_ftrace_early_filters();
2762
2763 return;
2764 failed:
2765 ftrace_disabled = 1;
2766 }
2767
2768 #else
2769
2770 static int __init ftrace_nodyn_init(void)
2771 {
2772 ftrace_enabled = 1;
2773 return 0;
2774 }
2775 device_initcall(ftrace_nodyn_init);
2776
2777 static inline int ftrace_init_dyn_debugfs(struct dentry *d_tracer) { return 0; }
2778 static inline void ftrace_startup_enable(int command) { }
2779 /* Keep as macros so we do not need to define the commands */
2780 # define ftrace_startup(command) do { } while (0)
2781 # define ftrace_shutdown(command) do { } while (0)
2782 # define ftrace_startup_sysctl() do { } while (0)
2783 # define ftrace_shutdown_sysctl() do { } while (0)
2784 #endif /* CONFIG_DYNAMIC_FTRACE */
2785
2786 static ssize_t
2787 ftrace_pid_read(struct file *file, char __user *ubuf,
2788 size_t cnt, loff_t *ppos)
2789 {
2790 char buf[64];
2791 int r;
2792
2793 if (ftrace_pid_trace == ftrace_swapper_pid)
2794 r = sprintf(buf, "swapper tasks\n");
2795 else if (ftrace_pid_trace)
2796 r = sprintf(buf, "%u\n", pid_vnr(ftrace_pid_trace));
2797 else
2798 r = sprintf(buf, "no pid\n");
2799
2800 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
2801 }
2802
2803 static void clear_ftrace_swapper(void)
2804 {
2805 struct task_struct *p;
2806 int cpu;
2807
2808 get_online_cpus();
2809 for_each_online_cpu(cpu) {
2810 p = idle_task(cpu);
2811 clear_tsk_trace_trace(p);
2812 }
2813 put_online_cpus();
2814 }
2815
2816 static void set_ftrace_swapper(void)
2817 {
2818 struct task_struct *p;
2819 int cpu;
2820
2821 get_online_cpus();
2822 for_each_online_cpu(cpu) {
2823 p = idle_task(cpu);
2824 set_tsk_trace_trace(p);
2825 }
2826 put_online_cpus();
2827 }
2828
2829 static void clear_ftrace_pid(struct pid *pid)
2830 {
2831 struct task_struct *p;
2832
2833 rcu_read_lock();
2834 do_each_pid_task(pid, PIDTYPE_PID, p) {
2835 clear_tsk_trace_trace(p);
2836 } while_each_pid_task(pid, PIDTYPE_PID, p);
2837 rcu_read_unlock();
2838
2839 put_pid(pid);
2840 }
2841
2842 static void set_ftrace_pid(struct pid *pid)
2843 {
2844 struct task_struct *p;
2845
2846 rcu_read_lock();
2847 do_each_pid_task(pid, PIDTYPE_PID, p) {
2848 set_tsk_trace_trace(p);
2849 } while_each_pid_task(pid, PIDTYPE_PID, p);
2850 rcu_read_unlock();
2851 }
2852
2853 static void clear_ftrace_pid_task(struct pid **pid)
2854 {
2855 if (*pid == ftrace_swapper_pid)
2856 clear_ftrace_swapper();
2857 else
2858 clear_ftrace_pid(*pid);
2859
2860 *pid = NULL;
2861 }
2862
2863 static void set_ftrace_pid_task(struct pid *pid)
2864 {
2865 if (pid == ftrace_swapper_pid)
2866 set_ftrace_swapper();
2867 else
2868 set_ftrace_pid(pid);
2869 }
2870
2871 static ssize_t
2872 ftrace_pid_write(struct file *filp, const char __user *ubuf,
2873 size_t cnt, loff_t *ppos)
2874 {
2875 struct pid *pid;
2876 char buf[64];
2877 long val;
2878 int ret;
2879
2880 if (cnt >= sizeof(buf))
2881 return -EINVAL;
