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