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1 /*
2 * ring buffer based function tracer
3 *
4 * Copyright (C) 2007-2008 Steven Rostedt <srostedt@redhat.com>
5 * Copyright (C) 2008 Ingo Molnar <mingo@redhat.com>
6 *
7 * Originally taken from the RT patch by:
8 * Arnaldo Carvalho de Melo <acme@redhat.com>
9 *
10 * Based on code from the latency_tracer, that is:
11 * Copyright (C) 2004-2006 Ingo Molnar
12 * Copyright (C) 2004 Nadia Yvette Chambers
13 */
14 #include <linux/ring_buffer.h>
15 #include <generated/utsrelease.h>
16 #include <linux/stacktrace.h>
17 #include <linux/writeback.h>
18 #include <linux/kallsyms.h>
19 #include <linux/seq_file.h>
20 #include <linux/notifier.h>
21 #include <linux/irqflags.h>
22 #include <linux/irq_work.h>
23 #include <linux/debugfs.h>
24 #include <linux/pagemap.h>
25 #include <linux/hardirq.h>
26 #include <linux/linkage.h>
27 #include <linux/uaccess.h>
28 #include <linux/kprobes.h>
29 #include <linux/ftrace.h>
30 #include <linux/module.h>
31 #include <linux/percpu.h>
32 #include <linux/splice.h>
33 #include <linux/kdebug.h>
34 #include <linux/string.h>
35 #include <linux/rwsem.h>
36 #include <linux/slab.h>
37 #include <linux/ctype.h>
38 #include <linux/init.h>
39 #include <linux/poll.h>
40 #include <linux/nmi.h>
41 #include <linux/fs.h>
42 #include <linux/sched/rt.h>
43
44 #include "trace.h"
45 #include "trace_output.h"
46
47 /*
48 * On boot up, the ring buffer is set to the minimum size, so that
49 * we do not waste memory on systems that are not using tracing.
50 */
51 int ring_buffer_expanded;
52
53 /*
54 * We need to change this state when a selftest is running.
55 * A selftest will lurk into the ring-buffer to count the
56 * entries inserted during the selftest although some concurrent
57 * insertions into the ring-buffer such as trace_printk could occurred
58 * at the same time, giving false positive or negative results.
59 */
60 static bool __read_mostly tracing_selftest_running;
61
62 /*
63 * If a tracer is running, we do not want to run SELFTEST.
64 */
65 bool __read_mostly tracing_selftest_disabled;
66
67 /* For tracers that don't implement custom flags */
68 static struct tracer_opt dummy_tracer_opt[] = {
69 { }
70 };
71
72 static struct tracer_flags dummy_tracer_flags = {
73 .val = 0,
74 .opts = dummy_tracer_opt
75 };
76
77 static int dummy_set_flag(u32 old_flags, u32 bit, int set)
78 {
79 return 0;
80 }
81
82 /*
83 * To prevent the comm cache from being overwritten when no
84 * tracing is active, only save the comm when a trace event
85 * occurred.
86 */
87 static DEFINE_PER_CPU(bool, trace_cmdline_save);
88
89 /*
90 * When a reader is waiting for data, then this variable is
91 * set to true.
92 */
93 static bool trace_wakeup_needed;
94
95 static struct irq_work trace_work_wakeup;
96
97 /*
98 * Kill all tracing for good (never come back).
99 * It is initialized to 1 but will turn to zero if the initialization
100 * of the tracer is successful. But that is the only place that sets
101 * this back to zero.
102 */
103 static int tracing_disabled = 1;
104
105 DEFINE_PER_CPU(int, ftrace_cpu_disabled);
106
107 cpumask_var_t __read_mostly tracing_buffer_mask;
108
109 /*
110 * ftrace_dump_on_oops - variable to dump ftrace buffer on oops
111 *
112 * If there is an oops (or kernel panic) and the ftrace_dump_on_oops
113 * is set, then ftrace_dump is called. This will output the contents
114 * of the ftrace buffers to the console. This is very useful for
115 * capturing traces that lead to crashes and outputing it to a
116 * serial console.
117 *
118 * It is default off, but you can enable it with either specifying
119 * "ftrace_dump_on_oops" in the kernel command line, or setting
120 * /proc/sys/kernel/ftrace_dump_on_oops
121 * Set 1 if you want to dump buffers of all CPUs
122 * Set 2 if you want to dump the buffer of the CPU that triggered oops
123 */
124
125 enum ftrace_dump_mode ftrace_dump_on_oops;
126
127 static int tracing_set_tracer(const char *buf);
128
129 #define MAX_TRACER_SIZE 100
130 static char bootup_tracer_buf[MAX_TRACER_SIZE] __initdata;
131 static char *default_bootup_tracer;
132
133 static int __init set_cmdline_ftrace(char *str)
134 {
135 strncpy(bootup_tracer_buf, str, MAX_TRACER_SIZE);
136 default_bootup_tracer = bootup_tracer_buf;
137 /* We are using ftrace early, expand it */
138 ring_buffer_expanded = 1;
139 return 1;
140 }
141 __setup("ftrace=", set_cmdline_ftrace);
142
143 static int __init set_ftrace_dump_on_oops(char *str)
144 {
145 if (*str++ != '=' || !*str) {
146 ftrace_dump_on_oops = DUMP_ALL;
147 return 1;
148 }
149
150 if (!strcmp("orig_cpu", str)) {
151 ftrace_dump_on_oops = DUMP_ORIG;
152 return 1;
153 }
154
155 return 0;
156 }
157 __setup("ftrace_dump_on_oops", set_ftrace_dump_on_oops);
158
159
160 static char trace_boot_options_buf[MAX_TRACER_SIZE] __initdata;
161 static char *trace_boot_options __initdata;
162
163 static int __init set_trace_boot_options(char *str)
164 {
165 strncpy(trace_boot_options_buf, str, MAX_TRACER_SIZE);
166 trace_boot_options = trace_boot_options_buf;
167 return 0;
168 }
169 __setup("trace_options=", set_trace_boot_options);
170
171 unsigned long long ns2usecs(cycle_t nsec)
172 {
173 nsec += 500;
174 do_div(nsec, 1000);
175 return nsec;
176 }
177
178 /*
179 * The global_trace is the descriptor that holds the tracing
180 * buffers for the live tracing. For each CPU, it contains
181 * a link list of pages that will store trace entries. The
182 * page descriptor of the pages in the memory is used to hold
183 * the link list by linking the lru item in the page descriptor
184 * to each of the pages in the buffer per CPU.
185 *
186 * For each active CPU there is a data field that holds the
187 * pages for the buffer for that CPU. Each CPU has the same number
188 * of pages allocated for its buffer.
189 */
190 static struct trace_array global_trace;
191
192 static DEFINE_PER_CPU(struct trace_array_cpu, global_trace_cpu);
193
194 int filter_current_check_discard(struct ring_buffer *buffer,
195 struct ftrace_event_call *call, void *rec,
196 struct ring_buffer_event *event)
197 {
198 return filter_check_discard(call, rec, buffer, event);
199 }
200 EXPORT_SYMBOL_GPL(filter_current_check_discard);
201
202 cycle_t ftrace_now(int cpu)
203 {
204 u64 ts;
205
206 /* Early boot up does not have a buffer yet */
207 if (!global_trace.buffer)
208 return trace_clock_local();
209
210 ts = ring_buffer_time_stamp(global_trace.buffer, cpu);
211 ring_buffer_normalize_time_stamp(global_trace.buffer, cpu, &ts);
212
213 return ts;
214 }
215
216 /*
217 * The max_tr is used to snapshot the global_trace when a maximum
218 * latency is reached. Some tracers will use this to store a maximum
219 * trace while it continues examining live traces.
220 *
221 * The buffers for the max_tr are set up the same as the global_trace.
222 * When a snapshot is taken, the link list of the max_tr is swapped
223 * with the link list of the global_trace and the buffers are reset for
224 * the global_trace so the tracing can continue.
225 */
226 static struct trace_array max_tr;
227
228 static DEFINE_PER_CPU(struct trace_array_cpu, max_tr_data);
229
230 int tracing_is_enabled(void)
231 {
232 return tracing_is_on();
233 }
234
235 /*
236 * trace_buf_size is the size in bytes that is allocated
237 * for a buffer. Note, the number of bytes is always rounded
238 * to page size.
239 *
240 * This number is purposely set to a low number of 16384.
241 * If the dump on oops happens, it will be much appreciated
242 * to not have to wait for all that output. Anyway this can be
243 * boot time and run time configurable.
244 */
245 #define TRACE_BUF_SIZE_DEFAULT 1441792UL /* 16384 * 88 (sizeof(entry)) */
246
247 static unsigned long trace_buf_size = TRACE_BUF_SIZE_DEFAULT;
248
249 /* trace_types holds a link list of available tracers. */
250 static struct tracer *trace_types __read_mostly;
251
252 /* current_trace points to the tracer that is currently active */
253 static struct tracer *current_trace __read_mostly = &nop_trace;
254
255 /*
256 * trace_types_lock is used to protect the trace_types list.
257 */
258 static DEFINE_MUTEX(trace_types_lock);
259
260 /*
261 * serialize the access of the ring buffer
262 *
263 * ring buffer serializes readers, but it is low level protection.
264 * The validity of the events (which returns by ring_buffer_peek() ..etc)
265 * are not protected by ring buffer.
266 *
267 * The content of events may become garbage if we allow other process consumes
268 * these events concurrently:
269 * A) the page of the consumed events may become a normal page
270 * (not reader page) in ring buffer, and this page will be rewrited
271 * by events producer.
272 * B) The page of the consumed events may become a page for splice_read,
273 * and this page will be returned to system.
274 *
275 * These primitives allow multi process access to different cpu ring buffer
276 * concurrently.
277 *
278 * These primitives don't distinguish read-only and read-consume access.
279 * Multi read-only access are also serialized.
280 */
281
282 #ifdef CONFIG_SMP
283 static DECLARE_RWSEM(all_cpu_access_lock);
284 static DEFINE_PER_CPU(struct mutex, cpu_access_lock);
285
286 static inline void trace_access_lock(int cpu)
287 {
288 if (cpu == TRACE_PIPE_ALL_CPU) {
289 /* gain it for accessing the whole ring buffer. */
290 down_write(&all_cpu_access_lock);
291 } else {
292 /* gain it for accessing a cpu ring buffer. */
293
294 /* Firstly block other trace_access_lock(TRACE_PIPE_ALL_CPU). */
295 down_read(&all_cpu_access_lock);
296
297 /* Secondly block other access to this @cpu ring buffer. */
298 mutex_lock(&per_cpu(cpu_access_lock, cpu));
299 }
300 }
301
302 static inline void trace_access_unlock(int cpu)
303 {
304 if (cpu == TRACE_PIPE_ALL_CPU) {
305 up_write(&all_cpu_access_lock);
306 } else {
307 mutex_unlock(&per_cpu(cpu_access_lock, cpu));
308 up_read(&all_cpu_access_lock);
309 }
310 }
311
312 static inline void trace_access_lock_init(void)
313 {
314 int cpu;
315
316 for_each_possible_cpu(cpu)
317 mutex_init(&per_cpu(cpu_access_lock, cpu));
318 }
319
320 #else
321
322 static DEFINE_MUTEX(access_lock);
323
324 static inline void trace_access_lock(int cpu)
325 {
326 (void)cpu;
327 mutex_lock(&access_lock);
328 }
329
330 static inline void trace_access_unlock(int cpu)
331 {
332 (void)cpu;
333 mutex_unlock(&access_lock);
334 }
335
336 static inline void trace_access_lock_init(void)
337 {
338 }
339
340 #endif
341
342 /* trace_wait is a waitqueue for tasks blocked on trace_poll */
343 static DECLARE_WAIT_QUEUE_HEAD(trace_wait);
344
345 /* trace_flags holds trace_options default values */
346 unsigned long trace_flags = TRACE_ITER_PRINT_PARENT | TRACE_ITER_PRINTK |
347 TRACE_ITER_ANNOTATE | TRACE_ITER_CONTEXT_INFO | TRACE_ITER_SLEEP_TIME |
348 TRACE_ITER_GRAPH_TIME | TRACE_ITER_RECORD_CMD | TRACE_ITER_OVERWRITE |
349 TRACE_ITER_IRQ_INFO | TRACE_ITER_MARKERS;
350
351 static int trace_stop_count;
352 static DEFINE_RAW_SPINLOCK(tracing_start_lock);
353
354 /**
355 * trace_wake_up - wake up tasks waiting for trace input
356 *
357 * Schedules a delayed work to wake up any task that is blocked on the
358 * trace_wait queue. These is used with trace_poll for tasks polling the
359 * trace.
360 */
361 static void trace_wake_up(struct irq_work *work)
362 {
363 wake_up_all(&trace_wait);
364
365 }
366
367 /**
368 * tracing_on - enable tracing buffers
369 *
370 * This function enables tracing buffers that may have been
371 * disabled with tracing_off.
372 */
373 void tracing_on(void)
374 {
375 if (global_trace.buffer)
376 ring_buffer_record_on(global_trace.buffer);
377 /*
378 * This flag is only looked at when buffers haven't been
379 * allocated yet. We don't really care about the race
380 * between setting this flag and actually turning
381 * on the buffer.
382 */
383 global_trace.buffer_disabled = 0;
384 }
385 EXPORT_SYMBOL_GPL(tracing_on);
386
387 /**
388 * tracing_off - turn off tracing buffers
389 *
390 * This function stops the tracing buffers from recording data.
391 * It does not disable any overhead the tracers themselves may
392 * be causing. This function simply causes all recording to
393 * the ring buffers to fail.
394 */
395 void tracing_off(void)
396 {
397 if (global_trace.buffer)
398 ring_buffer_record_off(global_trace.buffer);
399 /*
400 * This flag is only looked at when buffers haven't been
401 * allocated yet. We don't really care about the race
402 * between setting this flag and actually turning
403 * on the buffer.
404 */
405 global_trace.buffer_disabled = 1;
406 }
407 EXPORT_SYMBOL_GPL(tracing_off);
408
409 /**
410 * tracing_is_on - show state of ring buffers enabled
411 */
412 int tracing_is_on(void)
413 {
414 if (global_trace.buffer)
415 return ring_buffer_record_is_on(global_trace.buffer);
416 return !global_trace.buffer_disabled;
417 }
418 EXPORT_SYMBOL_GPL(tracing_is_on);
419
420 static int __init set_buf_size(char *str)
421 {
422 unsigned long buf_size;
423
424 if (!str)
425 return 0;
426 buf_size = memparse(str, &str);
427 /* nr_entries can not be zero */
428 if (buf_size == 0)
429 return 0;
430 trace_buf_size = buf_size;
431 return 1;
432 }
433 __setup("trace_buf_size=", set_buf_size);
434
435 static int __init set_tracing_thresh(char *str)
436 {
437 unsigned long threshold;
438 int ret;
439
440 if (!str)
441 return 0;
442 ret = kstrtoul(str, 0, &threshold);
443 if (ret < 0)
444 return 0;
445 tracing_thresh = threshold * 1000;
446 return 1;
447 }
448 __setup("tracing_thresh=", set_tracing_thresh);
449
450 unsigned long nsecs_to_usecs(unsigned long nsecs)
451 {
452 return nsecs / 1000;
453 }
454
455 /* These must match the bit postions in trace_iterator_flags */
456 static const char *trace_options[] = {
457 "print-parent",
458 "sym-offset",
459 "sym-addr",
460 "verbose",
461 "raw",
462 "hex",
463 "bin",
464 "block",
465 "stacktrace",
466 "trace_printk",
467 "ftrace_preempt",
468 "branch",
469 "annotate",
470 "userstacktrace",
471 "sym-userobj",
472 "printk-msg-only",
473 "context-info",
474 "latency-format",
475 "sleep-time",
476 "graph-time",
477 "record-cmd",
478 "overwrite",
479 "disable_on_free",
480 "irq-info",
481 "markers",
482 NULL
483 };
484
485 static struct {
486 u64 (*func)(void);
487 const char *name;
488 int in_ns; /* is this clock in nanoseconds? */
489 } trace_clocks[] = {
490 { trace_clock_local, "local", 1 },
491 { trace_clock_global, "global", 1 },
492 { trace_clock_counter, "counter", 0 },
493 ARCH_TRACE_CLOCKS
494 };
495
496 int trace_clock_id;
497
498 /*
499 * trace_parser_get_init - gets the buffer for trace parser
500 */
501 int trace_parser_get_init(struct trace_parser *parser, int size)
502 {
503 memset(parser, 0, sizeof(*parser));
504
505 parser->buffer = kmalloc(size, GFP_KERNEL);
506 if (!parser->buffer)
507 return 1;
508
509 parser->size = size;
510 return 0;
511 }
512
513 /*
514 * trace_parser_put - frees the buffer for trace parser
515 */
516 void trace_parser_put(struct trace_parser *parser)
517 {
518 kfree(parser->buffer);
519 }
520
521 /*
522 * trace_get_user - reads the user input string separated by space
523 * (matched by isspace(ch))
524 *
525 * For each string found the 'struct trace_parser' is updated,
526 * and the function returns.
527 *
528 * Returns number of bytes read.
529 *
530 * See kernel/trace/trace.h for 'struct trace_parser' details.
531 */
532 int trace_get_user(struct trace_parser *parser, const char __user *ubuf,
533 size_t cnt, loff_t *ppos)
534 {
535 char ch;
536 size_t read = 0;
537 ssize_t ret;
538
539 if (!*ppos)
540 trace_parser_clear(parser);
541
542 ret = get_user(ch, ubuf++);
543 if (ret)
544 goto out;
545
546 read++;
547 cnt--;
548
549 /*
550 * The parser is not finished with the last write,
551 * continue reading the user input without skipping spaces.
552 */
553 if (!parser->cont) {
554 /* skip white space */
555 while (cnt && isspace(ch)) {
556 ret = get_user(ch, ubuf++);
557 if (ret)
558 goto out;
559 read++;
560 cnt--;
561 }
562
563 /* only spaces were written */
564 if (isspace(ch)) {
565 *ppos += read;
566 ret = read;
567 goto out;
568 }
569
570 parser->idx = 0;
571 }
572
573 /* read the non-space input */
574 while (cnt && !isspace(ch)) {
575 if (parser->idx < parser->size - 1)
576 parser->buffer[parser->idx++] = ch;
577 else {
578 ret = -EINVAL;
579 goto out;
580 }
581 ret = get_user(ch, ubuf++);
582 if (ret)
583 goto out;
584 read++;
585 cnt--;
586 }
587
588 /* We either got finished input or we have to wait for another call. */
589 if (isspace(ch)) {
590 parser->buffer[parser->idx] = 0;
591 parser->cont = false;
592 } else {
593 parser->cont = true;
594 parser->buffer[parser->idx++] = ch;
595 }
596
597 *ppos += read;
598 ret = read;
599
600 out:
601 return ret;
602 }
603
604 ssize_t trace_seq_to_user(struct trace_seq *s, char __user *ubuf, size_t cnt)
605 {
606 int len;
607 int ret;
608
609 if (!cnt)
610 return 0;
611
612 if (s->len <= s->readpos)
613 return -EBUSY;
614
615 len = s->len - s->readpos;
616 if (cnt > len)
617 cnt = len;
618 ret = copy_to_user(ubuf, s->buffer + s->readpos, cnt);
619 if (ret == cnt)
620 return -EFAULT;
621
622 cnt -= ret;
623
624 s->readpos += cnt;
625 return cnt;
626 }
627
628 static ssize_t trace_seq_to_buffer(struct trace_seq *s, void *buf, size_t cnt)
629 {
630 int len;
631
632 if (s->len <= s->readpos)
633 return -EBUSY;
634
635 len = s->len - s->readpos;
636 if (cnt > len)
637 cnt = len;
638 memcpy(buf, s->buffer + s->readpos, cnt);
639
640 s->readpos += cnt;
641 return cnt;
642 }
643
644 /*
645 * ftrace_max_lock is used to protect the swapping of buffers
646 * when taking a max snapshot. The buffers themselves are
647 * protected by per_cpu spinlocks. But the action of the swap
648 * needs its own lock.
649 *
650 * This is defined as a arch_spinlock_t in order to help
651 * with performance when lockdep debugging is enabled.
652 *
653 * It is also used in other places outside the update_max_tr
654 * so it needs to be defined outside of the
655 * CONFIG_TRACER_MAX_TRACE.
656 */
657 static arch_spinlock_t ftrace_max_lock =
658 (arch_spinlock_t)__ARCH_SPIN_LOCK_UNLOCKED;
659
660 unsigned long __read_mostly tracing_thresh;
661
662 #ifdef CONFIG_TRACER_MAX_TRACE
663 unsigned long __read_mostly tracing_max_latency;
664
665 /*
666 * Copy the new maximum trace into the separate maximum-trace
667 * structure. (this way the maximum trace is permanently saved,
668 * for later retrieval via /sys/kernel/debug/tracing/latency_trace)
669 */
670 static void
671 __update_max_tr(struct trace_array *tr, struct task_struct *tsk, int cpu)
672 {
673 struct trace_array_cpu *data = tr->data[cpu];
674 struct trace_array_cpu *max_data;
675
676 max_tr.cpu = cpu;
677 max_tr.time_start = data->preempt_timestamp;
678
679 max_data = max_tr.data[cpu];
680 max_data->saved_latency = tracing_max_latency;
681 max_data->critical_start = data->critical_start;
682 max_data->critical_end = data->critical_end;
683
684 memcpy(max_data->comm, tsk->comm, TASK_COMM_LEN);
685 max_data->pid = tsk->pid;
686 max_data->uid = task_uid(tsk);
687 max_data->nice = tsk->static_prio - 20 - MAX_RT_PRIO;
688 max_data->policy = tsk->policy;
689 max_data->rt_priority = tsk->rt_priority;
690
691 /* record this tasks comm */
692 tracing_record_cmdline(tsk);
693 }
694
695 /**
696 * update_max_tr - snapshot all trace buffers from global_trace to max_tr
697 * @tr: tracer
698 * @tsk: the task with the latency
699 * @cpu: The cpu that initiated the trace.
700 *
701 * Flip the buffers between the @tr and the max_tr and record information
702 * about which task was the cause of this latency.