2882
2883 if (copy_from_user(&buf, ubuf, cnt))
2884 return -EFAULT;
2885
2886 buf[cnt] = 0;
2887
2888 ret = strict_strtol(buf, 10, &val);
2889 if (ret < 0)
2890 return ret;
2891
2892 mutex_lock(&ftrace_lock);
2893 if (val < 0) {
2894 /* disable pid tracing */
2895 if (!ftrace_pid_trace)
2896 goto out;
2897
2898 clear_ftrace_pid_task(&ftrace_pid_trace);
2899
2900 } else {
2901 /* swapper task is special */
2902 if (!val) {
2903 pid = ftrace_swapper_pid;
2904 if (pid == ftrace_pid_trace)
2905 goto out;
2906 } else {
2907 pid = find_get_pid(val);
2908
2909 if (pid == ftrace_pid_trace) {
2910 put_pid(pid);
2911 goto out;
2912 }
2913 }
2914
2915 if (ftrace_pid_trace)
2916 clear_ftrace_pid_task(&ftrace_pid_trace);
2917
2918 if (!pid)
2919 goto out;
2920
2921 ftrace_pid_trace = pid;
2922
2923 set_ftrace_pid_task(ftrace_pid_trace);
2924 }
2925
2926 /* update the function call */
2927 ftrace_update_pid_func();
2928 ftrace_startup_enable(0);
2929
2930 out:
2931 mutex_unlock(&ftrace_lock);
2932
2933 return cnt;
2934 }
2935
2936 static const struct file_operations ftrace_pid_fops = {
2937 .read = ftrace_pid_read,
2938 .write = ftrace_pid_write,
2939 };
2940
2941 static __init int ftrace_init_debugfs(void)
2942 {
2943 struct dentry *d_tracer;
2944
2945 d_tracer = tracing_init_dentry();
2946 if (!d_tracer)
2947 return 0;
2948
2949 ftrace_init_dyn_debugfs(d_tracer);
2950
2951 trace_create_file("set_ftrace_pid", 0644, d_tracer,
2952 NULL, &ftrace_pid_fops);
2953
2954 ftrace_profile_debugfs(d_tracer);
2955
2956 return 0;
2957 }
2958 fs_initcall(ftrace_init_debugfs);
2959
2960 /**
2961 * ftrace_kill - kill ftrace
2962 *
2963 * This function should be used by panic code. It stops ftrace
2964 * but in a not so nice way. If you need to simply kill ftrace
2965 * from a non-atomic section, use ftrace_kill.
2966 */
2967 void ftrace_kill(void)
2968 {
2969 ftrace_disabled = 1;
2970 ftrace_enabled = 0;
2971 clear_ftrace_function();
2972 }
2973
2974 /**
2975 * register_ftrace_function - register a function for profiling
2976 * @ops - ops structure that holds the function for profiling.
2977 *
2978 * Register a function to be called by all functions in the
2979 * kernel.
2980 *
2981 * Note: @ops->func and all the functions it calls must be labeled
2982 * with "notrace", otherwise it will go into a
2983 * recursive loop.
2984 */
2985 int register_ftrace_function(struct ftrace_ops *ops)
2986 {
2987 int ret;
2988
2989 if (unlikely(ftrace_disabled))
2990 return -1;
2991
2992 mutex_lock(&ftrace_lock);
2993
2994 ret = __register_ftrace_function(ops);
2995 ftrace_startup(0);
2996
2997 mutex_unlock(&ftrace_lock);
2998 return ret;
2999 }
3000
3001 /**
3002 * unregister_ftrace_function - unregister a function for profiling.
3003 * @ops - ops structure that holds the function to unregister
3004 *
3005 * Unregister a function that was added to be called by ftrace profiling.