703 */
704 void
705 update_max_tr(struct trace_array *tr, struct task_struct *tsk, int cpu)
706 {
707 struct ring_buffer *buf = tr->buffer;
708
709 if (trace_stop_count)
710 return;
711
712 WARN_ON_ONCE(!irqs_disabled());
713
714 if (!current_trace->allocated_snapshot) {
715 /* Only the nop tracer should hit this when disabling */
716 WARN_ON_ONCE(current_trace != &nop_trace);
717 return;
718 }
719
720 arch_spin_lock(&ftrace_max_lock);
721
722 tr->buffer = max_tr.buffer;
723 max_tr.buffer = buf;
724
725 __update_max_tr(tr, tsk, cpu);
726 arch_spin_unlock(&ftrace_max_lock);
727 }
728
729 /**
730 * update_max_tr_single - only copy one trace over, and reset the rest
731 * @tr - tracer
732 * @tsk - task with the latency
733 * @cpu - the cpu of the buffer to copy.
734 *
735 * Flip the trace of a single CPU buffer between the @tr and the max_tr.
736 */
737 void
738 update_max_tr_single(struct trace_array *tr, struct task_struct *tsk, int cpu)
739 {
740 int ret;
741
742 if (trace_stop_count)
743 return;
744
745 WARN_ON_ONCE(!irqs_disabled());
746 if (WARN_ON_ONCE(!current_trace->allocated_snapshot))
747 return;
748
749 arch_spin_lock(&ftrace_max_lock);
750
751 ret = ring_buffer_swap_cpu(max_tr.buffer, tr->buffer, cpu);
752
753 if (ret == -EBUSY) {
754 /*
755 * We failed to swap the buffer due to a commit taking
756 * place on this CPU. We fail to record, but we reset
757 * the max trace buffer (no one writes directly to it)
758 * and flag that it failed.
759 */
760 trace_array_printk(&max_tr, _THIS_IP_,
761 "Failed to swap buffers due to commit in progress\n");
762 }
763
764 WARN_ON_ONCE(ret && ret != -EAGAIN && ret != -EBUSY);
765
766 __update_max_tr(tr, tsk, cpu);
767 arch_spin_unlock(&ftrace_max_lock);
768 }
769 #endif /* CONFIG_TRACER_MAX_TRACE */
770
771 static void default_wait_pipe(struct trace_iterator *iter)
772 {
773 DEFINE_WAIT(wait);
774
775 prepare_to_wait(&trace_wait, &wait, TASK_INTERRUPTIBLE);
776
777 /*
778 * The events can happen in critical sections where
779 * checking a work queue can cause deadlocks.
780 * After adding a task to the queue, this flag is set
781 * only to notify events to try to wake up the queue
782 * using irq_work.
783 *
784 * We don't clear it even if the buffer is no longer
785 * empty. The flag only causes the next event to run
786 * irq_work to do the work queue wake up. The worse
787 * that can happen if we race with !trace_empty() is that
788 * an event will cause an irq_work to try to wake up
789 * an empty queue.
790 *
791 * There's no reason to protect this flag either, as
792 * the work queue and irq_work logic will do the necessary
793 * synchronization for the wake ups. The only thing
794 * that is necessary is that the wake up happens after
795 * a task has been queued. It's OK for spurious wake ups.
796 */
797 trace_wakeup_needed = true;
798
799 if (trace_empty(iter))
800 schedule();
801
802 finish_wait(&trace_wait, &wait);
803 }
804
805 /**
806 * register_tracer - register a tracer with the ftrace system.
807 * @type - the plugin for the tracer
808 *
809 * Register a new plugin tracer.
810 */
811 int register_tracer(struct tracer *type)
812 {
813 struct tracer *t;
814 int ret = 0;
815
816 if (!type->name) {
817 pr_info("Tracer must have a name\n");
818 return -1;
819 }
820
821 if (strlen(type->name) >= MAX_TRACER_SIZE) {
822 pr_info("Tracer has a name longer than %d\n", MAX_TRACER_SIZE);
823 return -1;
824 }
825
826 mutex_lock(&trace_types_lock);
827
828 tracing_selftest_running = true;
829
830 for (t = trace_types; t; t = t->next) {
831 if (strcmp(type->name, t->name) == 0) {
832 /* already found */
833 pr_info("Tracer %s already registered\n",
834 type->name);
835 ret = -1;
836 goto out;
837 }
838 }
839
840 if (!type->set_flag)
841 type->set_flag = &dummy_set_flag;
842 if (!type->flags)
843 type->flags = &dummy_tracer_flags;
844 else
845 if (!type->flags->opts)
846 type->flags->opts = dummy_tracer_opt;
847 if (!type->wait_pipe)
848 type->wait_pipe = default_wait_pipe;
849
850
851 #ifdef CONFIG_FTRACE_STARTUP_TEST
852 if (type->selftest && !tracing_selftest_disabled) {
853 struct tracer *saved_tracer = current_trace;
854 struct trace_array *tr = &global_trace;
855
856 /*
857 * Run a selftest on this tracer.
858 * Here we reset the trace buffer, and set the current
859 * tracer to be this tracer. The tracer can then run some
860 * internal tracing to verify that everything is in order.
861 * If we fail, we do not register this tracer.
862 */
863 tracing_reset_online_cpus(tr);
864
865 current_trace = type;
866
867 if (type->use_max_tr) {
868 /* If we expanded the buffers, make sure the max is expanded too */
869 if (ring_buffer_expanded)
870 ring_buffer_resize(max_tr.buffer, trace_buf_size,
871 RING_BUFFER_ALL_CPUS);
872 type->allocated_snapshot = true;
873 }
874
875 /* the test is responsible for initializing and enabling */
876 pr_info("Testing tracer %s: ", type->name);
877 ret = type->selftest(type, tr);
878 /* the test is responsible for resetting too */
879 current_trace = saved_tracer;
880 if (ret) {
881 printk(KERN_CONT "FAILED!\n");
882 /* Add the warning after printing 'FAILED' */
883 WARN_ON(1);
884 goto out;
885 }
886 /* Only reset on passing, to avoid touching corrupted buffers */
887 tracing_reset_online_cpus(tr);
888
889 if (type->use_max_tr) {
890 type->allocated_snapshot = false;
891
892 /* Shrink the max buffer again */
893 if (ring_buffer_expanded)
894 ring_buffer_resize(max_tr.buffer, 1,
895 RING_BUFFER_ALL_CPUS);
896 }
897
898 printk(KERN_CONT "PASSED\n");
899 }
900 #endif
901
902 type->next = trace_types;
903 trace_types = type;
904
905 out:
906 tracing_selftest_running = false;
907 mutex_unlock(&trace_types_lock);
908
909 if (ret || !default_bootup_tracer)
910 goto out_unlock;
911
912 if (strncmp(default_bootup_tracer, type->name, MAX_TRACER_SIZE))
913 goto out_unlock;
914
915 printk(KERN_INFO "Starting tracer '%s'\n", type->name);
916 /* Do we want this tracer to start on bootup? */
917 tracing_set_tracer(type->name);
918 default_bootup_tracer = NULL;
919 /* disable other selftests, since this will break it. */
920 tracing_selftest_disabled = 1;
921 #ifdef CONFIG_FTRACE_STARTUP_TEST
922 printk(KERN_INFO "Disabling FTRACE selftests due to running tracer '%s'\n",
923 type->name);
924 #endif
925
926 out_unlock:
927 return ret;
928 }
929
930 void tracing_reset(struct trace_array *tr, int cpu)
931 {
932 struct ring_buffer *buffer = tr->buffer;
933
934 if (!buffer)
935 return;
936
937 ring_buffer_record_disable(buffer);
938
939 /* Make sure all commits have finished */
940 synchronize_sched();
941 ring_buffer_reset_cpu(buffer, cpu);
942
943 ring_buffer_record_enable(buffer);
944 }
945
946 void tracing_reset_online_cpus(struct trace_array *tr)
947 {
948 struct ring_buffer *buffer = tr->buffer;
949 int cpu;
950
951 if (!buffer)
952 return;
953
954 ring_buffer_record_disable(buffer);
955
956 /* Make sure all commits have finished */
957 synchronize_sched();
958
959 tr->time_start = ftrace_now(tr->cpu);
960
961 for_each_online_cpu(cpu)
962 ring_buffer_reset_cpu(buffer, cpu);
963
964 ring_buffer_record_enable(buffer);
965 }
966
967 void tracing_reset_current(int cpu)
968 {
969 tracing_reset(&global_trace, cpu);
970 }
971
972 void tracing_reset_current_online_cpus(void)
973 {
974 tracing_reset_online_cpus(&global_trace);
975 }
976
977 #define SAVED_CMDLINES 128
978 #define NO_CMDLINE_MAP UINT_MAX
979 static unsigned map_pid_to_cmdline[PID_MAX_DEFAULT+1];
980 static unsigned map_cmdline_to_pid[SAVED_CMDLINES];
981 static char saved_cmdlines[SAVED_CMDLINES][TASK_COMM_LEN];
982 static int cmdline_idx;
983 static arch_spinlock_t trace_cmdline_lock = __ARCH_SPIN_LOCK_UNLOCKED;
984
985 /* temporary disable recording */
986 static atomic_t trace_record_cmdline_disabled __read_mostly;
987
988 static void trace_init_cmdlines(void)
989 {
990 memset(&map_pid_to_cmdline, NO_CMDLINE_MAP, sizeof(map_pid_to_cmdline));
991 memset(&map_cmdline_to_pid, NO_CMDLINE_MAP, sizeof(map_cmdline_to_pid));
992 cmdline_idx = 0;
993 }
994
995 int is_tracing_stopped(void)
996 {
997 return trace_stop_count;
998 }
999
1000 /**
1001 * ftrace_off_permanent - disable all ftrace code permanently
1002 *
1003 * This should only be called when a serious anomally has
1004 * been detected. This will turn off the function tracing,
1005 * ring buffers, and other tracing utilites. It takes no
1006 * locks and can be called from any context.
1007 */
1008 void ftrace_off_permanent(void)
1009 {
1010 tracing_disabled = 1;
1011 ftrace_stop();
1012 tracing_off_permanent();
1013 }
1014
1015 /**
1016 * tracing_start - quick start of the tracer
1017 *
1018 * If tracing is enabled but was stopped by tracing_stop,
1019 * this will start the tracer back up.
1020 */
1021 void tracing_start(void)
1022 {
1023 struct ring_buffer *buffer;
1024 unsigned long flags;
1025
1026 if (tracing_disabled)
1027 return;
1028
1029 raw_spin_lock_irqsave(&tracing_start_lock, flags);
1030 if (--trace_stop_count) {
1031 if (trace_stop_count < 0) {
1032 /* Someone screwed up their debugging */
1033 WARN_ON_ONCE(1);
1034 trace_stop_count = 0;
1035 }
1036 goto out;
1037 }
1038
1039 /* Prevent the buffers from switching */
1040 arch_spin_lock(&ftrace_max_lock);
1041
1042 buffer = global_trace.buffer;
1043 if (buffer)
1044 ring_buffer_record_enable(buffer);
1045
1046 buffer = max_tr.buffer;
1047 if (buffer)
1048 ring_buffer_record_enable(buffer);
1049
1050 arch_spin_unlock(&ftrace_max_lock);
1051
1052 ftrace_start();
1053 out:
1054 raw_spin_unlock_irqrestore(&tracing_start_lock, flags);
1055 }
1056
1057 /**
1058 * tracing_stop - quick stop of the tracer
1059 *
1060 * Light weight way to stop tracing. Use in conjunction with
1061 * tracing_start.
1062 */
1063 void tracing_stop(void)
1064 {
1065 struct ring_buffer *buffer;
1066 unsigned long flags;
1067
1068 ftrace_stop();
1069 raw_spin_lock_irqsave(&tracing_start_lock, flags);
1070 if (trace_stop_count++)
1071 goto out;
1072
1073 /* Prevent the buffers from switching */
1074 arch_spin_lock(&ftrace_max_lock);
1075
1076 buffer = global_trace.buffer;
1077 if (buffer)
1078 ring_buffer_record_disable(buffer);
1079
1080 buffer = max_tr.buffer;
1081 if (buffer)
1082 ring_buffer_record_disable(buffer);
1083
1084 arch_spin_unlock(&ftrace_max_lock);
1085
1086 out:
1087 raw_spin_unlock_irqrestore(&tracing_start_lock, flags);
1088 }
1089
1090 void trace_stop_cmdline_recording(void);
1091
1092 static void trace_save_cmdline(struct task_struct *tsk)
1093 {
1094 unsigned pid, idx;
1095
1096 if (!tsk->pid || unlikely(tsk->pid > PID_MAX_DEFAULT))
1097 return;
1098
1099 /*
1100 * It's not the end of the world if we don't get
1101 * the lock, but we also don't want to spin
1102 * nor do we want to disable interrupts,
1103 * so if we miss here, then better luck next time.
1104 */
1105 if (!arch_spin_trylock(&trace_cmdline_lock))
1106 return;
1107
1108 idx = map_pid_to_cmdline[tsk->pid];
1109 if (idx == NO_CMDLINE_MAP) {
1110 idx = (cmdline_idx + 1) % SAVED_CMDLINES;
1111
1112 /*
1113 * Check whether the cmdline buffer at idx has a pid
1114 * mapped. We are going to overwrite that entry so we
1115 * need to clear the map_pid_to_cmdline. Otherwise we
1116 * would read the new comm for the old pid.
1117 */
1118 pid = map_cmdline_to_pid[idx];
1119 if (pid != NO_CMDLINE_MAP)
1120 map_pid_to_cmdline[pid] = NO_CMDLINE_MAP;
1121
1122 map_cmdline_to_pid[idx] = tsk->pid;
1123 map_pid_to_cmdline[tsk->pid] = idx;
1124
1125 cmdline_idx = idx;
1126 }
1127
1128 memcpy(&saved_cmdlines[idx], tsk->comm, TASK_COMM_LEN);
1129
1130 arch_spin_unlock(&trace_cmdline_lock);
1131 }
1132
1133 void trace_find_cmdline(int pid, char comm[])
1134 {
1135 unsigned map;
1136
1137 if (!pid) {
1138 strcpy(comm, "<idle>");
1139 return;
1140 }
1141
1142 if (WARN_ON_ONCE(pid < 0)) {
1143 strcpy(comm, "<XXX>");
1144 return;
1145 }
1146
1147 if (pid > PID_MAX_DEFAULT) {
1148 strcpy(comm, "<...>");
1149 return;
1150 }
1151
1152 preempt_disable();
1153 arch_spin_lock(&trace_cmdline_lock);
1154 map = map_pid_to_cmdline[pid];
1155 if (map != NO_CMDLINE_MAP)
1156 strcpy(comm, saved_cmdlines[map]);
1157 else
1158 strcpy(comm, "<...>");
1159
1160 arch_spin_unlock(&trace_cmdline_lock);
1161 preempt_enable();
1162 }
1163
1164 void tracing_record_cmdline(struct task_struct *tsk)
1165 {
1166 if (atomic_read(&trace_record_cmdline_disabled) || !tracing_is_on())
1167 return;
1168
1169 if (!__this_cpu_read(trace_cmdline_save))
1170 return;
1171
1172 __this_cpu_write(trace_cmdline_save, false);
1173
1174 trace_save_cmdline(tsk);
1175 }
1176
1177 void
1178 tracing_generic_entry_update(struct trace_entry *entry, unsigned long flags,
1179 int pc)
1180 {
1181 struct task_struct *tsk = current;
1182
1183 entry->preempt_count = pc & 0xff;
1184 entry->pid = (tsk) ? tsk->pid : 0;
1185 entry->flags =
1186 #ifdef CONFIG_TRACE_IRQFLAGS_SUPPORT
1187 (irqs_disabled_flags(flags) ? TRACE_FLAG_IRQS_OFF : 0) |
1188 #else
1189 TRACE_FLAG_IRQS_NOSUPPORT |
1190 #endif
1191 ((pc & HARDIRQ_MASK) ? TRACE_FLAG_HARDIRQ : 0) |
1192 ((pc & SOFTIRQ_MASK) ? TRACE_FLAG_SOFTIRQ : 0) |
1193 (need_resched() ? TRACE_FLAG_NEED_RESCHED : 0);
1194 }
1195 EXPORT_SYMBOL_GPL(tracing_generic_entry_update);
1196
1197 struct ring_buffer_event *
1198 trace_buffer_lock_reserve(struct ring_buffer *buffer,
1199 int type,
1200 unsigned long len,
1201 unsigned long flags, int pc)
1202 {
1203 struct ring_buffer_event *event;
1204
1205 event = ring_buffer_lock_reserve(buffer, len);
1206 if (event != NULL) {
1207 struct trace_entry *ent = ring_buffer_event_data(event);
1208
1209 tracing_generic_entry_update(ent, flags, pc);
1210 ent->type = type;
1211 }
1212
1213 return event;
1214 }
1215
1216 void
1217 __buffer_unlock_commit(struct ring_buffer *buffer, struct ring_buffer_event *event)
1218 {
1219 __this_cpu_write(trace_cmdline_save, true);
1220 if (trace_wakeup_needed) {
1221 trace_wakeup_needed = false;
1222 /* irq_work_queue() supplies it's own memory barriers */
1223 irq_work_queue(&trace_work_wakeup);
1224 }
1225 ring_buffer_unlock_commit(buffer, event);
1226 }
1227
1228 static inline void
1229 __trace_buffer_unlock_commit(struct ring_buffer *buffer,
1230 struct ring_buffer_event *event,
1231 unsigned long flags, int pc)
1232 {
1233 __buffer_unlock_commit(buffer, event);
1234
1235 ftrace_trace_stack(buffer, flags, 6, pc);
1236 ftrace_trace_userstack(buffer, flags, pc);
1237 }
1238
1239 void trace_buffer_unlock_commit(struct ring_buffer *buffer,
1240 struct ring_buffer_event *event,
1241 unsigned long flags, int pc)
1242 {
1243 __trace_buffer_unlock_commit(buffer, event, flags, pc);
1244 }
1245 EXPORT_SYMBOL_GPL(trace_buffer_unlock_commit);
1246
1247 struct ring_buffer_event *
1248 trace_current_buffer_lock_reserve(struct ring_buffer **current_rb,
1249 int type, unsigned long len,
1250 unsigned long flags, int pc)
1251 {
1252 *current_rb = global_trace.buffer;
1253 return trace_buffer_lock_reserve(*current_rb,
1254 type, len, flags, pc);
1255 }
1256 EXPORT_SYMBOL_GPL(trace_current_buffer_lock_reserve);
1257
1258 void trace_current_buffer_unlock_commit(struct ring_buffer *buffer,
1259 struct ring_buffer_event *event,
1260 unsigned long flags, int pc)
1261 {
1262 __trace_buffer_unlock_commit(buffer, event, flags, pc);
1263 }
1264 EXPORT_SYMBOL_GPL(trace_current_buffer_unlock_commit);
1265
1266 void trace_buffer_unlock_commit_regs(struct ring_buffer *buffer,
1267 struct ring_buffer_event *event,
1268 unsigned long flags, int pc,
1269 struct pt_regs *regs)
1270 {
1271 __buffer_unlock_commit(buffer, event);
1272
1273 ftrace_trace_stack_regs(buffer, flags, 0, pc, regs);
1274 ftrace_trace_userstack(buffer, flags, pc);
1275 }
1276 EXPORT_SYMBOL_GPL(trace_buffer_unlock_commit_regs);
1277
1278 void trace_current_buffer_discard_commit(struct ring_buffer *buffer,
1279 struct ring_buffer_event *event)
1280 {
1281 ring_buffer_discard_commit(buffer, event);
1282 }
1283 EXPORT_SYMBOL_GPL(trace_current_buffer_discard_commit);
1284
1285 void
1286 trace_function(struct trace_array *tr,
1287 unsigned long ip, unsigned long parent_ip, unsigned long flags,
1288 int pc)
1289 {
1290 struct ftrace_event_call *call = &event_function;
1291 struct ring_buffer *buffer = tr->buffer;
1292 struct ring_buffer_event *event;
1293 struct ftrace_entry *entry;
1294
1295 /* If we are reading the ring buffer, don't trace */
1296 if (unlikely(__this_cpu_read(ftrace_cpu_disabled)))
1297 return;
1298
1299 event = trace_buffer_lock_reserve(buffer, TRACE_FN, sizeof(*entry),
1300 flags, pc);
1301 if (!event)
1302 return;
1303 entry = ring_buffer_event_data(event);
1304 entry->ip = ip;
1305 entry->parent_ip = parent_ip;
1306
1307 if (!filter_check_discard(call, entry, buffer, event))
1308 __buffer_unlock_commit(buffer, event);
1309 }
1310
1311 void
1312 ftrace(struct trace_array *tr, struct trace_array_cpu *data,
1313 unsigned long ip, unsigned long parent_ip, unsigned long flags,
1314 int pc)
1315 {
1316 if (likely(!atomic_read(&data->disabled)))
1317 trace_function(tr, ip, parent_ip, flags, pc);
1318 }
1319
1320 #ifdef CONFIG_STACKTRACE
1321
1322 #define FTRACE_STACK_MAX_ENTRIES (PAGE_SIZE / sizeof(unsigned long))
1323 struct ftrace_stack {
1324 unsigned long calls[FTRACE_STACK_MAX_ENTRIES];
1325 };
1326
1327 static DEFINE_PER_CPU(struct ftrace_stack, ftrace_stack);
1328 static DEFINE_PER_CPU(int, ftrace_stack_reserve);
1329
1330 static void __ftrace_trace_stack(struct ring_buffer *buffer,
1331 unsigned long flags,
1332 int skip, int pc, struct pt_regs *regs)
1333 {
1334 struct ftrace_event_call *call = &event_kernel_stack;
1335 struct ring_buffer_event *event;
1336 struct stack_entry *entry;
1337 struct stack_trace trace;
1338 int use_stack;
1339 int size = FTRACE_STACK_ENTRIES;
1340
1341 trace.nr_entries = 0;
1342 trace.skip = skip;
1343
1344 /*
1345 * Since events can happen in NMIs there's no safe way to
1346 * use the per cpu ftrace_stacks. We reserve it and if an interrupt
1347 * or NMI comes in, it will just have to use the default
1348 * FTRACE_STACK_SIZE.
1349 */
1350 preempt_disable_notrace();
1351
1352 use_stack = __this_cpu_inc_return(ftrace_stack_reserve);
1353 /*
1354 * We don't need any atomic variables, just a barrier.
1355 * If an interrupt comes in, we don't care, because it would
1356 * have exited and put the counter back to what we want.
1357 * We just need a barrier to keep gcc from moving things
1358 * around.
1359 */
1360 barrier();
1361 if (use_stack == 1) {
1362 trace.entries = &__get_cpu_var(ftrace_stack).calls[0];
1363 trace.max_entries = FTRACE_STACK_MAX_ENTRIES;
1364
1365 if (regs)
1366 save_stack_trace_regs(regs, &trace);
1367 else
1368 save_stack_trace(&trace);
1369
1370 if (trace.nr_entries > size)
1371 size = trace.nr_entries;
1372 } else
1373 /* From now on, use_stack is a boolean */
1374 use_stack = 0;
1375
1376 size *= sizeof(unsigned long);
1377
1378 event = trace_buffer_lock_reserve(buffer, TRACE_STACK,
1379 sizeof(*entry) + size, flags, pc);
1380 if (!event)
1381 goto out;
1382 entry = ring_buffer_event_data(event);
1383
1384 memset(&entry->caller, 0, size);
1385
1386 if (use_stack)
1387 memcpy(&entry->caller, trace.entries,
1388 trace.nr_entries * sizeof(unsigned long));
1389 else {
1390 trace.max_entries = FTRACE_STACK_ENTRIES;
1391 trace.entries = entry->caller;
1392 if (regs)
1393 save_stack_trace_regs(regs, &trace);
1394 else
1395 save_stack_trace(&trace);
1396 }
1397
1398 entry->size = trace.nr_entries;
1399
1400 if (!filter_check_discard(call, entry, buffer, event))
1401 __buffer_unlock_commit(buffer, event);
1402
1403 out:
1404 /* Again, don't let gcc optimize things here */
1405 barrier();
1406 __this_cpu_dec(ftrace_stack_reserve);
1407 preempt_enable_notrace();
1408
1409 }
1410
1411 void ftrace_trace_stack_regs(struct ring_buffer *buffer, unsigned long flags,
1412 int skip, int pc, struct pt_regs *regs)
1413 {
1414 if (!(trace_flags & TRACE_ITER_STACKTRACE))
1415 return;
1416
1417 __ftrace_trace_stack(buffer, flags, skip, pc, regs);
1418 }
1419
1420 void ftrace_trace_stack(struct ring_buffer *buffer, unsigned long flags,
1421 int skip, int pc)
1422 {
1423 if (!(trace_flags & TRACE_ITER_STACKTRACE))
1424 return;
1425
1426 __ftrace_trace_stack(buffer, flags, skip, pc, NULL);
1427 }
1428
1429 void __trace_stack(struct trace_array *tr, unsigned long flags, int skip,
1430 int pc)
1431 {
1432 __ftrace_trace_stack(tr->buffer, flags, skip, pc, NULL);
1433 }
1434
1435 /**
1436 * trace_dump_stack - record a stack back trace in the trace buffer
1437 */
1438 void trace_dump_stack(void)
1439 {
1440 unsigned long flags;
1441
1442 if (tracing_disabled || tracing_selftest_running)
1443 return;
1444
1445 local_save_flags(flags);
1446
1447 /* skipping 3 traces, seems to get us at the caller of this function */
1448 __ftrace_trace_stack(global_trace.buffer, flags, 3, preempt_count(), NULL);
1449 }
1450
1451 static DEFINE_PER_CPU(int, user_stack_count);
1452
1453 void
1454 ftrace_trace_userstack(struct ring_buffer *buffer, unsigned long flags, int pc)
1455 {
1456 struct ftrace_event_call *call = &event_user_stack;
1457 struct ring_buffer_event *event;
1458 struct userstack_entry *entry;
1459 struct stack_trace trace;
1460
1461 if (!(trace_flags & TRACE_ITER_USERSTACKTRACE))
1462 return;
1463
1464 /*
1465 * NMIs can not handle page faults, even with fix ups.
1466 * The save user stack can (and often does) fault.
1467 */
1468 if (unlikely(in_nmi()))
1469 return;
1470
1471 /*
1472 * prevent recursion, since the user stack tracing may
1473 * trigger other kernel events.
1474 */
1475 preempt_disable();
1476 if (__this_cpu_read(user_stack_count))
1477 goto out;
1478
1479 __this_cpu_inc(user_stack_count);
1480
1481 event = trace_buffer_lock_reserve(buffer, TRACE_USER_STACK,
1482 sizeof(*entry), flags, pc);
1483 if (!event)
1484 goto out_drop_count;
1485 entry = ring_buffer_event_data(event);
1486
1487 entry->tgid = current->tgid;
1488 memset(&entry->caller, 0, sizeof(entry->caller));
1489
1490 trace.nr_entries = 0;
1491 trace.max_entries = FTRACE_STACK_ENTRIES;
1492 trace.skip = 0;
1493 trace.entries = entry->caller;
1494
1495 save_stack_trace_user(&trace);
1496 if (!filter_check_discard(call, entry, buffer, event))
1497 __buffer_unlock_commit(buffer, event);
1498
1499 out_drop_count:
1500 __this_cpu_dec(user_stack_count);
1501 out:
1502 preempt_enable();
1503 }
1504
1505 #ifdef UNUSED
1506 static void __trace_userstack(struct trace_array *tr, unsigned long flags)
1507 {
1508 ftrace_trace_userstack(tr, flags, preempt_count());
1509 }
1510 #endif /* UNUSED */
1511
1512 #endif /* CONFIG_STACKTRACE */
1513
1514 /* created for use with alloc_percpu */
1515 struct trace_buffer_struct {
1516 char buffer[TRACE_BUF_SIZE];
1517 };
1518
1519 static struct trace_buffer_struct *trace_percpu_buffer;
1520 static struct trace_buffer_struct *trace_percpu_sirq_buffer;
1521 static struct trace_buffer_struct *trace_percpu_irq_buffer;
1522 static struct trace_buffer_struct *trace_percpu_nmi_buffer;
1523
1524 /*
1525 * The buffer used is dependent on the context. There is a per cpu
1526 * buffer for normal context, softirq contex, hard irq context and
1527 * for NMI context. Thise allows for lockless recording.
1528 *
1529 * Note, if the buffers failed to be allocated, then this returns NULL
1530 */
1531 static char *get_trace_buf(void)
1532 {
1533 struct trace_buffer_struct *percpu_buffer;
1534
1535 /*
1536 * If we have allocated per cpu buffers, then we do not
1537 * need to do any locking.
1538 */
1539 if (in_nmi())
1540 percpu_buffer = trace_percpu_nmi_buffer;
1541 else if (in_irq())
1542 percpu_buffer = trace_percpu_irq_buffer;
1543 else if (in_softirq())
1544 percpu_buffer = trace_percpu_sirq_buffer;
1545 else
1546 percpu_buffer = trace_percpu_buffer;
1547
1548 if (!percpu_buffer)
1549 return NULL;
1550
1551 return this_cpu_ptr(&percpu_buffer->buffer[0]);
1552 }
1553
1554 static int alloc_percpu_trace_buffer(void)
1555 {
1556 struct trace_buffer_struct *buffers;
1557 struct trace_buffer_struct *sirq_buffers;
1558 struct trace_buffer_struct *irq_buffers;
1559 struct trace_buffer_struct *nmi_buffers;
1560
1561 buffers = alloc_percpu(struct trace_buffer_struct);
1562 if (!buffers)
1563 goto err_warn;
1564
1565 sirq_buffers = alloc_percpu(struct trace_buffer_struct);
1566 if (!sirq_buffers)
1567 goto err_sirq;
1568
1569 irq_buffers = alloc_percpu(struct trace_buffer_struct);
1570 if (!irq_buffers)
1571 goto err_irq;
1572
1573 nmi_buffers = alloc_percpu(struct trace_buffer_struct);
1574 if (!nmi_buffers)
1575 goto err_nmi;
1576
1577 trace_percpu_buffer = buffers;
1578 trace_percpu_sirq_buffer = sirq_buffers;
1579 trace_percpu_irq_buffer = irq_buffers;
1580 trace_percpu_nmi_buffer = nmi_buffers;
1581
1582 return 0;
1583
1584 err_nmi:
1585 free_percpu(irq_buffers);
1586 err_irq:
1587 free_percpu(sirq_buffers);
1588 err_sirq:
1589 free_percpu(buffers);
1590 err_warn:
1591 WARN(1, "Could not allocate percpu trace_printk buffer");
1592 return -ENOMEM;
1593 }
1594
1595 static int buffers_allocated;
1596
1597 void trace_printk_init_buffers(void)
1598 {
1599 if (buffers_allocated)
1600 return;
1601
1602 if (alloc_percpu_trace_buffer())
1603 return;
1604
1605 pr_info("ftrace: Allocated trace_printk buffers\n");
1606
1607 /* Expand the buffers to set size */
1608 tracing_update_buffers();
1609
1610 buffers_allocated = 1;
1611
1612 /*
1613 * trace_printk_init_buffers() can be called by modules.
1614 * If that happens, then we need to start cmdline recording
1615 * directly here. If the global_trace.buffer is already
1616 * allocated here, then this was called by module code.
1617 */
1618 if (global_trace.buffer)
1619 tracing_start_cmdline_record();
1620 }
1621
1622 void trace_printk_start_comm(void)
1623 {
1624 /* Start tracing comms if trace printk is set */
1625 if (!buffers_allocated)
1626 return;
1627 tracing_start_cmdline_record();
1628 }
1629
1630 static void trace_printk_start_stop_comm(int enabled)
1631 {
1632 if (!buffers_allocated)
1633 return;
1634
1635 if (enabled)
1636 tracing_start_cmdline_record();
1637 else
1638 tracing_stop_cmdline_record();
1639 }
1640
1641 /**
1642 * trace_vbprintk - write binary msg to tracing buffer
1643 *
1644 */
1645 int trace_vbprintk(unsigned long ip, const char *fmt, va_list args)
1646 {
1647 struct ftrace_event_call *call = &event_bprint;
1648 struct ring_buffer_event *event;
1649 struct ring_buffer *buffer;
1650 struct trace_array *tr = &global_trace;
1651 struct bprint_entry *entry;
1652 unsigned long flags;
1653 char *tbuffer;
1654 int len = 0, size, pc;
1655
1656 if (unlikely(tracing_selftest_running || tracing_disabled))
1657 return 0;
1658
1659 /* Don't pollute graph traces with trace_vprintk internals */
1660 pause_graph_tracing();
1661
1662 pc = preempt_count();
1663 preempt_disable_notrace();
1664
1665 tbuffer = get_trace_buf();
1666 if (!tbuffer) {
1667 len = 0;
1668 goto out;
1669 }
1670
1671 len = vbin_printf((u32 *)tbuffer, TRACE_BUF_SIZE/sizeof(int), fmt, args);
1672
1673 if (len > TRACE_BUF_SIZE/sizeof(int) || len < 0)
1674 goto out;
1675
1676 local_save_flags(flags);
1677 size = sizeof(*entry) + sizeof(u32) * len;
1678 buffer = tr->buffer;
1679 event = trace_buffer_lock_reserve(buffer, TRACE_BPRINT, size,
1680 flags, pc);
1681 if (!event)
1682 goto out;
1683 entry = ring_buffer_event_data(event);
1684 entry->ip = ip;
1685 entry->fmt = fmt;
1686
1687 memcpy(entry->buf, tbuffer, sizeof(u32) * len);
1688 if (!filter_check_discard(call, entry, buffer, event)) {
1689 __buffer_unlock_commit(buffer, event);
1690 ftrace_trace_stack(buffer, flags, 6, pc);
1691 }
1692
1693 out:
1694 preempt_enable_notrace();
1695 unpause_graph_tracing();
1696
1697 return len;
1698 }
1699 EXPORT_SYMBOL_GPL(trace_vbprintk);
1700
1701 int trace_array_printk(struct trace_array *tr,
1702 unsigned long ip, const char *fmt, ...)
1703 {
1704 int ret;
1705 va_list ap;
1706
1707 if (!(trace_flags & TRACE_ITER_PRINTK))
1708 return 0;
1709
1710 va_start(ap, fmt);
1711 ret = trace_array_vprintk(tr, ip, fmt, ap);
1712 va_end(ap);
1713 return ret;
1714 }
1715
1716 int trace_array_vprintk(struct trace_array *tr,
1717 unsigned long ip, const char *fmt, va_list args)
1718 {
1719 struct ftrace_event_call *call = &event_print;
1720 struct ring_buffer_event *event;
1721 struct ring_buffer *buffer;
1722 int len = 0, size, pc;
1723 struct print_entry *entry;
1724 unsigned long flags;
1725 char *tbuffer;
1726
1727 if (tracing_disabled || tracing_selftest_running)
1728 return 0;
1729
1730 /* Don't pollute graph traces with trace_vprintk internals */
1731 pause_graph_tracing();
1732
1733 pc = preempt_count();
1734 preempt_disable_notrace();
1735
1736
1737 tbuffer = get_trace_buf();
1738 if (!tbuffer) {
1739 len = 0;
1740 goto out;
1741 }
1742
1743 len = vsnprintf(tbuffer, TRACE_BUF_SIZE, fmt, args);
1744 if (len > TRACE_BUF_SIZE)
1745 goto out;
1746
1747 local_save_flags(flags);
1748 size = sizeof(*entry) + len + 1;
1749 buffer = tr->buffer;
1750 event = trace_buffer_lock_reserve(buffer, TRACE_PRINT, size,
1751 flags, pc);
1752 if (!event)
1753 goto out;
1754 entry = ring_buffer_event_data(event);
1755 entry->ip = ip;
1756
1757 memcpy(&entry->buf, tbuffer, len);
1758 entry->buf[len] = '\0';
1759 if (!filter_check_discard(call, entry, buffer, event)) {
1760 __buffer_unlock_commit(buffer, event);
1761 ftrace_trace_stack(buffer, flags, 6, pc);
1762 }
1763 out:
1764 preempt_enable_notrace();
1765 unpause_graph_tracing();
1766
1767 return len;
1768 }
1769
1770 int trace_vprintk(unsigned long ip, const char *fmt, va_list args)
1771 {
1772 return trace_array_vprintk(&global_trace, ip, fmt, args);
1773 }
1774 EXPORT_SYMBOL_GPL(trace_vprintk);
1775
1776 static void trace_iterator_increment(struct trace_iterator *iter)
1777 {
1778 struct ring_buffer_iter *buf_iter = trace_buffer_iter(iter, iter->cpu);
1779
1780 iter->idx++;
1781 if (buf_iter)
1782 ring_buffer_read(buf_iter, NULL);
1783 }
1784
1785 static struct trace_entry *
1786 peek_next_entry(struct trace_iterator *iter, int cpu, u64 *ts,
1787 unsigned long *lost_events)
1788 {
1789 struct ring_buffer_event *event;
1790 struct ring_buffer_iter *buf_iter = trace_buffer_iter(iter, cpu);
1791
1792 if (buf_iter)
1793 event = ring_buffer_iter_peek(buf_iter, ts);
1794 else
1795 event = ring_buffer_peek(iter->tr->buffer, cpu, ts,
1796 lost_events);
1797
1798 if (event) {
1799 iter->ent_size = ring_buffer_event_length(event);
1800 return ring_buffer_event_data(event);
1801 }
1802 iter->ent_size = 0;
1803 return NULL;
1804 }
1805
1806 static struct trace_entry *
1807 __find_next_entry(struct trace_iterator *iter, int *ent_cpu,
1808 unsigned long *missing_events, u64 *ent_ts)
1809 {
1810 struct ring_buffer *buffer = iter->tr->buffer;
1811 struct trace_entry *ent, *next = NULL;
1812 unsigned long lost_events = 0, next_lost = 0;
1813 int cpu_file = iter->cpu_file;
1814 u64 next_ts = 0, ts;
1815 int next_cpu = -1;
1816 int next_size = 0;
1817 int cpu;
1818
1819 /*
1820 * If we are in a per_cpu trace file, don't bother by iterating over
1821 * all cpu and peek directly.
1822 */
1823 if (cpu_file > TRACE_PIPE_ALL_CPU) {
1824 if (ring_buffer_empty_cpu(buffer, cpu_file))
1825 return NULL;
1826 ent = peek_next_entry(iter, cpu_file, ent_ts, missing_events);
1827 if (ent_cpu)
1828 *ent_cpu = cpu_file;
1829
1830 return ent;
1831 }
1832
1833 for_each_tracing_cpu(cpu) {
1834
1835 if (ring_buffer_empty_cpu(buffer, cpu))
1836 continue;
1837
1838 ent = peek_next_entry(iter, cpu, &ts, &lost_events);
1839
1840 /*
1841 * Pick the entry with the smallest timestamp:
1842 */
1843 if (ent && (!next || ts < next_ts)) {
1844 next = ent;
1845 next_cpu = cpu;
1846 next_ts = ts;
1847 next_lost = lost_events;
1848 next_size = iter->ent_size;
1849 }
1850 }
1851
1852 iter->ent_size = next_size;
1853
1854 if (ent_cpu)
1855 *ent_cpu = next_cpu;
1856
1857 if (ent_ts)
1858 *ent_ts = next_ts;
1859
1860 if (missing_events)
1861 *missing_events = next_lost;
1862
1863 return next;
1864 }
1865
1866 /* Find the next real entry, without updating the iterator itself */
1867 struct trace_entry *trace_find_next_entry(struct trace_iterator *iter,
1868 int *ent_cpu, u64 *ent_ts)
1869 {
1870 return __find_next_entry(iter, ent_cpu, NULL, ent_ts);
1871 }
1872
1873 /* Find the next real entry, and increment the iterator to the next entry */
1874 void *trace_find_next_entry_inc(struct trace_iterator *iter)
1875 {
1876 iter->ent = __find_next_entry(iter, &iter->cpu,
1877 &iter->lost_events, &iter->ts);
1878
1879 if (iter->ent)
1880 trace_iterator_increment(iter);
1881
1882 return iter->ent ? iter : NULL;
1883 }
1884
1885 static void trace_consume(struct trace_iterator *iter)
1886 {
1887 ring_buffer_consume(iter->tr->buffer, iter->cpu, &iter->ts,
1888 &iter->lost_events);
1889 }
1890
1891 static void *s_next(struct seq_file *m, void *v, loff_t *pos)
1892 {
1893 struct trace_iterator *iter = m->private;
1894 int i = (int)*pos;
1895 void *ent;
1896
1897 WARN_ON_ONCE(iter->leftover);
1898
1899 (*pos)++;
1900
1901 /* can't go backwards */
1902 if (iter->idx > i)
1903 return NULL;
1904
1905 if (iter->idx < 0)
1906 ent = trace_find_next_entry_inc(iter);
1907 else
1908 ent = iter;
1909
1910 while (ent && iter->idx < i)
1911 ent = trace_find_next_entry_inc(iter);
1912
1913 iter->pos = *pos;
1914
1915 return ent;
1916 }
1917
1918 void tracing_iter_reset(struct trace_iterator *iter, int cpu)
1919 {
1920 struct trace_array *tr = iter->tr;
1921 struct ring_buffer_event *event;
1922 struct ring_buffer_iter *buf_iter;
1923 unsigned long entries = 0;
1924 u64 ts;
1925
1926 tr->data[cpu]->skipped_entries = 0;
1927
1928 buf_iter = trace_buffer_iter(iter, cpu);
1929 if (!buf_iter)
1930 return;
1931
1932 ring_buffer_iter_reset(buf_iter);
1933
1934 /*
1935 * We could have the case with the max latency tracers
1936 * that a reset never took place on a cpu. This is evident
1937 * by the timestamp being before the start of the buffer.
1938 */
1939 while ((event = ring_buffer_iter_peek(buf_iter, &ts))) {
1940 if (ts >= iter->tr->time_start)
1941 break;
1942 entries++;
1943 ring_buffer_read(buf_iter, NULL);
1944 }
1945
1946 tr->data[cpu]->skipped_entries = entries;
1947 }
1948
1949 /*
1950 * The current tracer is copied to avoid a global locking
1951 * all around.
1952 */
1953 static void *s_start(struct seq_file *m, loff_t *pos)
1954 {
1955 struct trace_iterator *iter = m->private;
1956 int cpu_file = iter->cpu_file;
1957 void *p = NULL;
1958 loff_t l = 0;
1959 int cpu;
1960
1961 /*
1962 * copy the tracer to avoid using a global lock all around.
1963 * iter->trace is a copy of current_trace, the pointer to the
1964 * name may be used instead of a strcmp(), as iter->trace->name
1965 * will point to the same string as current_trace->name.
1966 */
1967 mutex_lock(&trace_types_lock);
1968 if (unlikely(current_trace && iter->trace->name != current_trace->name))
1969 *iter->trace = *current_trace;
1970 mutex_unlock(&trace_types_lock);
1971
1972 if (iter->snapshot && iter->trace->use_max_tr)
1973 return ERR_PTR(-EBUSY);
1974
1975 if (!iter->snapshot)
1976 atomic_inc(&trace_record_cmdline_disabled);
1977
1978 if (*pos != iter->pos) {
1979 iter->ent = NULL;
1980 iter->cpu = 0;
1981 iter->idx = -1;
1982
1983 if (cpu_file == TRACE_PIPE_ALL_CPU) {
1984 for_each_tracing_cpu(cpu)
1985 tracing_iter_reset(iter, cpu);
1986 } else
1987 tracing_iter_reset(iter, cpu_file);
1988
1989 iter->leftover = 0;
1990 for (p = iter; p && l < *pos; p = s_next(m, p, &l))
1991 ;
1992
1993 } else {
1994 /*
1995 * If we overflowed the seq_file before, then we want
1996 * to just reuse the trace_seq buffer again.
1997 */
1998 if (iter->leftover)
1999 p = iter;
2000 else {
2001 l = *pos - 1;
2002 p = s_next(m, p, &l);
2003 }
2004 }
2005
2006 trace_event_read_lock();
2007 trace_access_lock(cpu_file);
2008 return p;
2009 }
2010
2011 static void s_stop(struct seq_file *m, void *p)
2012 {
2013 struct trace_iterator *iter = m->private;
2014
2015 if (iter->snapshot && iter->trace->use_max_tr)
2016 return;
2017
2018 if (!iter->snapshot)
2019 atomic_dec(&trace_record_cmdline_disabled);
2020 trace_access_unlock(iter->cpu_file);
2021 trace_event_read_unlock();
2022 }
2023
2024 static void
2025 get_total_entries(struct trace_array *tr, unsigned long *total, unsigned long *entries)
2026 {
2027 unsigned long count;
2028 int cpu;
2029
2030 *total = 0;
2031 *entries = 0;
2032
2033 for_each_tracing_cpu(cpu) {
2034 count = ring_buffer_entries_cpu(tr->buffer, cpu);
2035 /*
2036 * If this buffer has skipped entries, then we hold all
2037 * entries for the trace and we need to ignore the
2038 * ones before the time stamp.