3006 */
3007 int unregister_ftrace_function(struct ftrace_ops *ops)
3008 {
3009 int ret;
3010
3011 mutex_lock(&ftrace_lock);
3012 ret = __unregister_ftrace_function(ops);
3013 ftrace_shutdown(0);
3014 mutex_unlock(&ftrace_lock);
3015
3016 return ret;
3017 }
3018
3019 int
3020 ftrace_enable_sysctl(struct ctl_table *table, int write,
3021 void __user *buffer, size_t *lenp,
3022 loff_t *ppos)
3023 {
3024 int ret;
3025
3026 if (unlikely(ftrace_disabled))
3027 return -ENODEV;
3028
3029 mutex_lock(&ftrace_lock);
3030
3031 ret = proc_dointvec(table, write, buffer, lenp, ppos);
3032
3033 if (ret || !write || (last_ftrace_enabled == !!ftrace_enabled))
3034 goto out;
3035
3036 last_ftrace_enabled = !!ftrace_enabled;
3037
3038 if (ftrace_enabled) {
3039
3040 ftrace_startup_sysctl();
3041
3042 /* we are starting ftrace again */
3043 if (ftrace_list != &ftrace_list_end) {
3044 if (ftrace_list->next == &ftrace_list_end)
3045 ftrace_trace_function = ftrace_list->func;
3046 else
3047 ftrace_trace_function = ftrace_list_func;
3048 }
3049
3050 } else {
3051 /* stopping ftrace calls (just send to ftrace_stub) */
3052 ftrace_trace_function = ftrace_stub;
3053
3054 ftrace_shutdown_sysctl();
3055 }
3056
3057 out:
3058 mutex_unlock(&ftrace_lock);
3059 return ret;
3060 }
3061
3062 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
3063
3064 static int ftrace_graph_active;
3065 static struct notifier_block ftrace_suspend_notifier;
3066
3067 int ftrace_graph_entry_stub(struct ftrace_graph_ent *trace)
3068 {
3069 return 0;
3070 }
3071
3072 /* The callbacks that hook a function */
3073 trace_func_graph_ret_t ftrace_graph_return =
3074 (trace_func_graph_ret_t)ftrace_stub;
3075 trace_func_graph_ent_t ftrace_graph_entry = ftrace_graph_entry_stub;
3076
3077 /* Try to assign a return stack array on FTRACE_RETSTACK_ALLOC_SIZE tasks. */
3078 static int alloc_retstack_tasklist(struct ftrace_ret_stack **ret_stack_list)
3079 {
3080 int i;
3081 int ret = 0;
3082 unsigned long flags;
3083 int start = 0, end = FTRACE_RETSTACK_ALLOC_SIZE;
3084 struct task_struct *g, *t;
3085
3086 for (i = 0; i < FTRACE_RETSTACK_ALLOC_SIZE; i++) {
3087 ret_stack_list[i] = kmalloc(FTRACE_RETFUNC_DEPTH
3088 * sizeof(struct ftrace_ret_stack),
3089 GFP_KERNEL);
3090 if (!ret_stack_list[i]) {
3091 start = 0;
3092 end = i;
3093 ret = -ENOMEM;
3094 goto free;
3095 }
3096 }
3097
3098 read_lock_irqsave(&tasklist_lock, flags);
3099 do_each_thread(g, t) {
3100 if (start == end) {
3101 ret = -EAGAIN;
3102 goto unlock;
3103 }
3104
3105 if (t->ret_stack == NULL) {
3106 atomic_set(&t->tracing_graph_pause, 0);
3107 atomic_set(&t->trace_overrun, 0);
3108 t->curr_ret_stack = -1;
3109 /* Make sure the tasks see the -1 first: */
3110 smp_wmb();
3111 t->ret_stack = ret_stack_list[start++];
3112 }
3113 } while_each_thread(g, t);
3114
3115 unlock:
3116 read_unlock_irqrestore(&tasklist_lock, flags);
3117 free:
3118 for (i = start; i < end; i++)
3119 kfree(ret_stack_list[i]);
3120 return ret;
3121 }
3122
3123 static void
3124 ftrace_graph_probe_sched_switch(struct rq *__rq, struct task_struct *prev,
3125 struct task_struct *next)
3126 {
3127 unsigned long long timestamp;
3128 int index;
3129
3130 /*
3131 * Does the user want to count the time a function was asleep.
3132 * If so, do not update the time stamps.
3133 */
3134 if (trace_flags & TRACE_ITER_SLEEP_TIME)
3135 return;
3136
3137 timestamp = trace_clock_local();
3138
3139 prev->ftrace_timestamp = timestamp;
3140
3141 /* only process tasks that we timestamped */
3142 if (!next->ftrace_timestamp)
3143 return;
3144
3145 /*
3146 * Update all the counters in next to make up for the
3147 * time next was sleeping.
3148 */
3149 timestamp -= next->ftrace_timestamp;
3150
3151 for (index = next->curr_ret_stack; index >= 0; index--)
3152 next->ret_stack[index].calltime += timestamp;
3153 }
3154
3155 /* Allocate a return stack for each task */
3156 static int start_graph_tracing(void)
3157 {
3158 struct ftrace_ret_stack **ret_stack_list;
3159 int ret, cpu;
3160
3161 ret_stack_list = kmalloc(FTRACE_RETSTACK_ALLOC_SIZE *
3162 sizeof(struct ftrace_ret_stack *),
3163 GFP_KERNEL);
3164
3165 if (!ret_stack_list)
3166 return -ENOMEM;
3167
3168 /* The cpu_boot init_task->ret_stack will never be freed */
3169 for_each_online_cpu(cpu) {
3170 if (!idle_task(cpu)->ret_stack)
3171 ftrace_graph_init_task(idle_task(cpu));
3172 }
3173
3174 do {
3175 ret = alloc_retstack_tasklist(ret_stack_list);
3176 } while (ret == -EAGAIN);
3177
3178 if (!ret) {
3179 ret = register_trace_sched_switch(ftrace_graph_probe_sched_switch);
3180 if (ret)
3181 pr_info("ftrace_graph: Couldn't activate tracepoint"
3182 " probe to kernel_sched_switch\n");
3183 }
3184
3185 kfree(ret_stack_list);
3186 return ret;
3187 }
3188
3189 /*
3190 * Hibernation protection.