2039 */
2040 if (tr->data[cpu]->skipped_entries) {
2041 count -= tr->data[cpu]->skipped_entries;
2042 /* total is the same as the entries */
2043 *total += count;
2044 } else
2045 *total += count +
2046 ring_buffer_overrun_cpu(tr->buffer, cpu);
2047 *entries += count;
2048 }
2049 }
2050
2051 static void print_lat_help_header(struct seq_file *m)
2052 {
2053 seq_puts(m, "# _------=> CPU# \n");
2054 seq_puts(m, "# / _-----=> irqs-off \n");
2055 seq_puts(m, "# | / _----=> need-resched \n");
2056 seq_puts(m, "# || / _---=> hardirq/softirq \n");
2057 seq_puts(m, "# ||| / _--=> preempt-depth \n");
2058 seq_puts(m, "# |||| / delay \n");
2059 seq_puts(m, "# cmd pid ||||| time | caller \n");
2060 seq_puts(m, "# \\ / ||||| \\ | / \n");
2061 }
2062
2063 static void print_event_info(struct trace_array *tr, struct seq_file *m)
2064 {
2065 unsigned long total;
2066 unsigned long entries;
2067
2068 get_total_entries(tr, &total, &entries);
2069 seq_printf(m, "# entries-in-buffer/entries-written: %lu/%lu #P:%d\n",
2070 entries, total, num_online_cpus());
2071 seq_puts(m, "#\n");
2072 }
2073
2074 static void print_func_help_header(struct trace_array *tr, struct seq_file *m)
2075 {
2076 print_event_info(tr, m);
2077 seq_puts(m, "# TASK-PID CPU# TIMESTAMP FUNCTION\n");
2078 seq_puts(m, "# | | | | |\n");
2079 }
2080
2081 static void print_func_help_header_irq(struct trace_array *tr, struct seq_file *m)
2082 {
2083 print_event_info(tr, m);
2084 seq_puts(m, "# _-----=> irqs-off\n");
2085 seq_puts(m, "# / _----=> need-resched\n");
2086 seq_puts(m, "# | / _---=> hardirq/softirq\n");
2087 seq_puts(m, "# || / _--=> preempt-depth\n");
2088 seq_puts(m, "# ||| / delay\n");
2089 seq_puts(m, "# TASK-PID CPU# |||| TIMESTAMP FUNCTION\n");
2090 seq_puts(m, "# | | | |||| | |\n");
2091 }
2092
2093 void
2094 print_trace_header(struct seq_file *m, struct trace_iterator *iter)
2095 {
2096 unsigned long sym_flags = (trace_flags & TRACE_ITER_SYM_MASK);
2097 struct trace_array *tr = iter->tr;
2098 struct trace_array_cpu *data = tr->data[tr->cpu];
2099 struct tracer *type = current_trace;
2100 unsigned long entries;
2101 unsigned long total;
2102 const char *name = "preemption";
2103
2104 name = type->name;
2105
2106 get_total_entries(tr, &total, &entries);
2107
2108 seq_printf(m, "# %s latency trace v1.1.5 on %s\n",
2109 name, UTS_RELEASE);
2110 seq_puts(m, "# -----------------------------------"
2111 "---------------------------------\n");
2112 seq_printf(m, "# latency: %lu us, #%lu/%lu, CPU#%d |"
2113 " (M:%s VP:%d, KP:%d, SP:%d HP:%d",
2114 nsecs_to_usecs(data->saved_latency),
2115 entries,
2116 total,
2117 tr->cpu,
2118 #if defined(CONFIG_PREEMPT_NONE)
2119 "server",
2120 #elif defined(CONFIG_PREEMPT_VOLUNTARY)
2121 "desktop",
2122 #elif defined(CONFIG_PREEMPT)
2123 "preempt",
2124 #else
2125 "unknown",
2126 #endif
2127 /* These are reserved for later use */
2128 0, 0, 0, 0);
2129 #ifdef CONFIG_SMP
2130 seq_printf(m, " #P:%d)\n", num_online_cpus());
2131 #else
2132 seq_puts(m, ")\n");
2133 #endif
2134 seq_puts(m, "# -----------------\n");
2135 seq_printf(m, "# | task: %.16s-%d "
2136 "(uid:%d nice:%ld policy:%ld rt_prio:%ld)\n",
2137 data->comm, data->pid,
2138 from_kuid_munged(seq_user_ns(m), data->uid), data->nice,
2139 data->policy, data->rt_priority);
2140 seq_puts(m, "# -----------------\n");
2141
2142 if (data->critical_start) {
2143 seq_puts(m, "# => started at: ");
2144 seq_print_ip_sym(&iter->seq, data->critical_start, sym_flags);
2145 trace_print_seq(m, &iter->seq);
2146 seq_puts(m, "\n# => ended at: ");
2147 seq_print_ip_sym(&iter->seq, data->critical_end, sym_flags);
2148 trace_print_seq(m, &iter->seq);
2149 seq_puts(m, "\n#\n");
2150 }
2151
2152 seq_puts(m, "#\n");
2153 }
2154
2155 static void test_cpu_buff_start(struct trace_iterator *iter)
2156 {
2157 struct trace_seq *s = &iter->seq;
2158
2159 if (!(trace_flags & TRACE_ITER_ANNOTATE))
2160 return;
2161
2162 if (!(iter->iter_flags & TRACE_FILE_ANNOTATE))
2163 return;
2164
2165 if (cpumask_test_cpu(iter->cpu, iter->started))
2166 return;
2167
2168 if (iter->tr->data[iter->cpu]->skipped_entries)
2169 return;
2170
2171 cpumask_set_cpu(iter->cpu, iter->started);
2172
2173 /* Don't print started cpu buffer for the first entry of the trace */
2174 if (iter->idx > 1)
2175 trace_seq_printf(s, "##### CPU %u buffer started ####\n",
2176 iter->cpu);
2177 }
2178
2179 static enum print_line_t print_trace_fmt(struct trace_iterator *iter)
2180 {
2181 struct trace_seq *s = &iter->seq;
2182 unsigned long sym_flags = (trace_flags & TRACE_ITER_SYM_MASK);
2183 struct trace_entry *entry;
2184 struct trace_event *event;
2185
2186 entry = iter->ent;
2187
2188 test_cpu_buff_start(iter);
2189
2190 event = ftrace_find_event(entry->type);
2191
2192 if (trace_flags & TRACE_ITER_CONTEXT_INFO) {
2193 if (iter->iter_flags & TRACE_FILE_LAT_FMT) {
2194 if (!trace_print_lat_context(iter))
2195 goto partial;
2196 } else {
2197 if (!trace_print_context(iter))
2198 goto partial;
2199 }
2200 }
2201
2202 if (event)
2203 return event->funcs->trace(iter, sym_flags, event);
2204
2205 if (!trace_seq_printf(s, "Unknown type %d\n", entry->type))
2206 goto partial;
2207
2208 return TRACE_TYPE_HANDLED;
2209 partial:
2210 return TRACE_TYPE_PARTIAL_LINE;
2211 }
2212
2213 static enum print_line_t print_raw_fmt(struct trace_iterator *iter)
2214 {
2215 struct trace_seq *s = &iter->seq;
2216 struct trace_entry *entry;
2217 struct trace_event *event;
2218
2219 entry = iter->ent;
2220
2221 if (trace_flags & TRACE_ITER_CONTEXT_INFO) {
2222 if (!trace_seq_printf(s, "%d %d %llu ",
2223 entry->pid, iter->cpu, iter->ts))
2224 goto partial;
2225 }
2226
2227 event = ftrace_find_event(entry->type);
2228 if (event)
2229 return event->funcs->raw(iter, 0, event);
2230
2231 if (!trace_seq_printf(s, "%d ?\n", entry->type))
2232 goto partial;
2233
2234 return TRACE_TYPE_HANDLED;
2235 partial:
2236 return TRACE_TYPE_PARTIAL_LINE;
2237 }
2238
2239 static enum print_line_t print_hex_fmt(struct trace_iterator *iter)
2240 {
2241 struct trace_seq *s = &iter->seq;
2242 unsigned char newline = '\n';
2243 struct trace_entry *entry;
2244 struct trace_event *event;
2245
2246 entry = iter->ent;
2247
2248 if (trace_flags & TRACE_ITER_CONTEXT_INFO) {
2249 SEQ_PUT_HEX_FIELD_RET(s, entry->pid);
2250 SEQ_PUT_HEX_FIELD_RET(s, iter->cpu);
2251 SEQ_PUT_HEX_FIELD_RET(s, iter->ts);
2252 }
2253
2254 event = ftrace_find_event(entry->type);
2255 if (event) {
2256 enum print_line_t ret = event->funcs->hex(iter, 0, event);
2257 if (ret != TRACE_TYPE_HANDLED)
2258 return ret;
2259 }
2260
2261 SEQ_PUT_FIELD_RET(s, newline);
2262
2263 return TRACE_TYPE_HANDLED;
2264 }
2265
2266 static enum print_line_t print_bin_fmt(struct trace_iterator *iter)
2267 {
2268 struct trace_seq *s = &iter->seq;
2269 struct trace_entry *entry;
2270 struct trace_event *event;
2271
2272 entry = iter->ent;
2273
2274 if (trace_flags & TRACE_ITER_CONTEXT_INFO) {
2275 SEQ_PUT_FIELD_RET(s, entry->pid);
2276 SEQ_PUT_FIELD_RET(s, iter->cpu);
2277 SEQ_PUT_FIELD_RET(s, iter->ts);
2278 }
2279
2280 event = ftrace_find_event(entry->type);
2281 return event ? event->funcs->binary(iter, 0, event) :
2282 TRACE_TYPE_HANDLED;
2283 }
2284
2285 int trace_empty(struct trace_iterator *iter)
2286 {
2287 struct ring_buffer_iter *buf_iter;
2288 int cpu;
2289
2290 /* If we are looking at one CPU buffer, only check that one */
2291 if (iter->cpu_file != TRACE_PIPE_ALL_CPU) {
2292 cpu = iter->cpu_file;
2293 buf_iter = trace_buffer_iter(iter, cpu);
2294 if (buf_iter) {
2295 if (!ring_buffer_iter_empty(buf_iter))
2296 return 0;
2297 } else {
2298 if (!ring_buffer_empty_cpu(iter->tr->buffer, cpu))
2299 return 0;
2300 }
2301 return 1;
2302 }
2303
2304 for_each_tracing_cpu(cpu) {
2305 buf_iter = trace_buffer_iter(iter, cpu);
2306 if (buf_iter) {
2307 if (!ring_buffer_iter_empty(buf_iter))
2308 return 0;
2309 } else {
2310 if (!ring_buffer_empty_cpu(iter->tr->buffer, cpu))
2311 return 0;
2312 }
2313 }
2314
2315 return 1;
2316 }
2317
2318 /* Called with trace_event_read_lock() held. */
2319 enum print_line_t print_trace_line(struct trace_iterator *iter)
2320 {
2321 enum print_line_t ret;
2322
2323 if (iter->lost_events &&
2324 !trace_seq_printf(&iter->seq, "CPU:%d [LOST %lu EVENTS]\n",
2325 iter->cpu, iter->lost_events))
2326 return TRACE_TYPE_PARTIAL_LINE;
2327
2328 if (iter->trace && iter->trace->print_line) {
2329 ret = iter->trace->print_line(iter);
2330 if (ret != TRACE_TYPE_UNHANDLED)
2331 return ret;
2332 }
2333
2334 if (iter->ent->type == TRACE_BPRINT &&
2335 trace_flags & TRACE_ITER_PRINTK &&
2336 trace_flags & TRACE_ITER_PRINTK_MSGONLY)
2337 return trace_print_bprintk_msg_only(iter);
2338
2339 if (iter->ent->type == TRACE_PRINT &&
2340 trace_flags & TRACE_ITER_PRINTK &&
2341 trace_flags & TRACE_ITER_PRINTK_MSGONLY)
2342 return trace_print_printk_msg_only(iter);
2343
2344 if (trace_flags & TRACE_ITER_BIN)
2345 return print_bin_fmt(iter);
2346
2347 if (trace_flags & TRACE_ITER_HEX)
2348 return print_hex_fmt(iter);
2349
2350 if (trace_flags & TRACE_ITER_RAW)
2351 return print_raw_fmt(iter);
2352
2353 return print_trace_fmt(iter);
2354 }
2355
2356 void trace_latency_header(struct seq_file *m)
2357 {
2358 struct trace_iterator *iter = m->private;
2359
2360 /* print nothing if the buffers are empty */
2361 if (trace_empty(iter))
2362 return;
2363
2364 if (iter->iter_flags & TRACE_FILE_LAT_FMT)
2365 print_trace_header(m, iter);
2366
2367 if (!(trace_flags & TRACE_ITER_VERBOSE))
2368 print_lat_help_header(m);
2369 }
2370
2371 void trace_default_header(struct seq_file *m)
2372 {
2373 struct trace_iterator *iter = m->private;
2374
2375 if (!(trace_flags & TRACE_ITER_CONTEXT_INFO))
2376 return;
2377
2378 if (iter->iter_flags & TRACE_FILE_LAT_FMT) {
2379 /* print nothing if the buffers are empty */
2380 if (trace_empty(iter))
2381 return;
2382 print_trace_header(m, iter);
2383 if (!(trace_flags & TRACE_ITER_VERBOSE))
2384 print_lat_help_header(m);
2385 } else {
2386 if (!(trace_flags & TRACE_ITER_VERBOSE)) {
2387 if (trace_flags & TRACE_ITER_IRQ_INFO)
2388 print_func_help_header_irq(iter->tr, m);
2389 else
2390 print_func_help_header(iter->tr, m);
2391 }
2392 }
2393 }
2394
2395 static void test_ftrace_alive(struct seq_file *m)
2396 {
2397 if (!ftrace_is_dead())
2398 return;
2399 seq_printf(m, "# WARNING: FUNCTION TRACING IS CORRUPTED\n");
2400 seq_printf(m, "# MAY BE MISSING FUNCTION EVENTS\n");
2401 }
2402
2403 #ifdef CONFIG_TRACER_MAX_TRACE
2404 static void print_snapshot_help(struct seq_file *m, struct trace_iterator *iter)
2405 {
2406 if (iter->trace->allocated_snapshot)
2407 seq_printf(m, "#\n# * Snapshot is allocated *\n#\n");
2408 else
2409 seq_printf(m, "#\n# * Snapshot is freed *\n#\n");
2410
2411 seq_printf(m, "# Snapshot commands:\n");
2412 seq_printf(m, "# echo 0 > snapshot : Clears and frees snapshot buffer\n");
2413 seq_printf(m, "# echo 1 > snapshot : Allocates snapshot buffer, if not already allocated.\n");
2414 seq_printf(m, "# Takes a snapshot of the main buffer.\n");
2415 seq_printf(m, "# echo 2 > snapshot : Clears snapshot buffer (but does not allocate)\n");
2416 seq_printf(m, "# (Doesn't have to be '2' works with any number that\n");
2417 seq_printf(m, "# is not a '0' or '1')\n");
2418 }
2419 #else
2420 /* Should never be called */
2421 static inline void print_snapshot_help(struct seq_file *m, struct trace_iterator *iter) { }
2422 #endif
2423
2424 static int s_show(struct seq_file *m, void *v)
2425 {
2426 struct trace_iterator *iter = v;
2427 int ret;
2428
2429 if (iter->ent == NULL) {
2430 if (iter->tr) {
2431 seq_printf(m, "# tracer: %s\n", iter->trace->name);
2432 seq_puts(m, "#\n");
2433 test_ftrace_alive(m);
2434 }
2435 if (iter->snapshot && trace_empty(iter))
2436 print_snapshot_help(m, iter);
2437 else if (iter->trace && iter->trace->print_header)
2438 iter->trace->print_header(m);
2439 else
2440 trace_default_header(m);
2441
2442 } else if (iter->leftover) {
2443 /*
2444 * If we filled the seq_file buffer earlier, we
2445 * want to just show it now.
2446 */
2447 ret = trace_print_seq(m, &iter->seq);
2448
2449 /* ret should this time be zero, but you never know */
2450 iter->leftover = ret;
2451
2452 } else {
2453 print_trace_line(iter);
2454 ret = trace_print_seq(m, &iter->seq);
2455 /*
2456 * If we overflow the seq_file buffer, then it will
2457 * ask us for this data again at start up.
2458 * Use that instead.
2459 * ret is 0 if seq_file write succeeded.
2460 * -1 otherwise.
2461 */
2462 iter->leftover = ret;
2463 }
2464
2465 return 0;
2466 }
2467
2468 static const struct seq_operations tracer_seq_ops = {
2469 .start = s_start,
2470 .next = s_next,
2471 .stop = s_stop,
2472 .show = s_show,
2473 };
2474
2475 static struct trace_iterator *
2476 __tracing_open(struct inode *inode, struct file *file, bool snapshot)
2477 {
2478 long cpu_file = (long) inode->i_private;
2479 struct trace_iterator *iter;
2480 int cpu;
2481
2482 if (tracing_disabled)
2483 return ERR_PTR(-ENODEV);
2484
2485 iter = __seq_open_private(file, &tracer_seq_ops, sizeof(*iter));
2486 if (!iter)
2487 return ERR_PTR(-ENOMEM);
2488
2489 iter->buffer_iter = kzalloc(sizeof(*iter->buffer_iter) * num_possible_cpus(),
2490 GFP_KERNEL);
2491 if (!iter->buffer_iter)
2492 goto release;
2493
2494 /*
2495 * We make a copy of the current tracer to avoid concurrent
2496 * changes on it while we are reading.
2497 */
2498 mutex_lock(&trace_types_lock);
2499 iter->trace = kzalloc(sizeof(*iter->trace), GFP_KERNEL);
2500 if (!iter->trace)
2501 goto fail;
2502
2503 *iter->trace = *current_trace;
2504
2505 if (!zalloc_cpumask_var(&iter->started, GFP_KERNEL))
2506 goto fail;
2507
2508 if (current_trace->print_max || snapshot)
2509 iter->tr = &max_tr;
2510 else
2511 iter->tr = &global_trace;
2512 iter->snapshot = snapshot;
2513 iter->pos = -1;
2514 mutex_init(&iter->mutex);
2515 iter->cpu_file = cpu_file;
2516
2517 /* Notify the tracer early; before we stop tracing. */
2518 if (iter->trace && iter->trace->open)
2519 iter->trace->open(iter);
2520
2521 /* Annotate start of buffers if we had overruns */
2522 if (ring_buffer_overruns(iter->tr->buffer))
2523 iter->iter_flags |= TRACE_FILE_ANNOTATE;
2524
2525 /* Output in nanoseconds only if we are using a clock in nanoseconds. */
2526 if (trace_clocks[trace_clock_id].in_ns)
2527 iter->iter_flags |= TRACE_FILE_TIME_IN_NS;
2528
2529 /* stop the trace while dumping if we are not opening "snapshot" */
2530 if (!iter->snapshot)
2531 tracing_stop();
2532
2533 if (iter->cpu_file == TRACE_PIPE_ALL_CPU) {
2534 for_each_tracing_cpu(cpu) {
2535 iter->buffer_iter[cpu] =
2536 ring_buffer_read_prepare(iter->tr->buffer, cpu);
2537 }
2538 ring_buffer_read_prepare_sync();
2539 for_each_tracing_cpu(cpu) {
2540 ring_buffer_read_start(iter->buffer_iter[cpu]);
2541 tracing_iter_reset(iter, cpu);
2542 }
2543 } else {
2544 cpu = iter->cpu_file;
2545 iter->buffer_iter[cpu] =
2546 ring_buffer_read_prepare(iter->tr->buffer, cpu);
2547 ring_buffer_read_prepare_sync();
2548 ring_buffer_read_start(iter->buffer_iter[cpu]);
2549 tracing_iter_reset(iter, cpu);
2550 }
2551
2552 mutex_unlock(&trace_types_lock);
2553
2554 return iter;
2555
2556 fail:
2557 mutex_unlock(&trace_types_lock);
2558 kfree(iter->trace);
2559 kfree(iter->buffer_iter);
2560 release:
2561 seq_release_private(inode, file);
2562 return ERR_PTR(-ENOMEM);
2563 }
2564
2565 int tracing_open_generic(struct inode *inode, struct file *filp)
2566 {
2567 if (tracing_disabled)
2568 return -ENODEV;
2569
2570 filp->private_data = inode->i_private;
2571 return 0;
2572 }
2573
2574 static int tracing_release(struct inode *inode, struct file *file)
2575 {
2576 struct seq_file *m = file->private_data;
2577 struct trace_iterator *iter;
2578 int cpu;
2579
2580 if (!(file->f_mode & FMODE_READ))
2581 return 0;
2582
2583 iter = m->private;
2584
2585 mutex_lock(&trace_types_lock);
2586 for_each_tracing_cpu(cpu) {
2587 if (iter->buffer_iter[cpu])
2588 ring_buffer_read_finish(iter->buffer_iter[cpu]);
2589 }
2590
2591 if (iter->trace && iter->trace->close)
2592 iter->trace->close(iter);
2593
2594 if (!iter->snapshot)
2595 /* reenable tracing if it was previously enabled */
2596 tracing_start();
2597 mutex_unlock(&trace_types_lock);
2598
2599 mutex_destroy(&iter->mutex);
2600 free_cpumask_var(iter->started);
2601 kfree(iter->trace);
2602 kfree(iter->buffer_iter);
2603 seq_release_private(inode, file);
2604 return 0;
2605 }
2606
2607 static int tracing_open(struct inode *inode, struct file *file)
2608 {
2609 struct trace_iterator *iter;
2610 int ret = 0;
2611
2612 /* If this file was open for write, then erase contents */
2613 if ((file->f_mode & FMODE_WRITE) &&
2614 (file->f_flags & O_TRUNC)) {
2615 long cpu = (long) inode->i_private;
2616
2617 if (cpu == TRACE_PIPE_ALL_CPU)
2618 tracing_reset_online_cpus(&global_trace);
2619 else
2620 tracing_reset(&global_trace, cpu);
2621 }
2622
2623 if (file->f_mode & FMODE_READ) {
2624 iter = __tracing_open(inode, file, false);
2625 if (IS_ERR(iter))
2626 ret = PTR_ERR(iter);
2627 else if (trace_flags & TRACE_ITER_LATENCY_FMT)
2628 iter->iter_flags |= TRACE_FILE_LAT_FMT;
2629 }
2630 return ret;
2631 }
2632
2633 static void *
2634 t_next(struct seq_file *m, void *v, loff_t *pos)
2635 {
2636 struct tracer *t = v;
2637
2638 (*pos)++;
2639
2640 if (t)
2641 t = t->next;
2642
2643 return t;
2644 }
2645
2646 static void *t_start(struct seq_file *m, loff_t *pos)
2647 {
2648 struct tracer *t;
2649 loff_t l = 0;
2650
2651 mutex_lock(&trace_types_lock);
2652 for (t = trace_types; t && l < *pos; t = t_next(m, t, &l))
2653 ;
2654
2655 return t;
2656 }
2657
2658 static void t_stop(struct seq_file *m, void *p)
2659 {
2660 mutex_unlock(&trace_types_lock);
2661 }
2662
2663 static int t_show(struct seq_file *m, void *v)
2664 {
2665 struct tracer *t = v;
2666
2667 if (!t)
2668 return 0;
2669
2670 seq_printf(m, "%s", t->name);
2671 if (t->next)
2672 seq_putc(m, ' ');
2673 else
2674 seq_putc(m, '\n');
2675
2676 return 0;
2677 }
2678
2679 static const struct seq_operations show_traces_seq_ops = {
2680 .start = t_start,
2681 .next = t_next,
2682 .stop = t_stop,
2683 .show = t_show,
2684 };
2685
2686 static int show_traces_open(struct inode *inode, struct file *file)
2687 {
2688 if (tracing_disabled)
2689 return -ENODEV;
2690
2691 return seq_open(file, &show_traces_seq_ops);
2692 }
2693
2694 static ssize_t
2695 tracing_write_stub(struct file *filp, const char __user *ubuf,
2696 size_t count, loff_t *ppos)
2697 {
2698 return count;
2699 }
2700
2701 static loff_t tracing_seek(struct file *file, loff_t offset, int origin)
2702 {
2703 if (file->f_mode & FMODE_READ)
2704 return seq_lseek(file, offset, origin);
2705 else
2706 return 0;
2707 }
2708
2709 static const struct file_operations tracing_fops = {
2710 .open = tracing_open,
2711 .read = seq_read,
2712 .write = tracing_write_stub,
2713 .llseek = tracing_seek,
2714 .release = tracing_release,
2715 };
2716
2717 static const struct file_operations show_traces_fops = {
2718 .open = show_traces_open,
2719 .read = seq_read,
2720 .release = seq_release,
2721 .llseek = seq_lseek,
2722 };
2723
2724 /*
2725 * Only trace on a CPU if the bitmask is set:
2726 */
2727 static cpumask_var_t tracing_cpumask;
2728
2729 /*
2730 * The tracer itself will not take this lock, but still we want
2731 * to provide a consistent cpumask to user-space:
2732 */
2733 static DEFINE_MUTEX(tracing_cpumask_update_lock);
2734
2735 /*
2736 * Temporary storage for the character representation of the
2737 * CPU bitmask (and one more byte for the newline):
2738 */
2739 static char mask_str[NR_CPUS + 1];
2740
2741 static ssize_t
2742 tracing_cpumask_read(struct file *filp, char __user *ubuf,
2743 size_t count, loff_t *ppos)
2744 {
2745 int len;
2746
2747 mutex_lock(&tracing_cpumask_update_lock);
2748
2749 len = cpumask_scnprintf(mask_str, count, tracing_cpumask);
2750 if (count - len < 2) {
2751 count = -EINVAL;
2752 goto out_err;
2753 }
2754 len += sprintf(mask_str + len, "\n");
2755 count = simple_read_from_buffer(ubuf, count, ppos, mask_str, NR_CPUS+1);
2756
2757 out_err:
2758 mutex_unlock(&tracing_cpumask_update_lock);
2759
2760 return count;
2761 }
2762
2763 static ssize_t
2764 tracing_cpumask_write(struct file *filp, const char __user *ubuf,
2765 size_t count, loff_t *ppos)
2766 {
2767 int err, cpu;
2768 cpumask_var_t tracing_cpumask_new;
2769
2770 if (!alloc_cpumask_var(&tracing_cpumask_new, GFP_KERNEL))
2771 return -ENOMEM;
2772
2773 err = cpumask_parse_user(ubuf, count, tracing_cpumask_new);
2774 if (err)
2775 goto err_unlock;
2776
2777 mutex_lock(&tracing_cpumask_update_lock);
2778
2779 local_irq_disable();
2780 arch_spin_lock(&ftrace_max_lock);
2781 for_each_tracing_cpu(cpu) {
2782 /*
2783 * Increase/decrease the disabled counter if we are
2784 * about to flip a bit in the cpumask:
2785 */
2786 if (cpumask_test_cpu(cpu, tracing_cpumask) &&
2787 !cpumask_test_cpu(cpu, tracing_cpumask_new)) {
2788 atomic_inc(&global_trace.data[cpu]->disabled);
2789 ring_buffer_record_disable_cpu(global_trace.buffer, cpu);
2790 }
2791 if (!cpumask_test_cpu(cpu, tracing_cpumask) &&
2792 cpumask_test_cpu(cpu, tracing_cpumask_new)) {
2793 atomic_dec(&global_trace.data[cpu]->disabled);
2794 ring_buffer_record_enable_cpu(global_trace.buffer, cpu);
2795 }
2796 }
2797 arch_spin_unlock(&ftrace_max_lock);
2798 local_irq_enable();
2799
2800 cpumask_copy(tracing_cpumask, tracing_cpumask_new);
2801
2802 mutex_unlock(&tracing_cpumask_update_lock);
2803 free_cpumask_var(tracing_cpumask_new);
2804
2805 return count;
2806
2807 err_unlock:
2808 free_cpumask_var(tracing_cpumask_new);
2809
2810 return err;
2811 }
2812
2813 static const struct file_operations tracing_cpumask_fops = {
2814 .open = tracing_open_generic,
2815 .read = tracing_cpumask_read,
2816 .write = tracing_cpumask_write,
2817 .llseek = generic_file_llseek,
2818 };
2819
2820 static int tracing_trace_options_show(struct seq_file *m, void *v)
2821 {
2822 struct tracer_opt *trace_opts;
2823 u32 tracer_flags;
2824 int i;
2825
2826 mutex_lock(&trace_types_lock);
2827 tracer_flags = current_trace->flags->val;
2828 trace_opts = current_trace->flags->opts;
2829
2830 for (i = 0; trace_options[i]; i++) {
2831 if (trace_flags & (1 << i))
2832 seq_printf(m, "%s\n", trace_options[i]);
2833 else
2834 seq_printf(m, "no%s\n", trace_options[i]);
2835 }
2836
2837 for (i = 0; trace_opts[i].name; i++) {
2838 if (tracer_flags & trace_opts[i].bit)
2839 seq_printf(m, "%s\n", trace_opts[i].name);
2840 else
2841 seq_printf(m, "no%s\n", trace_opts[i].name);
2842 }
2843 mutex_unlock(&trace_types_lock);
2844
2845 return 0;
2846 }
2847
2848 static int __set_tracer_option(struct tracer *trace,
2849 struct tracer_flags *tracer_flags,
2850 struct tracer_opt *opts, int neg)
2851 {
2852 int ret;
2853
2854 ret = trace->set_flag(tracer_flags->val, opts->bit, !neg);
2855 if (ret)
2856 return ret;
2857
2858 if (neg)
2859 tracer_flags->val &= ~opts->bit;
2860 else
2861 tracer_flags->val |= opts->bit;
2862 return 0;
2863 }
2864
2865 /* Try to assign a tracer specific option */
2866 static int set_tracer_option(struct tracer *trace, char *cmp, int neg)
2867 {
2868 struct tracer_flags *tracer_flags = trace->flags;
2869 struct tracer_opt *opts = NULL;
2870 int i;
2871
2872 for (i = 0; tracer_flags->opts[i].name; i++) {
2873 opts = &tracer_flags->opts[i];
2874
2875 if (strcmp(cmp, opts->name) == 0)
2876 return __set_tracer_option(trace, trace->flags,
2877 opts, neg);
2878 }
2879
2880 return -EINVAL;
2881 }
2882
2883 static void set_tracer_flags(unsigned int mask, int enabled)
2884 {
2885 /* do nothing if flag is already set */
2886 if (!!(trace_flags & mask) == !!enabled)
2887 return;
2888
2889 if (enabled)
2890 trace_flags |= mask;
2891 else
2892 trace_flags &= ~mask;
2893
2894 if (mask == TRACE_ITER_RECORD_CMD)
2895 trace_event_enable_cmd_record(enabled);
2896
2897 if (mask == TRACE_ITER_OVERWRITE)
2898 ring_buffer_change_overwrite(global_trace.buffer, enabled);
2899
2900 if (mask == TRACE_ITER_PRINTK)
2901 trace_printk_start_stop_comm(enabled);
2902 }
2903
2904 static int trace_set_options(char *option)
2905 {
2906 char *cmp;
2907 int neg = 0;
2908 int ret = 0;
2909 int i;
2910
2911 cmp = strstrip(option);
2912
2913 if (strncmp(cmp, "no", 2) == 0) {
2914 neg = 1;
2915 cmp += 2;
2916 }
2917
2918 for (i = 0; trace_options[i]; i++) {
2919 if (strcmp(cmp, trace_options[i]) == 0) {
2920 set_tracer_flags(1 << i, !neg);
2921 break;
2922 }
2923 }
2924
2925 /* If no option could be set, test the specific tracer options */
2926 if (!trace_options[i]) {
2927 mutex_lock(&trace_types_lock);
2928 ret = set_tracer_option(current_trace, cmp, neg);
2929 mutex_unlock(&trace_types_lock);
2930 }
2931
2932 return ret;
2933 }
2934
2935 static ssize_t
2936 tracing_trace_options_write(struct file *filp, const char __user *ubuf,
2937 size_t cnt, loff_t *ppos)
2938 {
2939 char buf[64];
2940
2941 if (cnt >= sizeof(buf))
2942 return -EINVAL;
2943
2944 if (copy_from_user(&buf, ubuf, cnt))
2945 return -EFAULT;
2946
2947 buf[cnt] = 0;
2948
2949 trace_set_options(buf);
2950
2951 *ppos += cnt;
2952
2953 return cnt;
2954 }
2955
2956 static int tracing_trace_options_open(struct inode *inode, struct file *file)
2957 {
2958 if (tracing_disabled)
2959 return -ENODEV;
2960 return single_open(file, tracing_trace_options_show, NULL);
2961 }
2962
2963 static const struct file_operations tracing_iter_fops = {
2964 .open = tracing_trace_options_open,
2965 .read = seq_read,
2966 .llseek = seq_lseek,
2967 .release = single_release,
2968 .write = tracing_trace_options_write,
2969 };
2970
2971 static const char readme_msg[] =
2972 "tracing mini-HOWTO:\n\n"
2973 "# mount -t debugfs nodev /sys/kernel/debug\n\n"
2974 "# cat /sys/kernel/debug/tracing/available_tracers\n"
2975 "wakeup wakeup_rt preemptirqsoff preemptoff irqsoff function nop\n\n"
2976 "# cat /sys/kernel/debug/tracing/current_tracer\n"
2977 "nop\n"
2978 "# echo wakeup > /sys/kernel/debug/tracing/current_tracer\n"
2979 "# cat /sys/kernel/debug/tracing/current_tracer\n"
2980 "wakeup\n"
2981 "# cat /sys/kernel/debug/tracing/trace_options\n"
2982 "noprint-parent nosym-offset nosym-addr noverbose\n"
2983 "# echo print-parent > /sys/kernel/debug/tracing/trace_options\n"
2984 "# echo 1 > /sys/kernel/debug/tracing/tracing_on\n"
2985 "# cat /sys/kernel/debug/tracing/trace > /tmp/trace.txt\n"
2986 "# echo 0 > /sys/kernel/debug/tracing/tracing_on\n"
2987 ;
2988
2989 static ssize_t
2990 tracing_readme_read(struct file *filp, char __user *ubuf,
2991 size_t cnt, loff_t *ppos)
2992 {
2993 return simple_read_from_buffer(ubuf, cnt, ppos,
2994 readme_msg, strlen(readme_msg));
2995 }
2996
2997 static const struct file_operations tracing_readme_fops = {
2998 .open = tracing_open_generic,
2999 .read = tracing_readme_read,
3000 .llseek = generic_file_llseek,
3001 };
3002
3003 static ssize_t
3004 tracing_saved_cmdlines_read(struct file *file, char __user *ubuf,
3005 size_t cnt, loff_t *ppos)
3006 {
3007 char *buf_comm;
3008 char *file_buf;
3009 char *buf;
3010 int len = 0;
3011 int pid;
3012 int i;
3013
3014 file_buf = kmalloc(SAVED_CMDLINES*(16+TASK_COMM_LEN), GFP_KERNEL);
3015 if (!file_buf)
3016 return -ENOMEM;
3017
3018 buf_comm = kmalloc(TASK_COMM_LEN, GFP_KERNEL);
3019 if (!buf_comm) {
3020 kfree(file_buf);
3021 return -ENOMEM;
3022 }
3023
3024 buf = file_buf;
3025
3026 for (i = 0; i < SAVED_CMDLINES; i++) {
3027 int r;
3028
3029 pid = map_cmdline_to_pid[i];
3030 if (pid == -1 || pid == NO_CMDLINE_MAP)
3031 continue;
3032
3033 trace_find_cmdline(pid, buf_comm);
3034 r = sprintf(buf, "%d %s\n", pid, buf_comm);
3035 buf += r;
3036 len += r;
3037 }
3038
3039 len = simple_read_from_buffer(ubuf, cnt, ppos,
3040 file_buf, len);
3041
3042 kfree(file_buf);
3043 kfree(buf_comm);
3044
3045 return len;
3046 }
3047
3048 static const struct file_operations tracing_saved_cmdlines_fops = {
3049 .open = tracing_open_generic,
3050 .read = tracing_saved_cmdlines_read,
3051 .llseek = generic_file_llseek,
3052 };
3053
3054 static ssize_t
3055 tracing_set_trace_read(struct file *filp, char __user *ubuf,
3056 size_t cnt, loff_t *ppos)
3057 {
3058 char buf[MAX_TRACER_SIZE+2];
3059 int r;
3060
3061 mutex_lock(&trace_types_lock);
3062 r = sprintf(buf, "%s\n", current_trace->name);
3063 mutex_unlock(&trace_types_lock);
3064
3065 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
3066 }
3067
3068 int tracer_init(struct tracer *t, struct trace_array *tr)
3069 {
3070 tracing_reset_online_cpus(tr);
3071 return t->init(tr);
3072 }
3073
3074 static void set_buffer_entries(struct trace_array *tr, unsigned long val)
3075 {
3076 int cpu;
3077 for_each_tracing_cpu(cpu)
3078 tr->data[cpu]->entries = val;
3079 }
3080
3081 /* resize @tr's buffer to the size of @size_tr's entries */
3082 static int resize_buffer_duplicate_size(struct trace_array *tr,
3083 struct trace_array *size_tr, int cpu_id)
3084 {
3085 int cpu, ret = 0;
3086
3087 if (cpu_id == RING_BUFFER_ALL_CPUS) {
3088 for_each_tracing_cpu(cpu) {
3089 ret = ring_buffer_resize(tr->buffer,
3090 size_tr->data[cpu]->entries, cpu);
3091 if (ret < 0)
3092 break;
3093 tr->data[cpu]->entries = size_tr->data[cpu]->entries;
3094 }
3095 } else {
3096 ret = ring_buffer_resize(tr->buffer,
3097 size_tr->data[cpu_id]->entries, cpu_id);
3098 if (ret == 0)
3099 tr->data[cpu_id]->entries =
3100 size_tr->data[cpu_id]->entries;
3101 }
3102
3103 return ret;
3104 }
3105
3106 static int __tracing_resize_ring_buffer(unsigned long size, int cpu)
3107 {
3108 int ret;
3109
3110 /*
3111 * If kernel or user changes the size of the ring buffer
3112 * we use the size that was given, and we can forget about
3113 * expanding it later.
3114 */
3115 ring_buffer_expanded = 1;
3116
3117 /* May be called before buffers are initialized */
3118 if (!global_trace.buffer)
3119 return 0;
3120
3121 ret = ring_buffer_resize(global_trace.buffer, size, cpu);
3122 if (ret < 0)
3123 return ret;
3124
3125 if (!current_trace->use_max_tr)
3126 goto out;
3127
3128 ret = ring_buffer_resize(max_tr.buffer, size, cpu);
3129 if (ret < 0) {
3130 int r = resize_buffer_duplicate_size(&global_trace,
3131 &global_trace, cpu);
3132 if (r < 0) {
3133 /*
3134 * AARGH! We are left with different
3135 * size max buffer!!!!
3136 * The max buffer is our "snapshot" buffer.
3137 * When a tracer needs a snapshot (one of the
3138 * latency tracers), it swaps the max buffer
3139 * with the saved snap shot. We succeeded to
3140 * update the size of the main buffer, but failed to
3141 * update the size of the max buffer. But when we tried
3142 * to reset the main buffer to the original size, we
3143 * failed there too. This is very unlikely to
3144 * happen, but if it does, warn and kill all
3145 * tracing.
3146 */
3147 WARN_ON(1);
3148 tracing_disabled = 1;
3149 }
3150 return ret;
3151 }
3152
3153 if (cpu == RING_BUFFER_ALL_CPUS)
3154 set_buffer_entries(&max_tr, size);
3155 else
3156 max_tr.data[cpu]->entries = size;
3157
3158 out:
3159 if (cpu == RING_BUFFER_ALL_CPUS)
3160 set_buffer_entries(&global_trace, size);
3161 else
3162 global_trace.data[cpu]->entries = size;
3163
3164 return ret;
3165 }
3166
3167 static ssize_t tracing_resize_ring_buffer(unsigned long size, int cpu_id)
3168 {
3169 int ret = size;
3170
3171 mutex_lock(&trace_types_lock);
3172
3173 if (cpu_id != RING_BUFFER_ALL_CPUS) {
3174 /* make sure, this cpu is enabled in the mask */
3175 if (!cpumask_test_cpu(cpu_id, tracing_buffer_mask)) {
3176 ret = -EINVAL;
3177 goto out;
3178 }
3179 }
3180
3181 ret = __tracing_resize_ring_buffer(size, cpu_id);
3182 if (ret < 0)
3183 ret = -ENOMEM;
3184
3185 out:
3186 mutex_unlock(&trace_types_lock);
3187
3188 return ret;
3189 }
3190
3191
3192 /**
3193 * tracing_update_buffers - used by tracing facility to expand ring buffers
3194 *
3195 * To save on memory when the tracing is never used on a system with it
3196 * configured in. The ring buffers are set to a minimum size. But once
3197 * a user starts to use the tracing facility, then they need to grow
3198 * to their default size.
3199 *
3200 * This function is to be called when a tracer is about to be used.
3201 */
3202 int tracing_update_buffers(void)
3203 {
3204 int ret = 0;
3205
3206 mutex_lock(&trace_types_lock);
3207 if (!ring_buffer_expanded)
3208 ret = __tracing_resize_ring_buffer(trace_buf_size,
3209 RING_BUFFER_ALL_CPUS);
3210 mutex_unlock(&trace_types_lock);
3211
3212 return ret;
3213 }
3214
3215 struct trace_option_dentry;
3216
3217 static struct trace_option_dentry *
3218 create_trace_option_files(struct tracer *tracer);
3219
3220 static void
3221 destroy_trace_option_files(struct trace_option_dentry *topts);
3222
3223 static int tracing_set_tracer(const char *buf)
3224 {
3225 static struct trace_option_dentry *topts;
3226 struct trace_array *tr = &global_trace;
3227 struct tracer *t;
3228 bool had_max_tr;
3229 int ret = 0;
3230
3231 mutex_lock(&trace_types_lock);
3232
3233 if (!ring_buffer_expanded) {
3234 ret = __tracing_resize_ring_buffer(trace_buf_size,
3235 RING_BUFFER_ALL_CPUS);
3236 if (ret < 0)
3237 goto out;
3238 ret = 0;
3239 }
3240
3241 for (t = trace_types; t; t = t->next) {
3242 if (strcmp(t->name, buf) == 0)
3243 break;
3244 }
3245 if (!t) {
3246 ret = -EINVAL;
3247 goto out;
3248 }
3249 if (t == current_trace)
3250 goto out;
3251
3252 trace_branch_disable();
3253 if (current_trace->reset)
3254 current_trace->reset(tr);
3255
3256 had_max_tr = current_trace->allocated_snapshot;
3257 current_trace = &nop_trace;
3258
3259 if (had_max_tr && !t->use_max_tr) {
3260 /*
3261 * We need to make sure that the update_max_tr sees that
3262 * current_trace changed to nop_trace to keep it from
3263 * swapping the buffers after we resize it.
3264 * The update_max_tr is called from interrupts disabled
3265 * so a synchronized_sched() is sufficient.
3266 */
3267 synchronize_sched();
3268 /*
3269 * We don't free the ring buffer. instead, resize it because
3270 * The max_tr ring buffer has some state (e.g. ring->clock) and
3271 * we want preserve it.