3191 * The state of the current task is too much unstable during
3192 * suspend/restore to disk. We want to protect against that.
3193 */
3194 static int
3195 ftrace_suspend_notifier_call(struct notifier_block *bl, unsigned long state,
3196 void *unused)
3197 {
3198 switch (state) {
3199 case PM_HIBERNATION_PREPARE:
3200 pause_graph_tracing();
3201 break;
3202
3203 case PM_POST_HIBERNATION:
3204 unpause_graph_tracing();
3205 break;
3206 }
3207 return NOTIFY_DONE;
3208 }
3209
3210 int register_ftrace_graph(trace_func_graph_ret_t retfunc,
3211 trace_func_graph_ent_t entryfunc)
3212 {
3213 int ret = 0;
3214
3215 mutex_lock(&ftrace_lock);
3216
3217 /* we currently allow only one tracer registered at a time */
3218 if (ftrace_graph_active) {
3219 ret = -EBUSY;
3220 goto out;
3221 }
3222
3223 ftrace_suspend_notifier.notifier_call = ftrace_suspend_notifier_call;
3224 register_pm_notifier(&ftrace_suspend_notifier);
3225
3226 ftrace_graph_active++;
3227 ret = start_graph_tracing();
3228 if (ret) {
3229 ftrace_graph_active--;
3230 goto out;
3231 }
3232
3233 ftrace_graph_return = retfunc;
3234 ftrace_graph_entry = entryfunc;
3235
3236 ftrace_startup(FTRACE_START_FUNC_RET);
3237
3238 out:
3239 mutex_unlock(&ftrace_lock);
3240 return ret;
3241 }
3242
3243 void unregister_ftrace_graph(void)
3244 {
3245 mutex_lock(&ftrace_lock);
3246
3247 if (unlikely(!ftrace_graph_active))
3248 goto out;
3249
3250 ftrace_graph_active--;
3251 unregister_trace_sched_switch(ftrace_graph_probe_sched_switch);
3252 ftrace_graph_return = (trace_func_graph_ret_t)ftrace_stub;
3253 ftrace_graph_entry = ftrace_graph_entry_stub;
3254 ftrace_shutdown(FTRACE_STOP_FUNC_RET);
3255 unregister_pm_notifier(&ftrace_suspend_notifier);
3256
3257 out:
3258 mutex_unlock(&ftrace_lock);
3259 }
3260
3261 /* Allocate a return stack for newly created task */
3262 void ftrace_graph_init_task(struct task_struct *t)
3263 {
3264 /* Make sure we do not use the parent ret_stack */
3265 t->ret_stack = NULL;
3266
3267 if (ftrace_graph_active) {
3268 struct ftrace_ret_stack *ret_stack;
3269
3270 ret_stack = kmalloc(FTRACE_RETFUNC_DEPTH
3271 * sizeof(struct ftrace_ret_stack),
3272 GFP_KERNEL);
3273 if (!ret_stack)
3274 return;
3275 t->curr_ret_stack = -1;
3276 atomic_set(&t->tracing_graph_pause, 0);
3277 atomic_set(&t->trace_overrun, 0);
3278 t->ftrace_timestamp = 0;
3279 /* make curr_ret_stack visable before we add the ret_stack */
3280 smp_wmb();
3281 t->ret_stack = ret_stack;
3282 }
3283 }
3284
3285 void ftrace_graph_exit_task(struct task_struct *t)
3286 {
3287 struct ftrace_ret_stack *ret_stack = t->ret_stack;
3288
3289 t->ret_stack = NULL;
3290 /* NULL must become visible to IRQs before we free it: */
3291 barrier();
3292
3293 kfree(ret_stack);
3294 }
3295
3296 void ftrace_graph_stop(void)
3297 {
3298 ftrace_stop();
3299 }
3300 #endif
3301