3272 */
3273 ring_buffer_resize(max_tr.buffer, 1, RING_BUFFER_ALL_CPUS);
3274 set_buffer_entries(&max_tr, 1);
3275 tracing_reset_online_cpus(&max_tr);
3276 current_trace->allocated_snapshot = false;
3277 }
3278 destroy_trace_option_files(topts);
3279
3280 topts = create_trace_option_files(t);
3281 if (t->use_max_tr && !had_max_tr) {
3282 /* we need to make per cpu buffer sizes equivalent */
3283 ret = resize_buffer_duplicate_size(&max_tr, &global_trace,
3284 RING_BUFFER_ALL_CPUS);
3285 if (ret < 0)
3286 goto out;
3287 t->allocated_snapshot = true;
3288 }
3289
3290 if (t->init) {
3291 ret = tracer_init(t, tr);
3292 if (ret)
3293 goto out;
3294 }
3295
3296 current_trace = t;
3297 trace_branch_enable(tr);
3298 out:
3299 mutex_unlock(&trace_types_lock);
3300
3301 return ret;
3302 }
3303
3304 static ssize_t
3305 tracing_set_trace_write(struct file *filp, const char __user *ubuf,
3306 size_t cnt, loff_t *ppos)
3307 {
3308 char buf[MAX_TRACER_SIZE+1];
3309 int i;
3310 size_t ret;
3311 int err;
3312
3313 ret = cnt;
3314
3315 if (cnt > MAX_TRACER_SIZE)
3316 cnt = MAX_TRACER_SIZE;
3317
3318 if (copy_from_user(&buf, ubuf, cnt))
3319 return -EFAULT;
3320
3321 buf[cnt] = 0;
3322
3323 /* strip ending whitespace. */
3324 for (i = cnt - 1; i > 0 && isspace(buf[i]); i--)
3325 buf[i] = 0;
3326
3327 err = tracing_set_tracer(buf);
3328 if (err)
3329 return err;
3330
3331 *ppos += ret;
3332
3333 return ret;
3334 }
3335
3336 static ssize_t
3337 tracing_max_lat_read(struct file *filp, char __user *ubuf,
3338 size_t cnt, loff_t *ppos)
3339 {
3340 unsigned long *ptr = filp->private_data;
3341 char buf[64];
3342 int r;
3343
3344 r = snprintf(buf, sizeof(buf), "%ld\n",
3345 *ptr == (unsigned long)-1 ? -1 : nsecs_to_usecs(*ptr));
3346 if (r > sizeof(buf))
3347 r = sizeof(buf);
3348 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
3349 }
3350
3351 static ssize_t
3352 tracing_max_lat_write(struct file *filp, const char __user *ubuf,
3353 size_t cnt, loff_t *ppos)
3354 {
3355 unsigned long *ptr = filp->private_data;
3356 unsigned long val;
3357 int ret;
3358
3359 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
3360 if (ret)
3361 return ret;
3362
3363 *ptr = val * 1000;
3364
3365 return cnt;
3366 }
3367
3368 static int tracing_open_pipe(struct inode *inode, struct file *filp)
3369 {
3370 long cpu_file = (long) inode->i_private;
3371 struct trace_iterator *iter;
3372 int ret = 0;
3373
3374 if (tracing_disabled)
3375 return -ENODEV;
3376
3377 mutex_lock(&trace_types_lock);
3378
3379 /* create a buffer to store the information to pass to userspace */
3380 iter = kzalloc(sizeof(*iter), GFP_KERNEL);
3381 if (!iter) {
3382 ret = -ENOMEM;
3383 goto out;
3384 }
3385
3386 /*
3387 * We make a copy of the current tracer to avoid concurrent
3388 * changes on it while we are reading.
3389 */
3390 iter->trace = kmalloc(sizeof(*iter->trace), GFP_KERNEL);
3391 if (!iter->trace) {
3392 ret = -ENOMEM;
3393 goto fail;
3394 }
3395 *iter->trace = *current_trace;
3396
3397 if (!alloc_cpumask_var(&iter->started, GFP_KERNEL)) {
3398 ret = -ENOMEM;
3399 goto fail;
3400 }
3401
3402 /* trace pipe does not show start of buffer */
3403 cpumask_setall(iter->started);
3404
3405 if (trace_flags & TRACE_ITER_LATENCY_FMT)
3406 iter->iter_flags |= TRACE_FILE_LAT_FMT;
3407
3408 /* Output in nanoseconds only if we are using a clock in nanoseconds. */
3409 if (trace_clocks[trace_clock_id].in_ns)
3410 iter->iter_flags |= TRACE_FILE_TIME_IN_NS;
3411
3412 iter->cpu_file = cpu_file;
3413 iter->tr = &global_trace;
3414 mutex_init(&iter->mutex);
3415 filp->private_data = iter;
3416
3417 if (iter->trace->pipe_open)
3418 iter->trace->pipe_open(iter);
3419
3420 nonseekable_open(inode, filp);
3421 out:
3422 mutex_unlock(&trace_types_lock);
3423 return ret;
3424
3425 fail:
3426 kfree(iter->trace);
3427 kfree(iter);
3428 mutex_unlock(&trace_types_lock);
3429 return ret;
3430 }
3431
3432 static int tracing_release_pipe(struct inode *inode, struct file *file)
3433 {
3434 struct trace_iterator *iter = file->private_data;
3435
3436 mutex_lock(&trace_types_lock);
3437
3438 if (iter->trace->pipe_close)
3439 iter->trace->pipe_close(iter);
3440
3441 mutex_unlock(&trace_types_lock);
3442
3443 free_cpumask_var(iter->started);
3444 mutex_destroy(&iter->mutex);
3445 kfree(iter->trace);
3446 kfree(iter);
3447
3448 return 0;
3449 }
3450
3451 static unsigned int
3452 tracing_poll_pipe(struct file *filp, poll_table *poll_table)
3453 {
3454 struct trace_iterator *iter = filp->private_data;
3455
3456 if (trace_flags & TRACE_ITER_BLOCK) {
3457 /*
3458 * Always select as readable when in blocking mode
3459 */
3460 return POLLIN | POLLRDNORM;
3461 } else {
3462 if (!trace_empty(iter))
3463 return POLLIN | POLLRDNORM;
3464 poll_wait(filp, &trace_wait, poll_table);
3465 if (!trace_empty(iter))
3466 return POLLIN | POLLRDNORM;
3467
3468 return 0;
3469 }
3470 }
3471
3472 /*
3473 * This is a make-shift waitqueue.
3474 * A tracer might use this callback on some rare cases:
3475 *
3476 * 1) the current tracer might hold the runqueue lock when it wakes up
3477 * a reader, hence a deadlock (sched, function, and function graph tracers)
3478 * 2) the function tracers, trace all functions, we don't want
3479 * the overhead of calling wake_up and friends
3480 * (and tracing them too)
3481 *
3482 * Anyway, this is really very primitive wakeup.
3483 */
3484 void poll_wait_pipe(struct trace_iterator *iter)
3485 {
3486 set_current_state(TASK_INTERRUPTIBLE);
3487 /* sleep for 100 msecs, and try again. */
3488 schedule_timeout(HZ / 10);
3489 }
3490
3491 /* Must be called with trace_types_lock mutex held. */
3492 static int tracing_wait_pipe(struct file *filp)
3493 {
3494 struct trace_iterator *iter = filp->private_data;
3495
3496 while (trace_empty(iter)) {
3497
3498 if ((filp->f_flags & O_NONBLOCK)) {
3499 return -EAGAIN;
3500 }
3501
3502 mutex_unlock(&iter->mutex);
3503
3504 iter->trace->wait_pipe(iter);
3505
3506 mutex_lock(&iter->mutex);
3507
3508 if (signal_pending(current))
3509 return -EINTR;
3510
3511 /*
3512 * We block until we read something and tracing is disabled.
3513 * We still block if tracing is disabled, but we have never
3514 * read anything. This allows a user to cat this file, and
3515 * then enable tracing. But after we have read something,
3516 * we give an EOF when tracing is again disabled.
3517 *
3518 * iter->pos will be 0 if we haven't read anything.
3519 */
3520 if (!tracing_is_enabled() && iter->pos)
3521 break;
3522 }
3523
3524 return 1;
3525 }
3526
3527 /*
3528 * Consumer reader.
3529 */
3530 static ssize_t
3531 tracing_read_pipe(struct file *filp, char __user *ubuf,
3532 size_t cnt, loff_t *ppos)
3533 {
3534 struct trace_iterator *iter = filp->private_data;
3535 ssize_t sret;
3536
3537 /* return any leftover data */
3538 sret = trace_seq_to_user(&iter->seq, ubuf, cnt);
3539 if (sret != -EBUSY)
3540 return sret;
3541
3542 trace_seq_init(&iter->seq);
3543
3544 /* copy the tracer to avoid using a global lock all around */
3545 mutex_lock(&trace_types_lock);
3546 if (unlikely(iter->trace->name != current_trace->name))
3547 *iter->trace = *current_trace;
3548 mutex_unlock(&trace_types_lock);
3549
3550 /*
3551 * Avoid more than one consumer on a single file descriptor
3552 * This is just a matter of traces coherency, the ring buffer itself
3553 * is protected.
3554 */
3555 mutex_lock(&iter->mutex);
3556 if (iter->trace->read) {
3557 sret = iter->trace->read(iter, filp, ubuf, cnt, ppos);
3558 if (sret)
3559 goto out;
3560 }
3561
3562 waitagain:
3563 sret = tracing_wait_pipe(filp);
3564 if (sret <= 0)
3565 goto out;
3566
3567 /* stop when tracing is finished */
3568 if (trace_empty(iter)) {
3569 sret = 0;
3570 goto out;
3571 }
3572
3573 if (cnt >= PAGE_SIZE)
3574 cnt = PAGE_SIZE - 1;
3575
3576 /* reset all but tr, trace, and overruns */
3577 memset(&iter->seq, 0,
3578 sizeof(struct trace_iterator) -
3579 offsetof(struct trace_iterator, seq));
3580 iter->pos = -1;
3581
3582 trace_event_read_lock();
3583 trace_access_lock(iter->cpu_file);
3584 while (trace_find_next_entry_inc(iter) != NULL) {
3585 enum print_line_t ret;
3586 int len = iter->seq.len;
3587
3588 ret = print_trace_line(iter);
3589 if (ret == TRACE_TYPE_PARTIAL_LINE) {
3590 /* don't print partial lines */
3591 iter->seq.len = len;
3592 break;
3593 }
3594 if (ret != TRACE_TYPE_NO_CONSUME)
3595 trace_consume(iter);
3596
3597 if (iter->seq.len >= cnt)
3598 break;
3599
3600 /*
3601 * Setting the full flag means we reached the trace_seq buffer
3602 * size and we should leave by partial output condition above.
3603 * One of the trace_seq_* functions is not used properly.
3604 */
3605 WARN_ONCE(iter->seq.full, "full flag set for trace type %d",
3606 iter->ent->type);
3607 }
3608 trace_access_unlock(iter->cpu_file);
3609 trace_event_read_unlock();
3610
3611 /* Now copy what we have to the user */
3612 sret = trace_seq_to_user(&iter->seq, ubuf, cnt);
3613 if (iter->seq.readpos >= iter->seq.len)
3614 trace_seq_init(&iter->seq);
3615
3616 /*
3617 * If there was nothing to send to user, in spite of consuming trace
3618 * entries, go back to wait for more entries.
3619 */
3620 if (sret == -EBUSY)
3621 goto waitagain;
3622
3623 out:
3624 mutex_unlock(&iter->mutex);
3625
3626 return sret;
3627 }
3628
3629 static void tracing_pipe_buf_release(struct pipe_inode_info *pipe,
3630 struct pipe_buffer *buf)
3631 {
3632 __free_page(buf->page);
3633 }
3634
3635 static void tracing_spd_release_pipe(struct splice_pipe_desc *spd,
3636 unsigned int idx)
3637 {
3638 __free_page(spd->pages[idx]);
3639 }
3640
3641 static const struct pipe_buf_operations tracing_pipe_buf_ops = {
3642 .can_merge = 0,
3643 .map = generic_pipe_buf_map,
3644 .unmap = generic_pipe_buf_unmap,
3645 .confirm = generic_pipe_buf_confirm,
3646 .release = tracing_pipe_buf_release,
3647 .steal = generic_pipe_buf_steal,
3648 .get = generic_pipe_buf_get,
3649 };
3650
3651 static size_t
3652 tracing_fill_pipe_page(size_t rem, struct trace_iterator *iter)
3653 {
3654 size_t count;
3655 int ret;
3656
3657 /* Seq buffer is page-sized, exactly what we need. */
3658 for (;;) {
3659 count = iter->seq.len;
3660 ret = print_trace_line(iter);
3661 count = iter->seq.len - count;
3662 if (rem < count) {
3663 rem = 0;
3664 iter->seq.len -= count;
3665 break;
3666 }
3667 if (ret == TRACE_TYPE_PARTIAL_LINE) {
3668 iter->seq.len -= count;
3669 break;
3670 }
3671
3672 if (ret != TRACE_TYPE_NO_CONSUME)
3673 trace_consume(iter);
3674 rem -= count;
3675 if (!trace_find_next_entry_inc(iter)) {
3676 rem = 0;
3677 iter->ent = NULL;
3678 break;
3679 }
3680 }
3681
3682 return rem;
3683 }
3684
3685 static ssize_t tracing_splice_read_pipe(struct file *filp,
3686 loff_t *ppos,
3687 struct pipe_inode_info *pipe,
3688 size_t len,
3689 unsigned int flags)
3690 {
3691 struct page *pages_def[PIPE_DEF_BUFFERS];
3692 struct partial_page partial_def[PIPE_DEF_BUFFERS];
3693 struct trace_iterator *iter = filp->private_data;
3694 struct splice_pipe_desc spd = {
3695 .pages = pages_def,
3696 .partial = partial_def,
3697 .nr_pages = 0, /* This gets updated below. */
3698 .nr_pages_max = PIPE_DEF_BUFFERS,
3699 .flags = flags,
3700 .ops = &tracing_pipe_buf_ops,
3701 .spd_release = tracing_spd_release_pipe,
3702 };
3703 ssize_t ret;
3704 size_t rem;
3705 unsigned int i;
3706
3707 if (splice_grow_spd(pipe, &spd))
3708 return -ENOMEM;
3709
3710 /* copy the tracer to avoid using a global lock all around */
3711 mutex_lock(&trace_types_lock);
3712 if (unlikely(iter->trace->name != current_trace->name))
3713 *iter->trace = *current_trace;
3714 mutex_unlock(&trace_types_lock);
3715
3716 mutex_lock(&iter->mutex);
3717
3718 if (iter->trace->splice_read) {
3719 ret = iter->trace->splice_read(iter, filp,
3720 ppos, pipe, len, flags);
3721 if (ret)
3722 goto out_err;
3723 }
3724
3725 ret = tracing_wait_pipe(filp);
3726 if (ret <= 0)
3727 goto out_err;
3728
3729 if (!iter->ent && !trace_find_next_entry_inc(iter)) {
3730 ret = -EFAULT;
3731 goto out_err;
3732 }
3733
3734 trace_event_read_lock();
3735 trace_access_lock(iter->cpu_file);
3736
3737 /* Fill as many pages as possible. */
3738 for (i = 0, rem = len; i < pipe->buffers && rem; i++) {
3739 spd.pages[i] = alloc_page(GFP_KERNEL);
3740 if (!spd.pages[i])
3741 break;
3742
3743 rem = tracing_fill_pipe_page(rem, iter);
3744
3745 /* Copy the data into the page, so we can start over. */
3746 ret = trace_seq_to_buffer(&iter->seq,
3747 page_address(spd.pages[i]),
3748 iter->seq.len);
3749 if (ret < 0) {
3750 __free_page(spd.pages[i]);
3751 break;
3752 }
3753 spd.partial[i].offset = 0;
3754 spd.partial[i].len = iter->seq.len;
3755
3756 trace_seq_init(&iter->seq);
3757 }
3758
3759 trace_access_unlock(iter->cpu_file);
3760 trace_event_read_unlock();
3761 mutex_unlock(&iter->mutex);
3762
3763 spd.nr_pages = i;
3764
3765 ret = splice_to_pipe(pipe, &spd);
3766 out:
3767 splice_shrink_spd(&spd);
3768 return ret;
3769
3770 out_err:
3771 mutex_unlock(&iter->mutex);
3772 goto out;
3773 }
3774
3775 struct ftrace_entries_info {
3776 struct trace_array *tr;
3777 int cpu;
3778 };
3779
3780 static int tracing_entries_open(struct inode *inode, struct file *filp)
3781 {
3782 struct ftrace_entries_info *info;
3783
3784 if (tracing_disabled)
3785 return -ENODEV;
3786
3787 info = kzalloc(sizeof(*info), GFP_KERNEL);
3788 if (!info)
3789 return -ENOMEM;
3790
3791 info->tr = &global_trace;
3792 info->cpu = (unsigned long)inode->i_private;
3793
3794 filp->private_data = info;
3795
3796 return 0;
3797 }
3798
3799 static ssize_t
3800 tracing_entries_read(struct file *filp, char __user *ubuf,
3801 size_t cnt, loff_t *ppos)
3802 {
3803 struct ftrace_entries_info *info = filp->private_data;
3804 struct trace_array *tr = info->tr;
3805 char buf[64];
3806 int r = 0;
3807 ssize_t ret;
3808
3809 mutex_lock(&trace_types_lock);
3810
3811 if (info->cpu == RING_BUFFER_ALL_CPUS) {
3812 int cpu, buf_size_same;
3813 unsigned long size;
3814
3815 size = 0;
3816 buf_size_same = 1;
3817 /* check if all cpu sizes are same */
3818 for_each_tracing_cpu(cpu) {
3819 /* fill in the size from first enabled cpu */
3820 if (size == 0)
3821 size = tr->data[cpu]->entries;
3822 if (size != tr->data[cpu]->entries) {
3823 buf_size_same = 0;
3824 break;
3825 }
3826 }
3827
3828 if (buf_size_same) {
3829 if (!ring_buffer_expanded)
3830 r = sprintf(buf, "%lu (expanded: %lu)\n",
3831 size >> 10,
3832 trace_buf_size >> 10);
3833 else
3834 r = sprintf(buf, "%lu\n", size >> 10);
3835 } else
3836 r = sprintf(buf, "X\n");
3837 } else
3838 r = sprintf(buf, "%lu\n", tr->data[info->cpu]->entries >> 10);
3839
3840 mutex_unlock(&trace_types_lock);
3841
3842 ret = simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
3843 return ret;
3844 }
3845
3846 static ssize_t
3847 tracing_entries_write(struct file *filp, const char __user *ubuf,
3848 size_t cnt, loff_t *ppos)
3849 {
3850 struct ftrace_entries_info *info = filp->private_data;
3851 unsigned long val;
3852 int ret;
3853
3854 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
3855 if (ret)
3856 return ret;
3857
3858 /* must have at least 1 entry */
3859 if (!val)
3860 return -EINVAL;
3861
3862 /* value is in KB */
3863 val <<= 10;
3864
3865 ret = tracing_resize_ring_buffer(val, info->cpu);
3866 if (ret < 0)
3867 return ret;
3868
3869 *ppos += cnt;
3870
3871 return cnt;
3872 }
3873
3874 static int
3875 tracing_entries_release(struct inode *inode, struct file *filp)
3876 {
3877 struct ftrace_entries_info *info = filp->private_data;
3878
3879 kfree(info);
3880
3881 return 0;
3882 }
3883
3884 static ssize_t
3885 tracing_total_entries_read(struct file *filp, char __user *ubuf,
3886 size_t cnt, loff_t *ppos)
3887 {
3888 struct trace_array *tr = filp->private_data;
3889 char buf[64];
3890 int r, cpu;
3891 unsigned long size = 0, expanded_size = 0;
3892
3893 mutex_lock(&trace_types_lock);
3894 for_each_tracing_cpu(cpu) {
3895 size += tr->data[cpu]->entries >> 10;
3896 if (!ring_buffer_expanded)
3897 expanded_size += trace_buf_size >> 10;
3898 }
3899 if (ring_buffer_expanded)
3900 r = sprintf(buf, "%lu\n", size);
3901 else
3902 r = sprintf(buf, "%lu (expanded: %lu)\n", size, expanded_size);
3903 mutex_unlock(&trace_types_lock);
3904
3905 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
3906 }
3907
3908 static ssize_t
3909 tracing_free_buffer_write(struct file *filp, const char __user *ubuf,
3910 size_t cnt, loff_t *ppos)
3911 {
3912 /*
3913 * There is no need to read what the user has written, this function
3914 * is just to make sure that there is no error when "echo" is used
3915 */
3916
3917 *ppos += cnt;
3918
3919 return cnt;
3920 }
3921
3922 static int
3923 tracing_free_buffer_release(struct inode *inode, struct file *filp)
3924 {
3925 /* disable tracing ? */
3926 if (trace_flags & TRACE_ITER_STOP_ON_FREE)
3927 tracing_off();
3928 /* resize the ring buffer to 0 */
3929 tracing_resize_ring_buffer(0, RING_BUFFER_ALL_CPUS);
3930
3931 return 0;
3932 }
3933
3934 static ssize_t
3935 tracing_mark_write(struct file *filp, const char __user *ubuf,
3936 size_t cnt, loff_t *fpos)
3937 {
3938 unsigned long addr = (unsigned long)ubuf;
3939 struct ring_buffer_event *event;
3940 struct ring_buffer *buffer;
3941 struct print_entry *entry;
3942 unsigned long irq_flags;
3943 struct page *pages[2];
3944 void *map_page[2];
3945 int nr_pages = 1;
3946 ssize_t written;
3947 int offset;
3948 int size;
3949 int len;
3950 int ret;
3951 int i;
3952
3953 if (tracing_disabled)
3954 return -EINVAL;
3955
3956 if (!(trace_flags & TRACE_ITER_MARKERS))
3957 return -EINVAL;
3958
3959 if (cnt > TRACE_BUF_SIZE)
3960 cnt = TRACE_BUF_SIZE;
3961
3962 /*
3963 * Userspace is injecting traces into the kernel trace buffer.
3964 * We want to be as non intrusive as possible.
3965 * To do so, we do not want to allocate any special buffers
3966 * or take any locks, but instead write the userspace data
3967 * straight into the ring buffer.
3968 *
3969 * First we need to pin the userspace buffer into memory,
3970 * which, most likely it is, because it just referenced it.
3971 * But there's no guarantee that it is. By using get_user_pages_fast()
3972 * and kmap_atomic/kunmap_atomic() we can get access to the
3973 * pages directly. We then write the data directly into the
3974 * ring buffer.
3975 */
3976 BUILD_BUG_ON(TRACE_BUF_SIZE >= PAGE_SIZE);
3977
3978 /* check if we cross pages */
3979 if ((addr & PAGE_MASK) != ((addr + cnt) & PAGE_MASK))
3980 nr_pages = 2;
3981
3982 offset = addr & (PAGE_SIZE - 1);
3983 addr &= PAGE_MASK;
3984
3985 ret = get_user_pages_fast(addr, nr_pages, 0, pages);
3986 if (ret < nr_pages) {
3987 while (--ret >= 0)
3988 put_page(pages[ret]);
3989 written = -EFAULT;
3990 goto out;
3991 }
3992
3993 for (i = 0; i < nr_pages; i++)
3994 map_page[i] = kmap_atomic(pages[i]);
3995
3996 local_save_flags(irq_flags);
3997 size = sizeof(*entry) + cnt + 2; /* possible \n added */
3998 buffer = global_trace.buffer;
3999 event = trace_buffer_lock_reserve(buffer, TRACE_PRINT, size,
4000 irq_flags, preempt_count());
4001 if (!event) {
4002 /* Ring buffer disabled, return as if not open for write */
4003 written = -EBADF;
4004 goto out_unlock;
4005 }
4006
4007 entry = ring_buffer_event_data(event);
4008 entry->ip = _THIS_IP_;
4009
4010 if (nr_pages == 2) {
4011 len = PAGE_SIZE - offset;
4012 memcpy(&entry->buf, map_page[0] + offset, len);
4013 memcpy(&entry->buf[len], map_page[1], cnt - len);
4014 } else
4015 memcpy(&entry->buf, map_page[0] + offset, cnt);
4016
4017 if (entry->buf[cnt - 1] != '\n') {
4018 entry->buf[cnt] = '\n';
4019 entry->buf[cnt + 1] = '\0';
4020 } else
4021 entry->buf[cnt] = '\0';
4022
4023 __buffer_unlock_commit(buffer, event);
4024
4025 written = cnt;
4026
4027 *fpos += written;
4028
4029 out_unlock:
4030 for (i = 0; i < nr_pages; i++){
4031 kunmap_atomic(map_page[i]);
4032 put_page(pages[i]);
4033 }
4034 out:
4035 return written;
4036 }
4037
4038 static int tracing_clock_show(struct seq_file *m, void *v)
4039 {
4040 int i;
4041
4042 for (i = 0; i < ARRAY_SIZE(trace_clocks); i++)
4043 seq_printf(m,
4044 "%s%s%s%s", i ? " " : "",
4045 i == trace_clock_id ? "[" : "", trace_clocks[i].name,
4046 i == trace_clock_id ? "]" : "");
4047 seq_putc(m, '\n');
4048
4049 return 0;
4050 }
4051
4052 static ssize_t tracing_clock_write(struct file *filp, const char __user *ubuf,
4053 size_t cnt, loff_t *fpos)
4054 {
4055 char buf[64];
4056 const char *clockstr;
4057 int i;
4058
4059 if (cnt >= sizeof(buf))
4060 return -EINVAL;
4061
4062 if (copy_from_user(&buf, ubuf, cnt))
4063 return -EFAULT;
4064
4065 buf[cnt] = 0;
4066
4067 clockstr = strstrip(buf);
4068
4069 for (i = 0; i < ARRAY_SIZE(trace_clocks); i++) {
4070 if (strcmp(trace_clocks[i].name, clockstr) == 0)
4071 break;
4072 }
4073 if (i == ARRAY_SIZE(trace_clocks))
4074 return -EINVAL;
4075
4076 trace_clock_id = i;
4077
4078 mutex_lock(&trace_types_lock);
4079
4080 ring_buffer_set_clock(global_trace.buffer, trace_clocks[i].func);
4081 if (max_tr.buffer)
4082 ring_buffer_set_clock(max_tr.buffer, trace_clocks[i].func);
4083
4084 /*
4085 * New clock may not be consistent with the previous clock.
4086 * Reset the buffer so that it doesn't have incomparable timestamps.
4087 */
4088 tracing_reset_online_cpus(&global_trace);
4089 tracing_reset_online_cpus(&max_tr);
4090
4091 mutex_unlock(&trace_types_lock);
4092
4093 *fpos += cnt;
4094
4095 return cnt;
4096 }
4097
4098 static int tracing_clock_open(struct inode *inode, struct file *file)
4099 {
4100 if (tracing_disabled)
4101 return -ENODEV;
4102 return single_open(file, tracing_clock_show, NULL);
4103 }
4104
4105 #ifdef CONFIG_TRACER_SNAPSHOT
4106 static int tracing_snapshot_open(struct inode *inode, struct file *file)
4107 {
4108 struct trace_iterator *iter;
4109 int ret = 0;
4110
4111 if (file->f_mode & FMODE_READ) {
4112 iter = __tracing_open(inode, file, true);
4113 if (IS_ERR(iter))
4114 ret = PTR_ERR(iter);
4115 }
4116 return ret;
4117 }
4118
4119 static ssize_t
4120 tracing_snapshot_write(struct file *filp, const char __user *ubuf, size_t cnt,
4121 loff_t *ppos)
4122 {
4123 unsigned long val;
4124 int ret;
4125
4126 ret = tracing_update_buffers();
4127 if (ret < 0)
4128 return ret;
4129
4130 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
4131 if (ret)
4132 return ret;
4133
4134 mutex_lock(&trace_types_lock);
4135
4136 if (current_trace->use_max_tr) {
4137 ret = -EBUSY;
4138 goto out;
4139 }
4140
4141 switch (val) {
4142 case 0:
4143 if (current_trace->allocated_snapshot) {
4144 /* free spare buffer */
4145 ring_buffer_resize(max_tr.buffer, 1,
4146 RING_BUFFER_ALL_CPUS);
4147 set_buffer_entries(&max_tr, 1);
4148 tracing_reset_online_cpus(&max_tr);
4149 current_trace->allocated_snapshot = false;
4150 }
4151 break;
4152 case 1:
4153 if (!current_trace->allocated_snapshot) {
4154 /* allocate spare buffer */
4155 ret = resize_buffer_duplicate_size(&max_tr,
4156 &global_trace, RING_BUFFER_ALL_CPUS);
4157 if (ret < 0)
4158 break;
4159 current_trace->allocated_snapshot = true;
4160 }
4161
4162 local_irq_disable();
4163 /* Now, we're going to swap */
4164 update_max_tr(&global_trace, current, smp_processor_id());
4165 local_irq_enable();
4166 break;
4167 default:
4168 if (current_trace->allocated_snapshot)
4169 tracing_reset_online_cpus(&max_tr);
4170 else
4171 ret = -EINVAL;
4172 break;
4173 }
4174
4175 if (ret >= 0) {
4176 *ppos += cnt;
4177 ret = cnt;
4178 }
4179 out:
4180 mutex_unlock(&trace_types_lock);
4181 return ret;
4182 }
4183 #endif /* CONFIG_TRACER_SNAPSHOT */
4184
4185
4186 static const struct file_operations tracing_max_lat_fops = {
4187 .open = tracing_open_generic,
4188 .read = tracing_max_lat_read,
4189 .write = tracing_max_lat_write,
4190 .llseek = generic_file_llseek,
4191 };
4192
4193 static const struct file_operations set_tracer_fops = {
4194 .open = tracing_open_generic,
4195 .read = tracing_set_trace_read,
4196 .write = tracing_set_trace_write,
4197 .llseek = generic_file_llseek,
4198 };
4199
4200 static const struct file_operations tracing_pipe_fops = {
4201 .open = tracing_open_pipe,
4202 .poll = tracing_poll_pipe,
4203 .read = tracing_read_pipe,
4204 .splice_read = tracing_splice_read_pipe,
4205 .release = tracing_release_pipe,
4206 .llseek = no_llseek,
4207 };
4208
4209 static const struct file_operations tracing_entries_fops = {
4210 .open = tracing_entries_open,
4211 .read = tracing_entries_read,
4212 .write = tracing_entries_write,
4213 .release = tracing_entries_release,
4214 .llseek = generic_file_llseek,
4215 };
4216
4217 static const struct file_operations tracing_total_entries_fops = {
4218 .open = tracing_open_generic,
4219 .read = tracing_total_entries_read,
4220 .llseek = generic_file_llseek,
4221 };
4222
4223 static const struct file_operations tracing_free_buffer_fops = {
4224 .write = tracing_free_buffer_write,
4225 .release = tracing_free_buffer_release,
4226 };
4227
4228 static const struct file_operations tracing_mark_fops = {
4229 .open = tracing_open_generic,
4230 .write = tracing_mark_write,
4231 .llseek = generic_file_llseek,
4232 };
4233
4234 static const struct file_operations trace_clock_fops = {
4235 .open = tracing_clock_open,
4236 .read = seq_read,
4237 .llseek = seq_lseek,
4238 .release = single_release,
4239 .write = tracing_clock_write,
4240 };
4241
4242 #ifdef CONFIG_TRACER_SNAPSHOT
4243 static const struct file_operations snapshot_fops = {
4244 .open = tracing_snapshot_open,
4245 .read = seq_read,
4246 .write = tracing_snapshot_write,
4247 .llseek = tracing_seek,
4248 .release = tracing_release,
4249 };
4250 #endif /* CONFIG_TRACER_SNAPSHOT */
4251
4252 struct ftrace_buffer_info {
4253 struct trace_array *tr;
4254 void *spare;
4255 int cpu;
4256 unsigned int read;
4257 };
4258
4259 static int tracing_buffers_open(struct inode *inode, struct file *filp)
4260 {
4261 int cpu = (int)(long)inode->i_private;
4262 struct ftrace_buffer_info *info;
4263
4264 if (tracing_disabled)
4265 return -ENODEV;
4266
4267 info = kzalloc(sizeof(*info), GFP_KERNEL);
4268 if (!info)
4269 return -ENOMEM;
4270
4271 info->tr = &global_trace;
4272 info->cpu = cpu;
4273 info->spare = NULL;
4274 /* Force reading ring buffer for first read */
4275 info->read = (unsigned int)-1;
4276
4277 filp->private_data = info;
4278
4279 return nonseekable_open(inode, filp);
4280 }
4281
4282 static ssize_t
4283 tracing_buffers_read(struct file *filp, char __user *ubuf,
4284 size_t count, loff_t *ppos)
4285 {
4286 struct ftrace_buffer_info *info = filp->private_data;
4287 ssize_t ret;
4288 size_t size;
4289
4290 if (!count)
4291 return 0;
4292
4293 if (!info->spare)
4294 info->spare = ring_buffer_alloc_read_page(info->tr->buffer, info->cpu);
4295 if (!info->spare)
4296 return -ENOMEM;
4297
4298 /* Do we have previous read data to read? */
4299 if (info->read < PAGE_SIZE)
4300 goto read;
4301
4302 trace_access_lock(info->cpu);
4303 ret = ring_buffer_read_page(info->tr->buffer,
4304 &info->spare,
4305 count,
4306 info->cpu, 0);
4307 trace_access_unlock(info->cpu);
4308 if (ret < 0)
4309 return 0;
4310
4311 info->read = 0;
4312
4313 read:
4314 size = PAGE_SIZE - info->read;
4315 if (size > count)
4316 size = count;
4317
4318 ret = copy_to_user(ubuf, info->spare + info->read, size);
4319 if (ret == size)
4320 return -EFAULT;
4321 size -= ret;
4322
4323 *ppos += size;
4324 info->read += size;
4325
4326 return size;
4327 }
4328
4329 static int tracing_buffers_release(struct inode *inode, struct file *file)
4330 {
4331 struct ftrace_buffer_info *info = file->private_data;
4332
4333 if (info->spare)
4334 ring_buffer_free_read_page(info->tr->buffer, info->spare);
4335 kfree(info);
4336
4337 return 0;
4338 }
4339
4340 struct buffer_ref {
4341 struct ring_buffer *buffer;
4342 void *page;
4343 int ref;
4344 };
4345
4346 static void buffer_pipe_buf_release(struct pipe_inode_info *pipe,
4347 struct pipe_buffer *buf)
4348 {
4349 struct buffer_ref *ref = (struct buffer_ref *)buf->private;
4350
4351 if (--ref->ref)
4352 return;
4353
4354 ring_buffer_free_read_page(ref->buffer, ref->page);
4355 kfree(ref);
4356 buf->private = 0;
4357 }
4358
4359 static void buffer_pipe_buf_get(struct pipe_inode_info *pipe,
4360 struct pipe_buffer *buf)
4361 {
4362 struct buffer_ref *ref = (struct buffer_ref *)buf->private;
4363
4364 ref->ref++;
4365 }
4366
4367 /* Pipe buffer operations for a buffer. */
4368 static const struct pipe_buf_operations buffer_pipe_buf_ops = {
4369 .can_merge = 0,
4370 .map = generic_pipe_buf_map,
4371 .unmap = generic_pipe_buf_unmap,
4372 .confirm = generic_pipe_buf_confirm,
4373 .release = buffer_pipe_buf_release,
4374 .steal = generic_pipe_buf_steal,
4375 .get = buffer_pipe_buf_get,
4376 };
4377
4378 /*
4379 * Callback from splice_to_pipe(), if we need to release some pages
4380 * at the end of the spd in case we error'ed out in filling the pipe.
4381 */
4382 static void buffer_spd_release(struct splice_pipe_desc *spd, unsigned int i)
4383 {
4384 struct buffer_ref *ref =
4385 (struct buffer_ref *)spd->partial[i].private;
4386
4387 if (--ref->ref)
4388 return;
4389
4390 ring_buffer_free_read_page(ref->buffer, ref->page);
4391 kfree(ref);
4392 spd->partial[i].private = 0;
4393 }
4394
4395 static ssize_t
4396 tracing_buffers_splice_read(struct file *file, loff_t *ppos,
4397 struct pipe_inode_info *pipe, size_t len,
4398 unsigned int flags)
4399 {
4400 struct ftrace_buffer_info *info = file->private_data;
4401 struct partial_page partial_def[PIPE_DEF_BUFFERS];
4402 struct page *pages_def[PIPE_DEF_BUFFERS];
4403 struct splice_pipe_desc spd = {
4404 .pages = pages_def,
4405 .partial = partial_def,
4406 .nr_pages_max = PIPE_DEF_BUFFERS,
4407 .flags = flags,
4408 .ops = &buffer_pipe_buf_ops,
4409 .spd_release = buffer_spd_release,
4410 };
4411 struct buffer_ref *ref;
4412 int entries, size, i;
4413 size_t ret;
4414
4415 if (splice_grow_spd(pipe, &spd))
4416 return -ENOMEM;
4417
4418 if (*ppos & (PAGE_SIZE - 1)) {
4419 ret = -EINVAL;
4420 goto out;
4421 }
4422
4423 if (len & (PAGE_SIZE - 1)) {
4424 if (len < PAGE_SIZE) {
4425 ret = -EINVAL;
4426 goto out;
4427 }
4428 len &= PAGE_MASK;
4429 }
4430
4431 trace_access_lock(info->cpu);
4432 entries = ring_buffer_entries_cpu(info->tr->buffer, info->cpu);
4433
4434 for (i = 0; i < pipe->buffers && len && entries; i++, len -= PAGE_SIZE) {
4435 struct page *page;
4436 int r;
4437
4438 ref = kzalloc(sizeof(*ref), GFP_KERNEL);
4439 if (!ref)
4440 break;
4441
4442 ref->ref = 1;
4443 ref->buffer = info->tr->buffer;
4444 ref->page = ring_buffer_alloc_read_page(ref->buffer, info->cpu);
4445 if (!ref->page) {
4446 kfree(ref);
4447 break;
4448 }
4449
4450 r = ring_buffer_read_page(ref->buffer, &ref->page,
4451 len, info->cpu, 1);
4452 if (r < 0) {
4453 ring_buffer_free_read_page(ref->buffer, ref->page);
4454 kfree(ref);
4455 break;
4456 }
4457
4458 /*
4459 * zero out any left over data, this is going to
4460 * user land.
4461 */
4462 size = ring_buffer_page_len(ref->page);
4463 if (size < PAGE_SIZE)
4464 memset(ref->page + size, 0, PAGE_SIZE - size);
4465
4466 page = virt_to_page(ref->page);
4467
4468 spd.pages[i] = page;
4469 spd.partial[i].len = PAGE_SIZE;
4470 spd.partial[i].offset = 0;
4471 spd.partial[i].private = (unsigned long)ref;
4472 spd.nr_pages++;
4473 *ppos += PAGE_SIZE;
4474
4475 entries = ring_buffer_entries_cpu(info->tr->buffer, info->cpu);
4476 }
4477
4478 trace_access_unlock(info->cpu);
4479 spd.nr_pages = i;
4480
4481 /* did we read anything? */
4482 if (!spd.nr_pages) {
4483 if (flags & SPLICE_F_NONBLOCK)
4484 ret = -EAGAIN;
4485 else
4486 ret = 0;
4487 /* TODO: block */
4488 goto out;
4489 }
4490
4491 ret = splice_to_pipe(pipe, &spd);
4492 splice_shrink_spd(&spd);
4493 out:
4494 return ret;
4495 }
4496
4497 static const struct file_operations tracing_buffers_fops = {
4498 .open = tracing_buffers_open,
4499 .read = tracing_buffers_read,
4500 .release = tracing_buffers_release,
4501 .splice_read = tracing_buffers_splice_read,
4502 .llseek = no_llseek,
4503 };
4504
4505 static ssize_t
4506 tracing_stats_read(struct file *filp, char __user *ubuf,
4507 size_t count, loff_t *ppos)
4508 {
4509 unsigned long cpu = (unsigned long)filp->private_data;
4510 struct trace_array *tr = &global_trace;
4511 struct trace_seq *s;
4512 unsigned long cnt;
4513 unsigned long long t;
4514 unsigned long usec_rem;
4515
4516 s = kmalloc(sizeof(*s), GFP_KERNEL);
4517 if (!s)
4518 return -ENOMEM;
4519
4520 trace_seq_init(s);
4521
4522 cnt = ring_buffer_entries_cpu(tr->buffer, cpu);
4523 trace_seq_printf(s, "entries: %ld\n", cnt);
4524
4525 cnt = ring_buffer_overrun_cpu(tr->buffer, cpu);
4526 trace_seq_printf(s, "overrun: %ld\n", cnt);
4527
4528 cnt = ring_buffer_commit_overrun_cpu(tr->buffer, cpu);
4529 trace_seq_printf(s, "commit overrun: %ld\n", cnt);
4530
4531 cnt = ring_buffer_bytes_cpu(tr->buffer, cpu);
4532 trace_seq_printf(s, "bytes: %ld\n", cnt);
4533
4534 if (trace_clocks[trace_clock_id].in_ns) {
4535 /* local or global for trace_clock */
4536 t = ns2usecs(ring_buffer_oldest_event_ts(tr->buffer, cpu));
4537 usec_rem = do_div(t, USEC_PER_SEC);
4538 trace_seq_printf(s, "oldest event ts: %5llu.%06lu\n",
4539 t, usec_rem);
4540
4541 t = ns2usecs(ring_buffer_time_stamp(tr->buffer, cpu));
4542 usec_rem = do_div(t, USEC_PER_SEC);
4543 trace_seq_printf(s, "now ts: %5llu.%06lu\n", t, usec_rem);
4544 } else {
4545 /* counter or tsc mode for trace_clock */
4546 trace_seq_printf(s, "oldest event ts: %llu\n",
4547 ring_buffer_oldest_event_ts(tr->buffer, cpu));
4548
4549 trace_seq_printf(s, "now ts: %llu\n",
4550 ring_buffer_time_stamp(tr->buffer, cpu));
4551 }
4552
4553 cnt = ring_buffer_dropped_events_cpu(tr->buffer, cpu);
4554 trace_seq_printf(s, "dropped events: %ld\n", cnt);
4555
4556 cnt = ring_buffer_read_events_cpu(tr->buffer, cpu);
4557 trace_seq_printf(s, "read events: %ld\n", cnt);
4558
4559 count = simple_read_from_buffer(ubuf, count, ppos, s->buffer, s->len);
4560
4561 kfree(s);
4562
4563 return count;
4564 }
4565
4566 static const struct file_operations tracing_stats_fops = {
4567 .open = tracing_open_generic,
4568 .read = tracing_stats_read,
4569 .llseek = generic_file_llseek,
4570 };
4571
4572 #ifdef CONFIG_DYNAMIC_FTRACE
4573
4574 int __weak ftrace_arch_read_dyn_info(char *buf, int size)
4575 {
4576 return 0;
4577 }
4578
4579 static ssize_t
4580 tracing_read_dyn_info(struct file *filp, char __user *ubuf,
4581 size_t cnt, loff_t *ppos)
4582 {
4583 static char ftrace_dyn_info_buffer[1024];
4584 static DEFINE_MUTEX(dyn_info_mutex);
4585 unsigned long *p = filp->private_data;
4586 char *buf = ftrace_dyn_info_buffer;
4587 int size = ARRAY_SIZE(ftrace_dyn_info_buffer);
4588 int r;
4589
4590 mutex_lock(&dyn_info_mutex);
4591 r = sprintf(buf, "%ld ", *p);
4592
4593 r += ftrace_arch_read_dyn_info(buf+r, (size-1)-r);
4594 buf[r++] = '\n';
4595
4596 r = simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
4597
4598 mutex_unlock(&dyn_info_mutex);
4599
4600 return r;
4601 }
4602
4603 static const struct file_operations tracing_dyn_info_fops = {
4604 .open = tracing_open_generic,
4605 .read = tracing_read_dyn_info,
4606 .llseek = generic_file_llseek,
4607 };
4608 #endif
4609
4610 static struct dentry *d_tracer;
4611
4612 struct dentry *tracing_init_dentry(void)
4613 {
4614 static int once;
4615
4616 if (d_tracer)
4617 return d_tracer;
4618
4619 if (!debugfs_initialized())
4620 return NULL;
4621
4622 d_tracer = debugfs_create_dir("tracing", NULL);
4623
4624 if (!d_tracer && !once) {
4625 once = 1;
4626 pr_warning("Could not create debugfs directory 'tracing'\n");
4627 return NULL;
4628 }
4629
4630 return d_tracer;
4631 }
4632
4633 static struct dentry *d_percpu;
4634
4635 static struct dentry *tracing_dentry_percpu(void)
4636 {
4637 static int once;
4638 struct dentry *d_tracer;
4639
4640 if (d_percpu)
4641 return d_percpu;
4642
4643 d_tracer = tracing_init_dentry();
4644
4645 if (!d_tracer)
4646 return NULL;
4647
4648 d_percpu = debugfs_create_dir("per_cpu", d_tracer);
4649
4650 if (!d_percpu && !once) {
4651 once = 1;
4652 pr_warning("Could not create debugfs directory 'per_cpu'\n");
4653 return NULL;
4654 }
4655
4656 return d_percpu;
4657 }
4658
4659 static void tracing_init_debugfs_percpu(long cpu)
4660 {
4661 struct dentry *d_percpu = tracing_dentry_percpu();
4662 struct dentry *d_cpu;
4663 char cpu_dir[30]; /* 30 characters should be more than enough */
4664
4665 if (!d_percpu)
4666 return;
4667
4668 snprintf(cpu_dir, 30, "cpu%ld", cpu);
4669 d_cpu = debugfs_create_dir(cpu_dir, d_percpu);
4670 if (!d_cpu) {
4671 pr_warning("Could not create debugfs '%s' entry\n", cpu_dir);
4672 return;
4673 }
4674
4675 /* per cpu trace_pipe */
4676 trace_create_file("trace_pipe", 0444, d_cpu,
4677 (void *) cpu, &tracing_pipe_fops);
4678
4679 /* per cpu trace */
4680 trace_create_file("trace", 0644, d_cpu,
4681 (void *) cpu, &tracing_fops);
4682
4683 trace_create_file("trace_pipe_raw", 0444, d_cpu,
4684 (void *) cpu, &tracing_buffers_fops);
4685
4686 trace_create_file("stats", 0444, d_cpu,
4687 (void *) cpu, &tracing_stats_fops);
4688
4689 trace_create_file("buffer_size_kb", 0444, d_cpu,
4690 (void *) cpu, &tracing_entries_fops);
4691 }
4692
4693 #ifdef CONFIG_FTRACE_SELFTEST
4694 /* Let selftest have access to static functions in this file */
4695 #include "trace_selftest.c"
4696 #endif
4697
4698 struct trace_option_dentry {
4699 struct tracer_opt *opt;
4700 struct tracer_flags *flags;
4701 struct dentry *entry;
4702 };
4703
4704 static ssize_t
4705 trace_options_read(struct file *filp, char __user *ubuf, size_t cnt,
4706 loff_t *ppos)
4707 {
4708 struct trace_option_dentry *topt = filp->private_data;
4709 char *buf;
4710
4711 if (topt->flags->val & topt->opt->bit)
4712 buf = "1\n";
4713 else
4714 buf = "0\n";
4715
4716 return simple_read_from_buffer(ubuf, cnt, ppos, buf, 2);
4717 }
4718
4719 static ssize_t
4720 trace_options_write(struct file *filp, const char __user *ubuf, size_t cnt,
4721 loff_t *ppos)
4722 {
4723 struct trace_option_dentry *topt = filp->private_data;
4724 unsigned long val;
4725 int ret;
4726
4727 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
4728 if (ret)
4729 return ret;
4730
4731 if (val != 0 && val != 1)
4732 return -EINVAL;
4733
4734 if (!!(topt->flags->val & topt->opt->bit) != val) {
4735 mutex_lock(&trace_types_lock);
4736 ret = __set_tracer_option(current_trace, topt->flags,
4737 topt->opt, !val);
4738 mutex_unlock(&trace_types_lock);
4739 if (ret)
4740 return ret;
4741 }
4742
4743 *ppos += cnt;
4744
4745 return cnt;
4746 }
4747
4748
4749 static const struct file_operations trace_options_fops = {
4750 .open = tracing_open_generic,
4751 .read = trace_options_read,
4752 .write = trace_options_write,
4753 .llseek = generic_file_llseek,
4754 };
4755
4756 static ssize_t
4757 trace_options_core_read(struct file *filp, char __user *ubuf, size_t cnt,
4758 loff_t *ppos)
4759 {
4760 long index = (long)filp->private_data;
4761 char *buf;
4762
4763 if (trace_flags & (1 << index))
4764 buf = "1\n";
4765 else
4766 buf = "0\n";
4767
4768 return simple_read_from_buffer(ubuf, cnt, ppos, buf, 2);
4769 }
4770
4771 static ssize_t
4772 trace_options_core_write(struct file *filp, const char __user *ubuf, size_t cnt,
4773 loff_t *ppos)
4774 {
4775 long index = (long)filp->private_data;
4776 unsigned long val;
4777 int ret;
4778
4779 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
4780 if (ret)
4781 return ret;
4782
4783 if (val != 0 && val != 1)
4784 return -EINVAL;
4785 set_tracer_flags(1 << index, val);
4786
4787 *ppos += cnt;
4788
4789 return cnt;
4790 }
4791
4792 static const struct file_operations trace_options_core_fops = {
4793 .open = tracing_open_generic,
4794 .read = trace_options_core_read,
4795 .write = trace_options_core_write,
4796 .llseek = generic_file_llseek,
4797 };
4798
4799 struct dentry *trace_create_file(const char *name,
4800 umode_t mode,
4801 struct dentry *parent,
4802 void *data,
4803 const struct file_operations *fops)
4804 {
4805 struct dentry *ret;
4806
4807 ret = debugfs_create_file(name, mode, parent, data, fops);
4808 if (!ret)
4809 pr_warning("Could not create debugfs '%s' entry\n", name);
4810
4811 return ret;
4812 }
4813
4814
4815 static struct dentry *trace_options_init_dentry(void)
4816 {
4817 struct dentry *d_tracer;
4818 static struct dentry *t_options;
4819
4820 if (t_options)
4821 return t_options;
4822
4823 d_tracer = tracing_init_dentry();
4824 if (!d_tracer)
4825 return NULL;
4826
4827 t_options = debugfs_create_dir("options", d_tracer);
4828 if (!t_options) {
4829 pr_warning("Could not create debugfs directory 'options'\n");
4830 return NULL;
4831 }
4832
4833 return t_options;
4834 }
4835
4836 static void
4837 create_trace_option_file(struct trace_option_dentry *topt,
4838 struct tracer_flags *flags,
4839 struct tracer_opt *opt)
4840 {
4841 struct dentry *t_options;
4842
4843 t_options = trace_options_init_dentry();
4844 if (!t_options)
4845 return;
4846
4847 topt->flags = flags;
4848 topt->opt = opt;
4849
4850 topt->entry = trace_create_file(opt->name, 0644, t_options, topt,
4851 &trace_options_fops);
4852
4853 }
4854
4855 static struct trace_option_dentry *
4856 create_trace_option_files(struct tracer *tracer)
4857 {
4858 struct trace_option_dentry *topts;
4859 struct tracer_flags *flags;
4860 struct tracer_opt *opts;
4861 int cnt;
4862
4863 if (!tracer)
4864 return NULL;
4865
4866 flags = tracer->flags;
4867
4868 if (!flags || !flags->opts)
4869 return NULL;
4870
4871 opts = flags->opts;
4872
4873 for (cnt = 0; opts[cnt].name; cnt++)
4874 ;
4875
4876 topts = kcalloc(cnt + 1, sizeof(*topts), GFP_KERNEL);
4877 if (!topts)
4878 return NULL;
4879
4880 for (cnt = 0; opts[cnt].name; cnt++)
4881 create_trace_option_file(&topts[cnt], flags,
4882 &opts[cnt]);
4883
4884 return topts;
4885 }
4886
4887 static void
4888 destroy_trace_option_files(struct trace_option_dentry *topts)
4889 {
4890 int cnt;
4891
4892 if (!topts)
4893 return;
4894
4895 for (cnt = 0; topts[cnt].opt; cnt++) {
4896 if (topts[cnt].entry)
4897 debugfs_remove(topts[cnt].entry);
4898 }
4899
4900 kfree(topts);
4901 }
4902
4903 static struct dentry *
4904 create_trace_option_core_file(const char *option, long index)
4905 {
4906 struct dentry *t_options;
4907
4908 t_options = trace_options_init_dentry();
4909 if (!t_options)
4910 return NULL;
4911
4912 return trace_create_file(option, 0644, t_options, (void *)index,
4913 &trace_options_core_fops);
4914 }
4915
4916 static __init void create_trace_options_dir(void)
4917 {
4918 struct dentry *t_options;
4919 int i;
4920
4921 t_options = trace_options_init_dentry();
4922 if (!t_options)
4923 return;
4924
4925 for (i = 0; trace_options[i]; i++)
4926 create_trace_option_core_file(trace_options[i], i);
4927 }
4928
4929 static ssize_t
4930 rb_simple_read(struct file *filp, char __user *ubuf,
4931 size_t cnt, loff_t *ppos)
4932 {
4933 struct trace_array *tr = filp->private_data;
4934 struct ring_buffer *buffer = tr->buffer;
4935 char buf[64];
4936 int r;
4937
4938 if (buffer)
4939 r = ring_buffer_record_is_on(buffer);
4940 else
4941 r = 0;
4942
4943 r = sprintf(buf, "%d\n", r);
4944
4945 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
4946 }
4947
4948 static ssize_t
4949 rb_simple_write(struct file *filp, const char __user *ubuf,
4950 size_t cnt, loff_t *ppos)
4951 {
4952 struct trace_array *tr = filp->private_data;
4953 struct ring_buffer *buffer = tr->buffer;
4954 unsigned long val;
4955 int ret;
4956
4957 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
4958 if (ret)
4959 return ret;
4960
4961 if (buffer) {
4962 mutex_lock(&trace_types_lock);
4963 if (val) {
4964 ring_buffer_record_on(buffer);
4965 if (current_trace->start)
4966 current_trace->start(tr);
4967 } else {
4968 ring_buffer_record_off(buffer);
4969 if (current_trace->stop)
4970 current_trace->stop(tr);
4971 }
4972 mutex_unlock(&trace_types_lock);
4973 }
4974
4975 (*ppos)++;
4976
4977 return cnt;
4978 }
4979
4980 static const struct file_operations rb_simple_fops = {
4981 .open = tracing_open_generic,
4982 .read = rb_simple_read,
4983 .write = rb_simple_write,
4984 .llseek = default_llseek,
4985 };
4986
4987 static __init int tracer_init_debugfs(void)
4988 {
4989 struct dentry *d_tracer;
4990 int cpu;
4991
4992 trace_access_lock_init();
4993
4994 d_tracer = tracing_init_dentry();
4995
4996 trace_create_file("trace_options", 0644, d_tracer,
4997 NULL, &tracing_iter_fops);
4998
4999 trace_create_file("tracing_cpumask", 0644, d_tracer,
5000 NULL, &tracing_cpumask_fops);
5001
5002 trace_create_file("trace", 0644, d_tracer,
5003 (void *) TRACE_PIPE_ALL_CPU, &tracing_fops);
5004
5005 trace_create_file("available_tracers", 0444, d_tracer,
5006 &global_trace, &show_traces_fops);
5007
5008 trace_create_file("current_tracer", 0644, d_tracer,
5009 &global_trace, &set_tracer_fops);
5010
5011 #ifdef CONFIG_TRACER_MAX_TRACE
5012 trace_create_file("tracing_max_latency", 0644, d_tracer,
5013 &tracing_max_latency, &tracing_max_lat_fops);
5014 #endif
5015
5016 trace_create_file("tracing_thresh", 0644, d_tracer,
5017 &tracing_thresh, &tracing_max_lat_fops);
5018
5019 trace_create_file("README", 0444, d_tracer,
5020 NULL, &tracing_readme_fops);
5021
5022 trace_create_file("trace_pipe", 0444, d_tracer,
5023 (void *) TRACE_PIPE_ALL_CPU, &tracing_pipe_fops);
5024
5025 trace_create_file("buffer_size_kb", 0644, d_tracer,
5026 (void *) RING_BUFFER_ALL_CPUS, &tracing_entries_fops);
5027
5028 trace_create_file("buffer_total_size_kb", 0444, d_tracer,
5029 &global_trace, &tracing_total_entries_fops);
5030
5031 trace_create_file("free_buffer", 0644, d_tracer,
5032 &global_trace, &tracing_free_buffer_fops);
5033
5034 trace_create_file("trace_marker", 0220, d_tracer,
5035 NULL, &tracing_mark_fops);
5036
5037 trace_create_file("saved_cmdlines", 0444, d_tracer,
5038 NULL, &tracing_saved_cmdlines_fops);
5039
5040 trace_create_file("trace_clock", 0644, d_tracer, NULL,
5041 &trace_clock_fops);
5042
5043 trace_create_file("tracing_on", 0644, d_tracer,
5044 &global_trace, &rb_simple_fops);
5045
5046 #ifdef CONFIG_DYNAMIC_FTRACE
5047 trace_create_file("dyn_ftrace_total_info", 0444, d_tracer,
5048 &ftrace_update_tot_cnt, &tracing_dyn_info_fops);
5049 #endif
5050
5051 #ifdef CONFIG_TRACER_SNAPSHOT
5052 trace_create_file("snapshot", 0644, d_tracer,
5053 (void *) TRACE_PIPE_ALL_CPU, &snapshot_fops);
5054 #endif
5055
5056 create_trace_options_dir();
5057
5058 for_each_tracing_cpu(cpu)
5059 tracing_init_debugfs_percpu(cpu);
5060
5061 return 0;
5062 }
5063
5064 static int trace_panic_handler(struct notifier_block *this,
5065 unsigned long event, void *unused)
5066 {
5067 if (ftrace_dump_on_oops)
5068 ftrace_dump(ftrace_dump_on_oops);
5069 return NOTIFY_OK;
5070 }
5071
5072 static struct notifier_block trace_panic_notifier = {
5073 .notifier_call = trace_panic_handler,
5074 .next = NULL,
5075 .priority = 150 /* priority: INT_MAX >= x >= 0 */
5076 };
5077
5078 static int trace_die_handler(struct notifier_block *self,
5079 unsigned long val,
5080 void *data)
5081 {
5082 switch (val) {
5083 case DIE_OOPS:
5084 if (ftrace_dump_on_oops)
5085 ftrace_dump(ftrace_dump_on_oops);
5086 break;
5087 default:
5088 break;
5089 }
5090 return NOTIFY_OK;
5091 }
5092
5093 static struct notifier_block trace_die_notifier = {
5094 .notifier_call = trace_die_handler,
5095 .priority = 200
5096 };
5097
5098 /*
5099 * printk is set to max of 1024, we really don't need it that big.
5100 * Nothing should be printing 1000 characters anyway.
5101 */
5102 #define TRACE_MAX_PRINT 1000
5103
5104 /*
5105 * Define here KERN_TRACE so that we have one place to modify
5106 * it if we decide to change what log level the ftrace dump
5107 * should be at.
5108 */
5109 #define KERN_TRACE KERN_EMERG
5110
5111 void
5112 trace_printk_seq(struct trace_seq *s)
5113 {
5114 /* Probably should print a warning here. */
5115 if (s->len >= 1000)
5116 s->len = 1000;
5117
5118 /* should be zero ended, but we are paranoid. */
5119 s->buffer[s->len] = 0;
5120
5121 printk(KERN_TRACE "%s", s->buffer);
5122
5123 trace_seq_init(s);
5124 }
5125
5126 void trace_init_global_iter(struct trace_iterator *iter)
5127 {
5128 iter->tr = &global_trace;
5129 iter->trace = current_trace;
5130 iter->cpu_file = TRACE_PIPE_ALL_CPU;
5131 }
5132
5133 static void
5134 __ftrace_dump(bool disable_tracing, enum ftrace_dump_mode oops_dump_mode)
5135 {
5136 static arch_spinlock_t ftrace_dump_lock =
5137 (arch_spinlock_t)__ARCH_SPIN_LOCK_UNLOCKED;
5138 /* use static because iter can be a bit big for the stack */
5139 static struct trace_iterator iter;
5140 unsigned int old_userobj;
5141 static int dump_ran;
5142 unsigned long flags;
5143 int cnt = 0, cpu;
5144
5145 /* only one dump */
5146 local_irq_save(flags);
5147 arch_spin_lock(&ftrace_dump_lock);
5148 if (dump_ran)
5149 goto out;
5150
5151 dump_ran = 1;
5152
5153 tracing_off();
5154
5155 /* Did function tracer already get disabled? */
5156 if (ftrace_is_dead()) {
5157 printk("# WARNING: FUNCTION TRACING IS CORRUPTED\n");
5158 printk("# MAY BE MISSING FUNCTION EVENTS\n");
5159 }
5160
5161 if (disable_tracing)
5162 ftrace_kill();
5163
5164 /* Simulate the iterator */
5165 trace_init_global_iter(&iter);
5166
5167 for_each_tracing_cpu(cpu) {
5168 atomic_inc(&iter.tr->data[cpu]->disabled);
5169 }
5170
5171 old_userobj = trace_flags & TRACE_ITER_SYM_USEROBJ;
5172
5173 /* don't look at user memory in panic mode */
5174 trace_flags &= ~TRACE_ITER_SYM_USEROBJ;
5175
5176 switch (oops_dump_mode) {
5177 case DUMP_ALL:
5178 iter.cpu_file = TRACE_PIPE_ALL_CPU;
5179 break;
5180 case DUMP_ORIG:
5181 iter.cpu_file = raw_smp_processor_id();
5182 break;
5183 case DUMP_NONE:
5184 goto out_enable;
5185 default:
5186 printk(KERN_TRACE "Bad dumping mode, switching to all CPUs dump\n");
5187 iter.cpu_file = TRACE_PIPE_ALL_CPU;
5188 }
5189
5190 printk(KERN_TRACE "Dumping ftrace buffer:\n");
5191
5192 /*
5193 * We need to stop all tracing on all CPUS to read the
5194 * the next buffer. This is a bit expensive, but is
5195 * not done often. We fill all what we can read,
5196 * and then release the locks again.
5197 */
5198
5199 while (!trace_empty(&iter)) {
5200
5201 if (!cnt)
5202 printk(KERN_TRACE "---------------------------------\n");
5203
5204 cnt++;
5205
5206 /* reset all but tr, trace, and overruns */
5207 memset(&iter.seq, 0,
5208 sizeof(struct trace_iterator) -
5209 offsetof(struct trace_iterator, seq));
5210 iter.iter_flags |= TRACE_FILE_LAT_FMT;
5211 iter.pos = -1;
5212
5213 if (trace_find_next_entry_inc(&iter) != NULL) {
5214 int ret;
5215
5216 ret = print_trace_line(&iter);
5217 if (ret != TRACE_TYPE_NO_CONSUME)
5218 trace_consume(&iter);
5219 }
5220 touch_nmi_watchdog();
5221
5222 trace_printk_seq(&iter.seq);
5223 }
5224
5225 if (!cnt)
5226 printk(KERN_TRACE " (ftrace buffer empty)\n");
5227 else
5228 printk(KERN_TRACE "---------------------------------\n");
5229
5230 out_enable:
5231 /* Re-enable tracing if requested */
5232 if (!disable_tracing) {
5233 trace_flags |= old_userobj;
5234
5235 for_each_tracing_cpu(cpu) {
5236 atomic_dec(&iter.tr->data[cpu]->disabled);
5237 }
5238 tracing_on();
5239 }
5240
5241 out:
5242 arch_spin_unlock(&ftrace_dump_lock);
5243 local_irq_restore(flags);
5244 }
5245
5246 /* By default: disable tracing after the dump */
5247 void ftrace_dump(enum ftrace_dump_mode oops_dump_mode)
5248 {
5249 __ftrace_dump(true, oops_dump_mode);
5250 }
5251 EXPORT_SYMBOL_GPL(ftrace_dump);
5252
5253 __init static int tracer_alloc_buffers(void)
5254 {
5255 int ring_buf_size;
5256 enum ring_buffer_flags rb_flags;
5257 int i;
5258 int ret = -ENOMEM;
5259
5260
5261 if (!alloc_cpumask_var(&tracing_buffer_mask, GFP_KERNEL))
5262 goto out;
5263
5264 if (!alloc_cpumask_var(&tracing_cpumask, GFP_KERNEL))
5265 goto out_free_buffer_mask;
5266
5267 /* Only allocate trace_printk buffers if a trace_printk exists */
5268 if (__stop___trace_bprintk_fmt != __start___trace_bprintk_fmt)
5269 /* Must be called before global_trace.buffer is allocated */
5270 trace_printk_init_buffers();
5271
5272 /* To save memory, keep the ring buffer size to its minimum */
5273 if (ring_buffer_expanded)
5274 ring_buf_size = trace_buf_size;
5275 else
5276 ring_buf_size = 1;
5277
5278 rb_flags = trace_flags & TRACE_ITER_OVERWRITE ? RB_FL_OVERWRITE : 0;
5279
5280 cpumask_copy(tracing_buffer_mask, cpu_possible_mask);
5281 cpumask_copy(tracing_cpumask, cpu_all_mask);
5282
5283 /* TODO: make the number of buffers hot pluggable with CPUS */
5284 global_trace.buffer = ring_buffer_alloc(ring_buf_size, rb_flags);
5285 if (!global_trace.buffer) {
5286 printk(KERN_ERR "tracer: failed to allocate ring buffer!\n");
5287 WARN_ON(1);
5288 goto out_free_cpumask;
5289 }
5290 if (global_trace.buffer_disabled)
5291 tracing_off();
5292
5293
5294 #ifdef CONFIG_TRACER_MAX_TRACE
5295 max_tr.buffer = ring_buffer_alloc(1, rb_flags);
5296 if (!max_tr.buffer) {
5297 printk(KERN_ERR "tracer: failed to allocate max ring buffer!\n");
5298 WARN_ON(1);
5299 ring_buffer_free(global_trace.buffer);
5300 goto out_free_cpumask;
5301 }
5302 #endif
5303
5304 /* Allocate the first page for all buffers */
5305 for_each_tracing_cpu(i) {
5306 global_trace.data[i] = &per_cpu(global_trace_cpu, i);
5307 max_tr.data[i] = &per_cpu(max_tr_data, i);
5308 }
5309
5310 set_buffer_entries(&global_trace,
5311 ring_buffer_size(global_trace.buffer, 0));
5312 #ifdef CONFIG_TRACER_MAX_TRACE
5313 set_buffer_entries(&max_tr, 1);
5314 #endif
5315
5316 trace_init_cmdlines();
5317 init_irq_work(&trace_work_wakeup, trace_wake_up);
5318
5319 register_tracer(&nop_trace);
5320
5321 /* All seems OK, enable tracing */
5322 tracing_disabled = 0;
5323
5324 atomic_notifier_chain_register(&panic_notifier_list,
5325 &trace_panic_notifier);
5326
5327 register_die_notifier(&trace_die_notifier);
5328
5329 while (trace_boot_options) {
5330 char *option;
5331
5332 option = strsep(&trace_boot_options, ",");
5333 trace_set_options(option);
5334 }
5335
5336 return 0;
5337
5338 out_free_cpumask:
5339 free_cpumask_var(tracing_cpumask);
5340 out_free_buffer_mask:
5341 free_cpumask_var(tracing_buffer_mask);
5342 out:
5343 return ret;
5344 }
5345
5346 __init static int clear_boot_tracer(void)
5347 {
5348 /*
5349 * The default tracer at boot buffer is an init section.
5350 * This function is called in lateinit. If we did not
5351 * find the boot tracer, then clear it out, to prevent
5352 * later registration from accessing the buffer that is
5353 * about to be freed.
5354 */
5355 if (!default_bootup_tracer)
5356 return 0;
5357
5358 printk(KERN_INFO "ftrace bootup tracer '%s' not registered.\n",
5359 default_bootup_tracer);
5360 default_bootup_tracer = NULL;
5361
5362 return 0;
5363 }
5364
5365 early_initcall(tracer_alloc_buffers);
5366 fs_initcall(tracer_init_debugfs);
5367 late_initcall(clear_boot_tracer);